Compressor cover and compressor
By installing a wire buckle and an L-shaped wire hanging plate on the compressor cover, the problem of compressor wire aging due to high temperature is solved, the life of the compressor wire is extended, and the reliability and stability of the compressor are improved.
Patent Information
- Application Number
- CN202422760996.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The flat outlet line design of the existing compressor cover causes the compressor line to come into contact with the compressor cylinder for a long time, which is prone to aging and breaking due to high temperatures, affecting the overall performance and life of the compressor.
A compressor cover is designed. By setting a wire buckle on the mounting seat, the bottom height is higher than the outlet. The compressor line is hung through the wire buckle to avoid direct contact with the cover body. It is combined with the L-shaped wire hanging plate and reinforcement ribs to optimize wiring and enhance structural strength and convenience.
It extends the service life of the compressor line, reduces the failure rate, improves the reliability and stability of the compressor system, and simplifies wiring and maintenance operations.
Smart Images

Figure CN223257024U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of refrigeration equipment production, in particular to a compressor cover and a compressor. Background Art
[0002] Compressors are widely used in refrigeration, air conditioning, industrial manufacturing and other fields, and are the core components of these equipment. With the advancement of science and technology and changes in market demand, the performance requirements for compressors are also constantly increasing. As an important protective structure for the compressor, the improvement of the design and manufacturing technology of the compressor cover is of great significance to improving the performance of the compressor, reducing noise and extending the service life. The compressor cover is provided with an outlet for the power cord inside the compressor to lead out. An existing compressor cover adopts a flat outlet design. During the long-term contact between the compressor wire and the compressor cylinder body, the high temperature generated by the operation of the compressor can easily cause quality abnormalities in the compressor wire, such as aging, breakage, etc., thereby affecting the overall performance and life of the air conditioner.
[0003] Therefore, it is necessary to improve the existing compressor cover to overcome the defects of the prior art. Utility Model Content
[0004] In order to overcome the problems existing in the related art, one of the purposes of the present invention is to provide a compressor cover, which can hang the wire through the wire buckle, thereby isolating the compressor cover from the compressor wire, avoiding the high temperature of the compressor affecting the service life of the compressor wire, thereby extending the overall life of the compressor.
[0005] A compressor cover comprises a cover body, a mounting seat is provided on one side of the cover body, a wire outlet is provided on the cover body, a wire buckle is provided on the mounting seat, and in the vertical direction, the bottom of the wire buckle is at a height higher than the bottom of the wire outlet.
[0006] The cover is designed to cover and protect the top of the compressor. It is usually made of heat-resistant plastic or metal materials to withstand the high temperature and pressure generated when the compressor is running. A mounting seat is provided on one side of the cover. The mounting seat is used to fix the compressor cover to the compressor body and is connected to the compressor body by bolts or clips. A wire outlet is provided on the cover, which is used to guide the compressor line from the inside of the compressor to the outside. A wire buckle is provided on the mounting seat. The wire buckle is designed to hang the compressor line. The height of its bottom is higher than the height of the bottom of the wire outlet. This design ensures that the compressor line is hung through the wire buckle after it is led out of the wire outlet to avoid direct contact with the cover. It reduces the aging and damage of the compressor line due to high temperature, thereby significantly extending the service life of the compressor line, reducing the failure rate of the compressor, and improving the reliability of the entire compressor system.
[0007] In a preferred technical solution of the present invention, the wire buckle includes a connecting arm and a wire hanging plate, one end of the connecting arm is fixedly connected to the mounting seat, and the wire hanging plate is arranged at an end of the connecting arm away from the mounting seat;
[0008] The cross section of the hanging board is L-shaped.
[0009] The design of the connecting arm and the hanging plate provides sufficient routing space for the compressor cables, which is beneficial to the wiring of the compressor, making the hanging and removal of the compressor cables easier and faster, and improving the operational convenience of assembly and maintenance.
