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    • 6. 发明公开
    • Scroll fluid machine, scroll member and processing method thereof
    • SpiralverdichterfürFluides-Spiralelement und Verarbeitungsverfahren。
    • EP0549952A1
    • 1993-07-07
    • EP92121387.2
    • 1992-12-16
    • HITACHI, LTD.
    • Kohsokabe, HirokatsuIwata, HiroshiEndoh, Kazuhiro, Tsukuba Hausu 9-101Oshima, Yasuhiro
    • F01C1/02
    • F01C1/0246Y10T29/49236
    • A scroll fluid machine (30) in which, even if volute bodies on the orbiting side (1) and on the fixed side (4) are different in material from each other, the volute bodies can be brought to their respective strengths equal to each other, dimension can be miniaturized or reduced, and internal leakage is reduced so that an attempt can be made to improve performance. In the scroll fluid machine (30), a curve of either one of a orbiting outward curve and a orbiting inward curve of a volute body on the orbiting side (1) is formed by an algebraic spiral expressed by the following equation in the form of polar coordinates (here, r: radius vector, ϑ: angle of deviation, a: coefficient, k: exponent). This curve and any one of a fixed outward curve and a fixed inward curve of the volute body on the fixed side are arranged with a phase difference of about 180 degrees. Thicknesses of respective volute walls on the orbiting side and on the fixed side are adequately or suitably changed.

      γ = a·ϑ k
    • 一种涡旋流体机械(30),其中即使旋转侧(1)上和固定侧(4)上的蜗壳体彼此不同,蜗壳体也可以达到各自的强度, 其他尺寸可以小型化或减小,并且内部泄漏减少,从而可以尝试提高性能。 在涡旋流体机械(30)中,轨道侧(1)上的涡卷体的轨道向外曲线和轨道向内曲线中的任一个曲线由以下等式表示的代数螺旋形成,形式为 极坐标(这里,r:半径矢量,θ:偏差角,a:系数,k:指数)。 该曲线和固定侧的蜗壳体的固定向外曲线和固定向内曲线中的任一个布置有大约180度的相位差。 旋转侧和固定侧的蜗壳壁的厚度适当地或适当地改变。 gamma = a。 theta