Damping compressor
A compressor and shock-absorbing pad technology, applied in the field of compressors, can solve the problems of short service life, poor shock absorption effect, and poor shock absorption compressor effect, and achieve the effect of long service life
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Embodiment 1
[0042] The damping compressor provided in this embodiment includes a compressor body 1 , the compressor body 1 has a foot 11 , and the foot 11 is provided with an installation through hole for installing the compressor body 1 on the compressor installation position 6 .
[0043] The shock-absorbing compressor also includes a shock-absorbing pad structure, the shock-absorbing pad structure includes a silicone sleeve 2, a hard rubber sleeve 4, a steel sleeve 3 and a pressing block 5, a silicone sleeve 2, a hard rubber sleeve 4 and a steel sleeve 3 Both are structures with one end open and the other end closed, wherein the silicone sleeve 2 is inserted into the hard rubber sleeve 4 through the opening of the hard rubber sleeve 4, and the silicone sleeve 2 is connected to the hard rubber sleeve 4 by bonding. Together, the outer wall of the hard rubber sleeve 4 is provided with external threads, the inner wall of the above-mentioned steel sleeve 3 is provided with internal threads, a...
Embodiment 2
[0048] This embodiment is a more optimal implementation of Embodiment 1. In this embodiment, the number of annular grooves 21 on the inner wall of the above-mentioned silicone sleeve 2 is several, and several annular grooves 21 are evenly distributed along the axial direction of the inner hole. . The number of the above-mentioned annular protrusions 521 is also several, and several annular protrusions 521 correspond to several annular grooves 21 one by one.
[0049] When the inserting shaft 52 is inserted into the inner hole, an annular protrusion 521 is snapped into each annular groove 21 respectively. With this structure, the connection between the insertion shaft 52 and the silicone sleeve 2 can be further enhanced. In addition, since the weight of the compressor body 1 is evenly pressed on the feet 11, and the feet 11 are transferred to the insertion shaft 52 and the inner hole wall to the top, through the cooperation between the plurality of annular grooves 21 and the pl...
Embodiment 3
[0052] This embodiment is used as a more optimal implementation of Embodiment 2. In this embodiment, a spherical protrusion 22 is provided at the bottom of the inner hole, and a spherical groove is provided at the end of the insertion shaft 52 away from the pressure plate 51. When the insertion shaft When 52 is inserted into the inner hole, the above-mentioned spherical protrusion 22 is inserted into the above-mentioned spherical groove, and the groove wall of the spherical groove is in contact with the surface of the spherical protrusion 22 .
[0053] With this structure, the contact area between the end of the insert shaft 52 away from the pressure plate 51 and the wall of the inner hole can be increased, and the pressure applied on the wall of the inner hole can be reduced, thereby protecting the silicone sleeve 2 and prolonging its service life. And a larger contact area can have a better effect on shock absorption.
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Abstract
Description
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