Scroll compressor
11371504 ยท 2022-06-28
Assignee
Inventors
- Lin Ma (Tianjin, CN)
- Wenhu Yao (Tianjin, CN)
- Kun Qian (Tianjin, CN)
- Bin Wang (TianJin, CN)
- Guillaume Rochet (Tianjin, CN)
Cpc classification
F04C29/0007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2230/231
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C23/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04C18/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A scroll compressor is disclosed. The scroll compressor includes an shell, a fixed scroll, a housing and an orbiting scroll. The fixed scroll and the housing are disposed in the shell and fixed relative to each other. An outer peripheral surface of the housing and an inner peripheral surface of the shell are fitted to each other. The orbiting scroll is disposed between the fixed scroll and the housing. The fixed scroll is formed therein with a first injection passage, the housing is formed therein with a second injection passage, a port of the first injection passage and a port of the second injection passage face each other, so that the first injection passage and the second injection passage communicate with each other. The scroll compressor further includes an injection tube assembly, the injection tube assembly is disposed in the shell. The injection tube assembly includes: a tube, and a first tube joint and a second tube joint respectively disposed at two ends of the tube, the first tube joint passes through the shell to communicate with the outside, and the second tube joint is inserted and fitted in the second injection passage.
Claims
1. A scroll compressor, comprising: a shell; a fixed scroll; a housing, wherein the fixed scroll and the housing are disposed in the shell and are fixed relative to each other, and an outer peripheral surface of the housing and an inner peripheral surface of the shell are fitted to each other; and an orbiting scroll disposed between the fixed scroll and the housing, wherein, the fixed scroll is formed therein with a first injection passage, the housing is formed therein with a second injection passage, and a port of the first injection passage and a port of the second injection passage face each other, so that the first injection passage and the second injection passage communicate with each other; and the scroll compressor further comprises an injection tube assembly, the injection tube assembly is disposed in the shell, the injection tube assembly comprises: a tube, and a first tube joint and a second tube joint respectively disposed at two ends of the tube, the first tube joint passes through the shell to communicate with an outside, and the second tube joint is inserted and fitted in the second injection passage.
2. The scroll compressor of claim 1, wherein the second injection passage is a through hole running through the housing.
3. The scroll compressor of claim 2, wherein the second tube joint is inserted in only a portion of the through hole.
4. The scroll compressor of claim 3, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
5. The scroll compressor of claim 2, wherein the port of the first injection passage and the port of the second injection passage are hermetically joined together.
6. The scroll compressor of claim 5, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
7. The scroll compressor of claim 2, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
8. The scroll compressor of claim 1, wherein the outer peripheral surface of the housing and the inner peripheral surface of the shell are gas-tightly fitted to each other, and the second tube joint and the second injection passage are gas-tightly fitted to each other.
9. The scroll compressor of claim 8, wherein a first end of the second tube joint is connected to the tube, and a second end of the second tube joint is inserted in the second injection passage, wherein, a groove is formed on an outer peripheral wall of the second end of the second tube joint, and an O-ring seal is disposed in the groove.
10. The scroll compressor of claim 9, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
11. The scroll compressor of claim 8, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
12. The scroll compressor of claim 1, wherein the tube, the first tube joint, and the second tube joint are all made of metal, and the first tube joint and the second tube joint are configured to be welded to two ends of the tube, respectively.
13. The scroll compressor of claim 12, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
14. The scroll compressor of claim 1, wherein a first end of the first tube joint passes through a through hole formed in the shell, and a second end of the first tube joint is connected to the tube, wherein, the second end of the first tube joint comprises a flange and a main body, and the main body is configured to be fastened to the flange by a screw, a first end face of the flange faces toward the main body, and a second end face of the flange is configured to be welded to the tube.
15. The scroll compressor of claim 14, wherein a gasket is disposed between the first end face of the flange and a fitting surface of the main body.
16. The scroll compressor of claim 15, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
17. The scroll compressor of claim 14, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
18. The scroll compressor of claim 1, wherein the scroll compressor further comprises an electric motor, the electric motor is disposed in the shell and has a casing, and the tube extends along an axial direction of the fixed scroll between the casing and the shell.
19. The scroll compressor of claim 1, wherein the port of the first injection passage and the port of the second injection passage are hermetically joined together.
20. The scroll compressor of claim 1, wherein the second tube joint is gas-tightly fitted in the second injection passage.
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 based on exemplary embodiments in conjunction with the drawings. The same or similar reference numerals are used in the drawings to indicate the same or similar components. It should be understood that the drawings are only schematic, and the dimensions and proportions of components in the drawings are not necessarily accurate.
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION
(7)
(8) A scroll compressor according to an embodiment of the present invention includes a shell 1, and a fixed scroll 2, an orbiting scroll 3, an injection tube assembly 4, an electric motor 5, and a housing 6, which are disposed in the shell 1. The fixed scroll 2 and the housing 6 are disposed in the shell 1 and fixed relative to each other. An outer peripheral surface of the housing 6 and an inner peripheral surface of the shell 1 are fitted to each other. The orbiting scroll 3 is disposed between the fixed scroll 2 and the housing 6 and is indirectly driven by the electric motor 5.
(9) The fixed scroll 2 is formed therein with a first injection passage 201, and the housing 6 is formed therein with a second injection passage 601. A lower port of the first injection passage 201 and an upper port of the second injection passage 601 face each other, so that the first injection passage 201 and the second injection passage 601 communicate with each other.
(10) The injection tube assembly 4 includes: a tube 403, and a first tube joint 401 and a second tube joint 402 respectively disposed at two ends of the tube. The first tube joint 401 passes through the shell 1 to communicate with the outside, and the second tube joint 402 is inserted in the second injection passage 601. In particular, the second tube joint 402 is extended in only a portion of the second injection passage 601, rather than running through the entire second injection passage 601. In other words, the remaining portion of the second injection passage 601 and the entire first injection passage 201 directly form a flow passage for injected liquid.
(11)
(12) As shown in
(13) As shown in
(14) In addition, a gasket 4013 may also be disposed between the lower end face of the flange 4012 and a fitting surface 4011 of the main body.
(15)
(16) As shown in
(17) The upper port 6011 of the through hole 601 and the lower port of the first injection passage 201 face each other. Optionally, a sealing groove and/or gasket (not shown in the figures) are/is provided at the junction of the upper port 6011 of the through hole 601 and the lower port of the first injection passage 201, to prevent the refrigerant from leaking at the junction of the injection passage.
(18) Although the technical objects, technical solutions, and technical effects of the present invention have been described in detail above with reference to the specific embodiments, it should be understood that the above embodiments are only exemplary, but are not restrictive. All of the modifications, equivalent substitutions and improvements made by those skilled in the art without departing from the principles and spirit of the present invention should fall within the protection scope of the present invention.