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    • 5. 发明授权
    • Exhaust heat recovery apparatus
    • 废热回收装置
    • US07458216B2
    • 2008-12-02
    • US11346204
    • 2006-02-03
    • Hiroshi YaguchiDaisaku Sawada
    • Hiroshi YaguchiDaisaku Sawada
    • F02G3/00
    • F28D21/0003F02G5/02F02G2254/15Y02E20/363Y02P80/156Y02T10/166
    • An exhaust heat recovery apparatus (functioning as a Stirling engine), which is installed in, for example, an exhaust passage of an internal combustion engine and an exhaust passage of factory exhaust heat as restraining reduction in exhaust heat recovery efficiency, is installed in a device installing surface formed in the heat medium passage so that the device installing surface and a heater connecting side end surface of a high temperature side cylinder become parallel and the device installing surface and a cooler connecting side end surface of a low temperature side cylinder become parallel. The high temperature side cylinder is arranged at an upstream side of a direction of exhaust flow. The low temperature side cylinder is arranged at a downstream side of the high temperature side cylinder.
    • 作为排气热回收效率的抑制降低,安装在例如内燃机的排气通路和工厂废热的排气通路中的排气热回收装置(作为斯特林发动机)安装在 在热介质通道中形成的装置安装表面,使得装置安装面和连接高温侧气缸侧端面的加热器平行,并且装置安装面和连接低温侧气缸侧面的冷却器变平行 。 高温侧气缸布置在排气流的方向的上游侧。 低温侧气缸配置在高温侧气缸的下游侧。
    • 6. 发明申请
    • HIGH STRENGTH SPRING STEEL WIRE WITH EXCELLENT COILING PROPERTIES AND HYDROGEN EMBRITTLEMENT RESISTANCE
    • 具有优异线圈特性和耐腐蚀性能的高强度弹簧钢丝
    • US20070125456A1
    • 2007-06-07
    • US11462894
    • 2006-08-07
    • Takuya KochiHiroshi Yaguchi
    • Takuya KochiHiroshi Yaguchi
    • C22C38/18
    • C22C38/18C22C38/04C22C38/06C22C38/34
    • Disclosed herein is a high strength spring steel wire with excellent coiling properties and hydrogen embrittlement resistance. The steel wire comprises, by mass, 0.4 to 0.60% of C, 1.7 to 2.5% of Si, 0.1 to 0.4% of Mn, 0.5 to 2.0% of Cr, 0.015% or less of P (exceeding 0%), 0.015% or less of S (exceeding 0%), 0.006% or less of N (exceeding 0%), 0.001 to 0.07% of Al, and the remainder being Fe and unavoidable impurities. The steel wire has a structure wherein prior austenite has an average grain size of 12 μm or less, and retained austenite exists in an amount of 1.0 to 8.0 vol. % with respect to a whole structure of the steel wire. The retained austenite has an average grain size of 300 nm or less and a maximum grain size of 800 nm or less. The steel has a tensile strength of 1,900 MPa or more.
    • 本发明公开了一种具有优异的卷取性能和耐氢脆性的高强度弹簧钢丝。 该钢丝以质量计含有C:0.4〜0.60%,Si:1.7〜2.5%,Mn:0.1〜0.4%,Cr:0.5〜2.0%,P:0.015%以下(超过0%),0.015% 以下的S(超过0%),0.006%以下的N(超过0%),0.001〜0.07%的Al,余量为Fe和不可避免的杂质。 钢丝具有以往的奥氏体的平均粒径为12μm以下的结构,残留奥氏体的量为1.0〜8.0体积%。 相对于钢丝的整体结构为%。 残留奥氏体的平均粒径为300nm以下,最大粒径为800nm以下。 钢的拉伸强度为1900MPa以上。
    • 7. 发明申请
    • Piston and piston apparatus
    • 活塞和活塞装置
    • US20060283417A1
    • 2006-12-21
    • US11410009
    • 2006-04-25
    • Hiroshi YaguchiDaisaku Sawada
    • Hiroshi YaguchiDaisaku Sawada
    • F02F3/00F01B31/00
    • F02G1/0535F02G2253/02F02G2270/40
    • A piston reciprocating in a cylinder includes a piston top portion receiving pressure from working fluid in the cylinder; a skirt portion opposed to an inner surface of the cylinder; an accumulation chamber partition which is provided in an inner space of the skirt portion in non-contact manner as a structure independent from the skirt portion, partitions the inner space of the skirt portion, and forms an accumulation chamber into which gas in a working space in the cylinder is introduced; and a gas discharging hole which is provided in the skirt portion, and discharges gas in the accumulation chamber to form a gas bearing between the cylinder and the piston.
    • 在气缸中往复运动的活塞包括从气缸中的工作流体接受压力的活塞顶部部分; 与所述气缸的内表面相对的裙部; 蓄积室分隔件,其以非接触的方式设置在裙部的内部空间中,作为独立于裙部的结构,分隔裙部的内部空间,并形成积聚室,工作空间中的气体 在缸内引入; 以及气体排出孔,其设置在裙部中,并且在积聚室中排出气体,以在气缸和活塞之间形成气体轴承。