In a stamping production chain, use different stamping molds with different processes, use a manipulator or other automatic facilities, and use molds or parts to move to complete the rated mold for workpiece stamping processing.
Also called continuous mold, the material belt always moves in one direction during the stamping process; A progressive mold is one in which the strip inside the mold moves in two or more directions after being cut off. The automatic feeding continuous mold is used to complete the feeding of the material belt inside the mold. In real life, in order to get the same workpiece, mass production is also required. Then, we need to use the mold. In order to achieve rapid and stable continuous production, continuous mold is generated.
A mold structure that completes multiple different stamping processes simultaneously at the same station within a single stroke of the press.
A specialized stamping mold designed to transform flat sheet metal into hollow, seamless, or cylindrical shaped components through controlled material flow.
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The main classifications include multi-station molds, progressive (continuous) molds, compound molds, and drawing molds, each designed for specific production volumes and shape complexities.
A progressive mold moves the material belt continuously in a single direction, performing multiple operations step-by-step. Combined with automatic feeding, it enables rapid, stable, and automated mass production.
A multi-station mold uses independent molds with different processes in a production line, moving the parts or molds using manipulators or automatic systems to complete complex stamping tasks sequentially.
Drawing molds are used when the MCCB component requires a hollow, cup-like, or deep cylindrical shape that cannot be formed by simple bending or cutting alone.
A compound mold is designed to perform multiple operations, such as blanking and punching, at the exact same press station within a single stroke, ensuring high concentricity and precision.
Selecting the appropriate mold depends on the production scale, required component tolerances, part geometry, and design complexity to optimize production speed and unit cost.