Rotary compressor
A technology of rotary compressor and compression mechanism, applied in rotary piston/swing piston pump components, mechanical equipment, machines/engines, etc., can solve the problems of eccentric crankshaft and sliding vane wear, etc., to prevent reliability reduction , good lubrication effect, simple and reasonable structure
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Embodiment 1
[0025] As Embodiment 1 of the present utility model, a technical disclosure is made based on a rotary compressor, which is a typical representative model of a rotary compressor.
[0026] see figure 1 , represents the motor part arranged in the hermetic case 2 fixed in the rotary compressor RC and the compression mechanism P arranged under it. figure 2 yes figure 1 The X-X cross-section of , represents the partition plate 50 and the L layer viewed from the bottom of the casing 2 . Figure 3-Figure 4 is a detailed view of the partition plate 50 . Figure 5 It is a detailed diagram showing the compression mechanism P, the partition plate 50 , the relationship between the L layer and the R layer, and the oil supply circuit 18 to the slide plate 14 .
[0027] figure 1 The compression mechanism P includes a cylinder 11, a piston 13 that rotates eccentrically in the compression chamber 12 of the cylinder 11, a sliding plate 14 that reciprocates synchronously with the piston 13, ...
Embodiment 2
[0053] In Example 1, refrigerant R290 and oil soluble in the refrigerant were used, but in Example 2, refrigerant R290, oil hardly soluble in the refrigerant, and insoluble oil that was hardly dissolved were used. In the description below, these are collectively referred to as non-dissolving oils. In addition, the specific gravity of these oils is close to that of Example 1.
[0054] R290 and non-dissolved oil form the L layer, and the condensed liquid refrigerant forms the R layer, and they form the separation layer. Therefore, the partition plate 50 having a specific gravity of 0.75 floats between these separation layers.
[0055] The oil that has finished lubricating the eccentric crankshaft 20, the main bearing and the auxiliary bearing, and the compression chamber 12 falls from the main bearing 30 to the upper end of the R layer, and due to the difference in specific gravity, the oil passes through the R layer from the upper end of the partition plate 50. The oil passag...
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