[0010] In a preferred technical solution of the present invention, the hanging plate has a first end and a second end that are arranged opposite to each other, the first end of the hanging plate is connected to the connecting arm, and the second end of the hanging plate is provided with a folded edge;
[0011] The plane where the folded edge is located and the plane where the second end of the hanging plate is located form an angle A, wherein 45°<A<150°;
[0012] A wire hanging position is formed between the folded edge, the wire hanging plate and the connecting arm.
[0013] The angle A between the folded edge and the plane of the second end of the cable hanging plate is set between 45° and 150°. This angle range provides a reasonable inclination, making the compressor cable smoother during hanging and reducing resistance during the hanging process. The folded edge design increases the contact area of the cable hanging plate, providing better support, making the compressor cable more stable in the hanging position and reducing movement caused by vibration or compressor operation.
[0014] In a preferred technical solution of the present invention, a first reinforcing rib is provided on the wire hanging plate.
[0015] The presence of the first reinforcement rib significantly enhances the structural strength of the wire hanging plate, enabling it to withstand greater mechanical stress, particularly the tension and compression forces that may occur during wire hanging and daily operation. The presence of the reinforcement rib makes the wire hanging plate more durable, extending its service life and reducing damage and replacement frequency due to material fatigue.
[0016] In a preferred technical solution of the present invention, the cover body and the mounting seat are integrally formed, a mounting hole is provided in the mounting seat, and the axis of the mounting hole coincides with the axis of the mounting seat.
[0017] In a preferred technical solution of the present invention, a plurality of second reinforcing ribs are provided between the mounting seat and the cover body, and the plurality of second reinforcing ribs are arranged on a side wall of the mounting seat along the circumference of the mounting seat.
[0018] The one-piece design of the cover and the mounting base reduces potential weaknesses in the connection part and improves the strength and stability of the overall structure. It also reduces the steps of separately manufacturing and assembling the cover and the mounting base, simplifies the production process, and improves manufacturing efficiency.
[0019] The second reinforcing ribs are arranged along the circumference of the mounting seat, which enhances the side wall strength of the mounting seat, making it more resistant to external impact and pressure, and preventing the compressor cover from being damaged when the nut is tightened.
[0020] In a preferred technical solution of the present invention, a bottom plate is further included, and the cover body and the mounting seat are both arranged on the bottom plate, and the cover body and the mounting seat are integrally formed.
[0021] In a preferred technical solution of the present invention, a sealing protrusion is provided on the bottom plate, and the sealing protrusion is provided at the wire outlet.
[0022] In a preferred technical solution of the present invention, a plurality of wiring grooves are provided on the sealing protrusion.
[0023] In this embodiment, the cover and mounting base are integrally formed and attached to the baseplate, enhancing overall structural stability and rigidity, reducing deformation due to vibration or external forces, simplifying assembly, and improving production efficiency. A sealing protrusion on the baseplate, located at the cable outlet, provides a better seal, preventing dust, moisture, and other contaminants from entering the compressor and protecting internal components.
[0024] The design of the wiring trough allows the compressor wire to be effectively adapted to the sealing protrusion, which can increase the sealing between the compressor wire and the wiring trough, thereby improving the protection capability of the sealing protrusion, while reducing damage to the compressor wire and reducing the risk of short circuit and fire.
[0025] A second object of the present invention is to provide a compressor comprising a housing, on which the compressor cover as described above is provided.
[0026] The compressor optimizes cable management through the above-mentioned compressor cover, thereby reducing the risk of electrical failure and environmental damage during use, making the compressor more stable to use. The stability and reliability of the compressor improve the user experience and reduce user concerns.
