Scroll compressor
11976655 ยท 2024-05-07
Assignee
Inventors
Cpc classification
F04C27/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C27/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/0284
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/0269
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04C18/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A scroll compressor includes fixed and orbiting scrolls. The fixed scroll includes a fixed scroll end plate and a spiral fixed wrap extending from the end plate. The orbiting scroll includes an orbiting scroll end plate and an orbiting wrap extending from the end plate and engaging with the fixed wrap to form compression chambers. The fixed wrap includes a first fixed wrap portion on a radially outer side and a second fixed wrap portion on a radially inner side. The first fixed wrap portion is periodically covered by the orbiting scroll end plate and the second fixed wrap portion is always covered by the orbiting scroll end plate while the scroll compressor is operating. A sealing member is provided on one of the first fixed wrap portion and a first covering portion of the orbiting scroll end plate corresponding to the first fixed wrap portion.
Claims
1. A scroll compressor comprising: a non-orbiting scroll comprising a non-orbiting scroll end plate and a spiral non-orbiting wrap extending from the non-orbiting scroll end plate; and an orbiting scroll comprising an orbiting scroll end plate and a spiral orbiting wrap extending from the orbiting scroll end plate and meshingly engaging with the non-orbiting wrap to form compression chambers, wherein the non-orbiting wrap comprises a first non-orbiting wrap portion at a radially outer side and a second non-orbiting wrap portion at a radially inner side, the first non-orbiting wrap portion is periodically covered by the orbiting scroll end plate during operation of the scroll compressor, the second non-orbiting wrap portion is always covered by the orbiting scroll end plate during operation of the scroll compressor, the orbiting scroll end plate comprises a first covering portion corresponding to the first non-orbiting wrap portion and a second covering portion corresponding to the second non-orbiting wrap portion, and a first sealing member is provided on a first end surface of the first non-orbiting wrap portion, wherein a first predetermined gap is formed between the first sealing member and the first covering portion, and a second sealing member is provided on a second end surface of the second non-orbiting wrap portion, wherein the first sealing member has a height less than a height of the second sealing member, and wherein a first groove is provided on the first end surface of the first non-orbiting wrap portion and configured to accommodate the first sealing member, and a second groove is provided on the second end surface of the second non-orbiting wrap portion and configured to accommodate the second sealing member.
2. The scroll compressor according to claim 1, wherein the second sealing member is continuous with the first sealing member or is separate from the first sealing member; and/or a difference between the height of the first sealing member and the height of the second sealing member is up to 100 um; and/or the height of at least one of the first sealing member and the second sealing member is constant or varied.
3. The scroll compressor according to claim 1, wherein the first groove is continuous with the second groove or is separate from the second groove; and/or a depth of at least one of the first groove and the second groove is constant or varied.
4. The scroll compressor according to claim 1, wherein an oil seal is achieved via the first predetermined gap between the first sealing member and the first covering portion.
5. The scroll compressor according to claim 1, wherein the first predetermined gap is up to 30 um.
6. A scroll compressor comprising: a non-orbiting scroll comprising a non-orbiting scroll end plate and a spiral non-orbiting wrap extending from the non-orbiting scroll end plate; and an orbiting scroll comprising an orbiting scroll end plate and a spiral orbiting wrap extending from the orbiting scroll end plate and meshingly engaging with the non-orbiting wrap to form compression chambers, wherein the non-orbiting wrap comprises a first non-orbiting wrap portion at a radially outer side and a second non-orbiting wrap portion at a radially inner side, the first non-orbiting wrap portion is periodically covered by the orbiting scroll end plate during operation of the scroll compressor, the second non-orbiting wrap portion is always covered by the orbiting scroll end plate during operation of the scroll compressor, the orbiting scroll end plate comprises a first covering portion corresponding to the first non-orbiting wrap portion and a second covering portion corresponding to the second non-orbiting wrap portion, and a first sealing member is provided on a first end surface of the first non-orbiting wrap portion, wherein the first covering portion has a surface facing the non-orbiting scroll that is recessed relative to the second covering portion so that the first covering portion has a thickness less than a thickness of the second covering portion to form a first predetermined gap having a constant thickness between the first sealing member and the first covering portion via which an oil seal is formed during operation of the scroll compressor.
7. The scroll compressor according to claim 6, wherein the surface of the first covering portion is concaved relative to the second covering portion up to 100 ?m.
8. The scroll compressor according to claim 6, wherein the oil seal is achieved via the first predetermined gap.
9. The scroll compressor according to claim 6, wherein the first predetermined gap is up to 30 ?m.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The features and advantages of one or more embodiments of the present disclosure will become more readily understood from the following description made with reference to the accompanying drawings in which:
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DETAILED DESCRIPTION
(15) The following description of various embodiments of the present disclosure is merely exemplary and is by no means intended to limit the present disclosure, its application or usage. Throughout the drawings, the like reference signs are used to indicate the like elements and thus the description of configurations of the like elements will not be repeated.
(16) The orientation words referred to herein, such as up, down, left, and right, refer to the orientations observed from the drawings, unless otherwise explicitly stated herein.
(17) The overall configuration and operating principle of the scroll compressor will be described with reference to
(18) With reference to
(19) Referring to
(20) Since the non-orbiting wrap 156 extends as close as possible to the mounting portion 151, during operation of the compressor 100 according to the present disclosure, when the orbiting scroll 160 (particularly, the end plate 164) moves away from the radially outmost portion of the non-orbiting wrap 156 of the non-orbiting scroll 150, the radially outmost portion may not be covered by the end plate 164 of the orbiting scroll 160, i.e., be exposed to the outside; and when the orbiting scroll 160 (in particular, the end plate 164) moves towards the radially outmost portion of the non-orbiting wrap 156, the radially outmost portion is gradually covered by the end plate 164 of the orbiting scroll 160, till the non-orbiting wrap 156 is completely covered by the end plate 164 of the orbiting scroll 160.
