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Longer Laserburn App - Longer B1 connection
Longer Laserburn App - Longer B1 connection

The Longer B1 laser engraver now supports the Longer LaserBurn app, available for both Android and iOS devices. This new app allows you to emulate the Longer B1's display directly on your smartphone, enabling file creation and editing, as well as setting cutting and engraving power and speed parameters. The app works similarly to LightBurn, offering an intuitive interface that is easy to use for both beginners and experienced users.

Please note that after updating the firmware, the MKSLaser app and Web Browser Interface will no longer be supported, but you will gain access to the powerful Longer LaserBurn app.

Preparing for the Firmware Update

Before proceeding, you need to update the firmware on your Longer B1. Follow these steps:

1. Download the Firmware and Configuration Files

First, download the firmware update package, which includes the new firmware and the configuration file for LaserGRBL:

https://drive.google.com/drive/mobile/folders/1cMsCv-wTjJ7fkDKehzPs7pqXt50ivix_/18-rHsIJ8Om688f-eFt9TJXP5rDeepAUb/1XPY4dMHMcKfjyktFZhFIb4LZbvL_R4hf?sort=13&direction=a

2. Download and Install MKSLaserTool

Next, download and install the MKSLaserTool update software, and launch the application:

https://drive.google.com/file/d/1KXFudeke1sTATLbbrk4EyCvNW9mEteq7/view?usp=sharing

3. Update the Firmware

Once MKSLaserTool is launched, follow these steps to update the firmware:

  1. In MKSLaserTool, select MKS ESP32 Download Tool.
  2. Choose the correct port and set the baud rate to 921600.
  3. Select the downloaded .bin firmware file.
  4. Click Start and wait for the process to finish. Once completed, you’ll see the message “Firmware successfully flashed.”

4. Import the Configuration File

After the firmware update, close MKSLaserTool and open LaserGRBL (if you don’t have it installed, download it from the LaserGRBL website). Then, follow these steps:

  1. Open LaserGRBL and select the configuration file you downloaded earlier.
  2. Import the configuration file and write it to the Longer B1.

With that, your Longer B1 is now ready for use with the Longer LaserBurn app!

5. Download the Longer LaserBurn App

You can now download and install the Longer LaserBurn app:

  • Android Users: Download the stable version from the Google Play Store by searching for “LaserBurn.” Alternatively, you can try out the beta releases from this link.
  • iOS Users: Download from the Apple App Store by searching for “LaserBurn.”

Connecting to the Longer B1 via LaserBurn

Once installed, you can connect your smartphone to the Longer B1 in three ways:

1. Wi-Fi Direct Connection

1. Power on the Longer B1 and connect your phone to the LongerLaser_ Wi-Fi network (Password: 12345678).

2. Open the Longer LaserBurn app, tap on “Not Connected.”

3. Go to the device management section, and enter the IP address 192.168.0.1 to establish the connection.

2. Scan Connection

1. Open the LaserBurn app, tap on “Not Connected.”

2. Tap “Add” to scan for devices.

3. Connect your phone to the LongerLaser_ Wi-Fi network (Password: 12345678).

4. Tap “Set STA mode,” select the Wi-Fi network you wish to connect to, and complete the connection.

 

3. IP Connection (Touchscreen Users Only)

Touchscreen users can directly connect using the device’s IP address by entering the correct IP into the app.

Conclusion

By following these steps, you’ll successfully update your Longer B1 firmware and start using the Longer LaserBurn app. This app provides powerful new features for creating and editing files, controlling cutting and engraving parameters, and managing your laser engraver from your smartphone.

Once the firmware update is complete, the MKSLaser app and Web Browser Interface will no longer be available, but the Longer LaserBurn app offers a much more powerful and intuitive interface for controlling your laser engraver.

If you encounter any issues during the update process, feel free to refer to this guide or reach out to our technical support team.

By products-tutorial | March 6, 2024
How to install the Touch Screen for Longer B1
How to install the Touch Screen for Longer B1

The Longer B1 laser engraver is designed with a versatile mainboard that supports wireless technology, microSD card reading, and seamless interaction with your smartphone. While the machine can be controlled via a classic USB interface using a laptop, you can significantly expand its functionality by adding a touchscreen display with an intuitive graphic interface.

The touchscreen connects easily to the Longer B1, thanks to its magnetic surface. Simply plug the cable into the appropriate port on the machine, and you're ready to go. With the touchscreen, you can manage tasks like selecting and starting jobs from your microSD card, moving the axes, setting the "home" position, controlling the laser beam, and establishing a wireless connection to your Wi-Fi network.

This upgrade provides a much simpler and faster way to control your machine compared to using software on a laptop.