[0027] The beneficial effects of the utility model are:
[0028] The utility model provides a compressor cover, including a cover body, a mounting seat provided on one side of the cover body, a wire outlet provided on the cover body, and a wire buckle provided on the mounting seat. In the vertical direction, the bottom of the wire buckle is located at a height higher than the bottom of the wire outlet. In actual use, the cover body is used to cover and protect the top of the compressor to withstand the high temperature and pressure generated when the compressor is running. The mounting seat is used to fix the compressor cover to the compressor body and is connected to the compressor body by bolts or snaps. The wire outlet is used to guide the compressor wire from the inside of the compressor to the outside, and the wire buckle is used to hang the compressor wire. The bottom of the wire buckle is located at a height higher than the bottom of the wire outlet. This design ensures that the compressor wire is hung through the wire buckle after being led out of the wire outlet to avoid direct contact with the cover body. Physical isolation is achieved between the compressor cover and the compressor wire, preventing the high temperature generated during the operation of the compressor from directly affecting the compressor wire, thereby protecting the compressor wire and extending its service life.
[0029] The present application also provides a compressor including the above-mentioned compressor cover, which optimizes the wiring method through the above-mentioned compressor cover, thereby preventing the compressor line from being affected by its own high temperature, helping to increase the service life of the compressor line, and thus increasing the overall service life of the compressor. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 is a first perspective view of a compressor cover provided in an embodiment of the present utility model;
[0031] Figure 2 is a first perspective view of a compressor cover provided in an embodiment of the present utility model;
[0032] Figure 3 is a side view of a compressor cover provided in an embodiment of the present utility model;
[0033] Figure 4 is a top view of a compressor cover provided in an embodiment of the present utility model;
[0034] Figure 5 This is a schematic diagram of a wiring trough provided on a sealing protrusion in an embodiment of the present utility model.
[0035] Reference numerals:
[0036] 1. Bottom plate; 2. Cover; 21. Wire outlet; 22. Sealing protrusion; 221. Wire trough; 3. Mounting seat; 31. Mounting hole; 32. Second reinforcing rib; 4. Wire buckle; 41. First reinforcing rib; 42. Connecting arm; 43. Wire hanging plate; 44. Folded edge. DETAILED DESCRIPTION
[0037] The following describes preferred embodiments of the present invention in more detail with reference to the accompanying drawings. Although preferred embodiments of the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to make the present invention more thorough and complete, and to fully convey the scope of the present invention to those skilled in the art.
[0038] Compressors are widely used in refrigeration, air conditioning, industrial manufacturing and other fields, and are the core components of these equipment. With the advancement of science and technology and changes in market demand, the performance requirements for compressors are also constantly increasing. As an important protective structure for the compressor, the improvement of the design and manufacturing technology of the compressor cover is of great significance to improving the performance of the compressor, reducing noise and extending the service life. The compressor cover is provided with an outlet for the power cord inside the compressor to lead out. An existing compressor cover adopts a flat outlet design. During the long-term contact between the compressor wire and the compressor cylinder body, the high temperature generated by the operation of the compressor can easily cause quality abnormalities in the compressor wire, such as aging, breakage, etc., thereby affecting the overall performance and life of the air conditioner.
[0039] Based on this, the present application provides a compressor cover.
[0040] Example 1
[0041] like Figure 1-Figure 5 As shown, a compressor cover provided in this embodiment includes a cover body 2, a mounting seat 3 is provided on one side of the cover body 2, a wire outlet 21 is provided on the cover body 2, and a wire buckle 4 is provided on the mounting seat 3. In the vertical direction, the height of the bottom of the wire buckle 4 is higher than the height of the bottom of the wire outlet 21.
[0042] The cover body 2 is designed to cover and protect the top of the compressor. It is usually made of heat-resistant plastic or metal material to withstand the high temperature and pressure generated when the compressor is running. A mounting seat 3 is provided on one side of the cover body 2. The mounting seat 3 is used to fix the compressor cover on the compressor body and is connected to the compressor body by bolts or snaps. A wire outlet 21 is provided on the cover body 2. The wire outlet 21 is used to guide the compressor line from the inside of the compressor to the outside. A wire buckle 4 is provided on the mounting seat 3. The wire buckle 4 is designed to hang the compressor line. The height of the bottom of the wire buckle 4 is higher than the height of the bottom of the wire outlet 21. This design ensures that the compressor line is hung through the wire buckle 4 after it is led out of the wire outlet 21 to avoid direct contact with the cover body 2. The aging and damage of the compressor line caused by high temperature are reduced, thereby significantly extending the service life of the compressor line, reducing the failure rate of the compressor, and improving the reliability of the entire compressor system.
