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Sheet Metal Laser Cutting Punching Bend

Material: Stainless Steel, Steel, Aluminium, or as your request
Application: Sheet Metal Fabrication, used widely
Size: Customized Size
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Product Introduction

Products Description

 

From Sheet Metal Laser Cutting Punching Bend, to the fabrication of stainless steel-sheet metals, tailored and diversified, this is a process in which sheet metals are molded into useful products through a number of techniques. These include laser cutting, stamping, and bending, for making a wide array of products applicable in aerospace, automotive, construction, electronics, and many other industries.

 

Laser cutting is among the most extensively used methods of fabricating sheet metals. This contains a high-powered laser utilized in the cutting of the sheet metal with much precision and exactitude. Comparatively, laser cutting is faster, more precise, and cleaner than other traditional techniques.

The other common technique in sheet metal fabrication involves stamping. This includes a stamping press in which there is a die and punch used in the cutting and shaping of the metal in concern. The metal is fed through the press, where the die and punch come together thus cutting and shaping the metal.

 

Another fabrication technique for sheet metals is bending. In general, this fabrication technique uses a brake press during the bending and giving shape to metals in desired shapes and sizes. The bends made are smooth, accurate, and hence can be reproduced with preciseness repeatedly.

The most common metals used in the fabrication process include stainless steel. This metal has immense tensile strength, is extremely durable, and can overcome corrosion for many years. Its usability ranges within various sectors of industries starting from medical, automotive industries to aerospace industries due to its envious properties.

 

Our custom sheet metal fabrication shop offers Sheet Metal Laser Cutting Punching Bend, stamping, and welding, among many others. Having been in the field for several years, we are professionals in working with stainless steel. We can ensure that our expert team will guide you through the complexities in seeing your project through to success.

 

Product Parameters

 

Product Name: Sheet Metal Laser Cutting Punching Bend
Material: Stainless Steel, Steel, Aluminium, or as your request
Application: Industrial
Package: Carton, Wooden Case or as Required
Country of origin: China

 

 

Products show

 

Customized High-Quality Flange for Automobile

 
about the pros and cons of laser cutting.
 

 Laser Cutting Machine running on Steel Sheet

Benefits of Laser Cutting

 

 

1. Precise Laser Cutting
As everything is computer-controlled, laser metal cutters can repeatedly reproduce parts with exact dimensions and zero practical variance.

 

2. Quick Processing
A laser cutter can quickly cut through most materials, and the cutting speed can be further increased when processing thinner workpieces.

 

3. Zero Mechanical Stress
The laser-cutting process selectively cuts through metals by melting them. Since no mechanical force is applied to the workpiece, internal stresses don't build up in the metal.

 

4. Accurate Edges
The excellent precision of laser cutting machines allows you to cut complicated shapes with small, sharp edges that would otherwise be impossible with traditional manufacturing.

 

5. Reduced Tool Wear
Lasers don't have any mechanical wear and tear. Thus, they can continuously cut through metals without needing a tool change. Lasers only need to be replaced once their lifespan reaches its limits.

 

6. Little Post-Processing Required
Lasers produce smooth edges with zero burrs on the workpiece. Hence, there is little need for post-process clean-up techniques.

 

7. No Additional Equipment
Compared to metal stamping, laser-cut parts do not require additional equipment like dies.

 

8. Material Compatibility
Most laser Cutters are designed for metal fabrication but maintain reasonable compatibility with non-metals like wood, fabrics, and plastics.

 

9. Versatility
Material penetration of a laser is reduced when the input power is decreased or the laser beam is out of focus. Modern laser cutters use low-power modes and unfocused beams to switch to an engraving mode.

Cons of Laser Cutting

 

 

1. Temperature Damage
Exposing certain metals to high temperatures can cause unwanted warping, burning, and melting. Thin metals like copper and volatile ones like magnesium require extra care and precautions when laser cutting.

 

2. Material Compatibility
Laser cutting supports both metal and non-metal materials. However, the material support can be very confusing for newcomers.

Only neodymium (Nd: YAG) lasers support ceramic cutting, diode lasers have better support for fabrics and leather, CO2 lasers are more suited to rubber and plastics, and fiber lasers are better at cutting metals with reflective surfaces.

 

3. Cutting Depth Limitations
Laser cutting is best suited to thin metal sheets. Cutting a particular part out of thicker sheets is possible. Still, it requires additional power and slower speed, which can often result in unwanted melting around the freshly cut edges of the workpiece.

 

4. Inability to Bend Metal
Metal stamping at reduced power will result in metal bending. Laser machines are incapable of such metal manipulation.

 

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