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    • 11. 发明授权
    • Scroll compressor having improved orbital drive mechanism
    • 具有改进的轨道驱动机构的涡旋压缩机
    • US5536152A
    • 1996-07-16
    • US498232
    • 1995-07-05
    • Sadao KawaharaTakao FujitaTatsuhisa TaguchiTeruyuki AkazawaMasahiko MakinoNobuaki Ogawa
    • Sadao KawaharaTakao FujitaTatsuhisa TaguchiTeruyuki AkazawaMasahiko MakinoNobuaki Ogawa
    • F04C27/00F04C18/02F04C28/28F04C29/00F04C29/02F01C1/04
    • F04C28/28F04C29/0057
    • A scroll compressor includes an orbital drive mechanism for orbiting an orbiting scroll relative to a stationary scroll. The orbiting scroll is formed with a generally cylindrical boss extending in a direction away from the stationary scroll. The orbital drive mechanism includes a main shaft rotatably supported by a compressor housing, an eccentric shaft extending from one end face of the main shaft and having a longitudinal axis parallel to, but offset laterally from a longitudinal axis of the main shaft, and an eccentric bush having a socket inserted rotatably into the cylindrical boss. The eccentric shaft, engaged in the socket, has first and second rounded side faces opposite to each other both having a common center of curvature, while the socket has first and second inner wall portions opposite to each other, each of which has a center of curvature substantially aligned with the common center of curvature of the first and second rounded side faces of the eccentric shaft. Third and fourth side faces of the eccentric shaft extending between associated ends of the first and second rounded side faces confront third and fourth inner wall portions of the socket and are spaced inwardly therefrom so that the eccentric bush can swing relative to the eccentric shaft about the common center of curvature of the first and second rounded side faces of the eccentric shaft, thus varying the orbiting radius.
    • 一种涡旋式压缩机包括一个轨道驱动机构,用于相对于静涡旋盘绕动涡旋盘旋转。 绕动涡旋件形成有沿远离固定涡旋件的方向延伸的大致圆柱形的凸起。 轨道驱动机构包括由压缩机壳体可旋转地支撑的主轴,偏心轴从主轴的一个端面延伸并且具有与主轴的纵向轴线平行但横向偏离主轴的纵向轴线的纵向轴线,以及偏心轴 衬套具有可旋转地插入到圆柱形凸台中的插座。 接合在插座中的偏心轴具有彼此相对的第一和第二圆形侧面,其具有共同的曲率中心,而插座具有彼此相对的第一和第二内壁部分,每个内壁部分的中心具有 曲率基本上与偏心轴的第一和第二圆形侧面的共同曲率中心对准。 在第一和第二圆形侧面的相关联的端部之间延伸的偏心轴的第三和第四侧面面对插座的第三和第四内壁部分并且从其间隔开,使得偏心衬套可相对于偏心轴围绕 偏心轴的第一和第二圆形侧面的共同曲率中心,从而改变了轨道半径。
    • 17. 发明申请
    • Stirling Engine
    • 斯特林发动机
    • US20080282693A1
    • 2008-11-20
    • US10577804
    • 2004-10-29
    • Takeshi HoshinoTeruyuki AkazawaKoichi HirataMasakuni Kawada
    • Takeshi HoshinoTeruyuki AkazawaKoichi HirataMasakuni Kawada
    • F02G1/043
    • F02G1/043F02G2280/10
    • A high efficient stirling engine with excellent thermal efficiency, which can increase the heating temperature of a high temperature section, is obtained by preventing the heat from being lost in a member connecting the high temperature section and a low temperature section.The high temperature section 5 and the member (a regenerator housing 16) connecting the high temperature section and the low temperature section are formed to have a split configuration by using different materials for the each, in which the high temperature section 5 is formed of a heat resistant/high heat conductive material having high heat resistance property and high heat conductivity, the regenerator housing 16 connecting the high temperature section 5 and the low temperature section 7 is formed of a heat resistant/low heat conductive material having low heat conductivity, and the both are bonded integrally to each other to obtain an integral sealed structure.
    • 通过防止在连接高温部分和低温部分的部件中损失热量,可获得能够提高高温部分的加热温度的具有优异的热效率的高效率的斯特林发动机。 连接高温部分和低温部分的高温部分5和构件(再生器壳体16)形成为具有通过使用不同材料的分割构造,其中高温部分5由 具有高耐热性和高导热性的耐热/高导热材料,连接高温部分5和低温部分7的再生器壳体16由具有低导热性的耐热/低导热材料形成,以及 两者彼此一体地结合以获得一体的密封结构。
    • 18. 发明申请
    • VIBRATION-BASED ELECTRIC POWER GENERATOR
    • 基于振动的发电机
    • US20130342036A1
    • 2013-12-26
    • US14003928
    • 2012-03-26
    • Teruyuki Akazawa
    • Teruyuki Akazawa
    • H02K35/02
    • H02K35/02H02K7/1876H02K35/04
    • The present invention provides a The vibration-based electric power generator in which one of ends of a magnet holding member 20 and one of ends of an outer yoke 30 are connected to each other through a first support spring 41 which is a leaf spring, the other end of the magnet holding member 20 and the other end of the first support spring 41 are connected to each other through a second support spring 42 which is a leaf spring, and the outer yoke 30 or the magnet holding member 20 is fixed to a structure 50 such as a wall surface, a road sign, a vehicle body and a railway bridge for generating electric power from vibration of the structure 50. The vibration-based electric power generator has excellent durability and can generate electric power even by slight vibration.
