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Custom Brass Stamping Parts with Precision Stamping and Excellent Electrical Performance for Customized Geometry

Custom Brass Stamping Parts with Precision Stamping and Excellent Electrical Performance for Customized Geometry

MOQ: 1000pcs
Standard Packaging: Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Period: 25-35 work days
Payment Method: T/T
Detail Information
Place of Origin
CN
Brand Name
METS
Product Name:
Brass Stamping Parts Manufacturers
Finishing:
Polished /Zinc/All Other Treatment Are Available
Design:
We Offer Customized Sizes And Follow The Ideas And Designs Of Our Clients.
Services:
Customized OEM/ODM/Contract Manufacturing
Applications:
Electric Energy Meters, Control Panels, Distribution Boards, Miniature Circuit Breakers, Electrical Switches, Plugs And Sockets, Fans And Lighting, Air Conditioners, Electrical Appliances
Manufacturing Process:
Forging, Mechanical Processing, Customized Automation, CNC Machine Tools
Materials:
Brass, Steel, Metal, Copper, Aluminum, Nickel, Iron, Alloy (If Your Required Material Is Not Listed Above, Please Contact Us)
Minimum Order Quantity:
1000pcs
Packaging Details:
Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Time:
25-35 work days
Payment Terms:
T/T
Highlight:

Customized Geometry Brass Stamping Parts

,

Excellent Electrical Performance Custom Brass Components

,

Precision Stamping Precision Stamped Brass

Product Description
Professional Brass Stamping Parts Manufacturer | Custom Industrial Metal Components
METS is a professional manufacturer of brass stamping parts and customized metal components for industrial, engineering, electrical, electronics, automotive, machinery, and equipment applications.
We manufacture precision brass stamped parts according to customer drawings, CAD files, 3D models, samples, or technical specifications. Our capabilities cover precision stamping, progressive die stamping, compound die stamping, punching, blanking, bending, forming, and secondary processing, allowing us to manufacture both simple flat components and complex three-dimensional formed parts.
Brass is widely selected for engineering components because of its combination of electrical conductivity, corrosion resistance, formability, machinability, and mechanical stability. Depending on the application, METS can work with brass grades such as C26000, C26800, C28000, C11000, as well as customer-specified copper alloys.
Our customized brass stamping components can be produced for terminals, connectors, contact plates, clips, brackets, conductive components, shielding parts, industrial hardware, and other application-specific assemblies.
With integrated die design, tooling manufacturing, stamping production, inspection, and finishing, METS provides a complete OEM manufacturing solution from initial DFM evaluation and prototype development to stable mass production.
Precision brass stamping parts manufacturing process
Key Features of Our Brass Stamping Parts
  • Precision Stamping: Advanced stamping and precision tooling enable consistent dimensions, accurate holes, controlled forming features, and repeatable production for demanding applications.
  • Excellent Electrical Performance: Brass and copper alloys are widely used for conductive components, terminals, contacts, connectors, and other electrical applications requiring reliable current transmission.
  • Strong Formability: Brass offers good forming characteristics, making it suitable for punching, bending, forming, embossing, and customized stamped geometries.
  • Customized Geometry: Parts can be manufactured according to customer drawings or samples, including flat, bent, formed, multi-hole, slotted, and complex geometries.
  • Multiple Tooling Solutions: Depending on part design and production volume, METS can select single-die, compound-die, progressive-die, or transfer-die manufacturing.
  • Surface Treatment Options: Tin plating, nickel plating, gold plating, polishing, anti-oxidation treatment, deburring, and other finishes can be selected according to application requirements.
  • Stable High-Volume Production: Progressive stamping and optimized tooling can combine multiple operations into an efficient production sequence, making the process suitable for repeat orders and high-volume industrial components.

