Forming device controls aluminum alloy cooling rates via partially heated dies to create strength variation.
Rolling a metal plate into an open cylinder, welding the ends, then rolling to final diameter eliminates time-consuming machining processes.
Quenched and tempered steel raw material with controlled primary carbides enables efficient machining of high hardness cold working dies.
Pressure resistance beads and saw tooth formations distribute retort stress on reduced gauge panels, preventing wrinkling without increasing material thickness.
Selective cooling in a post-treatment station creates varied microstructures, resolving the trade-off between tensile strength and elongation.
Segmented adjustment mechanisms in interchangeable cassettes enable independent roller positioning across varying diameters to resolve geometric constraints.
Cooling the annular region while heating the external zone prevents cracks and enables deep drawing of thin stainless steel foils.
Segmented aluminum coating layers on hot-stamped steel blanks enable precise spot welding while maintaining corrosion resistance and mechanical strength.
Pushing blocks position a locating shaft against reference surfaces to prevent die set shift or skew errors during automatic punching.
Deforming tool steel preforms between martensitic start and austenitic temperatures refines the microstructure to improve impact strength.
A bodymaker ram attachment uses a segmented locator and clamp ring to secure the ram to the slide block without disturbing the machine alignment.
Heat insulating unit encloses mold to isolate thermal energy from adjacent components during high-temperature operation.
A four-bar linkage hand tool maintains parallel force application during press connections.