logo
Products
PRODUCTS DETAILS
Home > Products >
Custom Stainless Steel Deep Drawing Die with Multi-Stage Forming for Dimensional Consistency

Custom Stainless Steel Deep Drawing Die with Multi-Stage Forming for Dimensional Consistency

MOQ: 1000PCS
Price: Negotiable
Standard Packaging: Carton ,bubble Bag , Plastic Box
Delivery Period: 15-30 Days
Payment Method: T/T
Supply Capacity: Small Orders Accepted
Detail Information
Place of Origin
CN
Brand Name
METS
Size:
Standard And Customized
Dimensions:
Customizable
Production Time:
Customized
Processing Type:
Deep Drawing
Process:
Stamping
Package:
Carton Box
Inserts:
Separate Inserts In Per Station
Material Thickness:
0.2mm – 5.0mm (Customizable)
Minimum Order Quantity:
1000PCS
Price:
Negotiable
Packaging Details:
Carton ,bubble Bag , Plastic Box
Delivery Time:
15-30 Days
Payment Terms:
T/T
Supply Ability:
Small Orders Accepted
Highlight:

Custom Stainless Steel Deep Drawing Die

,

Multi-Stage Forming Progressive Die

,

Dimensional Consistency Precision Stamping Die

Product Description
Custom Stainless Steel Deep-Drawn Stamping Service
METS provides custom stainless steel deep-drawing and precision sheet metal stamping services for industrial manufacturers seeking reliable, dimensionally consistent metal components. Combining professional tooling design, progressive die stamping, and multi-stage forming technology, we manufacture customized metal parts according to customer drawings, 3D models, samples, and application requirements.
Stainless steel deep drawing is a metal forming process that transforms flat sheet material into hollow or contoured components, such as cups, housings, shells, covers, and enclosures. With carefully designed tooling and controlled forming conditions, the process can produce complex geometries while maintaining the required strength, appearance, and dimensional consistency.
For suitable part designs, progressive die technology integrates multiple operations—such as punching, drawing, trimming, piercing, and forming—into a coordinated production process. This can reduce repeated handling, improve production efficiency, and support consistent output for medium- to high-volume orders.
Key Service Highlights:
  • Custom stainless steel deep-drawn stamping parts
  • Progressive die design, manufacturing, and tryout
  • Multi-stage punching, drawing, trimming, and forming
  • Customized dimensions, shapes, thicknesses, and finishes
  • OEM and ODM manufacturing based on drawings or samples
  • Engineering support from prototype development to repeat production
Custom stainless steel deep-drawn stamping parts manufacturing process
Product Features and Advantages
Precision Forming and Repeatability
A properly designed die and controlled forming process help maintain consistent dimensions and part geometry across production batches. Critical dimensions and tolerances are defined according to the component drawing and inspection requirements.
Complex Deep-Drawn Geometries
Deep-drawing technology is suitable for manufacturing hollow, cylindrical, cup-shaped, box-shaped, and other formed components. The achievable geometry depends on material grade, sheet thickness, draw ratio, corner radii, and tooling design.
Stainless Steel Durability
Stainless steel grades such as SUS304 and SUS316 can provide corrosion resistance, strength, and a clean surface appearance when selected for the intended service environment.
Integrated Progressive Die Operations
Where technically appropriate, progressive tooling can combine several stamping and forming stages into one production line. This approach can reduce handling and support efficient repeat manufacturing.
Customized Surface Finish
Depending on the application, parts may be supplied with a standard mill finish or specified finishing processes such as polishing, brushing, passivation, or other compatible treatments.
OEM/ODM Flexibility
METS supports customized production based on customer drawings, physical samples, CAD files, or project specifications. Engineering review helps identify forming risks and clarify manufacturability before tooling investment.
Technical Specifications
Parameter Specification
Product Name Custom Stainless Steel Deep-Drawn Stamping Parts
Service Type Deep Drawing, Precision Stamping, Progressive Die Stamping
Material Options SUS201, SUS304, SUS316, SUS430; other grades subject to confirmation
Material Thickness Customized according to part design and material grade
Part Shape Cups, shells, housings, covers, enclosures, and custom formed components
Part Dimensions Manufactured according to customer drawings or approved samples
Manufacturing Processes Blanking, punching, deep drawing, trimming, piercing, bending, forming
Tooling Options Progressive Dies, Deep Drawing Dies, Compound Dies, Custom Forming Dies
Tolerance According to drawing, feature geometry, material behavior, and inspection method
Surface Treatment Polishing, brushing, passivation, and other compatible finishes on request
Production Volume Prototype, small batch, medium-volume, and mass production, subject to project review
Quality Inspection Dimensional, visual, and project-specific functional inspections
Customization OEM / ODM
Drawing Formats PDF, DWG, DXF, STEP, IGES, or other agreed formats
Packaging Protective packaging, export cartons, or wooden cases according to order requirements
