A dehydrating agent and acid acceptor in fluororubber reduce hydrogen fluoride corrosion and preserve hot press cushioning under repeated high heat.
A block copolymer, hydrocarbon softener, and styrene oligomer sheet maintains elasticity after repeated use while reducing sagging and tightness.
Controlling rubber thickness and the protrusion area-to-height ratio cuts energy loss while maintaining fast shots and easier spin.
Controlled apertures and opposing protrusions support bonding between silicone sponge and solid rubber sheets, stabilizing striking performance across temperature changes.
Metal oxide catalysts decompose accumulated hydrogen peroxide into water and oxygen, helping silicone articles retain flexibility during vapor sterilization.
Apertures and opposing rubber protrusions interlock a silicone sponge layer to resist delamination and stabilize spin and speed.
A multi-material EPDM-CPE compound adds UL-94 V-0 flame resistance and electrical insulation to flexible data-center cooling hoses.
This bellow combines epichlorohydrin rubber, stainless steel rings, and textile plies for hydrogen resistance and higher burst pressure.
A layered bellow combines epichlorohydrin rubber and textile reinforcement for hydrogen resistance, fuel compatibility, and burst strength.
This case replaces dip molding and sulfur vulcanization with latex film casting and carbonyl-diamine crosslinking to cut waste.
A multi-layer fluid conduit uses a resin-crosslinked barrier layer to reduce fluid diffusion through the line.
Attaching discarded mouse pads to handles increases mass and density for better whip action while the solid surface simplifies cleaning.
A fiber application head uses a flexible roller covered by an anti-adherent sheath for uniform compaction.
A polypropylene resin composition incorporating specific hydrogenated block copolymers to balance flexibility and transparency.
Hydrosilylation crosslinking between specific organopolysiloxanes resolves insufficient adhesion and peeling at the fluorosilicone-silicone interface.
A sport board deck combines a honeycomb aluminum core with carbon nanotube fibers and fiberglass layers to create a lightweight, high-strength platform.
Direct foaming of stacked thermoplastic elastomer sheets eliminates adhesive layers and complex thermocompression steps while maintaining high peeling strength.