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Item | Custom Enamel Pin Metal Pin Lapel Pin |
Material | Zinc Alloy / Iron / Brass etc. |
Crafts | Soft enamel, Hard enamel ,screen printing, Offset, 3D |
Size | 0.5inch,1inch,1.25",1.5",2inches,2.5",3".3.5"...etc(According to customer request) |
Plating | Gold/Silver/Nickel/Copper/Rose Gold/Rainbow/Dye metal/ Antique plating etc. |
Attachment | Rubber/Jewelry/Deluxe/Butterfly clutch/Safety Pin/Magnet/Key chain etc. |
Packing | Backing Card/OPP/Bubble bag/Acrylic box/Paper box etc. |
MOQ | 10pcs |
Lead Time | Sample: 7~10days,Mass production: 10~15days |
Shipment | FedEx / DHL / UPS / TNT etc. |
The Custom Cartoon Robot Hard Enamel Lapel Pin is a mechanical-inspired accessory designed for tech brands, robotics teams, and sci-fi enthusiasts. Combining hard enamel's glossy finish with robotic details like gear embossing and circuit patterns, this pin (2-4cm size) brings futuristic designs to life with precision engineering and durable construction.
Robotic Texture Craftsmanship:
Micro-engraved metal surfaces (0.05mm line depth) for gear teeth, bolts, and circuit lines, paired with translucent enamel for "energy core" effects.
Magnetic backing option (5N pull force) for easy attachment to metal surfaces, complementing the standard butterfly clutch.
Engineering-Grade Finishes:
PVD (Physical Vapor Deposition) coating for metallic accents (chrome, gunmetal, rose gold), 3x more scratch-resistant than traditional electroplating.
Heat-resistant enamel (withstands 150°C) for applications requiring exposure to industrial environments or outdoor use.
Tech Startups: Branded pins for product launches, featuring mascot robots or AI-inspired designs to convey innovation.
Robotics Competitions: Team identifiers for FIRST Robotics and VEX Robotics participants, with serial number engraving for championship memorabilia.
Gaming & Comics: Collectible pins for robot-themed video games (e.g., mecha anime, sci-fi comics), supporting limited-edition series with numbered packaging.
Technical Design Support: Free DFM (Design for Manufacturing) analysis to ensure mechanical details (e.g., joint articulation) translate to physical pins.
Industrial-Grade Finishes: Pins pass 1,000-cycle abrasion tests (ASTM D3363) with <5% color loss, outperforming competitors by 20%.
Bulk Customization: Discounted tooling fees for repeat orders, plus free assembly of multi-piece robot pin sets (e.g., interchangeable arm parts).
Item | Custom Enamel Pin Metal Pin Lapel Pin |
Material | Zinc Alloy / Iron / Brass etc. |
Crafts | Soft enamel, Hard enamel ,screen printing, Offset, 3D |
Size | 0.5inch,1inch,1.25",1.5",2inches,2.5",3".3.5"...etc(According to customer request) |
Plating | Gold/Silver/Nickel/Copper/Rose Gold/Rainbow/Dye metal/ Antique plating etc. |
Attachment | Rubber/Jewelry/Deluxe/Butterfly clutch/Safety Pin/Magnet/Key chain etc. |
Packing | Backing Card/OPP/Bubble bag/Acrylic box/Paper box etc. |
MOQ | 10pcs |
Lead Time | Sample: 7~10days,Mass production: 10~15days |
Shipment | FedEx / DHL / UPS / TNT etc. |
The Custom Cartoon Robot Hard Enamel Lapel Pin is a mechanical-inspired accessory designed for tech brands, robotics teams, and sci-fi enthusiasts. Combining hard enamel's glossy finish with robotic details like gear embossing and circuit patterns, this pin (2-4cm size) brings futuristic designs to life with precision engineering and durable construction.
Robotic Texture Craftsmanship:
Micro-engraved metal surfaces (0.05mm line depth) for gear teeth, bolts, and circuit lines, paired with translucent enamel for "energy core" effects.
Magnetic backing option (5N pull force) for easy attachment to metal surfaces, complementing the standard butterfly clutch.
Engineering-Grade Finishes:
PVD (Physical Vapor Deposition) coating for metallic accents (chrome, gunmetal, rose gold), 3x more scratch-resistant than traditional electroplating.
Heat-resistant enamel (withstands 150°C) for applications requiring exposure to industrial environments or outdoor use.
Tech Startups: Branded pins for product launches, featuring mascot robots or AI-inspired designs to convey innovation.
Robotics Competitions: Team identifiers for FIRST Robotics and VEX Robotics participants, with serial number engraving for championship memorabilia.
Gaming & Comics: Collectible pins for robot-themed video games (e.g., mecha anime, sci-fi comics), supporting limited-edition series with numbered packaging.
Technical Design Support: Free DFM (Design for Manufacturing) analysis to ensure mechanical details (e.g., joint articulation) translate to physical pins.
Industrial-Grade Finishes: Pins pass 1,000-cycle abrasion tests (ASTM D3363) with <5% color loss, outperforming competitors by 20%.
Bulk Customization: Discounted tooling fees for repeat orders, plus free assembly of multi-piece robot pin sets (e.g., interchangeable arm parts).
1. Design stage: Design the badge according to the customer's needs and design requirements. This may involve hand sketching or designing using computer-aided design software.
2. Mold making: Once the design is determined, the mold for the badge needs to be made. Molds are usually made from materials such as metal, plastic or silicone.
3. Raw material preparation: Select appropriate raw materials, such as brass, copper, zinc alloy and other metals or plastics, as well as color paints, etc.
4. Material processing: The selected raw materials are cut, shaped, and polished according to the design requirements.
5. Pattern printing: Print patterns on badges or use other methods to add patterns, such as screen printing, laser engraving, etc.
6. Color filling: If the badge design contains colored parts, color filling is required. This can be achieved by using glazes, lacquers or other suitable pigments.
7. Surface treatment: Treat the surface of the badge as needed, such as electroplating, spraying, polishing, etc., to increase the beauty and durability of the badge.
8. Assembly: Assemble the various parts together, including adding fasteners such as back clips or pins, so that the badge can be easily worn or displayed.
9. Quality inspection: Conduct quality inspection on the finished badge to ensure that it meets the design requirements and does not have any defects.
10. Packaging and delivery: Pack the finished badges and arrange delivery to customers or sales channels.
1. Design stage: Design the badge according to the customer's needs and design requirements. This may involve hand sketching or designing using computer-aided design software.
2. Mold making: Once the design is determined, the mold for the badge needs to be made. Molds are usually made from materials such as metal, plastic or silicone.
3. Raw material preparation: Select appropriate raw materials, such as brass, copper, zinc alloy and other metals or plastics, as well as color paints, etc.
4. Material processing: The selected raw materials are cut, shaped, and polished according to the design requirements.
5. Pattern printing: Print patterns on badges or use other methods to add patterns, such as screen printing, laser engraving, etc.
6. Color filling: If the badge design contains colored parts, color filling is required. This can be achieved by using glazes, lacquers or other suitable pigments.
7. Surface treatment: Treat the surface of the badge as needed, such as electroplating, spraying, polishing, etc., to increase the beauty and durability of the badge.
8. Assembly: Assemble the various parts together, including adding fasteners such as back clips or pins, so that the badge can be easily worn or displayed.
9. Quality inspection: Conduct quality inspection on the finished badge to ensure that it meets the design requirements and does not have any defects.
10. Packaging and delivery: Pack the finished badges and arrange delivery to customers or sales channels.