FILAMENT MANUFACTURING DEVICE AND SHAPING APPARATUS
A filament manufacturing device includes an impregnation unit and a twisting unit. The impregnation unit is configured to impregnate a bundle of transported continuous fibers with a resin so as to form a filament. The twisting unit is configured to twist the filament downstream of the impregnation unit in a transport direction in which the bundle of continuous fibers is transported, so as to form the twisted filament.
1 . A filament manufacturing device comprising:
an impregnation unit configured to impregnate a bundle of transported continuous fibers with a resin so as to form a filament; and
a twisting unit configured to twist the filament downstream of the impregnation unit in a transport direction in which the bundle of continuous fibers is transported, so as to form the twisted filament.
2 . The filament manufacturing device according to claim 1 , wherein the impregnation unit comprises an opening unit configured to open the bundle of continuous fibers.
3 . The filament manufacturing device according to claim 1 , wherein the twisting unit is supplied with a plurality of the filaments and twists the plurality of supplied filaments to form the twisted filament.
4 . The filament manufacturing device according to claim 2 , wherein the twisting unit is supplied with a plurality of the filaments and twists the plurality of supplied filaments to form the twisted filament.
5 . A shaping apparatus comprising:
a parallel transport unit configured to
arrange a plurality of twisted filaments each formed by twisting a bundle of continuous fibers impregnated with a resin, in parallel, and
transport the plurality of twisted filaments;
a filament heating unit configured to heat the plurality of twisted filaments arranged in parallel and transported by the parallel transport unit;
an applying unit configured to apply the plurality of twisted filaments, which are heated by the filament heating unit and arranged in parallel, on an applied surface while relatively moving with respect to the applied surface along the applied surface; and
an untwisting unit disposed upstream of the applying unit in a direction in which the twisted filaments are sent, the untwisting unit being configured to untwist a twist of the bundle of continuous fibers in each of the twisted filaments arranged in parallel.
6 . The shaping apparatus according to claim 5 , further comprising:
a controller configured to control the untwisting unit such that, when the applying unit applies the plurality of twisted filaments arranged in parallel while the twisted filaments arranged in parallel are curved in a direction along the applied surface, an amount of untwisting by which the untwisting unit untwists a twisted filament on an outer circumference side of a curved portion is larger than an amount of untwisting by which the untwisting unit untwists a twisted filament on an inner circumference side of the curved portion.
7 . The shaping apparatus according to claim 5 , wherein
the parallel transport unit arranges, as the twisted filaments, a plurality of twisted filaments formed by twisting a plurality of bundles of continuous fibers impregnated with the resin in parallel and transports the plurality of twisted filaments.
8 . The shaping apparatus according to claim 6 , wherein
the parallel transport unit arranges, as the twisted filaments, a plurality of twisted filaments formed by twisting a plurality of bundles of continuous fibers impregnated with the resin in parallel and transports the plurality of twisted filaments.
9 . A filament manufacturing device comprising:
impregnation means for impregnating a bundle of transported continuous fibers with a resin so as to form a filament; and
twisting means for twisting the filament downstream of the impregnation means in a transport direction in which the bundle of continuous fibers is transported, so as to form the twisted filament.