TITANIUM WITH INOX 304
TITANIUM WITH INOX 304
-
Samples: GIA CONG INOX CAT LASER FIBER KIM LOAI TAI TPHCM
- Manufacturing: INOX TINTA VIETNAM CORPORATION
- Commitment to quality: 24 Month Warranty
- Quantity Ordered Products: 1000
- Inox Product Price Quote Not VAT
Inox product details
Stainless steel laser cutting service. stainless steel laser cutting service. Processing fiber laser, stainless steel cat laser on request. Curve cat laser stainless steel with fiber cutting on demand at cheap price in tphcm.
Stainless steel laser cutting service. Laser fiber processing, stainless steel cat laser on demand, stainless steel cat laser curved by fiber laser cutter on demand cheap price in Ho Chi Minh City. Inox TinTa Vietnam Joint Stock Company undertakes processing of fiber laser, stainless steel laser on demand . Curve stainless steel laser with fiber laser cutting machine according to your demand and cheap price in Ho Chi Minh City , Binh Duong , Dong Nai . Each received orders for laser fiber cutting , stainless steel laser cutting on requestof large foreign export corporations, including small details of precision mechanics, TinTa Vietnam always satisfies customers who require the most thorough and accurate quality of stainless steel cat laser. by fiber cutters upon request. Not only is the details exactly the cheapest, the delivery time is always committed. Stainless steel laser cutting service.
Fiber laser cutting method, stainless steel cat laser on demand at cheap price in Ho Chi Minh City .
There are different methods of laser cutting, with different types being used to cut different materials. Some methods are vaporization, smelting and blowing, melt blowing and burning, thermal stress cracking, recording, cold cutting and stable laser burning.
Vaporize cut cut fiber laser, laser cut stainless steel
In the process of evaporation, cutting the beam focusing surface material heated to the boiling point and create keyhole. Keyhole leads to a sudden increase in absorbance quickly deepening the hole. As wormholes and materials boil, the resulting steam erodes the molten walls blowing out and widens the holes further. Non-melting materials such as wood, carbon and thermoplastics are usually cut by this method.
Melting and blowing
Melting and blowing or fusion cutting uses high-pressure gas to blow molten material from the cutting area, significantly reducing energy requirements. First, the material is heated to the melting point then a stream of air blows the molten material out of the laser cutting head to avoid further increasing the temperature of the material. Materials for cutting with this process are usually metal, fiber laser cutting , stainless steel laser cat, metal laser cutting .
Thermal stress fracture fiber laser, stainless steel cat laser, metal laser cutting.
Brittle materials are particularly sensitive to thermal fractures, a feature exploited in thermal cracking. A beam is focused on the surface causing local heating and thermal expansion. This leads to a crack which can then be guided by moving the beam. The cracks can be moved in m / s order. It is often used in glass cutting, fiber laser cutting, stainless steel cat laser, metal laser cutting .
Invisible cutting of silicon sheet
Further information: fiber laser cutting, stainless steel cat laser, metal laser cutting
The separation of microelectronics chips manufactured in semiconductor device manufacturing from silicon sheets can be done by a process known as stealth, works with pulsed Nd: YAG laser cutting , a wavelength (1064 nm) that is well applied to silicon's band gap electronics (1.11 eV or 1117nm).
Fiber laser cutting, stainless steel cat cutting, metal laser cutting
Also called "stable laser gas cutting", "flame cutting". Reaction cutting is like cutting an oxygen torch but with a laser beam itis a source of ignition. Mainly used for cutting carbon steel in thicknesses above 1 mm. This process can be used to cut very thick steel plates with relatively little laser power.
Surface tolerances and finishes
The laser cutting machine has a positioning accuracy of 10 micrometers and a repeatability of 5 micrometers. [citation needed]
Rz standard roughness increases with sheet thickness, but decreases with laser power and cutting speed. When cutting low carbon steel with laser power of 800 W, standard roughness Rz is 10 m for sheet thicknesses 1 mm, 20 m for 3 mm and 25 m for 6 mm.
{displaystyle Rz = {frac {12,528 cdot S ^ {0.542}} {P ^ {0.528} cdot V ^ {0.322}}}} {displaystyle Rz = {frac {12,528 cdot S ^ {0.542}} {P ^ {0.528 } cdot V ^ {0.322}}}}
Where: {displaystyle S =} S = sheet thickness in mm; {display type P =} P = laser power in kW (some new laser cutters have a laser power of 4 kW); {displaystyle V =} V = cutting speed in meters per minute [10].
