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    • 1. 发明授权
    • Filament winding apparatus
    • 灯丝卷绕装置
    • US5238520A
    • 1993-08-24
    • US888863
    • 1992-05-27
    • Katsumi HasegawaYoshihiko OsawaIchiro Kumo
    • Katsumi HasegawaYoshihiko OsawaIchiro Kumo
    • B29C53/80
    • B29C53/8016B29C53/8008
    • Disclosed is a filament winding apparatus comprising a winding mechanism having a pair of arms for winding traversed filamentary yarns impregnated with a resin onto a plurality of mandrels, respectively, and a mandrel retaining mechanism having mandrel receiving portions by a number of at least two times of the number of the mandrels to be set on the arms of the winding mechanism. The arms are swung between a winding position and a mandrel exchange position of the mandrel retaining mechanism. The retaining mechanism is a little moved when the mandrels are exchanged. A plurality of mandrels can be easily and efficiently exchanged at the same time without a particular device. The number of the mandrels for simultaneous filament winding can be increased and a high productivity can be obtained. Further, this apparatus can be realized at a relatively low cost.
    • 公开了一种长丝缠绕装置,其包括一个缠绕机构,该卷绕机构具有一对臂,用于将浸渍有树脂的横向丝状纱线分别卷绕到多个心轴上;心轴保持机构,其具有心轴接收部分至少两次 在绕线机构的臂上设置的心轴的数量。 臂在卷轴位置和心轴保持机构的心轴更换位置之间摆动。 当心轴交换时,保持机构有点移动。 多个心轴可以在没有特定装置的情况下同时容易且有效地交换。 可以提高同时长丝缠绕的心轴的数量,并且可以获得高的生产率。 此外,该装置可以以相对低的成本实现。
    • 5. 发明授权
    • Bobbin holder and take-up device equipped with the bobbin holder
    • 线轴架和卷取装置配有筒管架
    • US5603463A
    • 1997-02-18
    • US392742
    • 1995-03-07
    • Ichiro KumoKozo OkumuraTakao SanoTosihiro Hayasi
    • Ichiro KumoKozo OkumuraTakao SanoTosihiro Hayasi
    • B65H54/44B65H54/547B65H75/24D01D7/00D01H7/16B65H75/30
    • B65H54/547B65H75/245B65H2701/31
    • In a bobbin holder 1 according to the present invention, flexible rings 3a to 3h each comprising a ring-like spring member 30, a pair of solid rings 38 fixed to both side surfaces of the paring member 30, a pair of solid rings 38 fixed to both side surfaces of the spring member 30 and rubber members 39 disposed on the inner and outer peripheries of the spring member between the solid rings, are loosely fitted between a cylindrical bobbin 23 and a rotary cylinder 2 to which the bobbin is inserted. The solid rings 38 are pressed from both side surfaces of the flexible ring, respectively, and the ring-like spring member 30 undergoes deformation in the direction of an outer diameter so as to increase its diameter. As the rubber members 39 come into close contact with the inner peripheral surface of the bobbin 23, the bobbin can be gripped. In this case, in the bobbin holder described above, the difference .delta. between the outer diameter Ds of the rotary cylinder and the inner diameter Db of the bobbin is not greater than 10 mm and the thickness t at the end portion side of the rotary cylinder may be smaller than the thickness thereof at a portion near the engagement portion of the rotary cylinder with a driving shaft. When such a bobbin holder 1 is assembled into a take-up device for taking up a liner material such as a yarn and a steel wire or a synthetic resin film, a fiber sheet, paper etc, to the bobbin 23, high speed take-up while the bobbin is strongly gripped can be accomplished.
    • PCT No.PCT / JP94 / 01154 Sec。 371日期:1995年3月7日 102(e)1995年3月7日PCT PCT 1994年7月14日PCT公布。 第WO95 / 02551号公报 日本1995年1月26日在根据本发明的筒管架1中,柔性环3a至3h各自包括环形弹簧构件30,固定到配对构件30的两个侧表面的一对实心环38,一对 固定在弹簧构件30的两个侧面的固体环38和布置在实心环之间的弹簧构件的内周和外周的橡胶构件39松动地装配在圆筒形筒管23和旋转圆筒2之间, 线轴被插入。 固体环38分别从柔性环的两个侧面压制,并且环状弹簧构件30在外径方向上发生变形以增加其直径。 当橡胶构件39与线轴23的内周面紧密接触时,能够夹持筒管。 在这种情况下,在上述的筒管夹持器中,旋转圆筒的外径Ds与筒管的内径Db之间的差值δ不大于10mm,旋转圆筒的端部侧的厚度t 可以比具有驱动轴的旋转圆筒的接合部附近的部分的厚度小。 当将这样的筒管架1组装到卷取装置中时,卷取装置用于将卷取诸如纱线,钢丝或合成树脂膜,纤维片,纸等衬里材料卷绕到筒管23上, 可以实现线轴被牢固地夹持的同时。
    • 10. 发明授权
    • Process and apparatus for measuring thermal shrinkage properties of yarn
    • 用于测量纱线热收缩性能的方法和装置
    • US4566319A
    • 1986-01-28
    • US483431
    • 1983-04-08
    • Chikayasu YamazakiJun TorikaiIchiro Kumo
    • Chikayasu YamazakiJun TorikaiIchiro Kumo
    • G01N3/18G01N3/00G01N3/36G01N33/36
    • G01N33/365
    • The thermal shrinkage properties of yarn are measured by applying heat treatment to the yarn while it travels through a straight yarn path formed between a feed roller and a draw roller. The peripheral speed of the feed roller is set at a desired constant peripheral speed V.sub.1. The tension T of the yarn is detected at the downstream of the feed roller, and the peripheral speed of the draw roller is controlled at a speed V.sub.2 so that the detected tension T becomes equal to a desired preset tension T.sub.0 of the yarn. The thermal shrinkage S(%) is measured through the computation of S=[(V.sub.1 -V.sub.2)/V.sub.1 ].times.100. If the controlling of the peripheral speed V.sub.2 of the draw roller is effected so that V.sub.2 /V.sub.1 =a desired constant value, the detected tension of the yarn can be used for measuring the thermal shrinkage stress of the measured yarn.
    • 纱线的热收缩特性通过在纱线行进通过形成在进给辊和牵引辊之间的直线纱线的情况下对纱线进行热处理来测量。 进给辊的圆周速度设定在所需的恒定圆周速度V1。 在进给辊的下游检测纱线的张力T,并且将拉伸辊的圆周速度控制在速度V2,使得检测到的张力T等于纱线的期望的预设张力T0。 通过计算S = [(V1-V2)/ V1]×100来测量热收缩率S(%)。 如果对牵引辊的圆周速度V2进行控制,使得V2 / V1 =期望的恒定值,则可以使用检测到的纱线张力来测量测量的纱线的热收缩应力。