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    • 92. 发明申请
    • Elongated cross section elastic fibers for stable packages
    • 用于稳定包装的细长截面弹性纤维
    • US20070116952A1
    • 2007-05-24
    • US10578547
    • 2004-11-30
    • Ashish SenSelim BensasonAngus Cheng
    • Ashish SenSelim BensasonAngus Cheng
    • B29C47/12D02G3/02
    • B65H54/02B65H55/00B65H55/02B65H2701/31B65H2701/313D01D5/253D01F6/30Y10T428/2967
    • An improved process for winding an elastic fiber onto a core for forming a package and/or warp beam for use in knitting or weaving operations is disclosed. The improvement comprises forming the elastic fiber into a shape having a fiber cross section such that the width of the fiber is at least three times the thickness of the fiber prior to winding the fiber onto the supply package. Another aspect of the invention involves forming elastic fiber using a extrusion melt spinning process with a die having one or more openings which have two generally perpendicular axes, wherein one axis is at least about 1.5, preferably at least about 3 times longer than the other axis. The fiber of the present invention having the elongated cross section can be used to make improved supply packages for knitting or weaving fabric and also for making improved nonwoven structures and improved binder fibers.
    • 公开了一种用于将弹性纤维缠绕到芯上用于形成用于编织或编织操作的包装和/或经纱的改进方法。 该改进包括将弹性纤维形成为具有纤维横截面的形状,使得在将纤维缠绕到供应包装上之前,纤维的宽度至少为纤维厚度的三倍。 本发明的另一方面涉及使用挤出熔融纺丝方法来形成弹性纤维,模具具有一个或多个具有两个大体上垂直的轴线的开口,其中一个轴线比其它轴线至少约1.5倍,优选至少约3倍 。 具有细长横截面的本发明的纤维可用于改进针织或编织织物的供应包装,并且还可用于制造改进的非织造结构和改进的粘合剂纤维。
    • 98. 发明申请
    • Extrusion head device
    • 挤出头装置
    • US20060018987A1
    • 2006-01-26
    • US11184948
    • 2005-07-20
    • Nobuo Hasegawa
    • Nobuo Hasegawa
    • B29C47/12
    • B29C47/165B29C47/0016B29C47/56B29K2021/00
    • An extrusion head device in which fixed and movable head parts as a plurality of separate parts can be easily combined using compact fastening means. Fastening cylinder rods provided for the fixed head part of the extrusion head device including the fixed and movable head parts are expanded, whereby fore-end locking portions at tips of the fastening cylinder rods are inserted into through holes of engaging blocks provided for the movable head to be protruded from upper surfaces of the engaging blocks; stopper-operating cylinder rods provided for the movable head part are expanded, whereby U-shaped stoppers at tips of the stopper-operating cylinder rods are inserted into clearances between the locking portions and the engaging blocks; and then the fastening cylinder rods are contracted, whereby the movable and fixed head parts are brought into tight contact with each other and fastened together.
    • 一种挤压头装置,其中可以使用紧凑的紧固装置容易地组合作为多个分离部件的固定和可动头部。 设置在包括固定头和可移动头部的挤压头装置的固定头部的紧固柱杆膨胀,由此将紧固筒杆的尖端处的前端锁定部分插入设置在可移动头部的接合块的通孔中 从接合块的上表面突出; 设置用于可动头部的止动器操作柱杆膨胀,从而在止动器操作柱体杆的顶端处的U形止动件插入到锁定部分和接合块之间的间隙中; 然后紧固柱体杆收缩,由此可移动和固定的头部部件彼此紧密接触并紧固在一起。
    • 100. 发明授权
    • Injection molding nozzle
    • US06971869B2
    • 2005-12-06
    • US10899033
    • 2004-07-27
    • George Olaru
    • George Olaru
    • B29C45/20B29C45/27B29C45/74B29C47/12
    • B29C45/278B29C2045/2761
    • A nozzle for an injection molding apparatus is provided. The injection molding apparatus has a mold component that defines a mold cavity and a gate into the mold cavity. The nozzle includes a nozzle body, a heater, a tip, a tip surrounding piece and a mold component contacting piece. The nozzle body defines a nozzle body melt passage therethrough, that is adapted to receive melt from a melt source. The heater is thermally connected to the nozzle body for heating melt in the nozzle body. The tip defines a tip melt passage therethrough, that is downstream from the nozzle body melt passage, and that is adapted to be upstream from the gate. The tip surrounding piece is removably connected with respect to said nozzle body. The mold component contacting piece is connected with respect to the nozzle body. The material of the mold component contacting piece has a thermal conductivity that is less than at least one of the thermal conductivity of the material of the tip and the thermal conductivity of the material of the tip surrounding piece.