Technical Parameters
Parameter Specification
Product Type Customized Brass Stamping Parts
Main Material Brass / Copper Alloy
Common Brass Grades C26000 / C26800 / C28000 / C11000
Custom Alloys Available according to customer specification
Material Thickness Approx. 0.1-3.0 mm, customized
Manufacturing Processes Stamping / Punching / Blanking / Bending / Forming
Tooling Options Single Die / Progressive Die / Compound Die / Transfer Die
Part Geometry Flat / Bent / Formed / Embossed / Custom 2D & 3D
General Tolerance Approx. ±0.01-0.10 mm depending on part complexity
Precision Capability Tighter tolerances available for suitable components
Surface Finishes Natural Brass / Tin / Nickel / Gold / Anti-Oxidation / Polishing
Edge Treatment Deburring / Burr Control / Polishing
Heat Treatment Annealing / Stress Relieving when required
Hardness Soft / Half Hard / Full Hard or customized
Inspection Dimensional / Visual / Material / Functional Inspection
Production Volume Prototype / Small Batch / Mass Production
OEM/ODM Fully Supported
Drawing Formats PDF / DWG / DXF / STEP / IGS and other CAD formats
Packaging PE Bag / Tray / Carton / Reel / Customized Packaging
Shipping Express / Air / Sea
Quality System ISO 9001; additional standards according to project requirements
Final material, thickness, tolerance, surface treatment, tooling and production parameters are confirmed according to the actual part drawing and application.

Custom Brass Components for Industrial & Engineering Applications
Industrial components often require more than simply cutting metal to size. The part must maintain dimensional consistency, fit correctly with mating components, withstand repeated assembly, and perform reliably throughout its service life.
METS develops brass stamping parts around these engineering requirements. Typical customized components include:
  • Brass stamped terminals
  • Electrical contact plates
  • Connector components
  • Contact springs
  • Conductive brackets
  • Brass clips
  • Retaining clips
  • Mounting components
  • Shielding components
  • Grounding components
  • Brass tabs
  • Terminal strips
  • Busbar-related components
  • Industrial hardware
  • Custom formed brass components
For electrical and electronic components, brass stamping can provide the combination of conductivity, formability, and repeatable geometry required for automated assembly and reliable connections.

Brass Stamping Manufacturing Process
1. Engineering Review
Customers provide a drawing, CAD model, sample, or technical specification. Our engineers review material grade, material thickness, part dimensions, critical tolerances, hole and slot geometry, bending requirements, forming features, surface treatment, and production volume.
2. DFM Analysis
Before tooling production, the part is evaluated for manufacturability. For complex components, we consider material flow, stamping direction, bend sequence, strip layout, forming operations, tooling structure, and production efficiency.
3. Die Design & Manufacturing
METS has an integrated team covering die design, die manufacturing, die maintenance, and stamping production. This integrated structure allows tooling decisions to be evaluated together with actual stamping requirements. Depending on the component, we can develop progressive dies, compound dies, precision blanking dies, forming dies, secondary dies, and customized stamping tooling.
4. Trial Production
Initial stamping trials are performed to verify critical dimensions, hole position, forming accuracy, burr condition, surface condition, assembly fit, and material behavior.
5. Sample Approval
Samples can be supplied for customer dimensional, functional, and assembly verification before mass production.
6. Mass Production
After approval, the validated tooling and production parameters are used for repeatable production.
7. Final Inspection & Packaging
Finished brass components are inspected according to agreed quality requirements and packed according to part geometry, surface finish, quantity, and transportation requirements.

Company Manufacturing Strength
METS focuses on precision tooling and metal stamping manufacturing, with capabilities extending from die development to finished stamped components.
One of the company's key strengths is the combination of tooling engineering and stamping production. This is particularly important for brass stamping because material properties, strip layout, punch and die clearance, forming sequence, and tooling wear can all affect final part quality.
METS states that its tooling manufacturing uses precision equipment including CNC machining and Sodick/Charmilles EDM equipment for die components, while its engineering team has experience in precision stamping and tooling development.
Manufacturing Capabilities
Manufacturing Capability Benefit for Customers
In-House Die Design Faster engineering coordination
Precision Die Manufacturing Improved dimensional consistency
Progressive Stamping Efficient high-volume production
Compound Stamping Suitable for compact precision parts
Brass Forming Complex bent and formed components
Precision Punching Accurate holes and profiles
CNC Processing Secondary dimensional adjustment
EDM Tooling Precision die-component manufacturing
Sample Production Validation before mass production
Quality Inspection Controlled production consistency
OEM/ODM Service Customized parts based on drawings
METS also publishes tooling-life capabilities for selected precision die applications, with tooling life depending on die design, material, production conditions, maintenance, and part geometry.