    • 本发明提供一种振动式发电机,其中磁体保持构件20的端部和外轭铁30的一端之一通过作为板簧的第一支撑弹簧41彼此连接, 磁体保持构件20的另一端和第一支撑弹簧41的另一端通过作为片簧的第二支撑弹簧42彼此连接,并且外磁轭30或磁体保持构件20固定到 结构50,例如壁面,道路标志,车身和用于从结构50的振动产生电力的铁路桥。振动型发电机具有优异的耐久性,并且即使在轻微的振动下也能够发电。
    • 19. 发明授权
    • Stirling engine
    • 斯特林发动机
    • US07640740B2
    • 2010-01-05
    • US10577804
    • 2004-10-29
    • Takeshi HoshinoTeruyuki AkazawaKoichi HirataMasakuni Kawada
    • Takeshi HoshinoTeruyuki AkazawaKoichi HirataMasakuni Kawada
    • F01B29/10
    • F02G1/043F02G2280/10
    • A high efficient stirling engine with excellent thermal efficiency, which can increase the heating temperature of a high temperature section, is obtained by preventing the heat from being lost in a member connecting the high temperature section and a low temperature section.The high temperature section 5 and the member (a regenerator housing 16) connecting the high temperature section and the low temperature section are formed to have a split configuration by using different materials for the each, in which the high temperature section 5 is formed of a heat resistant/high heat conductive material having high heat resistance property and high heat conductivity, the regenerator housing 16 connecting the high temperature section 5 and the low temperature section 7 is formed of a heat resistant/low heat conductive material having low heat conductivity, and the both are bonded integrally to each other to obtain an integral sealed structure.
    • 通过防止在连接高温部分和低温部分的部件中损失热量,可获得能够提高高温部分的加热温度的具有优异的热效率的高效率的斯特林发动机。 连接高温部分和低温部分的高温部分5和构件(再生器壳体16)形成为具有通过使用不同材料的分割构造,其中高温部分5由 具有高耐热性和高导热性的耐热/高导热材料,连接高温部分5和低温部分7的再生器壳体16由具有低导热性的耐热/低导热材料形成,以及 两者彼此一体地结合以获得一体的密封结构。
    • 20. 发明申请
    • Scroll Compressor
    • 涡旋压缩机
    • US20080038133A1
    • 2008-02-14
    • US10560037
    • 2004-06-09
    • Kiyoshi SawaiNoboru IidaYoshiyuki FutagamiAkira HiwataTeruyuki Akazawa
    • Kiyoshi SawaiNoboru IidaYoshiyuki FutagamiAkira HiwataTeruyuki Akazawa
    • F04C18/02
    • F04C23/008F04C18/0215F04C27/005F04C29/023
    • A back pressure chamber 12 provided on a back surface of an orbiting scroll 5 is divided into an inner region 12a and an outer region 12b by an annular seal 11. A diameter d of the annular seal 11 is set 0.5 times or more of a diameter D of an orbiting mirror plate 5a. With this, plus thrust force can be applied to the orbiting scroll 5 irrespective of magnitude of a discharge pressure Pd applied to the inner region 12a. Therefore, it is possible to push the orbiting scroll 5 against the fixed scroll 4 only by back pressure of discharge pressure. A set pressure Pm of the outer region 12b is reduced to a value close to a suction pressure Ps, a pressure adjusting mechanism 20 is swiftly opened after a scroll compressor is started. With this, lubricant oil is supplied from the outer region 12b to the suction space 9 without a time lag.
    • 设置在绕动涡旋件5的后表面上的背压室12通过环形密封件11分成内部区域12a和外部区域12b。环形密封件11的直径d设定为0.5度以上 旋转镜板5a的直径D。 由此,无论施加到内部区域12a的排出压力Pd的大小如何,都可以向绕动涡旋件5施加加力推力。 因此,只有通过排出压力的反压力才能将绕动涡旋件5推靠在固定涡盘4上。 外部区域12b的设定压力Pm减小到接近吸入压力Ps的值,在涡旋式压缩机启动后,压力调节机构20迅速地打开。 由此,润滑油从外部区域12b被供给到吸入空间9而没有时间滞后。