Important Note Before Using the Touchscreen

Before using the touchscreen, you may need to update the firmware of your Longer B1. Please note: After the firmware update, the MKSLaser App and Web Browser Interface will no longer work. However, the new firmware will enable you to use the more advanced Longer LaserBurn App for smartphone-based control.

Steps to Set Up the Touchscreen

Once you’ve connected the touchscreen to the Longer B1, follow these steps to update your firmware and enable full touchscreen functionality.

1. Download the Firmware and Configuration Files

First, download the firmware update package, which includes the new firmware and the configuration file for LaserGRBL:

https://drive.google.com/drive/mobile/folders/1cMsCv-wTjJ7fkDKehzPs7pqXt50ivix_/18-rHsIJ8Om688f-eFt9TJXP5rDeepAUb/1XPY4dMHMcKfjyktFZhFIb4LZbvL_R4hf?sort=13&direction=a

2. Download and Install MKSLaserTool

Next, you’ll need to download and install MKSLaserTool to update your firmware. After installing, launch the application:

https://drive.google.com/file/d/1KXFudeke1sTATLbbrk4EyCvNW9mEteq7/view?usp=sharing

3. Update the Firmware

Once MKSLaserTool is installed, follow these steps to update the firmware:

  1. Open MKSLaserTool and select MKS ESP32 Download Tool.
  2. Choose the correct port and set the baud rate to 115200.
  3. Select the downloaded .bin firmware file.
  4. Click Start and wait for the update process to complete. The tool will show “Firmware successfully flashed” once done.

4. Import the Configuration File

After the firmware update is complete, close MKSLaserTool and open LaserGRBL. If you don’t have it installed, download it from the LaserGRBL website. Then follow these steps:

  1. Open LaserGRBL and select the configuration file you downloaded.
  2. Import the configuration file and upload it to your Longer B1.

Once these steps are completed, the firmware and configuration updates will be successfully installed, and your Longer B1 will be ready to recognize the touchscreen display.

Full Touchscreen Functionality

At this point, the touchscreen will be fully functional, and you can use it to control the machine with ease. The updated firmware also enables you to use the Longer LaserBurn App for smartphone-based engraving and laser control.

Where to Buy the Touchscreen

The Touchscreen for Longer B1 Laser Engraver is available for purchase at the following link:

Conclusion

The Longer B1 laser engraver's touchscreen is a simple, plug-and-play solution to make controlling your machine even easier. With the new firmware update, you can use both the touchscreen and the Longer LaserBurn App for a seamless engraving experience from your smartphone. Follow the steps above to ensure a smooth setup, and enjoy more efficient and user-friendly control of your Longer B1.

If you run into any issues, feel free to refer to this guide or contact our support team for further assistance.

By products-tutorial | March 6, 2024
Mastering Metal Rust Removal: Laser Engraving Machine Tips and Techniques
Mastering Metal Rust Removal: Laser Engraving Machine Tips and Techniques

Metallic rust can be chronic trouble, but with the rise in recognition of laser engraving machines, a brand new and surprisingly effective answer has emerged. believe in effects of getting rid of rust from metallic surfaces with precision and pace, all thanks to the power of laser generation. In this put-up, I will be sharing valuable insights on the way to use a laser engraving machine for your steel rust removal tasks, exploring the techniques and safety measures necessary for hit outcomes.

When it comes to metallic rust elimination, conventional techniques regularly involve tremendous manual hard work and the use of harsh chemical substances. However, the introduction of laser engraving machines has revolutionized this process, providing a greener and more environmentally friendly opportunity. by harnessing the electricity of centered laser beams, those machines can rapidly get rid of rust while keeping the integrity of the metallic surface.

As we delve into the intricacies of using laser engraving machines for steel rust elimination, it is essential to understand the importance of the right strategies and protection precautions. Even as the technology offers remarkable blessings, it additionally calls for careful dealing with it to ensure the most beneficial results and prevent capability hazards.

Join me as we explore the transformative ability of laser engraving machines for metallic rust removal and liberate the key to accomplishing pristine, revitalized metallic surfaces with self-belief and precision.

Understanding Metal Rust and Laser Engraving Technology

Rust on steel is a commonplace trouble that arises because of the chemical response between moisture, oxygen, and the metal itself. This reaction, called oxidation, ends with the formation of iron oxide, which weakens the structural integrity of the steel. elements together with publicity to humid or salty environments, similar to scratches or dents at the metal's surface, can boost up this process.

What Causes Metal to Rust?

Whilst steel comes into touch with moisture and oxygen, it undergoes a process called corrosion, resulting in the formation of rust. Rust not only tarnishes the appearance of steel surfaces but also compromises their energy and durability. The presence of environmental factors, inclusive of rain, humidity, and salt spray, at the side of the kind of metal can influence the rate at which rust develops.

