Assembled slab-type steel-wood composite joint with threaded mechanical connections.
Welded hoop plates link precast columns and beams, simplifying wet connection processes while maintaining high joint strength.
A concrete form uses polymer liner and backing sheets to envelope cellular material pieces, creating a reusable insert assembly.
Guide bars inside leg cavities eliminate section play and reduce wear points by distributing stress across surface contact areas.
Interlocking points and recesses in the stackable surface module absorb bending forces and torsional stresses, eliminating the need for mortar.
Self-aligning leveling blocks eliminate mortar beds to resolve the trade-off between construction speed and wall strength.
Segmented fiber reinforced plastic poles reduce transportation costs through modular construction and universal joint interfaces.
Flanged face panels merge structural assembly and finishing phases, reducing construction time for single users.
A hybrid anchoring system integrates backup wall reinforcement with veneer ties to simplify manual installation.
Segmented planar brackets with inelastic hinges absorb seismic energy through plasticity, preserving primary member integrity.
Stacked dimensional lumber creates square log walls that reduce material costs and labor while maintaining thermal efficiency.
Rectangular tubular beam with segmented end plates featuring redundant fastener hole patterns for modular structural assembly.
A beam-column connection structure uses H-shaped steel beams and a main spiral stirrup to create a robust joint for prefabricated construction.
Dovetail projections on a hollow core element allow interlocking surrounding parts to increase load-bearing capacity without adding fasteners.
Factory-preassembled U-shaped bracket merges with the column to eliminate complex on-site bolting, reducing construction time and safety risks.