[0043] The compressor is used as follows: When the compressor is running, the compressor cable is drawn out of the cable outlet 21 and hooked onto the cable guide 4. Because the bottom of the cable guide 4 is higher than the bottom of the cable outlet 21, this design prevents the compressor cable from coming into direct contact with the cover 2, thus preventing aging and damage caused by high temperatures. This improvement not only significantly extends the service life of the compressor cable, but also reduces the compressor's failure rate, improving the reliability and stability of the entire compressor system.
[0044] Example 2
[0045] This embodiment is improved on the basis of embodiment 1.
[0046] like Figure 1-Figure 5 As shown, in this embodiment, the wire buckle 4 includes a connecting arm 42 and a wire hanging plate 43, one end of the connecting arm 42 is fixedly connected to the mounting seat 3, and the wire hanging plate 43 is arranged at an end of the connecting arm 42 away from the mounting seat 3;
[0047] The cross section of the wire hanging plate 43 is L-shaped.
[0048] The design of the connecting arm 42 and the wire hanging plate 43 provides sufficient routing space for the compressor wires, which is beneficial to the wiring of the compressor, makes the hanging and removal of the compressor wires easier and faster, and improves the operational convenience of assembly and maintenance.
[0049] During use, when wiring the compressor, the compressor cable is first drawn out of the cable outlet 21 and then hung on the cable hanging plate 43. The L-shaped cable hanging plate 43 provides a clear hanging location for the compressor cable, making the cable hanging process simple and quick. Furthermore, when the compressor cable needs to be removed for maintenance or replacement, the L-shaped cable hanging plate 43 also facilitates quick removal, greatly improving the ease of assembly and maintenance.
[0050] In addition, the combined design of the connecting arm 425 and the wire hanging plate 43 also provides sufficient routing space for the compressor wires, so that the direction and position of the wires can be adjusted more flexibly during the wiring process, further optimizing the wiring effect of the compressor.
[0051] Example 3
[0052] This embodiment is improved on the basis of embodiment 2.
[0053] like Figure 1-Figure 5 As shown, in this embodiment, the hanging plate 43 has a first end and a second end that are oppositely arranged, the first end of the hanging plate 43 is connected to the connecting arm 42, and the second end of the hanging plate 43 is provided with a folded edge 44;
[0054] The plane where the folded edge 44 is located and the plane where the second end of the hanging plate 43 is located form an angle A, wherein 45°<A<150°;
[0055] A wire hanging position is formed between the folded edge 44 , the wire hanging plate 43 and the connecting arm 42 .
[0056] The angle A between the folded edge 44 and the plane on which the second end of the wire hanging plate 43 lies is set between 45° and 150°. This angle range provides a reasonable inclination, making the compressor wire hanging smoother and reducing resistance during the hanging process. The design of the folded edge 44 increases the contact area of the wire hanging plate 43, providing better support, making the compressor wire more stable in the hanging position, and reducing movement caused by vibration or compressor operation. In this embodiment, the design of the folded edge 44, combined with the reasonable angle A, significantly simplifies the compressor wire mounting process, reduces operational difficulty, and improves work efficiency. Preferably, during the design phase, the optimal range of angle A is determined through computer simulation or actual testing. Taking into account the diameter, material, mounting method, and stress conditions of the compressor wire during operation, the angle A value that maximizes mounting efficiency and stability is selected. For example, the angle A can be 115°. During the production process, precise processing and testing methods are used to ensure that the angle A of each wire hanging plate 43 meets the design requirements, ensuring product consistency and reliability.
[0057] More preferably, in this embodiment, a first reinforcing rib 41 is provided on the wire hanging plate 43 .
[0058] In actual applications, the reinforcing ribs can be arranged along the length, width, or diagonally of the wire hanging plate 43, with the optimal arrangement selected based on actual needs. The cross-sectional shape of the reinforcing ribs can be rectangular, circular, triangular, etc., and their size and number are also determined based on the actual stress conditions of the wire hanging plate 43 and design requirements.