Quotation Based on material, part geometry, tooling, order quantity, finishing, and inspection requirements
Manufacturing Capabilities
In-House Tooling Expertise
Our tooling capabilities cover progressive dies, compound dies, and customized forming tools. Die design and manufacturing decisions consider material flow, forming sequence, clearance, stripping, part release, and tool maintenance.
Deep Drawing and Precision Stamping
Deep-drawn components require careful control of material flow. Our engineering review focuses on forming feasibility, tooling structure, and appropriate process parameters to reduce avoidable production risks.
Engineering and Process Review
Before production, the team can review:
  • Part geometry and critical dimensions
  • Material grade and thickness
  • Drawing depth and forming complexity
  • Potential wrinkling, cracking, or springback risks
  • Progressive die station arrangement
  • Surface appearance and finishing requirements
  • Inspection criteria and packaging requirements
Quality Control
Quality planning can include incoming material verification, tooling tryout, first-article inspection, in-process checks, final dimensional inspection, and visual inspection.
Flexible Project Support
METS can discuss projects ranging from initial sample development to repeat production. Production schedule, tooling lead time, sample quantity, and order capacity are evaluated based on part complexity and customer requirements.
Applications
Automotive and Transportation
  • Protective housings and formed covers
  • Brackets and structural metal components
  • Custom shells and metal enclosures
Electrical and Electronics
  • Connector housings and shielding components
  • Electrical equipment covers
  • Precision formed metal parts
Home Appliances
  • Stainless steel cups, shells, and internal components
  • Formed brackets and covers
  • Custom metal housings
Industrial Equipment
  • Machine housings and protective covers
  • Formed containers and component shells
  • Custom mounting and support components
Medical and Laboratory Equipment
  • Stainless steel housings and formed components
  • Equipment covers and non-implantable metal parts
  • Custom parts subject to application-specific requirements
Actual suitability depends on the required material certification, dimensional tolerances, surface condition, regulatory requirements, and end-use environment.
Custom Order Process
Step 1 — Send Your Requirements
Provide 2D drawings, 3D models, samples, material specifications, target quantity, and application details.
Step 2 — Engineering Review
We review the geometry, deep-drawing feasibility, tooling route, critical dimensions, and inspection requirements.
Step 3 — Quotation and Project Confirmation
The quotation is prepared based on tooling requirements, material, process, finishing, quantity, and delivery expectations.
Step 4 — Tooling and Sample Development
After technical and commercial confirmation, tooling and sample arrangements are planned according to the agreed schedule.
Step 5 — Sample Approval and Production
Production proceeds after the required samples and specifications are approved.
Step 6 — Inspection and Shipment
Finished parts are inspected according to the agreed quality plan and packed for the selected shipping method.
Frequently Asked Questions
Q1: What is stainless steel deep drawing?
Stainless steel deep drawing is a forming process that uses a punch and die to transform flat sheet metal into a hollow or contoured shape. It is commonly used for cups, shells, housings, covers, and other formed components.
Q2: Can you manufacture parts according to our drawings or samples?
Yes. METS can evaluate custom projects based on 2D drawings, 3D CAD files, physical samples, or technical specifications. Feasibility, tolerance, and production arrangements are confirmed during the engineering review.
Q3: Which stainless steel grades are available?
Common options may include SUS201, SUS304, SUS316, and SUS430. The final grade depends on corrosion resistance, formability, strength, surface requirements, and budget.
Q4: Can you combine deep drawing with progressive die stamping?
For suitable geometries, deep drawing can be integrated into a progressive die process with operations such as punching, trimming, and forming. The appropriate tooling structure depends on part complexity, drawing depth, material properties, and production volume.
Q5: What material thickness can you process?
The suitable thickness range depends on the material grade, part dimensions, drawing depth, and tooling design. Please provide your drawing and material specification so the engineering team can evaluate feasibility.
Products
PRODUCTS DETAILS
Custom Stainless Steel Deep Drawing Die with Multi-Stage Forming for Dimensional Consistency
MOQ: 1000PCS
Price: Negotiable
Standard Packaging: Carton ,bubble Bag , Plastic Box
Delivery Period: 15-30 Days
Payment Method: T/T
Supply Capacity: Small Orders Accepted
Detail Information
Place of Origin
CN
Brand Name
METS
Size:
Standard And Customized
Dimensions:
Customizable
Production Time:
Customized
Processing Type:
Deep Drawing
Process:
Stamping
Package:
Carton Box
Inserts:
Separate Inserts In Per Station
Material Thickness:
0.2mm – 5.0mm (Customizable)
Minimum Order Quantity:
1000PCS
Price:
Negotiable
Packaging Details:
Carton ,bubble Bag , Plastic Box
Delivery Time:
15-30 Days
Payment Terms:
T/T
Supply Ability:
Small Orders Accepted
Highlight

Custom Stainless Steel Deep Drawing Die

,

Multi-Stage Forming Progressive Die

,

Dimensional Consistency Precision Stamping Die

Product Description
Custom Stainless Steel Deep-Drawn Stamping Service
METS provides custom stainless steel deep-drawing and precision sheet metal stamping services for industrial manufacturers seeking reliable, dimensionally consistent metal components. Combining professional tooling design, progressive die stamping, and multi-stage forming technology, we manufacture customized metal parts according to customer drawings, 3D models, samples, and application requirements.
Stainless steel deep drawing is a metal forming process that transforms flat sheet material into hollow or contoured components, such as cups, housings, shells, covers, and enclosures. With carefully designed tooling and controlled forming conditions, the process can produce complex geometries while maintaining the required strength, appearance, and dimensional consistency.
For suitable part designs, progressive die technology integrates multiple operations—such as punching, drawing, trimming, piercing, and forming—into a coordinated production process. This can reduce repeated handling, improve production efficiency, and support consistent output for medium- to high-volume orders.
Key Service Highlights:
  • Custom stainless steel deep-drawn stamping parts
  • Progressive die design, manufacturing, and tryout
  • Multi-stage punching, drawing, trimming, and forming
  • Customized dimensions, shapes, thicknesses, and finishes
  • OEM and ODM manufacturing based on drawings or samples
  • Engineering support from prototype development to repeat production
Custom stainless steel deep-drawn stamping parts manufacturing process
Product Features and Advantages
Precision Forming and Repeatability
A properly designed die and controlled forming process help maintain consistent dimensions and part geometry across production batches. Critical dimensions and tolerances are defined according to the component drawing and inspection requirements.
Complex Deep-Drawn Geometries
Deep-drawing technology is suitable for manufacturing hollow, cylindrical, cup-shaped, box-shaped, and other formed components. The achievable geometry depends on material grade, sheet thickness, draw ratio, corner radii, and tooling design.
Stainless Steel Durability
Stainless steel grades such as SUS304 and SUS316 can provide corrosion resistance, strength, and a clean surface appearance when selected for the intended service environment.
Integrated Progressive Die Operations
Where technically appropriate, progressive tooling can combine several stamping and forming stages into one production line. This approach can reduce handling and support efficient repeat manufacturing.
Customized Surface Finish
Depending on the application, parts may be supplied with a standard mill finish or specified finishing processes such as polishing, brushing, passivation, or other compatible treatments.
OEM/ODM Flexibility
METS supports customized production based on customer drawings, physical samples, CAD files, or project specifications. Engineering review helps identify forming risks and clarify manufacturability before tooling investment.
Technical Specifications
Parameter Specification
Product Name Custom Stainless Steel Deep-Drawn Stamping Parts
Service Type Deep Drawing, Precision Stamping, Progressive Die Stamping
Material Options SUS201, SUS304, SUS316, SUS430; other grades subject to confirmation
Material Thickness Customized according to part design and material grade
Part Shape Cups, shells, housings, covers, enclosures, and custom formed components
Part Dimensions Manufactured according to customer drawings or approved samples
Manufacturing Processes Blanking, punching, deep drawing, trimming, piercing, bending, forming
Tooling Options Progressive Dies, Deep Drawing Dies, Compound Dies, Custom Forming Dies
Tolerance According to drawing, feature geometry, material behavior, and inspection method
Surface Treatment Polishing, brushing, passivation, and other compatible finishes on request
Production Volume Prototype, small batch, medium-volume, and mass production, subject to project review
Quality Inspection Dimensional, visual, and project-specific functional inspections
Customization OEM / ODM
Drawing Formats PDF, DWG, DXF, STEP, IGES, or other agreed formats
Packaging Protective packaging, export cartons, or wooden cases according to order requirements
Quotation Based on material, part geometry, tooling, order quantity, finishing, and inspection requirements
Manufacturing Capabilities
In-House Tooling Expertise
Our tooling capabilities cover progressive dies, compound dies, and customized forming tools. Die design and manufacturing decisions consider material flow, forming sequence, clearance, stripping, part release, and tool maintenance.
Deep Drawing and Precision Stamping
Deep-drawn components require careful control of material flow. Our engineering review focuses on forming feasibility, tooling structure, and appropriate process parameters to reduce avoidable production risks.
Engineering and Process Review
Before production, the team can review:
  • Part geometry and critical dimensions
  • Material grade and thickness
  • Drawing depth and forming complexity
  • Potential wrinkling, cracking, or springback risks
  • Progressive die station arrangement
  • Surface appearance and finishing requirements
  • Inspection criteria and packaging requirements
Quality Control
Quality planning can include incoming material verification, tooling tryout, first-article inspection, in-process checks, final dimensional inspection, and visual inspection.
Flexible Project Support
METS can discuss projects ranging from initial sample development to repeat production. Production schedule, tooling lead time, sample quantity, and order capacity are evaluated based on part complexity and customer requirements.
Applications
Automotive and Transportation
  • Protective housings and formed covers
  • Brackets and structural metal components
  • Custom shells and metal enclosures
Electrical and Electronics
  • Connector housings and shielding components
  • Electrical equipment covers
  • Precision formed metal parts
Home Appliances
  • Stainless steel cups, shells, and internal components
  • Formed brackets and covers
  • Custom metal housings
Industrial Equipment
  • Machine housings and protective covers
  • Formed containers and component shells
  • Custom mounting and support components
Medical and Laboratory Equipment
  • Stainless steel housings and formed components
  • Equipment covers and non-implantable metal parts
  • Custom parts subject to application-specific requirements
Actual suitability depends on the required material certification, dimensional tolerances, surface condition, regulatory requirements, and end-use environment.
Custom Order Process
Step 1 — Send Your Requirements
Provide 2D drawings, 3D models, samples, material specifications, target quantity, and application details.
Step 2 — Engineering Review
We review the geometry, deep-drawing feasibility, tooling route, critical dimensions, and inspection requirements.
Step 3 — Quotation and Project Confirmation
The quotation is prepared based on tooling requirements, material, process, finishing, quantity, and delivery expectations.
Step 4 — Tooling and Sample Development
After technical and commercial confirmation, tooling and sample arrangements are planned according to the agreed schedule.
Step 5 — Sample Approval and Production
Production proceeds after the required samples and specifications are approved.
Step 6 — Inspection and Shipment
Finished parts are inspected according to the agreed quality plan and packed for the selected shipping method.
Frequently Asked Questions
Q1: What is stainless steel deep drawing?
Stainless steel deep drawing is a forming process that uses a punch and die to transform flat sheet metal into a hollow or contoured shape. It is commonly used for cups, shells, housings, covers, and other formed components.
Q2: Can you manufacture parts according to our drawings or samples?
Yes. METS can evaluate custom projects based on 2D drawings, 3D CAD files, physical samples, or technical specifications. Feasibility, tolerance, and production arrangements are confirmed during the engineering review.
Q3: Which stainless steel grades are available?
Common options may include SUS201, SUS304, SUS316, and SUS430. The final grade depends on corrosion resistance, formability, strength, surface requirements, and budget.
Q4: Can you combine deep drawing with progressive die stamping?
For suitable geometries, deep drawing can be integrated into a progressive die process with operations such as punching, trimming, and forming. The appropriate tooling structure depends on part complexity, drawing depth, material properties, and production volume.
Q5: What material thickness can you process?
The suitable thickness range depends on the material grade, part dimensions, drawing depth, and tooling design. Please provide your drawing and material specification so the engineering team can evaluate feasibility.
sitemap |  Privacy Policy | China Good Quality Metal Stamping Dies Supplier. Copyright © 2018-2026 metal-stampingdies.com . All Rights Reserved.