More Than Brass Stamping — A Complete Component Manufacturing Solution
For industrial and engineering applications, a brass stamping part is often a critical functional component rather than a simple piece of hardware. A connector must maintain stable contact. A terminal must provide reliable electrical performance. A grounding component must fit accurately during assembly. A bracket or clip must maintain its mechanical function after repeated installation.
This is why tooling design, material selection, stamping precision, surface treatment, and quality control all matter.
METS provides an integrated manufacturing approach:
Engineering Review -> DFM -> Material Selection -> Die Design -> Tool Manufacturing -> Trial Stamping -> Sample Validation -> Mass Production -> Inspection -> Delivery
This workflow allows customers to work with one manufacturing partner for both tooling and stamped components.
For high-volume projects, progressive die stamping can combine multiple operations into a continuous production process, helping improve production efficiency and consistency. For smaller or structurally complex components, compound or customized tooling can be selected according to the specific part design.
The result is a manufacturing solution built around the actual engineering requirements of the component rather than a one-size-fits-all stamping process.

Representative Cooperation Cases
Case 1 - Precision Brass Electrical Terminal
Application: Electrical connection and wiring assembly
Requirement: A customer required a brass terminal with accurate holes, controlled dimensions, and reliable electrical contact.
Manufacturing Solution: METS developed customized stamping tooling and combined punching, forming, deburring, and surface treatment.
Key Requirements: Dimensional consistency, contact geometry, burr control, and plating compatibility.
Case 2 - Brass Connector Contact
Application: Electronic connector assembly
Requirement: A thin brass contact component required multiple precision features and repeatable dimensions for automated assembly.
Manufacturing Solution: Progressive stamping was selected to integrate multiple operations into a continuous production sequence.
Key Requirements: Hole position, forming height, contact area, material thickness, and production repeatability.
Case 3 - Industrial Brass Mounting Component
Application: Industrial equipment
Requirement: A customized brass mounting component needed specific holes, bends, and assembly features.
Manufacturing Solution: METS evaluated the component design and developed a customized stamping and forming process.
Key Requirements: Mounting accuracy, dimensional stability, corrosion resistance, and consistent batch production.
Case 4 - Plated Brass Contact Component
Application: Electrical switching equipment
Requirement: A brass stamped contact required improved surface performance and oxidation resistance.
Manufacturing Solution: Precision stamping was combined with nickel, tin, or other specified plating depending on the customer's electrical and environmental requirements.
Key Requirements: Contact reliability, surface quality, dimensional control, and plating consistency.

OEM & ODM Customization
METS provides customized brass stamping solutions based on:
Customer Drawings
2D engineering drawings can be used to define dimensions, tolerances, material, surface treatment, and inspection requirements.
3D CAD Models
3D models help our engineering team evaluate complex geometry, forming direction, assembly interfaces, and tooling requirements.
Physical Samples
Existing samples can be evaluated when customers need to reproduce or optimize an existing component.
Customized Material
Customers can specify brass alloy, copper alloy, hardness, temper, conductivity requirements, and material thickness.
Customized Surface Treatment
Available options can include:
  • Tin plating
  • Nickel plating
  • Gold plating
  • Silver plating
  • Anti-oxidation coating
  • Polishing
  • Deburring
  • Natural brass finish
METS product references also show customized plating and finishing options for brass electrical components.

Applications
Electrical & Electronics
  • Electrical terminals
  • Connector contacts
  • Contact plates
  • Switch components
  • Grounding components
  • Conductive clips
  • Terminal blocks
Automotive
  • Automotive terminals
  • Sensor contacts
  • Connector components
  • Fuse clips
  • Electrical control components
  • Battery-related conductive components
Industrial Equipment
  • Industrial connectors
  • Mounting components
  • Conductive hardware
  • Machinery components
  • Control-system hardware
  • Precision clips
Telecommunications
  • Signal contacts
  • Connector components
  • Conductive hardware
  • Communication equipment components
Appliances & Consumer Equipment
  • Internal electrical contacts
  • Switching components
  • Conductive brackets
  • Connector components
Brass stamped components on the METS site are positioned for electrical, automotive, telecommunications, appliance, lighting, and industrial applications.