Overview of Laser Engraving Technology for Rust Removal

The laser engraving age offers a liberal solution for the perfect removal of rust from metal outsides. With the useful resource of producing a targeted beam of mild force, laser engraving machines can professionally ablate the rust-affected areas without impressive harm to the fundamental steel. This managed way guarantees the restoration of the surface to its unique condition, presenting a high stage of exactness that conventional methods can also lack.


The compensations of making use of laser engraving technology for rust elimination are several. From its non-touch nature to the ability to target particular areas without impacting the encircling fabric, laser engraving presents a fairly powerful and green method of metal floor healing. Moreover, the procedure is environmentally friendly because it eliminates the need for harsh chemical compounds or abrasives, making it a proper choice for eco-conscious tasks.


By combining the ideas of laser technology with the need for powerful rust removal, this superior technique affords a dependable and sustainable answer for keeping the best and sturdiest of steel surfaces.

Best Practices for Laser Engraving Metal Rust Removal

Earlier than diving into the technique of laser engraving for rust removal, it is critical to put together and look into the metallic floor. Cleaning the metal floor very well guarantees that the laser can successfully target the rusted regions without interference. I often begin by casting off any debris, grease, or current coatings from the surface. This permits me to expose the level of rust harm and permits me to pick appropriate laser engraving parameters for the task. Calculating out the depth and unfold of the rust lets me seamster the laser settings for particular and real rust removal.

Surface Preparation and Inspection

Whilst optimizing laser parameters for rust elimination, several elements come into play. Adjusting the pulse duration, spot length, and repetition fee is prime to accomplishing a hit rust removal without compromising the integrity of the underlying metal. It is critical to strike stability between the laser depth and the duration of publicity to prevent any heat-associated harm to the metallic floor. Through cautiously first-class tuning of those variables, I'm able to ensure that the rust is effectively eliminated without inflicting any unintended effects on the steel.

Optimizing Laser Parameters for Rust Removal

After the rust removal procedure is complete, it is crucial to put into effect submit-remedy measures to protect the steel floor from destiny corrosion. Applying a protective coating or inhibitor can appreciably reduce the danger of rust formation. Additionally, incorporating protection practices, which include regular cleaning and inspections, is critical for prolonging the rejuvenated steel floor's durability. By constantly keeping the metal, I can safeguard it from destiny rust issues and maintain its pristine state for an extended length.

Post-Treatment Surface Protection and Maintenance Tips

Applications and Advancements in Laser Rust Removal Technology

Laser rust removal generation has revolutionized the manner in which we technique metal floor restoration, offering a flexible and efficient solution for addressing rust and corrosion throughout various industries. permits discovering the diverse packages of laser rust removal and delving into the exciting improvements shaping the destiny of this technology.

Diverse Applications of Laser Rust Removal

Laser rust removal has transformed the automobile industry by taking into account specific cleansing of automobile components without harming the fundamental metal. This method not only efficiently restores the visual charm of classic cars but also protects the sturdiness and structural energy of modern-day cars.


Furthermore, the atmosphere area has accepted laser rust elimination to uphold the impeccable situation of plane components. Whether or not it's eliminating corrosion from fuselage panels or sensitive engine parts, the precision of laser technology allows for focused rust removal without compromising the overall first-rate quality of the metal.


Art restoration gives some other charming applications, in which sensitive and historically large metallic artifacts are meticulously handled to preserve their authentic attraction. Laser rust removal strategies were instrumental in maintaining difficult sculptures, ornate metalwork, and ancient artifacts, presenting a non-invasive method for restoring cultural treasures.

Safety Precautions and Equipment Preparation

When usinga laser engraving gadget for steel rust removal projects, it's essential to prioritize protection and ensure the system is well organized. permit's dive into the crucial safety precautions and device setup for this system.

Area Preparation

Before beginning the laser engraving procedure, it's important to prepare the painting's vicinity. Clear the gap of any flammable substances and make sure there is proper ventilation to reduce fume exposure. Moreover, make sure to have a hearth extinguisher close by as a safety precaution.

Personal Protective Equipment (PPE)

Wearing the proper non-public protecting system is non-negotiable whilst operating with a laser engraving gadget. This consists of safety goggles to guard the eyes from any potential laser exposure, in addition to gloves and face masks to shield the pores and skin and respiratory devices from particulates and fumes.

Machine Calibration and Inspection

Before the usage of the laser engraving system, it is vital to carry out a thorough calibration and inspection. Check the alignment of the laser beam, verify the proper functioning of safety interlocks, and make certain that the device is well-maintained and free from any defects.

