A vehicle member joining structure uses a low elastic modulus adhesive to bond metal and resin components.
A peripheral trench in the support frame captures excess adhesive during assembly, preventing contamination and air pockets in medical X-ray detectors.
A perforated cover seals pre-drilled holes during flow drill screwing, preventing adhesive escape and contamination while ensuring stable torque control.
Dry fit assembly aligns truss nodes before rigidization, reducing fabrication time while maintaining precision.
Metal sheet components form uneven surface portions through mechanical deformation in a press mould to create strong welded joints with thermoplastic materials.
An electromagnetic field heats a conductive component to create a thermal expansion gradient that mechanically destroys an adhesive layer.
A tapered metallic collar inserts into carbon fiber-reinforced resin using an insulating adhesive to maintain structural integrity.
A bonding apparatus measures light distribution on a supporting surface to ensure uniform adhesive curing.
An elastic adhesive aid insert blocks openings to prevent glue accumulation and simplify post-processing.
Radial expansion of a braided hose creates an integral bond with a tubular structural element, resolving insecure attachment issues.
Local heating of the injection zone vulcanizes elastomer without overheating heavy parts, reducing energy consumption and cooling time.
An embedded UV radiation emitting device cures adhesive at the joint interface between opaque components, bypassing external light obstruction.
A protective case with integrated hook and loop fasteners enables secure device attachment to diverse surfaces.
Merges the protruding portion and adjustment mechanism into one member to transmit heavy loads efficiently.
A pressure-formed foil laminate coats open cell product walls, preventing water contamination and surface damage.
Replacing mechanical crimping with epoxy resin bonding eliminates bond degradation in corrosive environments while maintaining high tensile strength.
A thermosetting resin fixing module secures optical systems using room temperature hardening.
Auxiliary holding portions in the frame restrict lens posture changes, resolving eccentricity issues without complex adjustment operations.
Segmenting long bondlines into discrete adhesive chambers controls flow predictability, eliminates voids, and removes the need for heavy anti-peel fasteners.
Uses spacer elements between shear web panels to resolve the contradiction between manufacturing precision and device complexity at the blade root.
An injectable cap system uses a snap-fit joint and annular sealing cavity to enclose fasteners.
A magnet fastener assembly uses a rigid doghouse and flexible support to hold magnets securely.
Uncoated steel zones enable adhesive bonding of dissimilar reinforcement members, reducing vehicle weight while maintaining structural strength.
Segmenting exterior paint from structural overlaps resolves surface energy variations that weaken adhesive bonds on painted composite cargo container walls.
An L-shaped spacer-locator system merges positioning and spacing functions to resolve shear weakness in precision bonding joints.
Annular contour surface accommodates thermal shrinkage to prevent adhesive cracking during bulk handling.
Tapered surfaces allow smooth insertion without cracking the resin, while adhesive bonding maintains fastening force stability over time.
A sandwich component connection joins metal layers via a welded ball projecting into a through-hole.
A brazing method joins non-diffusing ceramic pieces using an aluminum alloy interlayer under controlled atmosphere.
Electromagnetic induction heats adhesive-coated inserts to weld them securely into hollow core wood panels.
A peeling jig pushes a porous protection layer off an element body to measure adhesive strength without using bonding agents.
Segmented adhesive zones combined with riveted connections join dissimilar materials, relieving thermal expansion stresses that cause surface irregularities.
A castellated upper substrate with alternating troughs and ridges enables plastic deformation during self-piercing rivet installation.
An injection-molded bonding layer infiltrates metal surface pores to join dissimilar materials.
Segmented flexible mount decouples under impact force, preventing damage to cameras and mounting surfaces.
A biased member holds the cover portion in a groove, eliminating countersunk fasteners and reducing assembly labor.
Laser processing creates micro and nano structures on contact surfaces, ensuring permanent gas-tightness under temperature fluctuations.
A shell structure with a clamped fitting element distributes force into carbon fiber reinforced plastic components.
A translucent connecting element enables light-curable adhesive activation through its plate structure.
Punch and stripper displace viscous adhesive from joint area to prevent excess accumulation and improve clinch quality.
Flame plasma treatment modifies architectural metal surfaces to increase surface energy and improve structural sealant bonding.
Thermoplastic adhesive composition containing electromagnetically excitable particles for targeted heating and reversible bonding.
Rigid locking teeth with sloping sides and gripping edges engage flexible loop-type fasteners, preventing unwanted movement while allowing easy insertion.
Segmented stretch release adhesive with graspable portion distributes pulling force across deformable legs to extract components without damaging the housing.
A resiliently deformable receptacle strip conforms to ramped composite surfaces for secure fastener attachment.
Partial curing of composite substrates enables direct chemical bonding with adhesive, eliminating surface treatment and contamination risks.
A magnetic fastener bracket uses a keyhole aperture to couple with a retainer, hiding hardware to improve signage aesthetics.
Laser cutting adhesive film into individual circles automates insert mounting, eliminating manual labor.
A non-linear scarf joint uses multi-planar faying surfaces to join components within tight geometric constraints.
Additively manufactured interconnect units join composite panels using notches and projections, enabling strong bonds where welding fails.