Quality Control
Quality is controlled throughout the manufacturing process.
Incoming Material Inspection
Material grade, thickness, hardness, and required certificates can be checked before production.
Tooling Inspection
Critical die components are inspected before production to ensure the tooling meets engineering requirements.
First Article Inspection
Initial parts are measured against approved drawings and critical dimensions.
In-Process Inspection
Production parameters and critical dimensions are monitored during stamping.
Final Inspection
Finished components are inspected for dimensions, hole position, forming accuracy, burrs, surface quality, plating condition, and assembly requirements.
METS product references cite ISO 9001 and, for selected products, IATF 16949, RoHS and REACH requirements. Applicable certifications and compliance requirements should be confirmed for the specific project.

Packaging & Shipping
Depending on the component size, geometry, surface treatment, and customer requirements, brass stamping parts can be packaged using:
  • PE bags
  • Plastic trays
  • Reels
  • Cartons
  • Pallets
  • Anti-scratch packaging
  • Customized labels
  • Export wooden cases
For plated or precision components, protective packaging can be used to minimize scratching, deformation, oxidation, and contamination during transportation.
Sea, air, and express shipping can be arranged according to order quantity, delivery requirements, and destination.

FAQ
Q1: What brass materials can you stamp?
We commonly work with brass grades such as C26000, C26800, C28000, and C11000, as well as customer-specified brass and copper alloys. The appropriate grade depends on conductivity, strength, formability, corrosion resistance, and application requirements.
Q2: What thickness of brass can you stamp?
Our referenced brass stamping products commonly cover approximately 0.1 -3.0 mm. The practical range depends on alloy, part geometry, tooling structure, and forming requirements.
Q3: Can you manufacture brass stamping parts according to our drawings?
Yes. We support OEM/ODM production based on 2D drawings, 3D CAD files, samples, or technical specifications.
Q4: What stamping processes do you offer?
Depending on the component, processes can include progressive stamping, compound stamping, single-die stamping, transfer stamping, punching, blanking, bending, and forming.
Q5: Can you manufacture progressive dies in-house?
Yes. METS has capabilities covering die design, die manufacturing, die maintenance, and stamping production.
Products
PRODUCTS DETAILS
Custom Brass Stamping Parts with Precision Stamping and Excellent Electrical Performance for Customized Geometry
MOQ: 1000pcs
Standard Packaging: Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Period: 25-35 work days
Payment Method: T/T
Detail Information
Place of Origin
CN
Brand Name
METS
Product Name:
Brass Stamping Parts Manufacturers
Finishing:
Polished /Zinc/All Other Treatment Are Available
Design:
We Offer Customized Sizes And Follow The Ideas And Designs Of Our Clients.
Services:
Customized OEM/ODM/Contract Manufacturing
Applications:
Electric Energy Meters, Control Panels, Distribution Boards, Miniature Circuit Breakers, Electrical Switches, Plugs And Sockets, Fans And Lighting, Air Conditioners, Electrical Appliances
Manufacturing Process:
Forging, Mechanical Processing, Customized Automation, CNC Machine Tools
Materials:
Brass, Steel, Metal, Copper, Aluminum, Nickel, Iron, Alloy (If Your Required Material Is Not Listed Above, Please Contact Us)
Minimum Order Quantity:
1000pcs
Packaging Details:
Wooden crate packaging, moisture and shock resistant, each mold set packed separately
Delivery Time:
25-35 work days
Payment Terms:
T/T
Highlight

