BRAIDING APPARATUS CAPABLE OF GENERATING A FOUR-POINT INTERWEAVING OPERATION
20230007893 · 2023-01-12
Inventors
Cpc classification
International classification
Abstract
A braiding apparatus includes a platform, a base plate, a core unit, a transmission unit, a track assembly, and strand carriers. The track assembly is divided into two braiding track groups each provided with transmission discs. The transmission discs of both braiding track groups are sequentially connected to define two braiding routes directed in different directions. The strand carriers shuttle on both braiding routes respectively and incessantly. Four intersections are defined when the two braiding routes meets. Accordingly, carrier strands fed by the strand carriers are wound around a core strand fed by the core unit while shuttling incessantly and are interwoven with each other while passing through the four intersections during the incessant shuttling motion, thereby wrapping a multi-convolutional braided layer around the core strand to complete a rope. Each convolution of the braided layer has four crossing points, which increases the practicability of the rope.
Claims
1. A braiding apparatus capable of generating a four-point interweaving operation comprising: a platform; a base plate disposed on said platform; a core unit disposed on said base plate and adapted to supply a core strand; a transmission unit disposed below said base plate; a track assembly arranged on said base plate; and a plurality of strand carriers movably mounted on said track assembly for executing an incessant shuttling motion and provided with carrier strands wound thereon; wherein said track assembly includes a plurality of transmission discs disposed on said base plate and driven by said transmission unit, each of said transmission discs having a plurality of notches formed thereon and adapted to carry said strand carriers, said transmission discs being connected to each other, and said track assembly thereby being divided into a first braiding track group and a second braiding track group, said first braiding track group and said second braiding track group being arranged around said core unit while taking said core unit as a center, with said first braiding track group encircled by said second braiding track group, wherein said transmission discs of said first braiding track group and said transmission discs of said second braiding track group are sequentially connected to each other to thereby define a first braiding route and a second braiding route, said first braiding route and said second braiding route being directed in different directions whereby said strand carriers shuttle on said first braiding route and said second braiding route respectively and continuously to execute said incessant shuttling motion, said first braiding route and said second braiding route meeting to form four intersections which are spaced at 90 degrees from each other, and said carrier strands thereby crossing each other when said strand carriers pass through said four intersections, said strand carriers being actuated under said incessant shuttling motion to wrap said strand carriers around an outer surface of said core strand and in the meantime allow said strand carriers to be interwoven with each other on said outer surface of said core strand, thereby forming a braided layer with a plurality of convolutions around said core strand, with each of said convolutions of said braided layer having four crossing points.
2. The braiding apparatus according to claim 1, wherein said first braiding route and said second braiding route cross each other to assume an X state.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0017] Referring to
[0018] The track assembly 35 is arranged around the core unit 33 by taking the core unit 33 as a center. Specifically, the track assembly 35 includes a plurality of transmission discs 351A, 352A disposed on the base plate 32 and arranged around the core unit 33 when the core unit 33 is centered on the base plate 32. The transmission discs 351A, 352A are driven by the transmission unit 34. Each of the transmission discs 351A, 352A has a plurality of notches 353 formed thereon for receiving and carrying the strand carriers 36. Accordingly, when the strand carriers 36 embedded into the notches 353 experience rotations of the transmission discs 351A, 352A, the strand carriers 36 are smoothly transported to shuttle on the track assembly 35 continuously, which thereby executes an incessant shuttling motion.
[0019] The transmission discs 351A, 352A of the track assembly 35 are connected to each other, which allows the transmission discs 351A, 352 to be grouped. In other words, the track assembly 35 is divided into a first braiding track group 351 and a second braiding track group 352, so the transmission discs 351A belong to the first braiding track group 351, and the transmission discs 352A belong to the second braiding track group 352. When the core unit 33 is centered on the base plate 32, both of the first braiding track group 351 and the second braiding track group 352 surround the core unit 33 by taking the core unit 33 as the center. The first braiding track group 351 is encircled or surrounded by the second braiding track group 352, so the transmission discs 352A of the second braiding track group 352 surround the transmission discs 351A of the first braiding track group 351.
[0020] Furthermore, the rotations of the transmission discs 351A of the first braiding track group 351 are actuated by the transmission unit 34. The transmission discs 351A are, but not limited to, sequentially connected to each other, spaced from each other, or partially connected to each other. In the drawings, it is taken as an example that the first braiding track group 351 has four transmission discs 351A which are spaced from each other. The rotations of the transmission discs 352A of the second braiding track group 352 are actuated by the transmission unit 34. The transmission discs 352A are, but not limited to, sequentially connected to each other, spaced from each other, or partially connected to each other. In the drawings, it is taken as an example that the second braiding track group 352 has twelve transmission discs 352A which are sequentially connected, namely connected one after another. The arrangement and the number of the transmission discs 351A, 352A can be adjusted to meet need.
[0021] The transmission discs 351A, 352A of the first braiding track group 351 and the second braiding track group 352 are sequentially connected to each other to thereby define different braiding routes D1, D2. For example, two sides of one transmission disc 351A are respectively connected to two transmission discs 352A which are adjacent to this transmission disc 351A, and other transmission discs 351A are also adapted to the same connecting mode. Meanwhile, the transmission discs 352A are connected in sequence. The above shows an alternate connection, so a first braiding route D1 (shown in
[0022] It is noted that the first braiding route D1 and the second braiding route D2 are directed in different directions. Preferably, the two braiding routes D1, D2 cross each other to assume an X state. As shown in
[0023] The operation of this invention is described with the aid of
[0024] Regarding the braided layer as shown in
[0025] To sum up, the braiding apparatus of this invention divides the transmission discs of the track assembly which are disposed around the core unit into a first braiding track group and a second braiding track group and also takes advantage of the connection between the above transmission discs to define a first braiding route and a second braiding route on which strand carriers can shuttle respectively and incessantly for executing an incessant braiding action, especially the two braiding routes meet to form four intersections. Carrier strands fed by the strand carriers are interwoven with each other when the strand carriers pass through the four intersections. Thus, a braided layer having four crossing points on each convolution is created and wrapped around an outer surface of a core strand. Finally, the incessant braiding action of the strand carriers around the core strand produces a complete rope with the special braided layer whereby the practicability of the rope is increased.
[0026] While the embodiments are shown and described above, it is understood that further variations and modifications may be made without departing from the scope of this invention.