Scroll compressor
11408421 · 2022-08-09
Assignee
Inventors
Cpc classification
F01C21/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2240/806
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2230/603
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C23/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2240/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/0253
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04C15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C27/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention discloses a scroll compressor. At least two shrink belts (23′, 23″, 26, 26′, 28, 28′) are provided around the outer periphery of said fixed scroll between the outer periphery of said fixed scroll (2) and the inner wall surface of the upper cap (1) of the scroll compressor. The at least two shrink belts are annular, and are in interference fit between the outer periphery of said fixed scroll and the inner wall surface of the upper cap. The at least two shrink belts include a main shrink belt (23′, 23″, 28) and an assistant shrink belt (26, 26′, 28′). The main shrink belt and the assistant shrink belt are arranged side by side in the axial direction, that is, in the vertical direction of the fixed scroll, and the main shrink belt and the assistant shrink belt are spaced apart from each other by a distance. In this way, it is allowed to add other special structure (e.g., an additional fluid passage) to the fixed scroll, reduce the deformation of the fixed scroll, and improve the performance and the reliability of the scroll compressor.
Claims
1. A scroll compressor, comprising an upper cap in which a fixed scroll is provided, wherein at least two shrink belts are provided around an outer periphery of said fixed scroll between the outer periphery of said fixed scroll and an inner wall surface of the upper cap, and the at least two shrink belts are annular, and are in interference fit between the outer periphery of said fixed scroll and the inner wall surface of the upper cap, wherein at least one notch is disposed on at least one of the shrink belts.
2. The scroll compressor according to claim 1, wherein, the at least two shrink belts comprise a main shrink belt and an assistant shrink belt, and the respective cross section of the main shrink belt and the assistant shrink belt is a circle or a part of a circle.
3. The scroll compressor according to claim 2, wherein, the main shrink belt and the assistant shrink belt are arranged side by side in an axial direction of said fixed scroll, and the main shrink belt and the assistant shrink belt are spaced apart from each other by a distance such that annular space is enclosed by the main shrink belt, the inner wall surface of the upper cap, the assistant shrink belt and the outer periphery of said fixed scroll together.
4. The scroll compressor according to claim 3, wherein, a radius of the cross section of the main shrink belt is larger than a radius of the cross section of the assistant shrink belt.
5. The scroll compressor according to claim 4, wherein, one of the fixed scroll and the inner wall surface of the upper cap is formed integrally with the shrink belts.
6. The scroll compressor according to claim 3, wherein, the at least one notch is disposed on the assistant shrink belt, thereby allowing the annular space to communicate with a space external to the assistant shrink belt.
7. The scroll compressor according to claim 6, wherein, one of the fixed scroll and the inner wall surface of the upper cap is formed integrally with the shrink belts.
8. The scroll compressor according to claim 3, wherein, the fixed scroll has a disc-shaped main body, a through hole at a center of the main body, a wrap extending downward from the lower surface of the main body, and a plurality of mounting portions located around the wrap.
9. The scroll compressor according to claim 8, wherein, the assistant shrink belt is located above or below the main shrink belt.
10. The scroll compressor according to claim 9, wherein, one of the fixed scroll and the inner wall surface of the upper cap is formed integrally with the shrink belts.
11. The scroll compressor according to claim 8, wherein, in the axial direction of said fixed scroll, a height at which a central plane of the main shrink belt is located is higher than a height at which a top surface of the wrap is located, and a height at which a central plane of the assistant shrink belt is located is lower than the height at which the top surface of the wrap is located.
12. The scroll compressor according to claim 8, wherein, the plurality of mounting portions are located below the outer periphery of said fixed scroll, and a fluid passage is provided in the outer periphery of said fixed scroll and at least one of the plurality of mounting portions.
13. The scroll compressor of claim 8, further comprising a middle housing and a base, wherein the middle housing is provided on the base, and the upper cap is provided on the middle housing, a fluid inlet is disposed on the middle housing, and an orbiting scroll cooperating with the fixed scroll is disposed inside the middle housing, a pressure chamber is enclosed by the fixed scroll and the upper cap, and a fluid outlet is disposed on the upper cap so that fluid enters the middle housing via the fluid inlet, then enters the pressure chamber via the through hole disposed at the center of the fixed scroll, and finally is discharged to the external of the scroll compressor via the fluid outlet disposed on the upper cap.
14. The scroll compressor according to claim 8, wherein, one of the fixed scroll and the inner wall surface of the upper cap is formed integrally with the shrink belts.
15. The scroll compressor according to claim 3, wherein, one of the fixed scroll and the inner wall surface of the upper cap is formed integrally with the shrink belts.
16. The scroll compressor according to claim 2, wherein, one of the fixed scroll and the inner wall surface of the upper cap is formed integrally with the shrink belts.
17. The scroll compressor according to claim 1, wherein, one of the fixed scroll and the inner wall surface of the upper cap is formed integrally with the shrink belts.
18. The scroll compressor according to claim 1, wherein, the shrink belts are separate members relative to the fixed scroll and the inner wall surface of the upper cap, and grooves are formed on one of the outer periphery of said fixed scroll and the inner wall surface of the upper cap, in which the shrink belts are embedded.
