To aim at the achievement of a further thin diameter of a stranded wire and the improvement of its productivity.
This stranding device 1 is constituted by a tubular body 3 of which longitudinal direction is arranged as almost horizontal direction, driven rotationally, a multiple number of wire bobbins 5 installed at the inside of the tubular body 3, a multiple number of wire passage tubes 75 installed as corresponding to each of the wire bobbins 5 and passing through the wires 7 sent out from the wire bobbins 5, one end of which faces in the vicinity of the wire bobbins 5 and also another end side of which extends in the front end side of the tubular body 3 through the outer circumference of the tubular body 3, and a stranding port 9 for gathering and stranding the multiple number of the wires 7 sent out from the multiple number of the wire passage tubes 75. As a result, even if the tubular body 3 rotates in a high speed, the elevation of the tension of each of the wires 7 passing through the inside of each of the wire passage tubes 75 is suppressed as less as possible and the wires 7 are suppressed so as not to expand to the outside of the tubular body 3 and the further thin diameter of the stranded wire is achieved and its productivity is improved.
ASA HIDEKAZU
Iwa Saki Kokuni
Kawamata Sumio
Shunichi Takahashi
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