Customized Geometry Brass Stamping Parts

,

Excellent Electrical Performance Custom Brass Components

,

Precision Stamping Precision Stamped Brass

Product Description
Professional Brass Stamping Parts Manufacturer | Custom Industrial Metal Components
METS is a professional manufacturer of brass stamping parts and customized metal components for industrial, engineering, electrical, electronics, automotive, machinery, and equipment applications.
We manufacture precision brass stamped parts according to customer drawings, CAD files, 3D models, samples, or technical specifications. Our capabilities cover precision stamping, progressive die stamping, compound die stamping, punching, blanking, bending, forming, and secondary processing, allowing us to manufacture both simple flat components and complex three-dimensional formed parts.
Brass is widely selected for engineering components because of its combination of electrical conductivity, corrosion resistance, formability, machinability, and mechanical stability. Depending on the application, METS can work with brass grades such as C26000, C26800, C28000, C11000, as well as customer-specified copper alloys.
Our customized brass stamping components can be produced for terminals, connectors, contact plates, clips, brackets, conductive components, shielding parts, industrial hardware, and other application-specific assemblies.
With integrated die design, tooling manufacturing, stamping production, inspection, and finishing, METS provides a complete OEM manufacturing solution from initial DFM evaluation and prototype development to stable mass production.
Precision brass stamping parts manufacturing process
Key Features of Our Brass Stamping Parts
  • Precision Stamping: Advanced stamping and precision tooling enable consistent dimensions, accurate holes, controlled forming features, and repeatable production for demanding applications.
  • Excellent Electrical Performance: Brass and copper alloys are widely used for conductive components, terminals, contacts, connectors, and other electrical applications requiring reliable current transmission.
  • Strong Formability: Brass offers good forming characteristics, making it suitable for punching, bending, forming, embossing, and customized stamped geometries.
  • Customized Geometry: Parts can be manufactured according to customer drawings or samples, including flat, bent, formed, multi-hole, slotted, and complex geometries.
  • Multiple Tooling Solutions: Depending on part design and production volume, METS can select single-die, compound-die, progressive-die, or transfer-die manufacturing.
  • Surface Treatment Options: Tin plating, nickel plating, gold plating, polishing, anti-oxidation treatment, deburring, and other finishes can be selected according to application requirements.
  • Stable High-Volume Production: Progressive stamping and optimized tooling can combine multiple operations into an efficient production sequence, making the process suitable for repeat orders and high-volume industrial components.

Technical Parameters
Parameter Specification
Product Type Customized Brass Stamping Parts
Main Material Brass / Copper Alloy
Common Brass Grades C26000 / C26800 / C28000 / C11000
Custom Alloys Available according to customer specification
Material Thickness Approx. 0.1-3.0 mm, customized
Manufacturing Processes Stamping / Punching / Blanking / Bending / Forming
Tooling Options Single Die / Progressive Die / Compound Die / Transfer Die
Part Geometry Flat / Bent / Formed / Embossed / Custom 2D & 3D
General Tolerance Approx. ±0.01-0.10 mm depending on part complexity
Precision Capability Tighter tolerances available for suitable components
Surface Finishes Natural Brass / Tin / Nickel / Gold / Anti-Oxidation / Polishing
Edge Treatment Deburring / Burr Control / Polishing
Heat Treatment Annealing / Stress Relieving when required
Hardness Soft / Half Hard / Full Hard or customized
Inspection Dimensional / Visual / Material / Functional Inspection
Production Volume Prototype / Small Batch / Mass Production
OEM/ODM Fully Supported
Drawing Formats PDF / DWG / DXF / STEP / IGS and other CAD formats
Packaging PE Bag / Tray / Carton / Reel / Customized Packaging
Shipping Express / Air / Sea
Quality System ISO 9001; additional standards according to project requirements
Final material, thickness, tolerance, surface treatment, tooling and production parameters are confirmed according to the actual part drawing and application.

Custom Brass Components for Industrial & Engineering Applications
Industrial components often require more than simply cutting metal to size. The part must maintain dimensional consistency, fit correctly with mating components, withstand repeated assembly, and perform reliably throughout its service life.
METS develops brass stamping parts around these engineering requirements. Typical customized components include:
  • Brass stamped terminals
  • Electrical contact plates
  • Connector components
  • Contact springs
  • Conductive brackets
  • Brass clips
  • Retaining clips
  • Mounting components
  • Shielding components
  • Grounding components
  • Brass tabs
  • Terminal strips
  • Busbar-related components
  • Industrial hardware
  • Custom formed brass components
For electrical and electronic components, brass stamping can provide the combination of conductivity, formability, and repeatable geometry required for automated assembly and reliable connections.