19. The scroll compressor according to claim 17, wherein, the shrink belts and the inner wall surface of the upper cap are formed integrally, and the shrink belts are formed by an inner wall surface of the upper cap that protrudes towards the fixed scroll.
20. The scroll compressor according to claim 1, wherein, the shrink belts are separate members relative to the fixed scroll and the inner wall surface of the upper cap, and the shrink belts are welded on one of the outer periphery of said fixed scroll and the inner wall surface of the upper cap.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to facilitate understanding of the present invention, the present invention will be described in more detail below based on exemplary embodiments and in conjunction with the accompanying drawings. The same or similar reference numerals are used in the accompanying drawings to denote the same or similar components. It should be understood that the accompanying drawings are merely schematic and that the sizes and scales of the components in the accompanying drawings may not necessarily be precise.
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DETAILED DESCRIPTION
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(22) The fluid may enter the middle housing 3 via the fluid inlet 31, then enter the pressure chamber 10 via the through hole 21 at the center of the fixed scroll 2 pushed by the orbiting scroll, and finally be discharged to the external of the scroll compressor via the fluid outlet 11 disposed on the upper cap 1.
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(25) Hereinafter, a scroll compressor according to embodiments of the present invention will be further described with reference to
First Embodiment
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(27) Specifically, due to the reasons such as addition of other additional structure (e.g., a fluid passage), in the vertical direction, the height at which the shrink belt (hereinafter referred to as main shrink belt) 23′ on the fixed scroll 2 of the scroll compressor according to the present embodiment is located is higher than the height at which the shrink belt 23 on the fixed scroll 2 of the scroll compressor shown in
(28) As shown in
(29) Preferably, as shown in
(30) In this way, the main shrink belt 23′ has an effect of maintaining the sealing between the space above the main shrink belt 23′ and the space below the main shrink belt 23′ in addition to the effect of suppressing the deformation of the fixed scroll 2. Accordingly, the assistant shrink belt 26 only functions as suppressing the deformation of the fixed scroll 2.
(31) In the present embodiment, the shrink belts 23′, 26 are separate members relative to the fixed scroll 2 and the inner wall surface of the upper cap 1.
(32) In this case, if the shrink belts 23′, 26 are made of metallic material, the shrink belts 23′, 26 may be hermetically combined together with one of the outer periphery of said fixed scroll 2 and the inner wall surface of the upper cap 1 by welding. If the shrink belts 23′, 26 are made of non-metallic material such as plastic, grooves may be formed on one of the outer periphery of said fixed scroll 2 and the inner wall surface of the upper cap 1, and the shrink belts 23′, 26 are embedded in the grooves so as to be hermetically combined together with the outer periphery of said fixed scroll 2 or the inner wall surface of the upper cap 1 on which the grooves are formed.
(33) Further, when the shrink belts 23′, 26 are separate members relative to the outer periphery of said fixed scroll 2 and the inner wall surface of the upper cap 1, the material forming the shrink belts 23′, 26 may be the same as or different from the material forming the fixed scroll 2 or the inner wall surface of the upper cap 1.
(34) As shown in
(35) In this embodiment, the assistant shrink belt 26 is located below the main shrink belt 23′. More specifically, the height at which the main shrink belt 23′ is located is higher than the height at which the top surface 241 of the wrap 24 is located, while the height at which the assistant shrink belt 26 is located is lower than the height at which the top surface of the wrap 24 is located.
(36) The technical solution of the present invention can suppress the deformation of the fixed scroll 2 effectively, and improve the performance and the reliability of the scroll compressor.
Second Embodiment
(37) The above describes a technical solution that can be adopted in a case where additional structure is added to the fixed scroll 2. However, the present invention is not limited to this.
(38) As an example of another embodiment, the deformation of the fixed scroll 2 may be caused for example upon the upper cap 1 is thermally assembled. In order to suppress such deformation, an assistant shrink belt may be added to the outer periphery of said fixed scroll 2 similar to the previously described embodiment, and the position of the assistant shrink belt may be determined depending on the position of the main shrink belt.
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(40) The embodiment shown in
(41) Similarly, annular space 27′ is enclosed by the main shrink belt 23″, the inner wall surface of the upper cap 1, the assistant shrink belt 26′, and the outer periphery of said fixed scroll 2 together. In addition, as shown in
Third Embodiment
(42) Alternatively, the inner wall surface of the upper cap 1 and the shrink belt are configured to form an integral member, that is, the shrink belt may be formed integrally with the inner wall surface of the upper cap 1.
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(44) The third embodiment shown in
(45) Specifically, as shown in
(46) It should be understood that the technical features of the first embodiment and the second embodiment may be applied to the third embodiment individually or in combination without significant collision or conflict. For example, at least one notch similar to the notches 261, 261′ described above may also be disposed on the assistant shrink belt 28′ (the notch is not shown in
(47) The technical object, technical solutions, and technical effects of the present invention are described in detail above with reference to specific embodiments. It should be understood that the above described embodiments are illustrative only, and not restrictive. Any modifications, equivalent substitutions, improvements and the like made by those skilled in the art within the spirit and principles of the present invention are intended to be included within the scope of the present invention.