| MOQ: | 1000PCS |
| Payment Method: | T/T |
METS specializes in custom sheet metal fabrication and precision progressive die stamping for a wide range of industrial applications. We manufacture customized metal components from stainless steel, aluminum, carbon steel, copper, brass, and other materials according to customer drawings, samples, and technical specifications.
Our manufacturing capabilities include progressive die stamping, precision punching, blanking, bending, forming, deep drawing, welding, and secondary machining. By integrating precision tooling with efficient production processes, we help customers manufacture complex metal parts with consistent dimensions, reliable performance, and repeatable quality.
| Parameter | Specification |
|---|---|
| Product Name | Custom Sheet Metal Fabrication Parts |
| Product Type | Progressive Stamped Metal Components |
| Main Materials | Stainless Steel, Aluminum, Carbon Steel, Copper, Brass |
| Stainless Steel Grades | SUS304, SUS316, SUS201, SUS430 |
| Aluminum Grades | 5052, 6061, Other Grades on Request |
| Material Thickness | 0.2-3.0 mm for selected stamping applications; other thicknesses subject to process evaluation |
| Manufacturing Processes | Progressive Stamping, Punching, Blanking, Bending, Forming, Deep Drawing |
| Secondary Processing | Welding, Tapping, Deburring, CNC Machining |
| Dimensional Tolerance | Target tolerance from ±0.01 mm, depending on feature, material, and part design |
| Surface Treatment | Polishing, Brushing, Passivation, Anodizing, Powder Coating, Plating |
| Part Dimensions | Customized According to Drawings |
| Tooling Type | Progressive Die, Compound Die, Custom Forming Die |
| Production Volume | Prototype, Trial Orders, Small-Batch and Mass Production |
| Quality Inspection | Dimensional, Visual and Functional Inspection as Required |
| Customization | OEM / ODM |
| Drawing Formats | PDF, DWG, DXF, STEP, IGES |
| Packaging | Export Cartons, Wooden Cases or Customized Packaging |
| Lead Time | Confirmed According to Tooling, Sampling and Order Requirements |
Note: Final specifications and tolerances are confirmed after reviewing the part drawings, material properties, production volume, and inspection requirements.
By coordinating tooling development and parts production, we aim to reduce unnecessary processing steps, improve manufacturability, and establish a more efficient path from design to production.
Automotive Industry: Custom stamped brackets, mounting components, clips, structural parts, and metal supports for automotive assemblies.
Electrical and Electronics: Connector components, terminal contacts, shielding parts, mounting plates, housings, and precision metal fittings.
Industrial Equipment: Machine brackets, equipment covers, support plates, structural components, and custom sheet metal fittings.
Home Appliances: Mounting hardware, internal structural parts, motor-related components, metal clips, and formed sheet metal assemblies.
Renewable Energy: Custom mounting components, cable management parts, metal clips, and hardware for solar and related equipment.
HVAC and General Manufacturing: Sheet metal brackets, enclosures, fixing components, and customized metal parts used in ventilation, heating, cooling, and industrial systems.
Integrated Tooling and Stamping Expertise: METS specializes in precision metal stamping dies, custom tooling, and stamped metal components. Our integrated manufacturing approach connects product requirements, tooling development, trial production, and repeat manufacturing to support consistent production results.
In-House Tooling Support: Custom progressive dies and forming tools can be developed around the geometry, material, and functional requirements of each project. Tooling design and manufacturing coordination helps improve process control and production repeatability.
Engineering-Oriented Customization: Our team reviews drawings, critical dimensions, material specifications, forming requirements, and finishing needs before confirming the manufacturing approach. This helps identify potential production challenges and opportunities for cost optimization.
Production from Samples to Mass Orders: We support projects at different stages, from prototype and sample evaluation to ongoing production. Progressive die stamping is particularly suitable for components with repeatable geometry and medium-to-high production volumes.
Quality-Focused Manufacturing: Inspection requirements can be established around critical dimensions, appearance, material specifications, and assembly functions. Material and process documentation can be discussed according to project needs.
International Customer Support: METS serves industrial customers seeking customized metal components and tooling solutions. We support technical communication, quotation preparation, sample evaluation, export packaging, and delivery coordination.
The following examples illustrate typical component types that can be developed using our manufacturing processes. Final designs, materials, and specifications depend on the customer's requirements.
