Boast a range of metal manufacturing processes, offering a one-stop metal processing service
·Get online quote for custom sheet metal prototypes
·Free for design and CAE
·Fastest shipping in just 7 days
·Certified with IATF 16949 , ensuring quality and efficiency

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Our R&D team brings years of expertise in metal manufacturing, excelling in CAE analysis, mold design, prototype development, and project management. Their deep knowledge and skill set enable us to deliver innovative and efficient solutions tailored to our clients' needs.
Our management approach utilizes intelligent digital systems, ensuring fast and efficient delivery times.
Simply upload your 2D or 3D designs, and within 24 hours, you'll receive expert feedback. Our seasoned engineers will meticulously review your plans to avoid any misinterpretation, ensuring a clear understanding and a customized price proposal.
Our company promotes sustainable development by utilizing green photovoltaic energy.
Our company employs leading Computer-Aided Engineering (CAE) analysis to enhance mold manufacturing. This technology allows us to simulate and optimize mold designs for precision and quality. We utilize CAE to foresee material behavior, preemptively address production challenges, and enhance mold efficiency. This approach streamlines development, ensures cost-effectiveness, and underscores our dedication to sustainable innovation, all while meeting customer expectations. Rely on our CAE proficiency for superior mold manufacturing solutions.



We offer tailored product design solutions that meet customer needs by considering factors such as the product's application, material utilization, and CAE analysis. By flexibly combining processes like laser cutting, stamping, welding, and surface treatments, we provide the most optimal design. Based on product quantity, type, and cost, we deliver the best mold solutions to minimize investment. With extensive experience in handling various raw materials and surface treatments, we ensure quality across different fields. Our expert automotive project team manages projects from concept to mass production with the highest efficiency.
700+
Sets of Machine
120+
Countries Shipped
20,000+
Customers Served
Our stamping
Applications in a wide range of industries
Our stamping technology is employed across a diverse spectrum of industries, from electronics to automotive manufacturing and further, securing the confidence of each industry with its precision and dependability. It is designed to meet the high standards of today's manufacturing demands, delivering components with exceptional accuracy and consistent quality
Maximum Part Processing Capacity: | 1200mm*600mm |
Minimum Part Processing Capacity: | 5mm*5mm |
Maximum Part Thickness Processing Capabilities: | 8mm |
Maximum Pressure: | 400T |
Closing Height: | 250~600mm |
Closed Height Adjustment Capacity: | 50~150mm |
Gas Pressure: | ≥0.5MPa |
Press Types: | Pneumatic, Single-Point, Double-Point |
Control system: | Imported PLC Central Control, Pneumatic Circuit with Imported Safety Dual-Union Valve Control, Capable of Point Movement, Inch Movement, Single Stroke, and Continuous Stamping |
Type: | Galvanizing, Zinc-Nickel Plating, Electrophoretic Coating, Spray Painting, Powder Coating, Dacromet, Magni Coating, Geomet Coating |
Electroplating thickness/ Salt spray test: | 3-15μm, Salt spray test 72-1000 hours |
Electrophoretic coating thickness, Salt spray test: | 18~35μm,Salt spray test: 120~480h |
Spray painting/powder coating thickness, salt spray test: | 30~80μm,Salt spray test:120~480h |
Dacromet / Salt spray test: | 4~12μm,Salt spray test:480~1000h |
Geomet / Magni salt spray test: 120~480h | 4~12μm,Salt spray test:500~1500h |
Surface treatment methods: | Coating, electrostatic adsorption |
Performance characteristics: | Corrosion resistance, wear resistance, heat resistance, aesthetic appeal, UV resistance |

Stainless steel is widely used in stamping processes due to its characteristics of corrosion resistance, high strength, and stability at high temperatures. It is suitable for manufacturing kitchen utensils, household appliances, and ship components, among other items. Different types of stainless steel have varying degrees of corrosion resistance, so it is important to consider the intended environment when making a selection.

Stainless steel is widely used in stamping processes due to its characteristics of corrosion resistance, high strength, and stability at high temperatures. It is suitable for manufacturing kitchen utensils, household appliances, and ship components, among other items. Different types of stainless steel have varying degrees of corrosion resistance, so it is important to consider the intended environment when making a selection.

Carbon steel is one of the most common stamping materials, characterized by its good ductility and weldability. With a lower cost, carbon steel is easy to process and boasts good strength and hardness. It can be used to manufacture a variety of components, such as automotive seat frames and equipment housings.

Alloy steel is a product of steel alloyed with other metallic elements to enhance its hardness, strength, and heat resistance. It possesses good plasticity and impact toughness. Alloy steel is suitable for the manufacture of automotive components, machinery equipment, and more.
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Laser cutting handles various materials regardless of hardness, maximizing material use with efficient nesting. Its fast speed and mold-free process shorten product development, while clean, safe operations improve the work environment. Seamless CAD/CAM integration boosts production efficiency.
• Cuts diverse materials with precision, unaffected by hardness.
• Optimizes material use and reduces costs through nesting.
• Fast, mold-free process speeds up product development.

Bending forms complex shapes with minimal material waste, enhances production speed with repeatable operations, and is a cost-effective process suitable for various materials and industries.
• Forms complex shapes with minimal waste.
• Boosts production with repeatable operations.
• Cost-effective for multiple materials and industries.

Welding creates strong, durable bonds across a wide range of metals and alloys. With various methods like arc, gas, and laser welding, it suits different materials and applications. Welding is adaptable to all shapes, sizes, and environments, and allows for repairs to extend product lifespan.
• Strong, durable bonds across diverse metals.
• Flexible methods for various shapes and applications.
• Repairable and adaptable to different environments.

Mold manufacturing is a cornerstone in the production of a wide array of products, from automotive components to consumer goods. This process encompasses various techniques, including injection molds, stamping dies, and die casting molds, each serving a distinct purpose in the manufacturing landscape.
• Precision and Consistency: Molds ensure uniformity in every part produced, maintaining strict quality control standards.
• Cost-Effectiveness: By enabling mass production, molds reduce per-unit costs and minimize material waste.
• Design Flexibility: Molds facilitate the creation of intricate designs that would be challenging to achieve through manual methods.
• Material Efficiency: Molds optimize material usage, ensuring that production is as sustainable and economical as possible.
• Durability and Longevity: High-quality molds are built to last, providing reliable service over extended periods.

Riveting provides high-strength, stable connections, resistant to loosening under stress. It offers excellent sealing and can join different materials or complex shapes with precision, making it adaptable for various applications in industries like aerospace, automotive, and construction.
• Strong, stable connections resistant to loosening.
• Excellent sealing for liquids and gases.
• Flexible for joining different materials and shapes.

Stamping delivers high efficiency and precision for mass production, optimizing material use and reducing costs. It handles complex shapes with strength and rigidity, suitable for various metals and non-metals, and integrates well with other processes for a complete production line.
• Efficient mass production with high precision.
• Minimizes waste and lowers costs through optimized material use.
• Handles complex shapes and integrates with other processes.
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