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MINIMIZATION OF TILTING MOMENT OF CO-ROTATING SCROLL COMPRESSOR BY DESIGN OF BACK PRESSURE CHAMBER

机译:后压室设计最小化共旋转压缩机的倾斜力矩

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In a co-rotating scroll compressor, both scrolls rotate on their fixed axes contrary to the conventional orbiting type scroll machine. This implies fixed locations and directions of the gas pressure force and sealing force. Because the tilting moment is mainly caused by interplay between the resultant force of above forces and bearing reaction force, the variation during one cycle is relatively small. Under real operation, this moment is balanced by the restoring moment created by the reaction between the baseplate and thrust bearing or between the scroll tip and baseplate. If these reactions become too large, greater torque is required due to increased friction in addition to the wear of mating parts. And this may cause stability problem which results in limiting the operation range of the scroll compressor. Consequently, appropriate study and minimization of tilting moment is important in the design of scroll machines. In this study, taking into account of the small variation of tilting moment during one cycle, we minimize the moment and thrust bearing reaction force by a properly designed back pressure chamber. As a result, for both the driving and driven scrolls, the tilting moment and the reaction force of thrust bearing can be reduced.
机译:在共旋转涡旋式压缩机中,两个涡旋盘都旋转到与传统的轨道式滚动机相反的固定轴上。这意味着固定位置和气体压力和密封力的方向。因为倾斜时刻主要由上述力和轴承反作用力之间的相互作用引起的,所以一个循环期间的变化相对较小。在实际操作下,这一刻通过底板和推力轴承之间的反应或涡旋尖端和底板之间的反应而产生的恢复时刻平衡。如果这些反应变得太大,除了增加配合部件的磨损之外,由于增加的摩擦,需要更大的扭矩。这可能导致稳定性问题,这导致限制涡旋压缩机的操作范围。因此,在涡旋机的设计中,倾斜时刻的适当研究和最小化是重要的。在这项研究中,考虑到在一个循环期间倾斜时刻的小变化,我们通过适当设计的后压室最小化时机的瞬间和推力轴承反作用力。结果,对于驱动和从动涡旋盘,可以降低倾斜矩和止推轴承的反作用力。

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