Conclusion

To sum up, using laser engraving machines for removing rust from metal projects is a highly effective and efficient solution. The precision and power of laser generation allow users to obtain extremely good consequences, respiratory new existence into old, rusted steel surfaces. It is critical to learn the chances of making use of this current method; however, it is similarly important to emphasize the need for proper schooling and strict devotion to safety rules. With the proper knowledge and defenses in location, the capability for remodeling rusty metal into pristine condition is notable. Embrace the electricity of laser engraving for rust elimination; however, usually prioritize protection and know-how in its utility.

By products-tutorial | January 20, 2024
Longer Laser B1 Wireless Connectivity
Longer Laser B1 Wireless Connectivity

The Longer B1 laser engraver is a powerful and versatile laser engraving machine designed for both hobbyists and professionals. One of its key advantages is its support for wireless connectivity, allowing users to control the device via WiFi using a smartphone, tablet, or laptop.

This guide explains how to correctly configure WiFi on the Longer B1, how to use the MKSLaser ecosystem, and how to avoid common setup issues.

1. Overview of Wireless Capabilities

The Longer B1 mainboard integrates modern wireless functionality, enabling:

  • WiFi connectivity for remote control
  • microSD card reading and wireless file transfer
  • Optional touchscreen interface (purchased separately)
  • Full control via MKSLaser application

Once connected to a network, the machine can be operated without a physical USB connection, significantly improving workflow flexibility.

2. What You Need Before Setup

Before configuring WiFi, ensure you have:

  • A stable WiFi router (2.4GHz recommended)
  • A Windows PC or laptop
  • USB cable for initial configuration
  • microSD card (usually included with the machine)
  • MKSLaser software and MKS Laser Tool

3. Installing the Correct Configuration Tool

To configure WiFi, you must use the MKS Laser Tool software.

In many cases, the factory-provided version (often V1.1.2) may not work properly with newer routers. Therefore, it is recommended to install the latest version:

👉 Recommended version: MKS Laser Tool V2.1.5
Download:
https://drive.google.com/file/d/1KXFudeke1sTATLbbrk4EyCvNW9mEteq7/view?usp=sharing

Longer Laser B1 Wireless Connectivity

4. WiFi Configuration Process

After installation:

Step 1: Run as Administrator

Launch the software with administrator privileges to avoid permission issues.

Step 2: Open WiFi Configuration Tool

Select:

  • “WiFi Configuration Tool”

Step 3: Select COM Port

Choose the correct COM port corresponding to the connected Longer B1 device.

Step 4: Enter Network Credentials

Input:

  • WiFi SSID (network name)
  • WiFi password

Step 5: Connect and Retrieve IP

Wait for the connection process to complete successfully.
Once finished, click “Get IP” and record the assigned IP address.

Longer Laser B1 Wireless Connectivity

5. Important Network Consideration (IP Stability)

A key limitation is that the IP address of the Longer B1 may change periodically.

To avoid repeated configuration:

✔ Set up DHCP IP Reservation on your router
✔ Bind the MAC address of the B1 device to a fixed IP

This ensures the machine always connects using the same address and eliminates repeated setup steps.

6. Accessing the Machine via WiFi

After successful configuration:

From Laptop:

  • Open a web browser
  • Enter the machine IP address
  • Access the control interface directly

From Smartphone:

  • Install the MKSLaser App (Android/iOS)
  • Ensure both phone and machine are on the same WiFi network
  • Enter the IP address inside the app

7. MKSLaser Application Features

The MKSLaser application transforms your smartphone into a full control terminal for the machine.

Home Interface

Displays:

  • X/Y axis position
  • Laser power intensity (S value)
  • Real-time machine status

At the bottom, four main modules are available:

Longer Laser B1 Wireless Connectivity
Longer Laser B1 Wireless Connectivity
Longer Laser B1 Wireless Connectivity

7.1 Creation Mode

This is the main design and engraving workflow module.

Functions include:

  • Import images or take photos
  • Adjust brightness, contrast, and filters
  • Configure engraving parameters:
    • Size
    • Speed
    • Power
    • M3 / M4 mode
  • Slice and upload files directly to the machine via WiFi

After upload, the engraving process can be monitored in real time, including pause, stop, and parameter adjustments.

Longer Laser B1 Wireless ConnectivityLonger Laser B1 Wireless Connectivity
Longer Laser B1 Wireless Connectivity

    7.2 Control Mode

    Provides manual machine control:

    • Move laser head in X/Y directions
    • Set movement speed
    • Home positioning
    • Define custom origin point
    • Toggle laser and air assist ON/OFF
    Longer Laser B1 Wireless Connectivity

    7.3 Material Testing Mode

    This section includes preloaded test patterns designed to help users:

    • Identify optimal engraving settings
    • Test different materials (wood, acrylic, leather, etc.)
    • Fine-tune power and speed combinations
      Longer Laser B1 Wireless Connectivity

      7.4 Engraving File Management

      • Displays files stored on microSD card
      • Allows direct selection and engraving
      • Provides quick start for preloaded jobs
        graving

        8. Practical Benefits of WiFi Control

        Using WiFi with the Longer B1 offers several advantages:

        • No need for constant USB connection
        • Remote monitoring and control
        • Faster workflow and file transfer
        • Mobile-based design adjustments
        • Improved flexibility in workshop environments

        9. Conclusion

        The WiFi capability of the Longer B1 laser engraver significantly enhances usability and workflow efficiency. When properly configured using the latest MKS Laser Tool and MKSLaser application, users gain full remote control over engraving operations from virtually any device.

