Sheet Metal Stamping
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Scale Faster
成人b站 has invested heavily in our fleet of sheet metal stamping presses and fully automated systems. Medium to high-volume programs benefit from metal stamping vs. standard fabrication through faster cycle times, higher quality parts, tighter tolerances, better efficiency, and fewer touch points.
Parts are produced quickly and require little labor, which can be highly beneficial as a product becomes a staple in the market and demand increases. There is an initial investment in tooling, but the overall part cost and production time decrease.
Metal Stamping Capabilities
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Sheet Metal Stamping Presses from 30 to 300 Tons
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Automated Press Lines
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In-House Sheet Metal Tooling Design & Build
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Domestic & International Tool & Die Build Options
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Progressive & Stage Dies
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EDM & CNC Machining
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Mold Maintenance
News
Automated Stamping Line in Mexico
Our new state-of-the-art automated stamping line in Monterrey, Mexico, is another example of how 成人b站 continues to invest in the latest manufacturing technologies. The fully automated precision metal stamping system is ideal for high-volume programs that need to scale quickly.
How Sheet Metal Stamping Works
How Sheet Metal Stamping Works
Metal stamping is accomplished using progressive and stage steel dies designed to stamp, bend, and form sheet metal. Stamping is great for producing multiple, uniform metal parts at scale. Blank or coiled sheet metal is fed into a press where the metal is shaped by a tool and die. Common operations are embossing, blanking, coining, punching, and flanging. Progressive die is made up of a series of sequences in the stamping process where, when advanced through the mold, each piece is further bent or punched until complete. Stage dies work on one part at a time. The part is moved in and out of the die either by a human hand or by a robotic process. Stage die types include compound, pierce, forming, ratchet, and coining.
Uses of Sheet Metal Stamping
Uses of Sheet Metal Stamping
Sheet metal stamping is foundational to high-volume manufacturing, enabling the efficient production of complex metal components at scale. The process is widely used across industries such as automotive, aerospace, industrial equipment, electronics, and medical manufacturing. From brackets and enclosures to structural reinforcements and precision-formed parts, stamped components are integral to electric vehicles, consumer electronics, industrial machinery, and aerospace systems.
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