[0059] The provision of first reinforcing ribs 41 significantly enhances the structural strength of the wire hanging plate 43, enabling it to withstand greater mechanical stress, particularly the tensile and compressive forces that may be generated during wire hanging and daily operation. The presence of the reinforcing ribs makes the wire hanging plate 43 more durable, extending its service life and reducing damage and replacement frequency due to material fatigue.
[0060] Example 4
[0061] This embodiment is improved on the basis of embodiment 1.
[0062] like Figure 1-Figure 5 As shown, in this embodiment, the cover body 2 and the mounting seat 3 are integrally formed, a mounting hole 31 is provided in the mounting seat 3 , and the axis of the mounting hole 31 coincides with the axis of the mounting seat 3 .
[0063] More preferably, in this embodiment, a plurality of second reinforcing ribs 32 are provided between the mounting seat 3 and the cover body 2 , and the plurality of second reinforcing ribs 32 are arranged on a side wall of the mounting seat 3 along the circumference of the mounting seat 3 .
[0064] The one-piece design of the cover body 2 and the mounting base 3 reduces potential weaknesses in the connection part, such as stress concentration, looseness or corrosion at the connection, and significantly improves the strength and stability of the overall structure. In addition, the integrated design also simplifies the production process, eliminating the steps of separately manufacturing and assembling the cover body 2 and the mounting base 3, thereby reducing production costs and improving manufacturing efficiency. A mounting hole 31 is provided in the mounting base 3, and the axis of the mounting hole 31 completely coincides with the axis of the mounting base 3. This design ensures precise positioning during the installation process, so that the compressor cover body 2 assembly can be accurately installed to the specified position, improving the convenience and accuracy of installation.
[0065] Secondary reinforcing ribs 32 are arranged circumferentially along the mounting base 3. These ribs are evenly spaced along the circumference of the mounting base 3, forming a strong protective layer. They not only effectively resist external impact and pressure, preventing damage to the compressor cover due to overtightening of the nuts during installation or use, but also improve the durability and reliability of the entire compressor cover body 2 assembly.
[0066] In a preferred embodiment, the second reinforcing rib 32 is made of the same material as the mounting base 3 and the cover 2, for example, by integral injection molding. The second reinforcing rib 32 is integrally molded with the sidewalls of the mounting base 3 to form a solid, integrated structure. This structure effectively transmits and disperses external forces, ensuring the structural strength of the compressor cover.
[0067] The shape of the second reinforcing rib 32 can be designed according to actual needs. For example, the cross-section of the second reinforcing rib 32 can be rectangular, triangular, or arcuate. In this embodiment, to maximize the reinforcing effect and facilitate manufacturing, the second reinforcing rib 32 adopts a rectangular cross-section. This shape not only provides sufficient strength and rigidity but also facilitates processing and manufacturing. Furthermore, metal strips can be embedded within the surface of the reinforcing rib to increase structural strength.
[0068] Furthermore, with regard to the specific shape details of the reinforcing ribs, they can be designed as straight strips extending along the circumference of the mounting base 3, or as curved with a certain arc to better fit the contour of the mounting base 3. Furthermore, the cross-section of the reinforcing ribs can be designed as a variable cross-section, such as using a thicker cross-section in areas with greater stress and a thinner cross-section in areas with less stress, to achieve more reasonable material distribution and stronger structural performance.
[0069] The number of second reinforcing ribs 32 is determined by the size and shape of the mounting base 3 and the load it is required to withstand. In this embodiment, to ensure that the sidewalls of the mounting base 3 are sufficiently reinforced while avoiding excessive ribs that would increase weight and manufacturing costs, the number of second reinforcing ribs 32 can be 4-6.
[0070] Example 5
[0071] This embodiment is improved on the basis of embodiment 1.
[0072] like Figure 1-Figure 5 As shown, in this embodiment, a base plate 1 is further included, the cover 2 and the mounting seat 3 are both arranged on the base plate 1, and the cover 2 and the mounting seat 3 are integrally formed.
