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    • 23. 发明授权
    • Gasket and method for producing same
    • 垫圈及其制造方法
    • US09291267B2
    • 2016-03-22
    • US13881396
    • 2012-05-24
    • Shigeru Watanabe
    • Shigeru Watanabe
    • F16J15/10F16J15/06F16J15/12F16J15/08
    • F16J15/10F16J15/061F16J15/104F16J15/122F16J15/127F16J2015/0856
    • In order to inexpensively provide gaskets which have good sealing performance, and which fulfill various applications by simply stamping out sheet-like gaskets in accordance with specifications, a gasket is obtained by integrally forming, with a sheet-like base material, a gasket part made of a rubber-like elastic material on at least one surface of the base material, said gasket part being composed of continuous protrusions provided with a fixed pattern. The sheet-like gasket parts produced in this manner are capable of inexpensively providing gaskets which fulfill various applications by simply stamping out the sheet-like gasket parts in accordance with various specifications.
    • 为了廉价地提供具有良好密封性能的垫圈,并且通过简单地按照规格冲压片状衬垫来实现各种应用,通过与片状基底材料一体地形成垫圈部件,从而获得垫圈 在基材的至少一个表面上的橡胶状弹性材料,所述垫圈部分由设置有固定图案的连续突起构成。 以这种方式制造的片状垫圈部件能够通过根据各种规格简单地冲压出片状垫圈部件,能够廉价地提供满足各种应用的垫圈。
    • 27. 发明申请
    • SEAL COMPONENT MANUFACTURING METHOD AND MOLD
    • 密封组件制造方法和模具
    • US20120018927A1
    • 2012-01-26
    • US13258352
    • 2010-02-19
    • Shigeru Watanabe
    • Shigeru Watanabe
    • B29C45/14
    • B29C45/34B29C45/2669B29L2031/26H01M8/0284H01M8/0286Y02P70/56
    • To prevent defective molding, a base member is set between split molds of a metal mold, a molding rubber material is injected into an endless shape cavity defined between the base member and the split mold, an injection amount thereof is made such that the molding rubber material fills the cavity and thereafter flows from an air vent hole open to a confluence position in the cavity into a surplus material reservoir provided downstream but does not fill the surplus material reservoir, pressure drop due to flow resistance is caused to the molding rubber material flowing into the surplus material reservoir, and thereby pressure in the cavity is maintained to be not lower than pressure required to mold a gasket and lower than pressure causing leakage from the cavity.
    • 为了防止有缺陷的模制,将基底部件设置在金属模具的分割模具之间,将模制橡胶材料注入限定在基部构件和分开模具之间的环形空腔中,其注入量被制成使得模制橡胶 材料填充空腔,然后从空腔中的通气孔流入空腔中的汇合位置,进入设置在下游的多余的材料容器,但不填满多余的材料储存器,由于流动阻力引起的压力下降导致模制橡胶材料流动 进入剩余材料储存器,从而将空腔中的压力保持为不低于模制垫圈所需的压力并且低于导致从空腔泄漏的压力。
    • 28. 发明申请
    • APPARATUS AND METHOD FOR GASIFYING GAS HYDRATE PELLET
    • 用于气化水泥浆的装置和方法
    • US20100325955A1
    • 2010-12-30
    • US12735633
    • 2009-03-27
    • Shigeru WatanabeShinji ImaiKazuhiko Shinagawa
    • Shigeru WatanabeShinji ImaiKazuhiko Shinagawa
    • C10J3/00
    • C10L3/06C10L3/108C10L5/363
    • A gasification apparatus is provided which enables gas hydrate pellets to be transported and gasified in the same vessel and enables a gas to be generated by pellet decomposition in a controlled amount. The apparatus is free from bridging. The apparatus includes a heat-in-saluted vessel main body and, disposed therein, a tubular structure which is open at the top and bottom. This tubular structure holds therein gas hydrate pellets obtained by compression-molding a gas hydrate produced by the hydration reaction of a raw-material gas with raw-material water. The tubular structure becomes wider in diameter from the upper opening toward the lower opening. A channel for passing a heat carrier therethrough has been disposed between the lower end of the tubular structure and the inner bottom surface of the vessel main body. The apparatus is further equipped, between the tubular structure and the inner wall surface of the vessel main body, with a nozzle which ejects the heat carrier in a circumferential direction for the vessel main body. The vessel main body has a discharge pipe for discharging the heat carrier ejected from the nozzle, the discharge pipe projecting upright from the inner bottom surface of the vessel main body.
    • 提供了一种气化装置,其使得气体水合物颗粒能够在同一容器中运输和气化,并且能够以受控量的颗粒分解产生气体。 该设备没有桥接。 该装置包括受热的容器主体,并且在其中设置有在顶部和底部是开放的管状结构。 该管状结构容纳通过将原料气体的水合反应产生的气体水合物压缩成型为原料水而得到的气体水合物颗粒。 管状结构从上开口向下开口的直径变宽。 用于使热载体通过的通道已经设置在管状结构的下端和容器主体的内底表面之间。 该装置还在管状结构和容器主体的内壁表面之间配备有用于船体主体沿圆周方向喷射热载体的喷嘴。 容器主体具有用于排出从喷嘴排出的热载体的排出管,排出管从容器主体的内底表面竖直突出。