Small laser engraving machine



       Small laser engraving machines, as the name suggests, are laser engravings, which are a way of removing material, leaving a more or less deep trajectory that will reveal a theme.
       The material can be removed by laser in three ways. The first, most traditional method is to focus a sufficiently powerful laser beam on a size comparable to the diameter of the hair. This high power density results in localized heating of the material followed by vaporization. Since vaporization can occur in less than one microsecond, only pulsed lasers are used in this process because they allow the high power required for vaporization to be achieved in a short period of time, but the average power is low. The beam is scanned into a scanner according to a predefined pattern, which is deleted according to text, images or any other form drawn in the CAD software package.
Two other methods of removing materials.
       It is also possible to remove substances by molecular separation. In fact, by selecting an ultraviolet laser, each photon is highly activated. Their absorption causes the molecular bonds to break, causing the molecules to be ejected.
       Finally, due to ultrashort wave (or femtosecond) lasers, this material is possible without thermal phase. Therefore, only the exposed area is ablated and the surrounding area is hardly heated, which is the advantage of a small laser engraving machine. This very precise contact technology allows all materials to have a flat or complex surface that is engraved and has a good depth of control. It is also easy to engrave the outline in three dimensions. Therefore, laser engraving can open the door for the decoration of parts, especially in the jewelry and watch industry, but there are also many applications in the production of e-cards.
Add a laser system to your woodworking toolbox. Why do woodworking machines increasingly add small laser engraving machines to their workspace? This is because the versatility of lasers cannot match woodworking.
      Woodcutting and engraving are two of the most popular applications for lasers because they can contain many different projects. From cabinets to photo frames to tool holders, laser systems are used in almost all woodworking classes. Whether you are with hardwood, paneling, inlays, mdf, plywood, walnuts, alder, or cherries, you can use laser systems to engrave amazingly complex images.
What can I create with a laser?
      From cabinets to photo frames to tool holders, laser systems are used in almost every category of woodworking.
Photo engraving
       A picture is worth a thousand words, and a photo engraving is worth a thousand words! Keep your customers' photos and memories on mahogany or natural pine trees to commemorate the past.
mosaic
       By using the cutting and engraving capabilities of the laser system, you can create beautiful mosaics for cabinets, rewards, guitars, and more.
Prototype design
      For projects that need to get things done quickly, a laser system can greatly speed up your workflow. Quickly cutting materials like MDF and plywood allows you to record time from concept to prototype. In addition, since the laser allows you to use materials of almost any size or shape, you can easily use these extra wood chips, which you got from the previous project!
personalise
      Laser systems can help customize products and create one-of-a-kind, one-of-a-kind things. Personalized awards, skateboarding, mobile use cases, guitars, or any other item can turn a great piece into a perfect gift.
And more...
      When you use a laser for woodworking projects, the possibilities are limitless. Whether you are developing a product, working on a hobby project, or designing a new design, the laser system can help you create higher quality faster. All it needs is a little imagination and a laser!

The difference between the circular and square rails of the engraving machine



    Heaven and earth are round and infinite. People are among them, as if they are mustard. The engraving machine's round rails and square rails also have their own differences, mastering their differences, and using the freely carved more beautiful products.

    The round rail is a cylindrical linear guide, which requires limited support, so the rigidity is poor. The bearing capacity is high and the precision is general. Due to the relatively low cost of the round guide rail, short production cycle and easy installation, it has become a substitute for square linear guides in many occasions.
    The square rail refers to the square linear guide or the square hard rail. The linear guide is superior to the hard rail at the precision speed, but the hard rail is superior in rigidity, according to different machine tool structure uses. Linear guides feature high positioning accuracy, reproducible linear guide rail rolling motion, friction coefficient is particularly small, especially the static friction and dynamic friction is very small, even in the case of micro-feeding there will be no idling and slipping phenomenon, The resolution and reproducibility are optimal, so advanced positioning accuracy can be achieved. Low friction resistance for long-term accuracy. The rolling friction of the linear guide can be reduced to 1/20~1/40 of the frictional resistance of the sliding guide. Especially the lubrication structure is simple, the lubrication is easy, the lubrication effect is excellent, and the friction contact surface wears the bottom, so the walking precision can be maintained for a long time. . The optimal design of the geometric structure of the high load capacity that can withstand four directions, can withstand radial, reverse radial and lateral loads, and maintain the walking accuracy, and can be easily applied by preloading and the number of sliders. It can improve performance and load capacity. Suitable for high-speed applications, the frictional resistance is small, the driving horsepower demand of the equipment is low, the energy saving effect is large, especially the motion wear is small, the temperature rise effect is low, and the mechanical miniaturization and high-speed demand can be simultaneously achieved.