[0073] In this embodiment, a sealing protrusion 22 is provided on the bottom plate 1 , and the sealing protrusion 22 is provided at the wire outlet 21 .
[0074] In this embodiment, a plurality of wiring grooves 221 are provided on the sealing protrusion 22 .
[0075] In this embodiment, the cover 2 and mounting base 3 are integrally formed and mounted on the base plate 1. This enhances the stability and rigidity of the overall structure, reduces deformation due to vibration or external forces, simplifies the assembly process, and improves production efficiency. The sealing protrusion 22 on the base plate 1 is made of an elastic or seal-resistant material to ensure a good seal. The sealing protrusion 22 fits tightly around the cable outlet 21, effectively preventing dust, moisture, and other contaminants from entering the compressor, thereby protecting internal components from damage. In actual applications, traditional sealing methods often require applying sealing putty to the cable outlet 21. This not only requires additional steps but can also result in poor sealing due to uneven application or omissions. The design of the sealing protrusion 22 directly integrates the sealing function, eliminating the need for additional application of sealing putty, thereby simplifying the installation process and improving installation efficiency. Eliminating the need for sealing putty directly reduces material costs. Furthermore, the simplified installation process reduces labor and time costs. This offers significant economic benefits, particularly for large-scale production. Sealing putty may age, crack or fall off over time, requiring regular inspection and maintenance. As part of the structure, the sealing protrusion 22 is more durable and less prone to failure, thus reducing the need and cost of maintenance. The design of the sealing protrusion 22 can be neater and more beautiful, coordinating with the overall appearance of the compressor. Compared with the unevenness or stains that may be left after applying the sealing putty, the design of the sealing protrusion 22 enhances the overall aesthetics of the product. Some sealing putties may contain substances that are harmful to the environment or the human body, and special care must be taken during handling and use. The design of the sealing protrusion 22 avoids this problem and is more environmentally friendly and safer.
[0076] The design of the wiring groove 221 allows the compressor line to be effectively adapted to the sealing protrusion 22, which can increase the sealing between the compressor line and the wiring groove 221, thereby improving the protection capability of the sealing protrusion 22, while reducing damage to the compressor line and reducing the risk of short circuit and fire.
[0077] More specifically, the shape of the cable trough 221 first matches the diameter and shape of the compressor line. Typically, the cable trough 221 is designed to be semicircular, U-shaped, or rectangular, etc., to ensure that the compressor line can be tightly embedded therein to reduce shaking and friction.
[0078] In addition, the wiring groove 221 may also have a certain degree of guidance, that is, its entrance and exit will be designed to be gradually contracted or expanded to guide the compressor line to enter and exit smoothly, avoiding jamming or damage during the threading process. For situations where multiple compressor lines need to be passed through, the wiring groove 221 can be designed as a plurality of separated small grooves, each small groove accommodating a line to ensure isolation and orderly arrangement between the lines. The inner wall of the wiring groove 221 can also add some anti-slip textures or protrusions to increase the friction between the compressor line and prevent the line from loosening or slipping under vibration or external force.
[0079] Example 6
[0080] like Figure 1-Figure 5 As shown, this embodiment provides a compressor, including a shell, on which the compressor cover as described above is provided.
[0081] Specifically, the compressor consists primarily of a housing, a compressor cover, and internal working mechanisms. The housing, as the main component of the compressor, bears the crucial tasks of protecting the internal mechanical structure and containing the working medium. The compressor cover, tightly attached to the housing, not only ensures the compressor's tightness but also supports stable operation through its unique cable management design.
[0082] Cable channels on the compressor cover precisely align with electrical connection points inside the housing. These channels allow cables to be routed in an orderly and secure manner, eliminating the tangled and easily damaged cables found in traditional compressors.
[0083] The compressor optimizes cable management through the above-mentioned compressor cover, thereby reducing the risk of electrical failure and environmental damage during use, making the compressor more stable to use. The stability and reliability of the compressor improve the user experience and reduce user concerns.
