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    • 1. 发明申请
    • Scroll-type fluid machine
    • 滚动式流体机
    • US20090246058A1
    • 2009-10-01
    • US12382982
    • 2009-03-27
    • Yuji KomaiKazutaka SuefujiToshikazu HarashimaKiminori IwanoToshitsugu SuzukiYoshiyuki Kanemoto
    • Yuji KomaiKazutaka SuefujiToshikazu HarashimaKiminori IwanoToshitsugu SuzukiYoshiyuki Kanemoto
    • F01C1/02
    • F04C18/0215F01C17/06
    • A scroll-type fluid machine comprising: a casing; a fixed scroll; an orbiting scroll; and an auxiliary crank device in which to prevent the orbiting scroll from being rotated, wherein the auxiliary crank device comprises: a fixed-side bearing body provided on either a casing side or a fixed scroll side; an orbiting-side bearing body provided on an orbiting scroll side; and an auxiliary crank shaft in which a fixed-side shank is rotatably supported with the fixed-side bearing body, and an orbiting-side shank is rotatably supported with the orbiting-side bearing body; a tip of the fixed-side shank of the auxiliary crank shaft is fixed in a radius direction, and a tip of the orbiting-side shank of the auxiliary crank shaft is fixed in a radius direction; and a deformative portion is provided between the tip of the fixed-side shank and the tip of the orbiting-side shank of the auxiliary crank shaft.
    • 一种涡旋式流体机械,包括:壳体; 固定卷轴 绕轨道 以及辅助曲柄装置,其中,用于防止所述绕动涡旋盘旋转,其中所述辅助曲柄装置包括:设置在壳体侧或固定涡盘侧的固定侧轴承体; 设置在绕动涡盘侧的旋转侧轴承体; 以及辅助曲柄轴,其中固定侧柄部可旋转地支撑在固定侧支承体上,并且绕动侧柄部可转动地支撑在绕动侧支承体上; 辅助曲柄轴的固定侧柄部的前端部在半径方向上固定,辅助曲轴的绕动侧柄部的前端沿半径方向固定, 并且在固定侧杆的末端和辅助曲柄轴的旋转侧柄的末端之间设置变形部。
    • 9. 发明授权
    • Scroll fluid machine with a coating layer
    • 涡卷机带有涂层
    • US08628313B2
    • 2014-01-14
    • US12843715
    • 2010-07-26
    • Keisuke TaniguchiYoshiyuki Kanemoto
    • Keisuke TaniguchiYoshiyuki Kanemoto
    • F01C1/02F01C1/063F04C2/02F04C2/063F04C18/02F04C18/063
    • F04C27/001F04C18/0215F04C2230/91
    • A scroll fluid machine that is capable of preventing a power loss and enhancing the degree of hermeticity of compression chambers. A plurality of outer peripheral projections are formed on an outer peripheral surface of a wrap portion of each scroll. An outer peripheral coating layer is formed on an outer peripheral surface of a wrap portion of a fixed scroll, and an inner peripheral coating layer is formed on an inner peripheral surface of the wrap portion. Each of the coating layers comprises: contact portions that make contact with the mating wrap portion; and non-contact portions that do not make contact with the mating wrap portion. In this way, the degree of hermeticity of the compression chambers can be enhanced by the contact portions, and power loss can be prevented by the non-contact portions.
    • 一种能够防止功率损失并提高压缩室的气密性的涡旋流体机械。 在每个涡旋件的包裹部的外周面上形成有多个外周突起。 在固定涡旋盘的卷绕部的外周面上形成有外周涂布层,在包裹部的内周面上形成有内周涂布层。 每个涂层包括:与配合包裹部分接触的接触部分; 以及不与配合包裹部接触的非接触部。 以这种方式,可以通过接触部分增强压缩室的气密度,并且可以通过非接触部分来防止功率损失。
    • 10. 发明申请
    • Scroll Fluid Machine with a Coating Layer
    • 带有涂层的涡旋流体机
    • US20100284845A1
    • 2010-11-11
    • US12843715
    • 2010-07-26
    • Keisuke TaniguchiYoshiyuki Kanemoto
    • Keisuke TaniguchiYoshiyuki Kanemoto
    • F04C2/02
    • F04C27/001F04C18/0215F04C2230/91
    • A scroll fluid machine that is capable of preventing a power loss and enhancing the degree of hermeticity of compression chambers. A plurality of outer peripheral projections are formed on an outer peripheral surface of a wrap portion of each scroll. An outer peripheral coating layer is formed on an outer peripheral surface of a wrap portion of a fixed scroll, and an inner peripheral coating layer is formed on an inner peripheral surface of the wrap portion. Each of the coating layers comprises: contact portions that make contact with the mating wrap portion; and non-contact portions that do not make contact with the mating wrap portion. In this way, the degree of hermeticity of the compression chambers can be enhanced by the contact portions, and power loss can be prevented by the non-contact portions.
    • 一种能够防止功率损失并提高压缩室的气密性的涡旋流体机械。 在每个涡旋件的包裹部的外周面上形成有多个外周突起。 在固定涡旋盘的卷绕部的外周面上形成有外周涂布层,在包裹部的内周面上形成有内周涂布层。 每个涂层包括:与配合包裹部分接触的接触部分; 以及不与配合包裹部接触的非接触部。 以这种方式,可以通过接触部分增强压缩室的气密度,并且可以通过非接触部分来防止功率损失。