        Proper network setup—especially IP reservation—is critical to ensure stable long-term performance.

        By products-tutorial | December 6, 2023
        Easily Remove Engraving Residue from Wood
        Easily Remove Engraving Residue from Wood

        If you've ever run your laser at low speed and high power, you've probably noticed sticky sap, smoke residue, and varnish buildup left behind on the engraved surface. This residue can make an otherwise detailed engraving appear dirty or uneven.

        In this guide, you'll learn how to quickly and easily remove wood residue after laser engraving using a common hand cleaner and a soft-bristle brush. This beginner-friendly method helps leave your engraving looking clean, crisp, and professional without using harsh chemicals.

        Table of Contents

        • What This Guide Covers
        • Quick Answer
        • Why Removing Engraving Residue Matters
        • Before You Start
          • Requirements
          • Precautions
        • Step-by-Step Tutorial
        • Common Problems and Solutions
        • Tips for Better Results
        • Frequently Asked Questions
        • Final Thoughts

        What This Guide Covers

        This tutorial explains:

        • How to remove sticky wood residue after laser engraving
        • How to clean soot, sap, and varnish buildup
        • Which cleaning materials to use
        • Safe cleaning techniques for engraved wood
        • Beginner-friendly post-processing tips

        The original cleaning process and sequence are preserved exactly.

        Quick Answer

        To remove wood residue after laser engraving:

        1. Apply a small amount of Permatex Fast Orange Hand Cleaner to a soft-bristle brush.
        2. Gently scrub the engraved area until the residue is removed.
        3. Wipe away remaining dirt and cleaner using a slightly damp paper towel.

        This method provides a quick and effective way to clean laser engraved wood surfaces.

        Why Removing Engraving Residue Matters

        During laser engraving, especially at low speed and high power, wood materials can release sap, smoke residue, and burned varnish. These materials settle on the surface and inside engraved areas.

        Cleaning the residue helps:

        • Improve engraving clarity
        • Increase contrast and detail visibility
        • Prevent sticky buildup
        • Create a cleaner finished appearance
        • Improve the overall presentation of laser projects

        Proper post-processing is especially important for display pieces, gifts, signs, and products intended for sale.

        Before You Start

        Requirements

        You'll need:

        • Permatex Fast Orange Hand Cleaner
        • Soft-bristle brush
        • Paper towels or cloth

        The product used in this tutorial is described as:

        • Biodegradable
        • Waterless
        • Petroleum solvent-free
        • Free from harsh chemicals
        • Free from mineral oils
        • Free from ammonia

        Follow official machine specifications or instructions if additional cleaning recommendations are provided.

        Precautions

        Before cleaning your laser engraved wood project:

        • Make sure the material has cooled completely
        • Avoid aggressive scrubbing
        • Use a soft-bristle brush only
        • Do not soak the wood surface
        • Test on scrap material if needed

        Gentle cleaning helps protect engraving details and prevents damage to softer wood materials.

        Step-by-Step Tutorial

        Step 1: Apply Cleaner to the Brush

        Action

        Begin by placing a small amount of Permatex Fast Orange Hand Cleaner on the soft-bristle brush.

        Expected Result

        The brush becomes lightly coated with cleaner and ready for residue removal.

        Important Notes

        Only a small amount of cleaner is needed.

        Using excessive cleaner may make the surface harder to wipe clean afterward.


        Step 2: Gently Scrub the Engraved Area

        Action

        Gently scrub the engraved area until it is free of residue.

        Expected Result

        Sticky sap, smoke residue, and varnish buildup begin lifting from the engraved surface.

        Important Notes

        Use gentle pressure while scrubbing.

        Aggressive cleaning may:

        • Damage wood fibers
        • Blur engraving edges
        • Scratch softer materials

        Continue cleaning carefully until the surface appears clean.

         

        Step 3: Wipe Away Remaining Dirt and Debris

        Action

        When your project is residue free, wipe away any excess dirt and debris with a slightly damp paper towel.

        Expected Result

        The engraved wood surface appears cleaner, sharper, and more defined.

        Important Notes

        The paper towel should only be slightly damp.

        Excess moisture may affect unfinished wood surfaces.

