Actuator-driven rails and threaded spindles let a weaving clamping frame locally adjust warp yarn tension and simplify tearing-down.
Multiple parallel conveyors move heddles or dropwires through drawing-in positions, reducing yarn entanglement and improving transport stability.
A single actuator drives the lever carriage through a circular path, improving dropwire transfer speed and positioning precision.
Segmented support elements move independently along a common guide rail, eliminating complex kinematics while maintaining precise thread positioning.
Drive controller adjusts support roll speed using real-time tension data from raw cloth and divided materials.
Two coordinated pressing rails apply uniform pressure across wide yarn layers, preventing irregular spacing and inconsistent clamping.
Heat exchangers transfer thermal energy between distinct lubricant circuits, preventing contamination and preserving viscosity during high-speed loom operation.
Segmented holding means allow the weaving accessories trolley to detach from the main machine, reducing installation space requirements.
An adjustable full-width temple uses modular segments to vary weaving width, eliminating the need for multiple fixed units.
Integrating a repulsion element on the carrier reduces device complexity by eliminating separate actuators while maintaining reliable harness transport cycles.
A movable separating means adjusts its working position relative to a thread layer using variable control parameters.
Open-housing suction device captures fiber fly at weft thread deflection points, preventing fabric contamination and thread breaks during high-speed weaving.
Internal grooves on a rotating polygonal ring distribute lubricant to reduce wear and vibration in loom hooking devices.
Segmented drive motors enable parallel separation and connection of warp threads, increasing operating speed without adding mechanical complexity.
A mobile drawing-in unit automates warp thread insertion using autonomous energy and wireless control.
A warp threading machine uses a measuring device to detect yarn parameters for automated control of the thread clamp and drawing-in unit.
L-shaped cavity gripper with 90° back surface angle secures heavy bouclé yarns, preventing damage and eliminating manual correction errors.
Dual-camera optical monitoring replaces manual inspection to detect bent dents and dirtiness, ensuring consistent fabric quality.
Segmented support parts with split clamping structures enable effortless detachment of the ring bar temple without disrupting peripheral devices.
A heddle sorting module uses detection cameras to identify left and right heddles and directs them onto a transport conveyor.
A rotating cylinder with an adjustable pointer tracks weaving draft position, resolving the contradiction between complex pattern accuracy and cognitive load.
A clamping device uses a switch element to adjust yarn layers along the longitudinal direction.
A rail carrier moves weaving accessories along a track using large-area contact points to prevent damage during automated transport.