Patent classifications
B65H2301/46326
Device and method for automatically binding printed textile panels, or printed textile panels with flexible material strips
The present disclosure relates to a device for automatically binding two or more printed textile panels along a lateral edge of said panels and/or binding a printed textile panel or panels with a flexible material strip along a lateral edge of said panel or panels, said device comprising a sewing head, a puller for pulling the printed textile panel or panels into the sewing head, and a gripper holding system comprising a plurality of grippers for gripping a portion of a lateral edge of the printed textile panel or panels to maintain alignment as the printed textile panel or panels are pulled into said puller.
DEVICE AND METHOD FOR AUTOMATICALLY BINDING PRINTED TEXTILE PANELS, OR PRINTED TEXTILE PANELS WITH FLEXIBLE MATERIAL STRIPS
The present disclosure relates to a device for automatically binding two or more printed textile panels along a lateral edge of said panels and/or binding a printed textile panel or panels with a flexible material strip along a lateral edge of said panel or panels, said device comprising a sewing head, a puller for pulling the printed textile panel or panels into the sewing head, and a gripper holding system comprising a plurality of grippers for gripping a portion of a lateral edge of the printed textile panel or panels to maintain alignment as the printed textile panel or panels are pulled into said puller.
Tire rubber extruder automatic loading and management system
A tire rubber extruder automatic loading and management system is provided for continuous and automatic control of a rubber extrusion line. Batches of rubber slab material, whether for sidewall or tread, are connected in an automated manner to provide a continuous material stream for feeding a tread extruder supply conveyor within a tire manufacturing system. Joiner between adjacent slabs are implemented utilizing a stitched joint of material. Stitch pins are driven through both rubber slab layers to a specific depth into a clearance hole to create an optimized rubber mechanical adhesion zone. The result is a funnel shaped adhesion channel penetrating entirely through the layers of material perpendicular to the direction slab movement and tension. The resulting rivet like button structures are extremely strong, have no Impurities that could otherwise be added via adhesives, and can be formed in an automated manner within the available process cycle times.