        Allow the material to dry naturally after cleaning.


        Common Problems and Solutions

        Problem Possible Cause Solution
        Sticky residue remains Not enough cleaning time Continue gentle scrubbing
        Engraving still looks smoky Residue trapped in engraved grooves Use the soft-bristle brush carefully in detailed areas
        Surface becomes fuzzy Excessive scrubbing pressure Reduce cleaning force
        Cleaner leaves streaks Too much cleaner applied Wipe thoroughly with a slightly damp paper towel
        Wood absorbs moisture Paper towel too wet Use only a slightly damp towel
        Fine engraving details appear faded Cleaning too aggressively Use lighter pressure during scrubbing

        Tips for Better Results

        Clean Soon After Engraving

        Residue is often easier to remove shortly after the project cools down.

        Use Proper Laser Settings

        Low speed and high power settings can create heavier residue buildup. Optimizing settings may help reduce cleanup time.

        Keep Your Workspace Ventilated

        Good airflow helps reduce smoke accumulation during engraving.

        Use Soft Cleaning Tools Only

        Soft-bristle brushes help protect delicate engraving details while removing residue effectively.

        Avoid Harsh Chemicals

        The cleaner used in this process is biodegradable and free from petroleum solvents, mineral oils, ammonia, and harsh chemicals.

        Frequently Asked Questions

        Why does laser engraving create sticky residue?

        Low speed and high power settings can produce excess sap, smoke residue, and varnish buildup on wood surfaces.


        Can I use regular household cleaners?

        This tutorial specifically uses Permatex Fast Orange Hand Cleaner. Follow official machine specifications or instructions before using alternative products.


        Is this cleaning method safe for engraved wood?

        Yes, when performed gently using a soft-bristle brush and a slightly damp paper towel.


        Can aggressive scrubbing damage engravings?

        Yes. Excessive force may damage fine details or roughen the wood surface.


        Why use a soft-bristle brush?

        Soft bristles help remove residue without scratching or damaging the engraved material.


        Should the paper towel be wet or damp?

        The paper towel should be slightly damp only.

        Avoid excessive moisture on wood surfaces.


        Does this method work for laser cutting residue too?

        Yes. This cleaning process can also help remove residue left behind from laser cutting projects.

        Final Thoughts

        Removing wood residue after laser engraving is an important finishing step that can dramatically improve the appearance of your project. Using Permatex Fast Orange Hand Cleaner together with a soft-bristle brush provides a quick, effective, and environmentally friendly way to clean soot, sap, and varnish buildup from engraved wood surfaces.

        With gentle cleaning and proper handling, you can achieve cleaner engravings, sharper details, and more professional-looking laser projects every time.



        By products-tutorial | December 6, 2023
        LONGER RAY 5 Newest 20W vs. 10W vs. 5W, What's the Differences? Which One to Buy? - LONGER
        LONGER RAY 5 Newest 20W vs. 10W vs. 5W, What's the Differences? Which One to Buy?

        If you want to correctly engrave practically anything, you will need a laser engraver. This is because lasers are extremely precise. Because they sell the RAY5 5W and RAY5 10W engravers, the people at LONGER are a fantastic place to begin. The beam's size, power, and focal length are the key distinctions between them; nonetheless, they can engrave a significant amount of material.

        If you are looking for a tool to engrave your selected object, then you should choose the model that is most suitable for your needs. Well, worry not, as we are here to tell you about the three basic types of laser engraving, their differences, and a guide to choose which one suits you according to your need. Without further ado, let's dive right in.

        What Is Laser Power?

        Before we learn about the three types of laser powers, let's just investigate what laser power is. The strength of the laser is what determines how much energy is taken up by the worksheet. The basic rule is that when the laser power is increased, the bend angle grows as well, reaches a peak, and then begins to fall again as the laser power is increased even further.

        The higher the laser power, the more heat is absorbed, which results in a higher peak temperature and, therefore, a more incredible amount of plastic deformation at the scanned surface. This causes the bend angle to increase. After reaching its maximum, the bend angle begins to fall because of an increase in laser power.

        This is primarily the result of two factors. First, the melting takes place in the region that is being irradiated at higher power, and the heat energy that is being applied is used up in the phase transformation rather than in the bending of the material. Second, when the power is increased, the peak temperature of the surface of the bottom of the vessel likewise increases.

        This results in a reduction in the difference between the plastic deformation at the top surface and the bottom surface, which in turn leads to a reduction in the bend angle at greater power.

        In terms of optical laser power, the vast majority of the most popular laser engravers on the market now fit into only two primary categories, namely the 5W and 10W optical power. The modules in the first category each contain a single laser diode. In contrast, the 10W modules contain ingenious optics that combine laser light from two different laser diode sources, resulting in output power that is twice as strong as that of the lower-powered modules.

