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The effect of clearance control on the performance of an oil-free linear refrigeration compressor and a comparison between using a bleed flow and a DC current bias

机译:间隙控制对无油线性制冷压缩机性能的影响以及使用泄流和直流偏置电流的比较

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摘要

A moving magnet type oil-free linear compressor has been designed for applications such as electronics cooling. A control system using a solenoid operated valve was developed for DC offset and axial clearance control. Operation of the linear compressor with a fixed clearance of 0.8 mm was compared with a zero DC offset operation. The fixed clearance operation requires a higher power input. The mean piston position can be controlled by using a DC bias on the drive voltage or by using a bleed flow from the compressor body to the suction side of the compressor. Using a DC bias on the drive voltage induces a higher power loss than using a bleed flow when there is a small radial clearance between the piston and cylinder. This provides evidence that the piston control in a refrigeration system with capacity control should be for a zero DC offset using a bleed flow.
机译:动磁铁式无油线性压缩机已设计用于电子冷却等应用。开发了使用电磁阀的控制系统,用于直流偏移和轴向间隙控制。将固定间隙为0.8 mm的线性压缩机的运行与零直流偏移运行进行了比较。固定间隙操作需要更高的功率输入。可以通过在驱动电压上使用直流偏置或通过使用从压缩机主体到压缩机吸入侧的放气流来控制平均活塞位置。当活塞和气缸之间的径向间隙较小时,在驱动电压上使用DC偏置会比使用引流产生更高的功率损耗。这提供了证据,即在具有容量控制的制冷系统中,活塞控制应使用排放流实现零直流偏移。

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