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    • 6. 发明授权
    • Surface protective film and laminate formed therefrom
    • 表面保护膜和由其形成的层压体
    • US06582789B1
    • 2003-06-24
    • US09857289
    • 2001-06-01
    • Hiroyuki Sumi
    • Hiroyuki Sumi
    • C09J702
    • C09J7/255Y10S428/906Y10S428/918Y10T428/10Y10T428/14Y10T428/1405Y10T428/1419Y10T428/1452Y10T428/1457Y10T428/1462Y10T428/1471Y10T428/1476Y10T428/31786
    • A surface protective film which can be used in the production of components associated with a liquid crystal display such as a polarizer to improve productivity and yields since no air bubbles are trapped when stuck to a substrate having unevenness in the surface and since the adhesion is low and a change of the adhesion with the passage of time is small and which can be highly transparent and improve inspectability by using a polyester film having little particles as a base material. It is treated by an antistatic agent or a release agent the surface of the surface protective film opposite to the surface in which the adhesive layer is formed, as a result, control of static electrification in case the surface protective film is peeled off and removal of the dust adhering to the surface can be made easy.
    • 一种表面保护膜,其可用于生产与诸如偏振片的液晶显示器相关的部件,以提高生产率和产率,因为当粘附到表面不均匀的基板上时,没有气泡被捕获,并且由于粘附力低 并且随着时间的流逝粘合力的变化小,并且可以高度透明,并且通过使用具有很少颗粒的聚酯膜作为基材来提高检查性。 通过抗静电剂或脱模剂处理与形成有粘合剂层的表面相反的表面保护膜的表面,结果是在剥离表面保护膜的情况下控制静电, 可以容易地附着在表面上的尘埃。
    • 7. 发明申请
    • LASER WELDING METHOD
    • 激光焊接方法
    • US20140076865A1
    • 2014-03-20
    • US14008177
    • 2011-04-28
    • Koji YanoHiroyuki Sumi
    • Koji YanoHiroyuki Sumi
    • B23K26/24
    • B23K26/32B23K26/0608B23K26/26B23K2103/04B23K2103/05B23K2103/50
    • A laser welding method includes emitting two laser beams along a weld line from an upper surface side of a workpiece, the two laser beams being transmitted through different optical fibers and having in-focus spot diameters of 0.3 mm or larger; emitting the laser beams such that a leading laser beam of the two laser beams and a trailing laser beam of the two laser beams are each inclined toward a direction in which welding proceeds at an incident angle with respect to a direction perpendicular to an upper surface of the workpiece, the leading laser beam being ahead of the trailing laser beam on the upper surface of the workpiece in the direction in which welding proceeds, the trailing laser beam being behind the leading laser beam; and setting the incident angle of the leading laser beam to be larger than the incident angle of the trailing laser beam.
    • 激光焊接方法包括沿着焊接线从工件的上表面侧发射两束激光束,两束激光束透过不同的光纤并具有0.3mm以上的焦点直径; 发射激光束,使得两个激光束的前导激光束和两个激光束的后退激光束各自朝着焊接相对于垂直于上表面的方向以入射角进行的方向倾斜 所述工件,所述前导激光束在所述工件的上表面上在所述焊接进行方向上位于所述后激光束之前,所述后激光束位于所述激光束的后面; 并且将前导激光束的入射角设定为大于后激光束的入射角。