Laser engraving system Working area: 914.4x609.6mm Laser power: 25, 60, 100watt Applications: 2d architecture model, large format engraving jobs. Advantage: economic type, Lem series laser engraving system Working area: 660.4x304.8mm Laser power: 25watt Applications: heavy-duty jobs, rubber stamps Advantages: super strength air flow for the clean engraving environment. Lee - 200kg Lem - 150kg
The UV laser marking machine is developed by using a 355nm UV laser. This machine uses a third-order intracavity frequency doubling technology. Compared with infrared lasers, the 355nm UV laser has a very small spot, and the marking effect is directly interrupted by a short-wavelength laser. The molecular chain greatly reduces the mechanical deformation of the material. Thermal deformation (cold light), because it is mainly used for ultra-fine marking and engraving. It is especially suitable for applications such as marking, micro-hole drilling of food and pharmaceutical packaging materials, high-speed dicing of glass materials, and complex pattern cutting of silicon wafers.
Description- Laser cutting after they were introduced in the 19th century, the fashion designers are widely adopting laser cutting in garment manufacturing. In synthetic fabrics, laser cutting produces well-finished edges as the laser melts and fuses the edge, which avoids the problem of fraying produced by conventional knife cutters. Furthermore, use of laser cutting is increasingly used for leather due to the precision of cut components. In fashion accessories such as jewellery, laser cutting can be used to produce new and unusual designs to produce a fusion of apparel design and jewellery style. In laser cutting a laser is used to cut the fabric into the desired pattern shapes. A very fine laser is focused on to the fabric surface, which increases the temperature substantially and cutting takes place due to vaporization. Normally gas lasers (CO2) are used for cutting of fabric. The cutting machine includes a source of laser, a cutting head fitted with mirrors to reflect the laser beam to the cutting line, a computer to control the entire system and a suitable mean for removing the cut parts. The application of inert gases (N2, He) during cutting prevents the charring and removes debris and smoke from the cutting area. Like the mechanical cutting devices, a laser beam does not become blunt and need sharpening. Automatic single ply laser cutters are faster (30 40 m/min) than automatic multiple ply knife cutters (5 12 m/min). However, while cutting multiple plies, knife cutters are faster per garment cut and also cheaper. The limitation of laser cutting is the number of lays of the fabric that can be cut by the beam. Best result is obtained while cutting single or a few lays, but the accuracy and precision is not obtained with several plies. Technical Specifications- Model AccuCut â?? XXXX Laser type CO2 DC glass tube / RF metal laser tube Laser power Glass tube 60 W/ 80 W/ 100 W/ 130 W / 150 W Metal tube 40 W/ 60 W/ 80 W/ 100 W/ 200 W Wavelength 10.6m Supply voltage AC 230 V ± 10% Reposition accuracy 0.1 mm (MAX) Cutting speed 0-30000 mm/min Engraving speed 0-64000 mm/min Cooling Water cooled Work environment Temp: 0 C 45 C Humidity: 5% 95% Acceleration speed 1 G Graphic file support .plt, .cdr, .al, .dwg, .dst, .dxf, .bmp, .jpeg, .tiff, .gif, .pcx etc.
Description- A mirror galvanometer is used to scan the laser beam and mark the product surface. Moving the focus lens (used instead of the f lens) back and forth enables adjusting the beam not only on the x and y axes, but also on the z axis. 3D Software Extension Ideal for the three-dimensional reproduction of designs and engravings with major detail, requiring different levels of engraving depth. This software extension, optionally provided, is based on the management of STL files, allows the 3D reproduction of solids authentic to their real proportions. 3 Axis Auto-Movement Axis position management through software, allowing the serial marking of multiple objects on the same tray and at the same time, even having different shapes and sizes. Based on the management of Cartesian coordinates, the use of this module, makes possible to program the movement of all axes depending on the position of the objects to be LASER-marked, making possible to boost productivity by the serial marking. Features- Hi-tech technology Permanent, high quality marks High efficiency and low operation cost Good accessibility, even to irregular surface Non-contact marking and no special working environmental needed The minimized metallurgical and mechanical damage Easy to automate and integrate (direct writing of patterns can established Using computer-controlled movement of the beam or sample) Precise beam positioning and a beam highly localized energy Transfer to the work piece High reproducible and high speed, effective Minimal heat load Contamination free Technical Specifications- Model SIL Accuwrite F 3D 50/60/100 Watts Power 20 W to 100 W Wavelength 1063 ±3 nm Beam quality
