The High-Speed Progressive Stamping Die for Metal Components is a precision-engineered multi-station tooling solution designed for fast, continuous, and high-volume production of complex metal parts.
| Parameter | Specification |
|---|---|
| Product Name | High-Speed Progressive Stamping Die |
| Die Type | Progressive Stamping Die |
| Application | Metal Components |
| Manufacturing Process | Blanking, Piercing, Bending, Forming, Coining, Embossing, Trimming |
| Suitable Materials | Carbon Steel, Stainless Steel, Aluminum, Copper, Brass, Galvanized Steel |
| Material Thickness | Approximately 0.1-5.0 mm, depending on application |
| Tooling Materials | SKD11, DC53, Cr12MoV, SKH51, Carbide and other tool steels |
| Stamping Speed | Customized according to component and press; high-speed applications available |
| Die Precision | Customized according to drawing and application requirements |
| Typical Tolerance | Up to approximately ±0.01-±0.05 mm depending on structure |
| Tooling Life | Customized according to material, design and production conditions |
| Press Compatibility | High-Speed Mechanical Press / Progressive Stamping Press |
| Feeding Method | Automatic Coil / Strip Feeding |
| Machining Processes | CNC Milling, Wire EDM, Grinding, Drilling, Precision Fitting |
| Surface Treatment | Polishing, Nitriding, Coating or Customized Treatment |
| Inspection | Dimensional Inspection, Tooling Inspection, Trial Stamping |
| Design Format | DWG, DXF, STEP, IGS, PDF and other formats |
| Customization | OEM / ODM |
| Packaging | Export Wooden Case / Protective Packaging |
Actual technical parameters are determined according to the component geometry, material, thickness, tolerance, press specifications and required production speed.
A high-speed progressive stamping die generally follows a controlled multi-stage production sequence:
The exact station sequence is customized according to the component geometry.
Before die manufacturing, the strip layout is analyzed to determine the optimal material utilization, station sequence and feeding direction.
Pilot pins and precision guide components help ensure accurate strip positioning between stations, which is particularly important during high-speed production.
Several forming processes can be integrated into one progressive die, eliminating the need to transfer components manually between separate stamping operations.
The final station separates the finished component from the carrier strip, allowing continuous automated production.
Our high-speed progressive stamping dies can be customized for a broad range of metal components.
Progressive stamping dies can also be customized for selected components used in EV, battery, electrical equipment and renewable energy applications.
Xiamen METS Industry & Trade Co., Ltd. was established in Xiamen in 2006 and specializes in mold design, mold manufacturing and precision metal stamping for automotive, electronics, contact components, LED components, lead frames and stator/rotor laminations.
Our engineering team can support the complete tooling development process:
This integrated workflow helps customers reduce communication between different suppliers and improve consistency between tooling development and mass production.
Our tooling manufacturing process may include:
| Manufacturing Process | Purpose |
|---|---|
| CNC Milling | Precision machining of die plates and components |
| Wire EDM | High-precision cutting of punches and die inserts |
| Grinding | Achieving accurate dimensions and surface finish |
| Drilling | Precision holes and mounting features |
| Surface Treatment | Improving wear resistance where required |
| Heat Treatment | Improving hardness and service performance |
| Precision Assembly | Accurate fitting of die components |
| Trial Stamping | Verification of tooling performance |
| Dimensional Inspection | Checking critical dimensions and tolerances |
Quality is controlled throughout the tooling development process rather than only during final inspection.
METS provides both stamping die manufacturing and precision metal stamping production, allowing tooling performance to be evaluated from a production perspective rather than treating the die as an isolated product.
A high-speed progressive die is not simply a collection of punches and die inserts. The entire tooling system must be engineered around the material, component geometry, press characteristics and production requirements.
For high-speed applications, small design problems can become significant production issues. Poor strip feeding, insufficient clearance, improper forming sequence or inadequate wear resistance may result in burrs, dimensional variation, premature tool wear and production downtime.
Our engineering approach focuses on:
Before manufacturing, engineers can review:
This engineering-based approach helps create a progressive stamping die that is optimized not only for initial production but also for long-term mass manufacturing performance.
A multi-station progressive die was developed for an automotive metal bracket requiring several punching and bending operations.
The progressive structure allowed the operations to be completed continuously from coil material, reducing manual handling and improving production consistency.
For precision electrical components, the progressive die integrated high-speed piercing, forming and cut-off operations.
The tooling was designed around tight dimensional requirements and continuous strip feeding to support automated production.
For a complex industrial metal component, multiple operations were integrated into a single progressive die to reduce secondary processing.
Customer names and proprietary drawings are not disclosed without authorization.
After final inspection and trial validation, the progressive stamping die is prepared for international shipment.
Standard packaging may include:
The packaging method can be customized according to the tooling size, transportation method and customer requirements.
A high-speed progressive stamping die is a multi-station metal forming tool designed to perform several stamping operations continuously as coil or strip material moves through the die.
It is mainly used for high-volume production of precision metal components.
Progressive dies can be customized for automotive brackets, terminals, connectors, clips, mounting plates, reinforcement parts, electrical components, appliance hardware and various industrial metal components.
Depending on the application, tooling can be designed for:
Yes. The tooling can be designed according to the customer's press specifications and required production speed.
The actual achievable stamping speed depends on the component geometry, material, thickness, die structure, feeding system and press characteristics.
