Integrated retention elements hold additively manufactured parts in alignment during adhesive application and curing to prevent bond misalignment.
A hole-filled adhesive layout keeps magnetic detection elements away from corner stress zones, improving output stability and bond reliability.
A temporary fastener and injected structural adhesive create strong beam-node joints with less weight, shorter assembly time, and no post-coating.
Resistance heating partially cures adhesive between dissimilar metals, enabling strong joints where spot welding lacks penetration and strength.
A formed spacer-rivet fastener secures aligned thin workpieces while preserving the gap between them and simplifying insertion and assembly.
A compressible cover layer keeps hard coating particles in place during assembly, then compresses to boost joint friction and limit damage.
A press-fit insert and press portion replace screws to keep coupling stable while enabling fast, repeatable separation without damage.
A translucent flange passes UV light to cure adhesive through the fastener, enabling faster, more consistent panel installation automation.
Tenon-mortise end joints with adhesive let laminated bamboo lumber reach custom sizes while improving seam appearance, strength, and stability.
A receptacle, insert, and pin joint lets pool beams assemble quickly on-site while securely supporting water loads and repeatable installation.
Curved tenon-mortise joints and adhesive create seamless laminated bamboo lumber with stronger connections and flexible board dimensions.
Localized heating and clamping hold a panel insert in position during adhesive cure, reducing misalignment, energy waste, and panel damage.
A micro-wedge dry adhesive with a surrounding adhesion layer delivers strong all-direction grip at minimal pressure to avoid deforming fragile objects.
Pulsed laser treatment forms a porous oxide topography on stainless steel and nickel alloys to improve adhesive bond consistency without chemical etching.
An adhesive void with alpha and beta plugs enables injection after alignment, improving bond uniformity and reducing extruded beads.
Tapered indexing pins and a protective clamp align composite openings for fastener installation without sleeves, cutting weight and cost.
Vacuum evacuation, semi-permeable breathers, and heated adhesive curing create more uniform, void-free bondlines in large structural joints.
A deformable snap-fit fastener locks the magnet into a rotary drive sleeve, preventing detachment and eliminating front-side gaps.
Retention elements hold additively manufactured parts in alignment during adhesive application and curing, preventing separation and inaccurate joints.
A ribbed insert with a relief channel speeds glued-in rod installation in mass timber while improving alignment and preventing epoxy air pockets.
Femtosecond laser ablation and plasma pre-treatment clean metal bonding surfaces to improve adhesive durability under stress and chemical exposure.
Hot-press heating and cold-press cooling bond base and channel plates into fluid channels, simplifying heat exchanger production and cost.
A reduced-size vacuum sheet and sealant bead improve outlet guide vane resin curing by limiting bag damage, vacuum loss, and heating defects.
A core with two side shells improves cycle frame strength-to-weight balance while simplifying assembly and reducing attachment surfaces.
A controllable heater and shapeable thermoplastic enable reusable bonding on rough surfaces without solvents or curing chemicals.
Structural adhesive bonding replaces welds in box-section working arms to reduce stress, fatigue, mass, and corrosion risk.
Separated sub-bondings in a structural joint stop crack growth while preserving load transfer, improving inspection and repair.
Pre-formed tetrahedral lattice support and hardening filler strengthen fasteners in honeycomb panels without complex core modifications.
An adhesive layer isolates steel and aluminum in a bonded joint, preventing galvanic corrosion without adding weight or cost.
Two adhesives with different elastic moduli improve L- and T-joint panel bonding by balancing shear stiffness with peel resistance.
Pulsed laser texturing forms an open-pore oxide layer on stainless steel and nickel alloys to improve bond consistency without hazardous etching.
A reconfigurable paddle shaft stores and releases elastic energy during each stroke to cut fatigue and improve propulsion in water or on shallow ground.
Punchings in an intermediate sheet let one glue bead bond three stacked panels, cutting adhesive use while raising joint stiffness and saving weight.
A separated joint and sliding contact between vehicle flanges dissipate vibration as frictional heat, cutting noise in thin-sheet bodies.
A two-step adhesive curing process stabilizes the PCB-mounted imager before lens alignment to preserve focus under thermal cycling.
A void-and-passage bonding layout guides adhesive between concentric elements to prevent beads, air bubbles, and weak bond zones.
An inclined joint surface fitted into a matching preform recess boosts out-of-plane bond strength and reduces edge stress in aircraft structures.
A floating socket and curable resin let an aircraft joint absorb tolerance build-up, align parts, and secure the assembly.
A spaced deposition blocking layer in the transmissive area improves under-display sensor light transmission while preventing film delamination.
Partially curing less than half the adhesive creates chemical screws that hold plastic inserts in metal profiles until full cure during e-coat.
A stop and de-actuation mechanism secures mounting in hard-to-reach receptacles, then releases friction for safe, damage-free removal.
Bonded inner plates and a slotted end plate create reliable attachment points on non-cylindrical composite tubing despite bends and bowed areas.
Segmented upper and lower adhesive bands with a void cut bending stress at the dome mount while preserving bond strength and thermal de-icing.
Closed laminate layers with ribs and thermoplastic connectors improve shear load transfer, stress distribution, and delamination resistance in aircraft components.
Mechanical vibration hardens mortar around a dowel to anchor reliably in hollow or low-strength materials while reducing cleaning and curing delays.
Adjacent high- and low-modulus adhesives let L- or T-jointed panels keep shear stiffness while resisting peel failure and disengagement.
A press-on adhesive reservoir and metallic reinforcement simplify fastener assembly while improving shear and pressure resistance on substrates.
A milled slot lets anchor rails be positioned after construction, securing high loads while accommodating tolerances and avoiding costly rework.
A grooved hook-tail insert and deformable rim enable flush, automated sandwich panel fastening while reducing delamination and assembly time.
Localized edge deformation adds compressive residual stress beside adhesive layers, reducing peel stress and extending metal joint fatigue life.