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    • 23. 发明申请
    • WASTE HEAT REGENERATION SYSTEM
    • 废热再生系统
    • US20110088394A1
    • 2011-04-21
    • US12903497
    • 2010-10-13
    • Hidefumi MORIMasao IguchiFuminobu EnokijimaMasahiro Kawaguchi
    • Hidefumi MORIMasao IguchiFuminobu EnokijimaMasahiro Kawaguchi
    • F02G3/00
    • F01N5/02F01K13/02F01K23/065F01N2240/02F02G5/04Y02E20/14Y02T10/16Y02T10/166
    • A waste heat regeneration system for a vehicle having a vehicle engine actuated by a start-stop switch includes Rankine cycle circuit, a motor generator, a by-pass circuit and a control device. The Rankine cycle circuit includes a pump, a boiler heating the heat medium by heat exchanging with waste heat generated by the vehicle engine, an expansion device and a condenser. The by-pass circuit is connected to the Rankine cycle circuit at the upstream and downstream sides of the condenser and the communication of the heat medium is openable and closable therethrough. When the start-stop switch of the vehicle engine is turned off, the control device controls the by-pass circuit to communicate the heat medium therethrough and keeps controlling of the rotational speed of the motor generator until pressure difference between the upstream and downstream of the expansion device is decreased to a predetermined level, and then stops the control.
    • 具有由起动停止开关致动的车辆发动机的车辆废热再生系统包括兰金循环回路,电动发电机,旁路电路和控制装置。 兰金循环回路包括泵,通过与车辆发动机产生的废热进行热交换,膨胀装置和冷凝器来加热热介质的锅炉。 旁路电路在冷凝器的上游侧和下游侧连接到兰金循环回路,并且热介质的连通可通过其打开和关闭。 当车辆发动机的启动停止开关关闭时,控制装置控制旁通电路以使热介质通过,并且继续控制电动发电机的转速,直到上游和下游之间的压力差 膨胀装置降低到预定水平,然后停止控制。
    • 27. 发明授权
    • Heat-insulating mechanism for compressor
    • 压缩机隔热机构
    • US07540720B2
    • 2009-06-02
    • US10990234
    • 2004-11-16
    • Fuminobu EnokijimaMasaki OtaTetsuhiko FukanumaMasakazu MuraseTatsuya KoideMasahiro Kawaguchi
    • Fuminobu EnokijimaMasaki OtaTetsuhiko FukanumaMasakazu MuraseTatsuya KoideMasahiro Kawaguchi
    • F04B1/12F04B27/08
    • F04B39/06
    • A heat-insulating mechanism in a compressor which introduces refrigerant gas from a suction pressure region to a compression chamber and discharges the refrigerant gas from the compression chamber to a discharge pressure region has a circular passage, a communication passage, a cylindrical member and a passage heat-insulating member. The circular passage, which is a portion of the suction pressure region, has a circular cross-section, and is in communication with an external refrigerant circuit. The communication passage, which is a portion of the suction pressure region, intersects the circular passage for connection therewith, and is communicable with the compression chamber. The cylindrical member is fitted into the circular passage. The passage heat-insulating member made of an insulating material covers at least a portion of a passage wall surface which forms the communication passage. Rotation of the cylindrical member is prevented by engaging the passage heat-insulating member with the cylindrical member.
    • 将制冷剂气体从吸入压力区域引入压缩室并将制冷剂气体从压缩室排出到排出压力区域的压缩机中的隔热机构具有圆形通路,连通通路,筒状构件和通路 绝热构件。 作为吸入压力区域的一部分的圆形通道具有圆形横截面,并且与外部制冷剂回路连通。 作为吸入压力区域的一部分的连通通路与用于连接的圆形通道相交,并且可与压缩室连通。 圆柱形构件安装在圆形通道中。 由绝缘材料制成的通道绝热构件覆盖形成连通通道的通道壁表面的至少一部分。 通过将通道绝热构件与圆柱形构件接合来防止圆柱形构件的旋转。
    • 28. 发明申请
    • Metallic Composite Material
    • 金属复合材料
    • US20080261067A1
    • 2008-10-23
    • US11792117
    • 2005-11-11
    • Yuki OkamotoKyoichi KinoshitaMotoharu TanizawaManabu SugiuraFuminobu Enokijima
    • Yuki OkamotoKyoichi KinoshitaMotoharu TanizawaManabu SugiuraFuminobu Enokijima
    • B32B15/02B22F7/02
    • B22F5/106B22F7/004B22F7/06B22F2998/10B22F2999/00Y10T428/12028B22F3/1121B22F3/114B22F3/18
    • A metallic composite material according to the present invention is a metallic composite material, which comprises: a composited portion having a sintered body 1 being completed by sintering a metallic powder of a first metal, and a second metal 2′ infiltrating into the pores of the superficial-layer portion of the sintered body 1 at least; and a parent-material portion having the second metal 2 covering the composited portion, and is characterized in that the sintered body 1 is completed by sintering the metallic powder together with a melt-disappearing material, which possesses a melting point being the sintering temperature of the metallic powder or less, or a burn-disappearing material, which burns to disappear at the sintering temperature or less; and the metallic composite material is equipped with a fitting portion at the interface between the composited portion and the parent-material portion, fitting portion which is formed by infiltrating the second metal 2′ into the pores and additionally getting the second metal 2′ into parts 3 where the melt-disappearing material has been melted to disappear or the burn-disappearing material has been burned to disappear. By means of this novel construction, it is possible to suppress the occurrence of cracks and peeling, which occurs in metallic composite material.In the present invention, the melt-disappearing material can preferably include an alloying component element, which forms an alloy with a major component element of the metallic powder. When major component element is iron and the alloying component element is copper, the strength of the fitting portion improves.
    • 根据本发明的金属复合材料是金属复合材料,其包括:通过烧结第一金属的金属粉末而完成烧结体1的复合部分和渗透到第一金属的孔中的第二金属2' 至少烧结体1的表层部分; 以及具有覆盖复合部分的第二金属2的母材部分,其特征在于,烧结体1通过与熔融消失材料一起烧结金属粉末而完成,熔融消失材料的熔点为烧结温度 金属粉末或更少的燃烧消失材料,其在烧结温度或更低温度下燃烧消失; 并且金属复合材料在复合部分和母材部分之间的界面处装配有配合部分,其通过将第二金属2'浸入孔中而形成,并且另外将第二金属2'变成部分 3,其中熔体消失的材料已经熔化消失或燃烧消失的材料已被燃烧消失。 通过这种新颖的结构,可以抑制在金属复合材料中发生的裂纹和剥离的发生。 在本发明中,熔融消失材料可以优选包括与金属粉末的主要成分元素形成合金的合金成分元素。 主要成分为铁,合金成分为铜时,配合部的强度提高。