Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

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Customization: Available
After-sales Service: 12 Month
Warranty: 12 Month
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  • Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts
  • Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts
  • Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts
  • Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts
  • Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts
  • Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts
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  • Overview
  • Product Description
  • Company Profile
  • OUR CERTIFICATIONS
  • OUR PARTNERS
  • PROCESSING SERVICE
  • FAQ
Overview

Basic Info.

Model NO.
Stamping Bending Machining
Type
Cold Stamping
Processing Type
Metal Spinning
Material
Alloy Steel
Mould
Simple Single Process Dies
Surface Processing
Electroplating
Fine Blanking
Multi-Position
Process
Separation Process
Industry
Metal Stamping Parts
Tolerances
0.01mm
Customized
Customized
Name
Bending Metal Part
Materials
Alloy
Tolerance
+/-0.01 mm
Processing
Stamping,Bending,Laser Cutting
Treatment
Anodizting
Applications
Bracket,Fastening Plate
Keywords 1
Stamping Machining
Keywords 2
Sheet Metal
Keywords 3
Sheet Metal Fabrication
Keywords 4
Sheet Metal Bending
Keywords 5
Sheet Metal Cutting
Keywords 6
Sheet Metal Machining
Keywords 7
Sheet Metal Work
Keywords 8
Machining Service
Keywords 9
Precision Machining
Transport Package
Films Package+ Carbon Box
Specification
Customized
Trademark
Wanda-an
Origin
China
HS Code
7308900000
Production Capacity
500000000000

Packaging & Delivery

Package Size
15.00cm * 15.00cm * 15.00cm
Package Gross Weight
2.000kg

Product Description


Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts
Bending
Bending is an indispensable art in the realm of sheet metal fabrication. It masterfully transforms flat sheets into elegant V-shapes, U-shapes, or intricate geometries, all by expertly deforming the metal along a precise, straight axis.

Post-Bending Finishes

Deburring: This involves the meticulous process of vibratory tumbling or the skilled touch of manual filing, ensuring edge refinement.
Surface Treatment: Elevate your parts with stunning finishes through powder coating, anodizing, or plating, each adding a layer of protection and aesthetic appeal.
Inspection: Employ advanced laser scanning or CMM for a thorough examination of critical parts, ensuring precision and quality.

Stamping Stamping is a powerhouse of manufacturing, achieving high volumes with precision. It employs dies and presses to cut, bend, or form sheet metal into desired shapes with efficiency and accuracy.
Post-Stamping Processes

Deburring: Achieve smooth perfection with vibratory tumbling, grinding, or innovative laser deburring.
Surface Finishing: Transform your products with vibrant powder coating, sleek electroplating, or protective anodizing.
Inspection: Utilize state-of-the-art vision systems, CMM, or manual checks to ensure impeccable quality and performance.

Laser cutting Laser cutting is a marvel of modern manufacturing, providing a high-precision, non-contact thermal process that uses a focused laser beam to cut, engrave, or perforate sheet metal with unparalleled accuracy.
Post-Processing
Deburring: Choose from vibratory tumbling, tactile manual filing, or cutting-edge laser deburring to perfect every edge.
Edge Smoothing: Employ grinding or electropolishing, especially for stainless steel, to achieve a flawless, smooth finish.
Surface Coating: Enhance appearance and durability with powder coating, anodizing for aluminum, or sleek plating.

Product Description

Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

Bending Machining Specifications
Parameter Typical Range/Value
Material Thickness 0.5 mm - 12 mm (0.02" - 0.47")
Bend Radius (R) 0.5×T - 1.5×T (T = material thickness)
Bend Angle Tolerance ±0.5° - ±2° (depends on method)
Minimum Flange Length 4×T + R (to avoid tool interference)
K-Factor (Neutral Axis) 0.3 - 0.5 (varies by material)
Press Brake Bending Parameters
Parameter Air Bending Bottoming Coining
Force (Ton/m) Low to moderate High Very high
Accuracy ±1° ±0.5° ±0.2°
Tool Wear Low Moderate High
Applications Prototypes, general High-precision parts Hard materials
Stamping Press Machine Specifications
Press Type Force Range Speed Accuracy Applications
Mechanical Press 5-3000 tons 20-1,500 SPM ±0.1 mm High-speed blanking
Hydraulic Press 10-10,000 tons 5-100 SPM ±0.05 mm Deep drawing, coining
Servo Press 5-2000 tons 10-400 SPM ±0.01 mm Precision forming
Laser Cutting Tolerances & Clearances
Standard Tolerance: ±0.1 mm (up to 5mm thickness).
Hole Diameter: ≥1× material thickness (e.g., 2mm hole for 2mm steel).
Kerf Width: 0.1-0.3 mm (depends on laser focus).
Minimum Internal Corner Radius: ≥0.2 mm.
Material Specifications
Material Thickness Range Tensile Strength (MPa) Notes
Mild Steel (CRS) 0.5-6 mm 250-400 Most common; cost-effective
Stainless Steel (304) 0.5-5 mm 500-700 Corrosion-resistant; harder to stamp
Aluminum (5052) 0.5-8 mm 150-300 Lightweight; prone to scratching
Copper (C110) 0.3-4 mm 200-250 High conductivity; soft
Brass (260) 0.3-3 mm 300-400 Decorative; brittle

Design Guidelines
Holes/Slots: Strategically place ≥2×T from the bend line to prevent distortion and ensure structural integrity.
Bend Sequence: Initiate the process from the farthest bend to skillfully avoid collisions and ensure seamless operations.
Relief Cuts: Essential for adjacent bends or maintaining tight tolerances, ensuring precision in complex designs.
Spring back Compensation: Compensate for material behavior by overbending 2°-5°, tailored to material specifics.

Key Parameters in Bending
Bend Radius: Usually ranges from 0.5-1.5x material thickness to prevent cracking and ensure smooth bends.
K-Factor: This critical ratio of the neutral axis to material thickness significantly influences the bend allowance.
Bend Allowance/Deduction: A precise calculation to determine the flat pattern length essential before bending.
Spring back: Consider elastic recovery post-bending, effectively managed by over bending to compensate.
Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

Company Profile

Precision Sheet Metal Bending Stamping Machining Service for Alloy PartsPrecision Sheet Metal Bending Stamping Machining Service for Alloy Parts

OUR CERTIFICATIONS

Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

OUR PARTNERS

Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

PROCESSING SERVICE

Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

FAQ

Precision Sheet Metal Bending Stamping Machining Service for Alloy Parts

 

 

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