        What Exactly Does The "W" Stand For?

        Wattage is one of the most significant aspects to consider when discussing laser cutters. It is something that you will need to specify when you first purchase the machine, and it is the factor that affects the final cutting power and speed of your project.

        When the wattage rating is increased, the flow of energy also increases. When it comes to laser cutters, having a 20W laser rather than a 5W laser will enable energy to transfer at a substantially faster rate.

        You can see a sequence of lasers inside the head of a LONGER RAY 5 if you crack it apart and look at the laser inside of it. However, we strongly advise against doing this. The head of the 20W laser is made up of four 5W lasers, all of which are pointed in the same direction and concentrated through the head of the laser.

        Why? The purpose of this is to generate more power and more energy from a single laser beam.

        Differences Between LONGER RAY 5  5W Vs. 10W Vs. 20W

        The 5W, 10W, and 20W LONGER RAY 5 all share quite a few characteristics in common with one another. On the other hand, there are a comparable number of differences. Let's focus on what differentiates these machines in a series of head-to-head comparisons so that you can make the most informed decision possible about which one to purchase.

        Power Of The Laser Head

        Before we go any further, there is something that needs to be clarified: although the laser head is the only difference between the two, it has a significant impact on the operation of your LONGER RAY 5 laser engraver, and we will go over those differences in depth here.

        Regardless of which wattage option you go with, the LONGER RAY 5 will provide you with the same framework, sensors, and attachments to use. The laser head is the only component that is different.

        The LONGER RAY 5 staff refers to it as a "plug-and-play module" in their explanation. You only need two cables and ten minutes of your time to upgrade from a 5W or 10W laser cutter to a 20W model, which gives you more cutting power.

        Variations in Laser Power Depend on Which Laser Head You Use and the Different Materials You Can Cut. You can improve the power of your 5W or 10W laser by purchasing a 20W module to add to it.

        To put it another way, if you want a 20W, you have the option of either purchasing one specifically designed for that purpose. The only choice available to you if you want a 5W or 10W is to purchase the machine in its current state.

        The benefits are significant even though the adjustment is rather straightforward. The next sections are all about the difference that the simple head swap makes.

        Quickness Of Project Completion

        The exact amount of time it will take to finish the project is contingent on a few different factors:

        • Quickness of the route
        • Precision in cutting depth, selection of materials, and complexity in design.
        • The depth of the etching or cut.

        The remaining three of these five parameters are not dependent on your laser cutter in any way. The speed with which your laser cutter completes your job is solely dependent on the routing speed and cutting speed settings.

        In this competition, the speeds of the various routes do not differ from one another. The routing speed of the 5W, 10W, and 20W is all 10000mm/min, which is far quicker than the previous generations.

        Where do we stand with the cutting depth now? Here is where you'll see a significant deviation from the norm. A laser with 10W of power can cut nearly exactly twice as deep as a laser with 5W of power. When compared to the 10W, the 20W has twice the cutting depth.

        This indicates that there is a theoretical difference in cutting depth that is equivalent to four times greater when going from 5W to 20W.

        LONGER RAY 5 states that the difference might be very different depending on the material that is used:

        When it comes to the amount of time, it will take to accomplish a project. A 20W laser cutter will get the job done the quickest, followed by a 10W laser cutter, and finally, a 5W RAY laser cutter will be the slowest.

        Space For Making Cuts and Working Area LONGER RAY 5

        While the chassis of each LONGER RAY 5 is the same, the cutting areas of the various configurations are also quite comparable. The LONGER RAY 5  5W and the LONGER RAY 5 10W lasers offer precisely the same cutting area, measuring 400x400mm (15.75×15.75inch).

        Although the laser head on the 20W is significantly larger than that found on the 10W, the cutting area is marginally reduced. The cutting area for a 20-watt laser is 375×375mm (14.76×14.76 inch).

        Although the difference isn't huge, it's nevertheless significant enough to indicate that the 5W and 10W laser cutters have a little advantage in this category.

        Alternatives To Materials(Cutting Capability)

        One further aspect of the topic that is connected to laser power is the many kinds of materials that can be worked with. While attempting to engrave or cut certain materials, significantly greater force and forcefulness are required.

        You can work with a greater selection of materials when you have a 20W. You can also work with more substantial materials, which opens even more possibilities for the kinds of projects you can develop.

        The Ray5 20W comes equipped with a powerful laser module with a 20W output. Also, this machine features the most recent generation of laser enhancement technology, which increases its capacity for cutting. It can cut through 0.002 inches (0.05 mm) of stainless steel, as well as 0.59 inches (15 mm) of pine wood and 0.31 inches (8 mm) of acrylic in a single pass.