This process is capable of keeping tolerances fairly close, usually within 0.001 inch (0.025 mm). The geometry and mechanical sound of the machine is very much related to endurance. Typical surface finishes due to laser beam cutting can range from 125 to 250 micro-inches (0.003 mm to 0.006 mm). [7]
Configure fiber laser cutting machine, stainless steel cat laser as required. Curve cat laser stainless steel with fiber cutting on demand at cheap price in tphcm.
Dual laser optical fiber laser cutting pallet, stainless steel cat laser, metal laser cutting
Flying optical laser heads
There are generally three different configurations of industrial laser cutters : moving materials, hybrid and flying optical systems. They refer to how the laser is moved through the material to be cut or processed. For all of these, the axes of motion are usually assigned X and Y axes. If the cutting head can be controlled, it is designated as Z axis.
The moving material laser has a fixed cutting head and moves the material with it. This method provides a constant distance from the laser generator to the workpiece and a single point to eliminate cutting wastewater. It requires less optics, but requires moving the workpiece. This style machine tends to have the least optical beam distribution, but also tends to be the slowest.
Hybrid lasers provide a table that moves along an axis (usually the X axis) and moves the head along the shorter (Y) axis. This results in a more constant beam path than the optical machine and may allow for a simpler beam distribution system. This can lead to a much lower power loss in the distribution system and more power per watt than flying optics.
The flying optical laser has a stationary table and a cutting head (with a laser beam) that moves across the workpiece both horizontally. Optical cutters keep the workpiece stationary during processing and usually do not require material clamping. The moving mass is constant, so the dynamics are not affected by the different size of the workpiece. Optical flying machine is the fastest type, convenient when cutting thinner workpieces. [11]
The aircraft must use several methods to account for the length of the beam that changes from the near field (near the resonator) cutting to the far field (away from the resonator). Common methods for controlling this include collimation, adaptive optics, or the use of a constant beam length axis.
Five and six-axis machines also allow cutting of formed workpieces. In addition, there are various methods for directing laser beams into shaped workpieces, maintaining appropriate focusing distance and nozzle value, etc.
Fiber laser cutting, stainless steel cat laser, metal laser cutting with fiber cutting machine on demand at cheap price in Ho Chi Minh City.
Pulsed lasers provide high energy for a short time very effectively in some laser cutting processes, especially when piercing, or when very small holes or very low cutting speeds are needed, because if beams are used Laser constant, the heat can reach the point of melting the whole piece is cut.
Most industrial lasers are capable of pulsing or cutting CW (continuous wave) in NC program control (digital control).
Dual pulse lasers use a series of pulse pairs to improve material removal rate and hole quality. Basically, the first pulse will remove the material from the surface and the second pulse prevents the ejecta from sticking to the side of the hole or cutting. [12]
Power consumption
The main disadvantage of laser cutting is high power consumption. Laser performanceIndustry can range from 5% to 45%. [13] The energy consumption and efficiency of any particular laser type will vary depending on the output power and operating parameters. This will depend on the type of laser and how appropriate the laser is to the job at hand. The amount of laser cutting power required, called the heat input, for a specific job depends on the type of material, thickness, process (reaction / inert) used and the desired cutting speed.
The amount of heat input required for different materials at different thicknesses using CO
2 laser [watts] [14]
Material Material thickness
0.51 mm 1.0 mm 2.0 mm 3 , 2 mm 6.4 mm
Stainless steel 1000 1000 1000 1500 2500
Aluminum 1000 1000 1000 3800 10000
Mild steel - 400 - 500 -
Titanium 250 210 210 - -
Plywood - - - - 650
Boron / epoxy - - - 3000 -
Production and cut rates
Maximum cutting speed (production speed output) is limited by a number of factors including laser cutting power , material thickness, process type (reaction or inert) and material properties. Conventional industrial systems (k1 kw) will cut carbon steel metal to a thickness of 0.51 - 13 mm. For all intents and purposes, a laser can be up to thirty times faster than standard saws. [15]
Cutting speed using CO
2 laser [cm / sec]
Workpiece material Material thickness
0.51 mm 1.0 mm 2.0 mm 3.2 mm 6.4 mm 13 mm
Stainless steel 42.3 23.28 13.76 7.83 3.4 0.76
Aluminum 33.87 14.82 6.35 4 , 23 1.69 1.27
Mild steel - 8.89 7.83 6.35 4.23 2.1
Titanium 12.7 12.7 4.23 3.4 2.5 1.7
Plywood - - - - 7.62 1.9
Boron / epoxy - - - 2.5 2.5 1.1
Processing of stainless steel - Similar products
Products
inox - Featured Products
STAINLESS STEEL HOT NEWS
tinta's Customer support
Mr Hoang Thai (Vietnam/English)
Ms Thùy Dung (Vietnam / English)
Hoàng Gia Phú (Mr)
Mr Viết Sáu (Vietnam/English)


.jpg)