Brass Stamping Manufacturing Process
1. Engineering Review
Customers provide a drawing, CAD model, sample, or technical specification. Our engineers review material grade, material thickness, part dimensions, critical tolerances, hole and slot geometry, bending requirements, forming features, surface treatment, and production volume.
2. DFM Analysis
Before tooling production, the part is evaluated for manufacturability. For complex components, we consider material flow, stamping direction, bend sequence, strip layout, forming operations, tooling structure, and production efficiency.
3. Die Design & Manufacturing
METS has an integrated team covering die design, die manufacturing, die maintenance, and stamping production. This integrated structure allows tooling decisions to be evaluated together with actual stamping requirements. Depending on the component, we can develop progressive dies, compound dies, precision blanking dies, forming dies, secondary dies, and customized stamping tooling.
4. Trial Production
Initial stamping trials are performed to verify critical dimensions, hole position, forming accuracy, burr condition, surface condition, assembly fit, and material behavior.
5. Sample Approval
Samples can be supplied for customer dimensional, functional, and assembly verification before mass production.
6. Mass Production
After approval, the validated tooling and production parameters are used for repeatable production.
7. Final Inspection & Packaging
Finished brass components are inspected according to agreed quality requirements and packed according to part geometry, surface finish, quantity, and transportation requirements.

Company Manufacturing Strength
METS focuses on precision tooling and metal stamping manufacturing, with capabilities extending from die development to finished stamped components.
One of the company's key strengths is the combination of tooling engineering and stamping production. This is particularly important for brass stamping because material properties, strip layout, punch and die clearance, forming sequence, and tooling wear can all affect final part quality.
METS states that its tooling manufacturing uses precision equipment including CNC machining and Sodick/Charmilles EDM equipment for die components, while its engineering team has experience in precision stamping and tooling development.
Manufacturing Capabilities
Manufacturing Capability Benefit for Customers
In-House Die Design Faster engineering coordination
Precision Die Manufacturing Improved dimensional consistency
Progressive Stamping Efficient high-volume production
Compound Stamping Suitable for compact precision parts
Brass Forming Complex bent and formed components
Precision Punching Accurate holes and profiles
CNC Processing Secondary dimensional adjustment
EDM Tooling Precision die-component manufacturing
Sample Production Validation before mass production
Quality Inspection Controlled production consistency
OEM/ODM Service Customized parts based on drawings
METS also publishes tooling-life capabilities for selected precision die applications, with tooling life depending on die design, material, production conditions, maintenance, and part geometry.

More Than Brass Stamping — A Complete Component Manufacturing Solution
For industrial and engineering applications, a brass stamping part is often a critical functional component rather than a simple piece of hardware. A connector must maintain stable contact. A terminal must provide reliable electrical performance. A grounding component must fit accurately during assembly. A bracket or clip must maintain its mechanical function after repeated installation.
This is why tooling design, material selection, stamping precision, surface treatment, and quality control all matter.
METS provides an integrated manufacturing approach:
Engineering Review -> DFM -> Material Selection -> Die Design -> Tool Manufacturing -> Trial Stamping -> Sample Validation -> Mass Production -> Inspection -> Delivery
This workflow allows customers to work with one manufacturing partner for both tooling and stamped components.
For high-volume projects, progressive die stamping can combine multiple operations into a continuous production process, helping improve production efficiency and consistency. For smaller or structurally complex components, compound or customized tooling can be selected according to the specific part design.
The result is a manufacturing solution built around the actual engineering requirements of the component rather than a one-size-fits-all stamping process.

Representative Cooperation Cases
Case 1 - Precision Brass Electrical Terminal
Application: Electrical connection and wiring assembly
Requirement: A customer required a brass terminal with accurate holes, controlled dimensions, and reliable electrical contact.
Manufacturing Solution: METS developed customized stamping tooling and combined punching, forming, deburring, and surface treatment.
Key Requirements: Dimensional consistency, contact geometry, burr control, and plating compatibility.
Case 2 - Brass Connector Contact
Application: Electronic connector assembly
Requirement: A thin brass contact component required multiple precision features and repeatable dimensions for automated assembly.
Manufacturing Solution: Progressive stamping was selected to integrate multiple operations into a continuous production sequence.
Key Requirements: Hole position, forming height, contact area, material thickness, and production repeatability.
Case 3 - Industrial Brass Mounting Component
Application: Industrial equipment
Requirement: A customized brass mounting component needed specific holes, bends, and assembly features.
Manufacturing Solution: METS evaluated the component design and developed a customized stamping and forming process.
Key Requirements: Mounting accuracy, dimensional stability, corrosion resistance, and consistent batch production.
Case 4 - Plated Brass Contact Component
Application: Electrical switching equipment
Requirement: A brass stamped contact required improved surface performance and oxidation resistance.
Manufacturing Solution: Precision stamping was combined with nickel, tin, or other specified plating depending on the customer's electrical and environmental requirements.
Key Requirements: Contact reliability, surface quality, dimensional control, and plating consistency.

