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Precision Custom Deep Drawing Die for Automotive Components with Multi-Stage Drawing Capability

Precision Custom Deep Drawing Die for Automotive Components with Multi-Stage Drawing Capability

MOQ: 10000pcs
Standard Packaging: Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Period: 25-35 work days
Detail Information
Place of Origin
CN
Brand Name
METS
Surface Finish:
Smooth, Coated, Or Customized
Mold Type:
Forming Die
Qty Of Cavities:
As Required
Processing Method:
Punching, Bending, Stamping, Welding
Production Material:
Steel, Stainless Steel, Aluminum, Alloy
Compatiblematerials:
Aluminum, Stainless Steel, Copper
Origin:
China
Processing Type:
Processing Of Deep Drawing Parts
Minimum Order Quantity:
10000pcs
Packaging Details:
Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Time:
25-35 work days
Highlight:

Precision Custom Tooling Deep Drawing Die

,

Automotive Deep Drawing Expertise Deep Drawing Mold

,

Multi-Stage Drawing Deep Drawing Tool

Product Description
Precision Custom Deep Drawing Die for Automotive Components
METS manufactures Precision Custom Deep Drawing Dies for Automotive Components, providing customized tooling solutions for forming complex metal components with controlled depth, geometry, dimensional accuracy, and repeatable production performance.
Precision custom deep drawing die for automotive components manufacturing
Key Advantages
  • Precision Custom Tooling based on customer drawings and samples
  • Automotive Deep Drawing Expertise for complex formed components
  • Controlled Material Flow to reduce wrinkles and forming defects
  • Multi-Stage Drawing for deeper and more complex geometries
  • Integrated Drawing, Trimming & Piercing when required
  • High-Precision CNC and EDM/WEDM Machining
  • Customized Tool Steel Selection according to application and production volume
  • Press Compatibility Engineering based on customer's equipment specifications
  • Trial Stamping & Tool Adjustment before final approval
  • OEM/ODM Tooling Development from prototype to production

Technical Parameters
Parameter Specification
Product Name Precision Custom Deep Drawing Die
Application Automotive Components
Die Type Deep Drawing Die / Progressive Deep Drawing Die / Compound Die
Secondary Operations Trimming / Piercing / Bending / Forming
Compatible Materials Carbon Steel / Stainless Steel / Aluminum / Copper / Brass
Typical Material Thickness 0.1-3.0 mm, customized
Main Tool Steel DC53 / SKD11 / D2 / SKH-9 / SKH-51 / YG15 / YG20
Die Structure Single-Stage / Multi-Stage / Progressive
Die Precision Up to approximately 0.003-0.01 mm for suitable tooling features
Insert Machining CNC / EDM / WEDM / Grinding
Design Software CAD / UG / SOLIDWORKS / PROE
Press Compatibility Customized according to customer's press specifications
Trial Press Range Approximately 25-180 T depending on die design
Die Life Customized according to material, production volume and tooling design
Cavity Single / Multiple / Customized
Drawing Method Single Drawing / Multi-Stage Drawing
Surface Treatment Polishing / Coating / Heat Treatment / Customized
Inspection CMM / Projector / Height Gauge / Caliper / Hardness Testing
Prototype Support Trial Samples Available
OEM/ODM Supported
MOQ 1 Set
Packaging PE Film + Export Wooden Case
Delivery Typically 7-35 Days, Depending on Project Requirements
Payment T/T / L/C
Final tooling specifications are determined according to the automotive component drawing, material grade, thickness, depth-to-diameter ratio, required tolerance, press specifications, production volume, and expected die life.

Deep Drawing Die Manufacturing Capability
METS provides a complete tooling development process from part analysis to final die approval.
1. Product & DFM Analysis
Before manufacturing the die, our engineers review the customer's automotive component drawing to evaluate whether the proposed geometry is suitable for deep drawing.
The review can include:
  • Material selection
  • Sheet thickness
  • Drawing depth
  • Draw ratio
  • Corner radius
  • Wall thickness
  • Punch and die clearance
  • Blank size
  • Blank-holder requirements
  • Material flow
  • Trimming allowance
  • Piercing requirements
  • Forming sequence
  • Press capacity
For automotive components with deep or complex geometries, the drawing process may require multiple forming stages rather than a single deep-drawing operation.

2. Custom Die Design
Based on the DFM analysis, METS develops a customized die structure according to the customer's part geometry and production requirements.
Depending on the component, the tooling may integrate:
Drawing -> Redrawing -> Forming -> Trimming -> Piercing -> Calibration
This integrated approach can reduce the number of separate manufacturing operations and improve production consistency.
METS's existing deep-drawing tooling range includes progressive drawing dies, progressive tools, stamping forming dies, compound dies, and automotive applications.

3. Precision Tooling Manufacturing
METS uses CNC machining, grinding, EDM, and wire EDM processes to manufacture critical die components.
The tooling material can be selected according to:
  • Material being formed
  • Production volume
  • Required die life
  • Forming pressure
  • Component geometry
  • Wear resistance
  • Required dimensional accuracy
Common tooling materials include DC53, D2, SKD11, SKH-9, SKH-51, YG15, and YG20. Existing METS deep drawing tooling specifications list these materials for different die applications.