Manufacturing approach: The part geometry and bend sequence are evaluated to achieve reliable mounting dimensions and consistent fit during assembly.
Manufacturing approach: Material thickness, bend radii, and surface protection are considered to balance structural requirements with appearance and manufacturability.
Manufacturing approach: A multi-station die can combine several stamping operations to improve throughput and consistency in high-volume production.
These are representative application examples, not claims of completed customer projects. Specific project references and performance data can be added when verified case information is available.
Step 1: Drawing Review
Submit your drawings, 3D models, samples, or preliminary specifications for technical evaluation.
Step 2: Material and Process Evaluation
We assess material grade, thickness, geometry, tolerance requirements, surface finish, and expected order volume.
Step 3: Tooling and Quotation
We recommend a suitable manufacturing process and provide a quotation covering tooling and production requirements as applicable.
Step 4: Sample Development
Samples can be produced for dimensional verification, fit checks, and customer approval according to the agreed project plan.
Step 5: Production and Inspection
After sample and specification confirmation, production proceeds according to the agreed quality and delivery requirements.
Step 6: Packaging and Shipment
Finished components are packed according to their surface protection, handling, and export transportation requirements.
Our goal is to provide a practical manufacturing solution that balances part quality, tooling investment, production efficiency, and total component cost.
We work with stainless steel, aluminum, carbon steel, copper, brass, and other suitable metals. Material grades are selected according to mechanical properties, corrosion resistance, conductivity, forming requirements, and application conditions.
Sheet metal fabrication is a broad category that includes cutting, punching, bending, welding, and other operations. Progressive die stamping uses a multi-station die to perform successive operations as strip material advances through the press. It is particularly suitable for repeat production and high-volume components.
Yes. We support customized manufacturing based on customer drawings, CAD files, samples, and technical specifications. Feasibility and final specifications are confirmed during engineering review.
For selected stamping applications, a typical range is 0.2-3.0 mm. The actual range depends on the material, part geometry, tooling design, and available production process. Other thicknesses can be evaluated upon request.
Tolerance capability depends on the part's geometry, material properties, thickness, tooling, and measurement method. Selected features may target ±0.01 mm where technically feasible. Critical dimensions should be reviewed and agreed upon before production.
| MOQ: | 1000PCS |
| Payment Method: | T/T |
METS specializes in custom sheet metal fabrication and precision progressive die stamping for a wide range of industrial applications. We manufacture customized metal components from stainless steel, aluminum, carbon steel, copper, brass, and other materials according to customer drawings, samples, and technical specifications.
Our manufacturing capabilities include progressive die stamping, precision punching, blanking, bending, forming, deep drawing, welding, and secondary machining. By integrating precision tooling with efficient production processes, we help customers manufacture complex metal parts with consistent dimensions, reliable performance, and repeatable quality.
| Parameter | Specification |
|---|---|
| Product Name | Custom Sheet Metal Fabrication Parts |
| Product Type | Progressive Stamped Metal Components |
| Main Materials | Stainless Steel, Aluminum, Carbon Steel, Copper, Brass |
| Stainless Steel Grades | SUS304, SUS316, SUS201, SUS430 |
| Aluminum Grades | 5052, 6061, Other Grades on Request |
| Material Thickness | 0.2-3.0 mm for selected stamping applications; other thicknesses subject to process evaluation |
| Manufacturing Processes | Progressive Stamping, Punching, Blanking, Bending, Forming, Deep Drawing |
| Secondary Processing | Welding, Tapping, Deburring, CNC Machining |
| Dimensional Tolerance | Target tolerance from ±0.01 mm, depending on feature, material, and part design |
| Surface Treatment | Polishing, Brushing, Passivation, Anodizing, Powder Coating, Plating |
| Part Dimensions | Customized According to Drawings |
| Tooling Type | Progressive Die, Compound Die, Custom Forming Die |
| Production Volume | Prototype, Trial Orders, Small-Batch and Mass Production |
| Quality Inspection | Dimensional, Visual and Functional Inspection as Required |
| Customization | OEM / ODM |
| Drawing Formats | PDF, DWG, DXF, STEP, IGES |
| Packaging | Export Cartons, Wooden Cases or Customized Packaging |
| Lead Time | Confirmed According to Tooling, Sampling and Order Requirements |
Note: Final specifications and tolerances are confirmed after reviewing the part drawings, material properties, production volume, and inspection requirements.