Please provide:
The High-Speed Progressive Stamping Die for Metal Components is a precision-engineered multi-station tooling solution designed for fast, continuous, and high-volume production of complex metal parts.
| Parameter | Specification |
|---|---|
| Product Name | High-Speed Progressive Stamping Die |
| Die Type | Progressive Stamping Die |
| Application | Metal Components |
| Manufacturing Process | Blanking, Piercing, Bending, Forming, Coining, Embossing, Trimming |
| Suitable Materials | Carbon Steel, Stainless Steel, Aluminum, Copper, Brass, Galvanized Steel |
| Material Thickness | Approximately 0.1-5.0 mm, depending on application |
| Tooling Materials | SKD11, DC53, Cr12MoV, SKH51, Carbide and other tool steels |
| Stamping Speed | Customized according to component and press; high-speed applications available |
| Die Precision | Customized according to drawing and application requirements |
| Typical Tolerance | Up to approximately ±0.01-±0.05 mm depending on structure |
| Tooling Life | Customized according to material, design and production conditions |
| Press Compatibility | High-Speed Mechanical Press / Progressive Stamping Press |
| Feeding Method | Automatic Coil / Strip Feeding |
| Machining Processes | CNC Milling, Wire EDM, Grinding, Drilling, Precision Fitting |
| Surface Treatment | Polishing, Nitriding, Coating or Customized Treatment |
| Inspection | Dimensional Inspection, Tooling Inspection, Trial Stamping |
| Design Format | DWG, DXF, STEP, IGS, PDF and other formats |
| Customization | OEM / ODM |
| Packaging | Export Wooden Case / Protective Packaging |
Actual technical parameters are determined according to the component geometry, material, thickness, tolerance, press specifications and required production speed.
A high-speed progressive stamping die generally follows a controlled multi-stage production sequence:
The exact station sequence is customized according to the component geometry.
Before die manufacturing, the strip layout is analyzed to determine the optimal material utilization, station sequence and feeding direction.
Pilot pins and precision guide components help ensure accurate strip positioning between stations, which is particularly important during high-speed production.
Several forming processes can be integrated into one progressive die, eliminating the need to transfer components manually between separate stamping operations.
The final station separates the finished component from the carrier strip, allowing continuous automated production.
Our high-speed progressive stamping dies can be customized for a broad range of metal components.
Progressive stamping dies can also be customized for selected components used in EV, battery, electrical equipment and renewable energy applications.
Xiamen METS Industry & Trade Co., Ltd. was established in Xiamen in 2006 and specializes in mold design, mold manufacturing and precision metal stamping for automotive, electronics, contact components, LED components, lead frames and stator/rotor laminations.
Our engineering team can support the complete tooling development process:
This integrated workflow helps customers reduce communication between different suppliers and improve consistency between tooling development and mass production.
Our tooling manufacturing process may include:
| Manufacturing Process | Purpose |
|---|---|
| CNC Milling | Precision machining of die plates and components |
| Wire EDM | High-precision cutting of punches and die inserts |
| Grinding | Achieving accurate dimensions and surface finish |
| Drilling | Precision holes and mounting features |
| Surface Treatment | Improving wear resistance where required |
| Heat Treatment | Improving hardness and service performance |
| Precision Assembly | Accurate fitting of die components |
| Trial Stamping | Verification of tooling performance |
| Dimensional Inspection | Checking critical dimensions and tolerances |
Quality is controlled throughout the tooling development process rather than only during final inspection.
METS provides both stamping die manufacturing and precision metal stamping production, allowing tooling performance to be evaluated from a production perspective rather than treating the die as an isolated product.
A high-speed progressive die is not simply a collection of punches and die inserts. The entire tooling system must be engineered around the material, component geometry, press characteristics and production requirements.
For high-speed applications, small design problems can become significant production issues. Poor strip feeding, insufficient clearance, improper forming sequence or inadequate wear resistance may result in burrs, dimensional variation, premature tool wear and production downtime.
Our engineering approach focuses on:
Before manufacturing, engineers can review:
This engineering-based approach helps create a progressive stamping die that is optimized not only for initial production but also for long-term mass manufacturing performance.
A multi-station progressive die was developed for an automotive metal bracket requiring several punching and bending operations.
The progressive structure allowed the operations to be completed continuously from coil material, reducing manual handling and improving production consistency.
For precision electrical components, the progressive die integrated high-speed piercing, forming and cut-off operations.
The tooling was designed around tight dimensional requirements and continuous strip feeding to support automated production.
For a complex industrial metal component, multiple operations were integrated into a single progressive die to reduce secondary processing.
Customer names and proprietary drawings are not disclosed without authorization.
After final inspection and trial validation, the progressive stamping die is prepared for international shipment.
Standard packaging may include:
The packaging method can be customized according to the tooling size, transportation method and customer requirements.
A high-speed progressive stamping die is a multi-station metal forming tool designed to perform several stamping operations continuously as coil or strip material moves through the die.
It is mainly used for high-volume production of precision metal components.
Progressive dies can be customized for automotive brackets, terminals, connectors, clips, mounting plates, reinforcement parts, electrical components, appliance hardware and various industrial metal components.
Depending on the application, tooling can be designed for:
Yes. The tooling can be designed according to the customer's press specifications and required production speed.
The actual achievable stamping speed depends on the component geometry, material, thickness, die structure, feeding system and press characteristics.
Please provide: