Interleaved die panels nest within gaps to enable quick configuration changes, eliminating time-consuming shim adjustments.
Magnetic shaping sets nonlinear geometry in nickel titanium files, preserving flute strength and reducing fracture risk during root canal procedures.
Mold ejection holes supply cooling medium to the gap between heated metal plate and tooling for rapid thermal reduction.
Additive manufacturing creates complex cooling channels in hot stamping molds, reducing material costs while enhancing thermal efficiency.
A tapered guide pin head secures die members through conical geometry and O-ring dampening.
Atomized lubricant injection into hairpin tube ends eliminates excess usage and costly purging steps.
Variable electrode contact pressure compensates for segment resistance differences, ensuring uniform temperature distribution in direct resistance heating.
A hot-formed steel member achieves high tensile strength through a controlled dual-phase microstructure of martensite and retained austenite.
Integrated trim steels form retention tabs to prevent panel deflection during processing, eliminating overhanging scrap and reducing die complexity.
Hydraulically driven slats reposition stops to adjust mould cavity width, eliminating time-consuming manual block adjustments.