Product Details

Widely used in construction, machinery, coal, chemical industry, railway vehicles, automotive industry, roads, Bridges, containers, sports facilities, agriculturalmachinery, petroleum machinery, prospecting machinery manufacturing industry.

Medium And Thick Steel Plate Cutting
The appropriate cutting method should be selected based on factors such as sheet thickness, cutting shape, precision requirements, and cost. Common cutting methods include mechanical cutting (such as shearing and sawing), plasma cutting, laser cutting, and waterjet cutting.

Strength of stainless steel mills home direct supply, mass quality supply, the lowest price in the whole network, professional team to ensure quality.

Product specifications can be customized according to customer requirements

PRODUCT INTRODUCTION

Cutting Machine Parameter

Technical DataLaser CuttingFlame CuttingPlasma Cutting
Effective Width of The Cutting≤ 4050mm6000mm3500mm
Effective Length of The Cutting≤ 32000mm28000mm21000mm
Effective Thickness of The Cutting2.0-22mm--

Cutting Machine Processing

Compared to traditional flame cutting or plasma cutting, laser cutting technology offers significant core advantages:

Superior Precision: Narrow kerf with dimensional accuracy up to ±0.1mm, sharp contours, suitable for direct application to precision components.

Flexibility and Efficiency: Driven by CNC programs, no molds are required, enabling instant cutting of any complex shapes. It is particularly suitable for multi-variety, small-batch, and customized production needs, significantly shortening product delivery cycles.

Excellent Quality: Smooth and flat cuts, small heat-affected zone, minimal workpiece deformation, effectively reducing subsequent processing steps and improving product quality.

Wide Material Adaptability: It not only efficiently processes carbon steel but also performs excellently on stainless steel, alloy steel, and other metal materials, especially excelling in the complex processing of medium and thin plates.

Our company has introduced an advanced CNC fiber laser cutting system, combined with automated loading and unloading devices, realizing an intelligent process from drawing to finished product. This technology is widely used in many fields such as machinery manufacturing, chassis and electrical cabinets, engineering machinery, elevator components, and metal art.

Our industry production goal is to provide customers with high-precision, high-quality steel cutting solutions, with rapid response capabilities and stable processing quality, to help customers improve product competitiveness and market efficiency.


Technology TypeMinimum Cutting Cut/PrecisionApplicable Thickness RangeAdvantagesTypical Application Scenarios
Precision laser cuttingCutting kerf as small as 0.1mm, with an accuracy of ±0.02mm≤6–8mmNon-contact processing, burr-free, minimal deformation, supports irregular shapesPrecision electronics, medical equipment, molds
Waterjet cuttingCutting accuracy approximately ±0.1mm100+mmCold cutting, no heat generation, suitable for thick platesThick plate structural parts, fire and explosion-proof environments
Traditional stampingAccuracy approximately ±0.1~0.2mm0.5–3mmHigh-efficiency mass productionStandardized sheet metal parts, chassis and enclosures

✅ Recommendation

For decorative or precision parts (<12mm), laser cutting is the preferred choice to ensure surface finish and accuracy.

For structural components or thick plate machining (>20mm), waterjet or flame cutting is recommended, balancing feasibility and cost.

Actual cutting capacity is also affected by equipment quality, auxiliary gas, cutting speed, etc., and needs to be confirmed with the manufacturer in conjunction with the drawings.

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