Description- The UV Laser Marking with its wavelength 355nm is suitable for marking plastics (ABS, PA) due to a high repetition rate. The UV laser wavelength is suitable and versatile in marking a wide range of materials and is perfect for â??cold markingâ?? applications where heat zones are not allowed. UV Laser mark at very high speeds which are indispensable for short cycle times in industrial manufacturing environments. With high peak powers they are most suitable for fine marking and structuring without thermal impact on glass applications and/or ceramics. The UV laser marking will mark plastics and silicon materials without the need of additives and will also mark glass with drastically reduced risk of micro fracture. The excellent beam quality also affords this laser the ability to be utilized in micro marking applications such as electronics, circuit boards and microchips in addition to solar panels and precise medical marking applications. They also provide an excellent quality for classical laser marking applications and micro material processing. Features- Small beam diameter and fine marking line Good quality and high laser beam stability Complete machine stability, simple and easy operation Narrow pulse width, small heat affected zone, work-piece without damage Suitable for sensitive material as cold light source Laser directly acting on molecular chain with maximum extend to avoid thermal effect It works stably, applied in superbly precise marking, such as: LCD, wafer, chip ceramic, sapphire, precise surface marking of other materials,3C electronics, Lamps, food package, wire rod ,leather, ceramic, PCV, glass, Phone case, medicine bottle, fine marking on glass substrate, electric appliance marking and so on. Technical Specifications- Wavelength 335nm Laser Beam Mode TEM00 Average Power Up to 2W Positioning Visible Red Diode Light Input Power 115/230VAC 50/60Hz System Power Consumption < 950W Cooling Air Cooled, active thermo-electric/Water Cooled Operating Temperature Range 18 to 35C (64 to 95F) Humidity 10% to 85% Non-condensing STANDARD LENS CONFIGURATIONS FOCAL LENGTH 100 mm 65 mm X 65 mm (2.56 X 2.56) 160 mm 110 mm X 110 mm (4.33 X 4.33) 255 mm 175 mm X 175 mm (6.89 X 6.89)
Description- Color Laser Marking Machine used to coloured parts are commonly used from decorative applications in a wide range of consumer goods and marking of these parts is generally achieved though the removal of the coloured anodised layer to reveal the base aluminium material either a white or silvery mark depending on process conditions. Commonly used in gift-ware and consumer goods, alphanumeric and marketing logos are typically marked. The use of lasers for colour marking is not a particularly new technique as it has been recognized for over 10 years. This technique was originally identified as a viable process for use on craft metal work and jewellery. However, the process has had very little commercial impact in the intervening years. There is now a greater interest in this process as manufacturers of consumer goods are looking for new techniques and finishes to provide product differentiation. This application note looks at a variety of materials that are colour mark-able including titanium and stainless steel, and explores the benefits and parameters of the pulsed fiber laser in relation to this application area. Specifications- Significant improvement in the quality of the mark due to the stability and controllable of the laser source. Beam intensity and spot size enable the use of small mark widths. Output power stability over time enables complex mark patterns without power fluctuations â?? no weld defects. High power density allows large marking areas to be processed rapidly. Maintenance free (no replaceable parts). 3-Dimensional marking can be easily achieved. High repetition rate is achievable. Low frequency (
Description- SIl 3D 6axis Robot fiber laser cutting machine can be adopted with multiple automations that iclude gantry and double sided gantry system.Fixtures and automation gives and advantage as to excellant dynamic response and lower weight.The SIl robotic cutting system adopts world class robot from Fanuc or YASKAWA integrated with Fiber laser source and best of designed cutting head.This machine performs well with its high precision, high efficiency and low noise when running at full capacity. SIL 6-Axis laser cutting machine is used in precisely cutting 3D parts with complex surface. Specially suitable for cutting covering parts of automobile and aviation industry, such as edge and hole cutting. It can replace the traditional trimming die and piercing die. It can realize 3D partsâ?? high quality, high precision and high efficiency cutting, without needs of secondary processing. Features- Free movement with greater reach at 270 degree angle Advanced Laser cutting head with auto focusing Suitable to Edge cutting of Hydro formed parts of Automobiles Auto tracking system Expert in 3D Cutting with arbitrary curve 6-axis mechanical arm gives four times more output Advantages Stable and reliable light path system and control system Imported original fiber laser generator with great and stable performance,lifespan is over 100,000 hours High cutting quality and efficiency with cutting speed up to 25m/min and beautiful,smooth cutting edge High performance reducer,gear and rack;Guide rail and ball screw to guarantee Application Area- Mainly used in 3D precision cutting of aviation, automobile industry, construction machinery , mold, fitness equipment and sheet metal processing, etc flexible laser manufacturing system is made up of advanced international FIBER laser, 6-axis industrial robot and control system. It meets well the demand of quenching, tempering, normalizing, alloying, cladding etc. This 3D robot laser cutting machine is specially for cutting thin metal ,such as carbon steel,stainless steel,brass,aluminum ,etc
Supplier: Fiber laser metal cutting machines, laser cutting machine, laser engraving machine, laser marking machine