Patent classifications
D03D51/02
CIRCULAR LOOM WITH ORBIT PATH
The invention relates to a circular loom for weaving a weaving core along a weaving axis with at least one shuttle, which comprises a weft thread spool and is movable along a circular orbit path around the weaving core. The orbit path is formed of first track segments arranged one after the other along its circumference and at least one movably arranged or designed guide device is provided, which guides at least one warp thread provided from a warp thread spool on a warp spool device and on which at least a first track segment of the orbit path and at least a second track segment alternatively assignable to the orbit path are arranged and guided, where in the guided absence of the first and second track segment from the orbit path the guided warp thread, crossing the track plane, passes through the orbit path.
SYSTEMS AND METHODS FOR AUTOMATIC PRODUCTION OF A CORD STRUCTURE
Systems and methods for automatically producing a cord structure are provided herein. In one embodiment, a method comprises automatically forming, with at least one robotic arm, a first plurality of loops in a first plane, and automatically forming, with the at least one robotic arm, a second plurality of loops in a second plane orthogonal to the first plane, the second plurality of loops slippably engaged with the first plurality of loops. In this way, cord structures may be quickly constructed, thereby reducing labor input and expense.
SYSTEMS AND METHODS FOR AUTOMATIC PRODUCTION OF A CORD STRUCTURE
Systems and methods for automatically producing a cord structure are provided herein. In one embodiment, a method comprises automatically forming, with at least one robotic arm, a first plurality of loops in a first plane, and automatically forming, with the at least one robotic arm, a second plurality of loops in a second plane orthogonal to the first plane, the second plurality of loops slippably engaged with the first plurality of loops. In this way, cord structures may be quickly constructed, thereby reducing labor input and expense.
Systems and methods for automatic production of a cord structure
Systems and methods for automatically producing a cord structure are provided herein. In one embodiment, a method comprises automatically forming, with at least one robotic arm, a first plurality of loops in a first plane, and automatically forming, with the at least one robotic arm, a second plurality of loops in a second plane orthogonal to the first plane, the second plurality of loops slippably engaged with the first plurality of loops. In this way, cord structures may be quickly constructed, thereby reducing labor input and expense.
Systems and methods for automatic production of a cord structure
Systems and methods for automatically producing a cord structure are provided herein. In one embodiment, a method comprises automatically forming, with at least one robotic arm, a first plurality of loops in a first plane, and automatically forming, with the at least one robotic arm, a second plurality of loops in a second plane orthogonal to the first plane, the second plurality of loops slippably engaged with the first plurality of loops. In this way, cord structures may be quickly constructed, thereby reducing labor input and expense.
TEXTILE MACHINE
A textile machine includes a main driven system driven by a plurality of main motors, a plurality of slave driven systems each driven by at least one slave motor, and an energy supply/control arrangement for supplying energy to the main motors and the slave motors and for controlling the flow of energy between a power supply system and the main motors and the slave motors. The energy supply/control arrangement includes a first energy exchange unit, a first main motor unit, a second energy exchange unit, a second main motor unit, and a controller. The slave motors include at least one first slave motor connected to a first DC voltage bus system by an associated first slave motor unit and at least one second slave motor connected to a second DC voltage bus system by an associated second slave motor unit.
TEXTILE MACHINE
A textile machine includes a main driven system driven by a plurality of main motors, a plurality of slave driven systems each driven by at least one slave motor, and an energy supply/control arrangement for supplying energy to the main motors and the slave motors and for controlling the flow of energy between a power supply system and the main motors and the slave motors. The energy supply/control arrangement includes a first energy exchange unit, a first main motor unit, a second energy exchange unit, a second main motor unit, and a controller. The slave motors include at least one first slave motor connected to a first DC voltage bus system by an associated first slave motor unit and at least one second slave motor connected to a second DC voltage bus system by an associated second slave motor unit.
SYSTEMS AND METHODS FOR CREATING TOPOGRAPHICAL WOVEN FABRIC
Provided are systems and methods for producing seamless woven materials that are variable in each of their 3 dimensions. The systems and methods generally operate by altering heddle positions independently to impart three dimensional structure to a woven fabric. Weft yarn is woven into a set of warp yarns that have been individually raised or lowered along a particular cross section, essentially locking the weave into an intended 3 dimensional form.
SYSTEMS AND METHODS FOR CREATING TOPOGRAPHICAL WOVEN FABRIC
Provided are systems and methods for producing seamless woven materials that are variable in each of their 3 dimensions. The systems and methods generally operate by altering heddle positions independently to impart three dimensional structure to a woven fabric. Weft yarn is woven into a set of warp yarns that have been individually raised or lowered along a particular cross section, essentially locking the weave into an intended 3 dimensional form.
Systems and methods for creating topographical woven fabric
Provided are systems and methods for producing seamless woven materials that are variable in each of their 3 dimensions. The systems and methods generally operate by altering heddle positions independently to impart three dimensional structure to a woven fabric. Weft yarn is woven into a set of warp yarns that have been individually raised or lowered along a particular cross section, essentially locking the weave into an intended 3 dimensional form.