        Because of recent advancements in compressed laser technology, the laser spot may now be as small as 0.08*0.1mm2, making it possible to engrave artwork with thinner lines, clearer texture, and more attractive details. And the air-assisted interface is reserved, which allows for a wide variety of air pumps to be easily matched up with more hygienic surfaces.

        While utilizing the 5W cutter, metal, ceramic, and stone become a great deal more challenging to work with, and in all honesty, the 5W power setting is more commonly used for engraving than it is for cutting. When utilizing a 5W or 10W laser cutter, most people adhere to cutting materials made of All Wood, Paper, Plastic, Leather, PCB Board, Aluminum Oxide, Non-Reflective Plating, And Lacquered Metal.

        Think about getting the 20W laser if you wish to work with a variety of various types of materials. For the purposes of our projects, we have successfully cut through even the denser woodlands.

        Precision

        What should you do if you need to draw lines on a component that are extremely thin and accurate? In this scenario, we strongly advise you to avoid using the 20W laser head, even though the risk is still relatively low.

        The spot size of the 20W laser is 0.08×0.10mm. Imagine that the laser spot is the point at which a laser pointer is pointed. If the RAY uses this laser pointer to cut, you will want the tip to be as small as it possibly can be.

        The laser spots of the 5W are 0.08×0.08mm, and the 10W are 0.06×0.06mm lasers. The laser spot of the 20W laser is significantly larger.

        So, if you require an accurate component, you should stick to either the 5W or the 10W.

        Different Engraving Capability

        Pieces can also be engraved with this type of laser cutter, which is another useful function of these machines. A small amount of material is removed from the top surface to produce designs via engraving. Because engraving does not go as deep as cutting, the power required is not as significant.

        The 5W RAY's capacity to engrave is significantly improved thanks to a smaller laser point and higher precision than its predecessor. Because the component only needs one pass with the laser, and the routing speed is the same across the board for these three possibilities, the 5W is the one that should be chosen.

        If you need to engrave and cut the same object, going with the 10W laser might be the best choice for you. It possesses an excellent equilibrium of slicing force and accuracy.

        Make Colourful Creations

        The ability to generate colorful engravings on metal is a special capability that is exclusive to the 20W LONGER RAY 5 and cannot be found on any other machine. What is the mechanism behind this? Because of the increased power provided by the 20W laser, it is capable of oxidizing metal at a variety of rates. It's hard to believe when you see it in person.

        Altering the laser's power causes the metal's oxidation to occur at varying rates, ultimately producing a variety of colors. It is effective on brass, copper, stainless steel, and titanium in addition to aluminum. The only difference is the range of colors that are available to you (which depends on the metal type).

        Lasers with 5W and 10W outputs are not powerful enough to accomplish this task. You'll need the 20W model if you wish to create vivid engravings on metal.

        Pricing LONGER RAY 5 Laser, Available In 5W, 10W, And 20W.

        What should I expect to pay for this? The distinction is not as bizarre as it may initially appear to be:

        • LONGER RAY 5W: $299.99
        • LONGER RAY 10W: $449.99
        • LONGER RAY 20W: $899.99

        These are currently on discount. Hence it's high time to make a purchase.

        What Different Material Can Different Laser Power Cut Or Engrave?

        Cutting using a laser can be done on a wide variety of materials, including but not limited to wood, paper, plastics, glass, leather, foam, textiles, and metals. By selecting the parameters that are most suitable for the laser, one can ensure that the cuts produced are of high quality and have a smooth surface finish. On the other hand, it is not suggested to use a laser cutter for cutting certain materials, such as vinyl or ABS.

        To produce the desired cut, a laser cutter operates by concentrating a high-energy laser beam on the surface of the substance it is cutting. This causes the material to burn and evaporate.

        When being worked on by a laser, each material exhibits its own unique characteristics and necessitates a unique configuration of the various laser parameters to achieve a clean cut with a high level of surface finish.

        Aside from that, the capacity of a laser to cut through the material is determined by the sort of laser that is being employed.

        In general, laser cutting works best with natural materials like wood, paper, leather, and metals, among other things, because these materials produce no or only a limited amount of potentially dangerous by-products.

        Final Takeaway

        The best possible outcome will be achieved with a laser power that is tailored specifically to the constituent material. For example, engraving paper uses significantly less power than engraving wood does on average. A minimal amount of power is required to achieve an engraving that is uniformly homogenous in acrylic and is not very deep. In addition, having a higher power enables speedier work while processing engraving materials.

        The software allows for straightforward control of the laser's output power. Nonetheless, the hardware has a role in determining the maximum power. The following criteria must be met: You are able to process a wide variety of materials with a laser machine that has a high laser power, which provides you with a great deal of freedom.

        https://www.longer3d.com/collections/laser-engraver

        By products-tutorial | February 23, 2023
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