OEM & ODM Customization
METS provides customized brass stamping solutions based on:
Customer Drawings
2D engineering drawings can be used to define dimensions, tolerances, material, surface treatment, and inspection requirements.
3D CAD Models
3D models help our engineering team evaluate complex geometry, forming direction, assembly interfaces, and tooling requirements.
Physical Samples
Existing samples can be evaluated when customers need to reproduce or optimize an existing component.
Customized Material
Customers can specify brass alloy, copper alloy, hardness, temper, conductivity requirements, and material thickness.
Customized Surface Treatment
Available options can include:
  • Tin plating
  • Nickel plating
  • Gold plating
  • Silver plating
  • Anti-oxidation coating
  • Polishing
  • Deburring
  • Natural brass finish
METS product references also show customized plating and finishing options for brass electrical components.

Applications
Electrical & Electronics
  • Electrical terminals
  • Connector contacts
  • Contact plates
  • Switch components
  • Grounding components
  • Conductive clips
  • Terminal blocks
Automotive
  • Automotive terminals
  • Sensor contacts
  • Connector components
  • Fuse clips
  • Electrical control components
  • Battery-related conductive components
Industrial Equipment
  • Industrial connectors
  • Mounting components
  • Conductive hardware
  • Machinery components
  • Control-system hardware
  • Precision clips
Telecommunications
  • Signal contacts
  • Connector components
  • Conductive hardware
  • Communication equipment components
Appliances & Consumer Equipment
  • Internal electrical contacts
  • Switching components
  • Conductive brackets
  • Connector components
Brass stamped components on the METS site are positioned for electrical, automotive, telecommunications, appliance, lighting, and industrial applications.

Quality Control
Quality is controlled throughout the manufacturing process.
Incoming Material Inspection
Material grade, thickness, hardness, and required certificates can be checked before production.
Tooling Inspection
Critical die components are inspected before production to ensure the tooling meets engineering requirements.
First Article Inspection
Initial parts are measured against approved drawings and critical dimensions.
In-Process Inspection
Production parameters and critical dimensions are monitored during stamping.
Final Inspection
Finished components are inspected for dimensions, hole position, forming accuracy, burrs, surface quality, plating condition, and assembly requirements.
METS product references cite ISO 9001 and, for selected products, IATF 16949, RoHS and REACH requirements. Applicable certifications and compliance requirements should be confirmed for the specific project.

Packaging & Shipping
Depending on the component size, geometry, surface treatment, and customer requirements, brass stamping parts can be packaged using:
  • PE bags
  • Plastic trays
  • Reels
  • Cartons
  • Pallets
  • Anti-scratch packaging
  • Customized labels
  • Export wooden cases
For plated or precision components, protective packaging can be used to minimize scratching, deformation, oxidation, and contamination during transportation.
Sea, air, and express shipping can be arranged according to order quantity, delivery requirements, and destination.

FAQ
Q1: What brass materials can you stamp?
We commonly work with brass grades such as C26000, C26800, C28000, and C11000, as well as customer-specified brass and copper alloys. The appropriate grade depends on conductivity, strength, formability, corrosion resistance, and application requirements.
Q2: What thickness of brass can you stamp?
Our referenced brass stamping products commonly cover approximately 0.1 -3.0 mm. The practical range depends on alloy, part geometry, tooling structure, and forming requirements.
Q3: Can you manufacture brass stamping parts according to our drawings?
Yes. We support OEM/ODM production based on 2D drawings, 3D CAD files, samples, or technical specifications.
Q4: What stamping processes do you offer?
Depending on the component, processes can include progressive stamping, compound stamping, single-die stamping, transfer stamping, punching, blanking, bending, and forming.
Q5: Can you manufacture progressive dies in-house?
Yes. METS has capabilities covering die design, die manufacturing, die maintenance, and stamping production.
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