4. Trial Stamping & Tool Adjustment
After die assembly, METS performs trial stamping to verify:
  • Component dimensions
  • Drawing depth
  • Wall shape
  • Corner radius
  • Wrinkle formation
  • Material thinning
  • Cracking
  • Burrs
  • Trimming accuracy
  • Piercing position
  • Part release
  • Overall forming stability
If necessary, the tooling is adjusted according to trial results before customer approval.
METS's established tooling workflow includes product design review, DFM, mould design approval, mould making, trial samples, mould modification, sample approval, and final delivery.
Products
PRODUCTS DETAILS
Precision Custom Deep Drawing Die for Automotive Components with Multi-Stage Drawing Capability
MOQ: 10000pcs
Standard Packaging: Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Period: 25-35 work days
Detail Information
Place of Origin
CN
Brand Name
METS
Surface Finish:
Smooth, Coated, Or Customized
Mold Type:
Forming Die
Qty Of Cavities:
As Required
Processing Method:
Punching, Bending, Stamping, Welding
Production Material:
Steel, Stainless Steel, Aluminum, Alloy
Compatiblematerials:
Aluminum, Stainless Steel, Copper
Origin:
China
Processing Type:
Processing Of Deep Drawing Parts
Minimum Order Quantity:
10000pcs
Packaging Details:
Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Time:
25-35 work days
Highlight

Precision Custom Tooling Deep Drawing Die

,

Automotive Deep Drawing Expertise Deep Drawing Mold

,

Multi-Stage Drawing Deep Drawing Tool

Product Description
Precision Custom Deep Drawing Die for Automotive Components
METS manufactures Precision Custom Deep Drawing Dies for Automotive Components, providing customized tooling solutions for forming complex metal components with controlled depth, geometry, dimensional accuracy, and repeatable production performance.
Precision custom deep drawing die for automotive components manufacturing
Key Advantages
  • Precision Custom Tooling based on customer drawings and samples
  • Automotive Deep Drawing Expertise for complex formed components
  • Controlled Material Flow to reduce wrinkles and forming defects
  • Multi-Stage Drawing for deeper and more complex geometries
  • Integrated Drawing, Trimming & Piercing when required
  • High-Precision CNC and EDM/WEDM Machining
  • Customized Tool Steel Selection according to application and production volume
  • Press Compatibility Engineering based on customer's equipment specifications
  • Trial Stamping & Tool Adjustment before final approval
  • OEM/ODM Tooling Development from prototype to production

Technical Parameters
Parameter Specification
Product Name Precision Custom Deep Drawing Die
Application Automotive Components
Die Type Deep Drawing Die / Progressive Deep Drawing Die / Compound Die
Secondary Operations Trimming / Piercing / Bending / Forming
Compatible Materials Carbon Steel / Stainless Steel / Aluminum / Copper / Brass
Typical Material Thickness 0.1-3.0 mm, customized
Main Tool Steel DC53 / SKD11 / D2 / SKH-9 / SKH-51 / YG15 / YG20
Die Structure Single-Stage / Multi-Stage / Progressive
Die Precision Up to approximately 0.003-0.01 mm for suitable tooling features
Insert Machining CNC / EDM / WEDM / Grinding
Design Software CAD / UG / SOLIDWORKS / PROE
Press Compatibility Customized according to customer's press specifications
Trial Press Range Approximately 25-180 T depending on die design
Die Life Customized according to material, production volume and tooling design
Cavity Single / Multiple / Customized
Drawing Method Single Drawing / Multi-Stage Drawing
Surface Treatment Polishing / Coating / Heat Treatment / Customized
Inspection CMM / Projector / Height Gauge / Caliper / Hardness Testing
Prototype Support Trial Samples Available
OEM/ODM Supported
MOQ 1 Set
Packaging PE Film + Export Wooden Case
Delivery Typically 7-35 Days, Depending on Project Requirements
Payment T/T / L/C
Final tooling specifications are determined according to the automotive component drawing, material grade, thickness, depth-to-diameter ratio, required tolerance, press specifications, production volume, and expected die life.

Deep Drawing Die Manufacturing Capability
METS provides a complete tooling development process from part analysis to final die approval.
1. Product & DFM Analysis
Before manufacturing the die, our engineers review the customer's automotive component drawing to evaluate whether the proposed geometry is suitable for deep drawing.
The review can include:
  • Material selection
  • Sheet thickness
  • Drawing depth
  • Draw ratio
  • Corner radius
  • Wall thickness
  • Punch and die clearance
  • Blank size
  • Blank-holder requirements
  • Material flow
  • Trimming allowance
  • Piercing requirements
  • Forming sequence
  • Press capacity
For automotive components with deep or complex geometries, the drawing process may require multiple forming stages rather than a single deep-drawing operation.

2. Custom Die Design
Based on the DFM analysis, METS develops a customized die structure according to the customer's part geometry and production requirements.
Depending on the component, the tooling may integrate:
Drawing -> Redrawing -> Forming -> Trimming -> Piercing -> Calibration
This integrated approach can reduce the number of separate manufacturing operations and improve production consistency.
METS's existing deep-drawing tooling range includes progressive drawing dies, progressive tools, stamping forming dies, compound dies, and automotive applications.

3. Precision Tooling Manufacturing
METS uses CNC machining, grinding, EDM, and wire EDM processes to manufacture critical die components.
The tooling material can be selected according to:
  • Material being formed
  • Production volume
  • Required die life
  • Forming pressure
  • Component geometry
  • Wear resistance
  • Required dimensional accuracy
Common tooling materials include DC53, D2, SKD11, SKH-9, SKH-51, YG15, and YG20. Existing METS deep drawing tooling specifications list these materials for different die applications.

4. Trial Stamping & Tool Adjustment
After die assembly, METS performs trial stamping to verify:
  • Component dimensions
  • Drawing depth
  • Wall shape
  • Corner radius
  • Wrinkle formation
  • Material thinning
  • Cracking
  • Burrs
  • Trimming accuracy
  • Piercing position
  • Part release
  • Overall forming stability
If necessary, the tooling is adjusted according to trial results before customer approval.
METS's established tooling workflow includes product design review, DFM, mould design approval, mould making, trial samples, mould modification, sample approval, and final delivery.
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