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(22) For convenience of description, the radially outermost portion periodically exposed to the outside of the non-orbiting wrap 156 is referred to as a first non-orbiting wrap portion 156a; and the portion, always covered by the orbiting scroll end plate 164, of the non-orbiting wrap 156 is referred to as a second non-orbiting wrap portion 156b; and a portion, corresponding to the first non-orbiting wrap portion 156a, of the end plate 164 of the orbiting scroll 160 is referred to as a first covering portion 164a. Closed compression chambers are formed when the first non-orbiting wrap portion 156a is covered by the first covering portion 164a. With the above structure in the compressor 100 according to the present disclosure, a radial space of the non-orbiting wrap 156 (compression mechanism) is fully utilized, thereby increasing the capacity of the compressor 100.
(23) The unfolding angle A (radian) of the radially outermost end of the second non-orbiting wrap portion 156b of the non-orbiting scroll 150 can be obtained by the following formula. A=((D/2?Ror).sup.2?Rg.sup.2).sup.0.5/Rg, wherein D is an outer diameter of the end plate 164 of the orbiting scroll 160, and Ror is the radius of gyration of the scroll compressor, and Rg is the radius of the base circle of the wrap. The maximum radius of the radially outermost end of the second non-orbiting wrap portion 156b is D/2?Ror, and the corresponding maximum radius in an unfolding state is ((D/2?Ror).sup.2?Rg.sup.2).sup.0.5.
(24) Generally, in order to prevent gas in the compression chambers from leaking to the outside of the compression mechanism and/or to prevent the gas in one compression chamber from leaking into other compression chambers, sealing devices may be provided between the orbiting wrap and the non-orbiting scroll end plate and between the non-orbiting wrap and the orbiting scroll end plate. In another embodiment of the present disclosure, a sealing device may be arranged at least between the first non-orbiting wrap portion 156a of the non-orbiting scroll 150 and the first covering portion 164a.
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(26) As shown in
(27) In another embodiment of the sealing device, a sealing strip may be provided on the first non-orbiting wrap portion 156a to achieve a seal between the first non-orbiting wrap portion 156a and the first covering portion 164a. During operation of the compressor 100, since the first non-orbiting wrap portion 156a is periodically covered by the orbiting scroll end plate 164 and exposed to the outside, that is, the first non-orbiting wrap portion 156a periodically slides in and out with respect to the orbiting scroll end plate 164, the sealing member (e.g., the sealing strip 120) arranged between the first non-orbiting wrap portion 156a and the orbiting scroll end plate 164 may itself be rapidly worn, or result in rapid wear of the orbiting scroll end plate 164.
(28) In order to reduce or eliminate wear between the first non-orbiting wrap portion 156a and the orbiting scroll end plate 164, a sealing strip (the first sealing member or the first sealing strip) 121 in the first non-orbiting wrap portion 156a may have a height less than the height of a sealing strip (the second sealing member or the second sealing strip) 122 in the second non-orbiting portion 156b, as shown in
(29) In the example shown in
(30) In another embodiment, the first covering portion 164a of the orbiting scroll end plate 164 may have a thickness reduced region. Specifically, the thickness reduced region may have a thickness less than the thickness of other parts of the orbiting scroll end plate 164, as shown in
(31) The sealing device according to the present disclosure may be configured such that a gap G is formed between the sealing device and the first non-orbiting wrap portion 156a or between the sealing device and the first covering portion 164a. The gap G may be in a range of 0 ?m to 30 ?m so as to achieve an oil seal between the sealing device and the first non-orbiting wrap portion 156a or between the sealing device and the first covering portion 164a and to avoid the wear between the sealing device and the first non-orbiting wrap portion 156a or between the sealing device and the first covering portion 164a.
(32) Furthermore, it can be appreciated that the protrusion or the sealing member may have an appropriate profile, shape or material so as to be able to mitigate or avoid the wear between the sealing member and the first non-orbiting wrap portion or between the sealing member and the first covering portion and/or facilitate the oil seal between them. In addition, the position, size and the like of the protrusion or sealing member may also be changed depending on the specific application requirements.
(33) The above description and the examples shown in the drawings are for illustrative purposes only and are not intended to limit the present application. It should be understood that the individual features in one embodiment and the individual features in another embodiment described above may be combined with each other or interchanged. Additionally, a certain feature (or features) described in one embodiment may be omitted.
(34) The present invention is particularly applicable to compressors having a non-orbiting scroll mounted in a fixed manner, for example, a compressor in which the non-orbiting scroll is fixedly connected to the main bearing housing. Structures for providing axial compliance (for example, structures including bolts and sleeves) can be dispensed in such a compressor, thus expanding the radial utilizable space of the scroll component, and thereby achieving a greater compressor capacity for a compressor having a housing with a given space (especially a given radial space). However, it should be understood that the present invention may be also applicable to other types of compressors, for example, compressors having axial compliance, compressors having a back pressure structure, compressors having no back pressure structures, compressors without a sealing washer provided in the wraps, etc.
(35) While the various embodiments of the present disclosure have been described in detail herein, it is to be appreciated that the present application is not limited to the specific embodiments described and illustrated herein in detail, and other variations and modifications can be made by the person skilled in the art without departing from the spirit and scope of the present application. All the variations and modifications fall within the scope of the present disclosure. Moreover, all of the components described herein may be replaced by other technically equivalent components.