[0084] Unless otherwise specifically stated, the relative arrangement of the parts and steps, numerical expressions and numerical values set forth in these embodiments do not limit the scope of the present application. At the same time, it should be understood that, for ease of description, the sizes of the various parts shown in the drawings are not drawn according to actual proportional relationships. The techniques, methods and equipment known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the techniques, methods and equipment should be considered as part of the authorization specification. In all examples shown and discussed here, any specific values should be interpreted as being merely exemplary and not as limitations. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following figures, and therefore, once an item is defined in one figure, it does not need to be further discussed in subsequent figures. In the description of this application, it should be understood that the directions or positional relationships indicated by directional words such as "front, back, up, down, left, right", "horizontal, vertical, vertical, horizontal" and "top, bottom" are usually based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description. Unless otherwise specified, these directional words do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of this application; the directional words "inside and outside" refer to the inside and outside relative to the outline of each component itself.
[0085] For ease of description, spatially relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used herein to describe the spatial positional relationship of a device or feature to other devices or features as shown in the figures. It should be understood that spatially relative terms are intended to include different orientations of the device in use or operation in addition to the orientation described in the figures. For example, if the device in the drawings is inverted, the device described as "above other devices or structures" or "above other devices or structures" will be positioned as "below other devices or structures" or "below other devices or structures". Thus, the exemplary term "above" can include both "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatially relative descriptions used here are interpreted accordingly.
[0086] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.
[0087] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A compressor cover, comprising a cover body (2), a mounting seat (3) being provided on one side of the cover body (2), characterized in that: The cover body (2) is provided with a wire outlet (21), and the mounting seat (3) is provided with a wire buckle (4). In the vertical direction, the bottom of the wire buckle (4) is located at a height higher than the bottom of the wire outlet (21).
2. The compressor cover according to claim 1, characterized in that: The wire buckle (4) comprises a connecting arm (42) and a wire hanging plate (43), one end of the connecting arm (42) is fixedly connected to the mounting seat (3), and the wire hanging plate (43) is arranged at one end of the connecting arm (42) away from the mounting seat (3); The cross section of the wire hanging plate (43) is L-shaped.
3. The compressor cover according to claim 2, wherein: The wire hanging plate (43) has a first end and a second end that are arranged opposite to each other, the first end of the wire hanging plate (43) is connected to the connecting arm (42), and the second end of the wire hanging plate (43) is provided with a folded edge (44); The plane where the folded edge (44) is located and the plane where the second end of the hanging plate (43) is located form an angle A, wherein 45°<A<150°; A wire hanging position is formed between the folded edge (44), the wire hanging plate (43) and the connecting arm (42).
4. The compressor cover according to claim 2, wherein: The wire hanging plate (43) is provided with a first reinforcing rib (41).
5. The compressor cover according to any one of claims 1 to 4, characterized in that: The cover body (2) and the mounting seat (3) are integrally formed; a mounting hole (31) is provided in the mounting seat (3); and the axis of the mounting hole (31) coincides with the axis of the mounting seat (3).
6. The compressor cover according to claim 5, characterized in that: A plurality of second reinforcing ribs (32) are provided between the mounting seat (3) and the cover body (2), and the plurality of second reinforcing ribs (32) are arranged on a side wall of the mounting seat (3) along the circumference of the mounting seat (3).
7. The compressor cover according to claim 5, characterized in that: It also includes a base plate (1), the cover body (2) and the mounting seat (3) are both arranged on the base plate (1), and the cover body (2) and the mounting seat (3) are integrally formed.
8. The compressor cover according to claim 7, characterized in that: A sealing protrusion (22) is provided on the bottom plate (1), and the sealing protrusion (22) is provided at the wire outlet (21).
9. The compressor cover according to claim 8, characterized in that: A plurality of wiring grooves (221) are provided on the sealing protrusion (22).
10. A compressor comprising a housing, characterized in that: The housing is provided with a compressor cover according to any one of claims 1 to 9.