By coordinating tooling development and parts production, we aim to reduce unnecessary processing steps, improve manufacturability, and establish a more efficient path from design to production.
Automotive Industry: Custom stamped brackets, mounting components, clips, structural parts, and metal supports for automotive assemblies.
Electrical and Electronics: Connector components, terminal contacts, shielding parts, mounting plates, housings, and precision metal fittings.
Industrial Equipment: Machine brackets, equipment covers, support plates, structural components, and custom sheet metal fittings.
Home Appliances: Mounting hardware, internal structural parts, motor-related components, metal clips, and formed sheet metal assemblies.
Renewable Energy: Custom mounting components, cable management parts, metal clips, and hardware for solar and related equipment.
HVAC and General Manufacturing: Sheet metal brackets, enclosures, fixing components, and customized metal parts used in ventilation, heating, cooling, and industrial systems.
Integrated Tooling and Stamping Expertise: METS specializes in precision metal stamping dies, custom tooling, and stamped metal components. Our integrated manufacturing approach connects product requirements, tooling development, trial production, and repeat manufacturing to support consistent production results.
In-House Tooling Support: Custom progressive dies and forming tools can be developed around the geometry, material, and functional requirements of each project. Tooling design and manufacturing coordination helps improve process control and production repeatability.
Engineering-Oriented Customization: Our team reviews drawings, critical dimensions, material specifications, forming requirements, and finishing needs before confirming the manufacturing approach. This helps identify potential production challenges and opportunities for cost optimization.
Production from Samples to Mass Orders: We support projects at different stages, from prototype and sample evaluation to ongoing production. Progressive die stamping is particularly suitable for components with repeatable geometry and medium-to-high production volumes.
Quality-Focused Manufacturing: Inspection requirements can be established around critical dimensions, appearance, material specifications, and assembly functions. Material and process documentation can be discussed according to project needs.
International Customer Support: METS serves industrial customers seeking customized metal components and tooling solutions. We support technical communication, quotation preparation, sample evaluation, export packaging, and delivery coordination.
The following examples illustrate typical component types that can be developed using our manufacturing processes. Final designs, materials, and specifications depend on the customer's requirements.
Manufacturing approach: The part geometry and bend sequence are evaluated to achieve reliable mounting dimensions and consistent fit during assembly.
Manufacturing approach: Material thickness, bend radii, and surface protection are considered to balance structural requirements with appearance and manufacturability.
Manufacturing approach: A multi-station die can combine several stamping operations to improve throughput and consistency in high-volume production.
These are representative application examples, not claims of completed customer projects. Specific project references and performance data can be added when verified case information is available.
Step 1: Drawing Review
Submit your drawings, 3D models, samples, or preliminary specifications for technical evaluation.
Step 2: Material and Process Evaluation
We assess material grade, thickness, geometry, tolerance requirements, surface finish, and expected order volume.
Step 3: Tooling and Quotation
We recommend a suitable manufacturing process and provide a quotation covering tooling and production requirements as applicable.
Step 4: Sample Development
Samples can be produced for dimensional verification, fit checks, and customer approval according to the agreed project plan.
Step 5: Production and Inspection
After sample and specification confirmation, production proceeds according to the agreed quality and delivery requirements.
Step 6: Packaging and Shipment
Finished components are packed according to their surface protection, handling, and export transportation requirements.
Our goal is to provide a practical manufacturing solution that balances part quality, tooling investment, production efficiency, and total component cost.
We work with stainless steel, aluminum, carbon steel, copper, brass, and other suitable metals. Material grades are selected according to mechanical properties, corrosion resistance, conductivity, forming requirements, and application conditions.
Sheet metal fabrication is a broad category that includes cutting, punching, bending, welding, and other operations. Progressive die stamping uses a multi-station die to perform successive operations as strip material advances through the press. It is particularly suitable for repeat production and high-volume components.
Yes. We support customized manufacturing based on customer drawings, CAD files, samples, and technical specifications. Feasibility and final specifications are confirmed during engineering review.
For selected stamping applications, a typical range is 0.2-3.0 mm. The actual range depends on the material, part geometry, tooling design, and available production process. Other thicknesses can be evaluated upon request.
Tolerance capability depends on the part's geometry, material properties, thickness, tooling, and measurement method. Selected features may target ±0.01 mm where technically feasible. Critical dimensions should be reviewed and agreed upon before production.