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    • 1. 发明申请
    • Press Felt for Papermaking
    • 新闻感染造纸
    • US20100163202A1
    • 2010-07-01
    • US12223834
    • 2007-01-31
    • Akira OnikuboShin KawashimaHiroyuki Oda
    • Akira OnikuboShin KawashimaHiroyuki Oda
    • D21F3/00
    • D21F7/083D21G9/0009
    • A press felt 10 comprises a base body 30, a wet paper web side batt layer 20, and a press side batt layer 23. The wet paper web side batt layer 20 has a wet paper web contact side batt layer 21 and a base body side batt layer 22, the wet paper web contact side batt layer 21 being made of a core-in-sheath fiber 41 which has a core member made of high-molecular-weight nylon with an absolute viscosity of 80 mPa·s or more and a sheath member made of nylon with a lower melting point than the core member, and the base body side batt layer 22 being made of a nylon fiber 42 which does not include the core-in-sheath fiber 41. Rewetting of the wet paper web can be prevented, because water within the press side batt layer 23 is blocked from moving to the wet paper web side due to increased density of the wet paper web contact side batt layer 21 resulted from melting of the sheath member of the core-in-sheath fiber 41. Moreover, since the base body side batt layer 22 is made of nylon without the core-in-sheath fiber, the press felt is provided with a balanced combination of smoothness, resistance to dehairing, abrasion and compression fatigue, and dewatering capability.
    • 压榨毛毯10包括基体30,湿纸幅侧毛层20和加压侧毛层23.湿纸幅侧毛层20具有湿纸幅接触侧毛层21和基体侧 毛层22,湿纸幅接触侧毛层21由具有由绝对粘度为80mPa·s以上的高分子量尼龙构成的芯构件的芯鞘型纤维41制成, 具有低于芯构件的熔点较低的尼龙制成的护套构件,基体侧毛层22由不包含芯鞘纤维41的尼龙纤维42制成。湿纸幅可重复 由于由于芯鞘的鞘部件的熔化而导致的湿纸幅接触侧毛层21的密度增加,因此抑制了压榨侧毛层23内的水被阻止移动到湿纸幅侧 此外,由于基体侧毛层22是由尼龙制成的 芯鞘纤维,压榨毛毡具有平滑度,抗脱毛,磨损和压缩疲劳以及脱水能力的平衡组合。
    • 9. 发明授权
    • Automated heat treatment system for engine valve
    • 发动机气门自动热处理系统
    • US09086239B2
    • 2015-07-21
    • US14356017
    • 2012-01-17
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • F27B9/14F27B9/00C21D9/00
    • F27B9/00B21K1/22B65G25/02C21D1/00C21D9/0018C21D9/0056C21D9/0068F27B9/20F27B9/30F27D3/0024
    • An inventive automated heat treatment system has a furnace for heat treating forged engine valves, a carry-in mechanism for transporting the forged valves into the furnace, and a carry-out mechanism for transporting heat treated valves out of the furnace. Each of the carry-in mechanism and the carry-out mechanism has a retention mechanism for retaining valves hung, and a transport mechanism for transporting valves to the furnace as they are hung. The furnace has heating means, groups of paired rails for supporting and moving the valves hung in the furnace, and a stopper for controlling the positions of the valves on the rails. The engine valves are maintained hung with their umbrella-shaped portions supported by the respective mechanisms throughout the automated heat treatment processes. Thus, the heat treatment of engine valves is done in a fewer steps than in a conventional system.
    • 本发明的自动热处理系统具有用于热处理锻造发动机阀的炉,用于将锻造阀输送到炉中的携带机构,以及用于将热处理的阀输送出炉的进出机构。 每个输入机构和执行机构具有用于保持阀悬挂的保持机构,以及用于在将阀悬挂时将阀输送到炉中的输送机构。 炉具有加热装置,用于支撑和移动悬挂在炉中的阀的成对轨道组,以及用于控制在轨道上的阀位置的止动器。 发动机阀门在整个自动化热处理过程中保持悬挂在其各自机构支撑的伞形部分上。 因此,发动机气门的热处理以比传统系统更少的步骤完成。