Shock pad adjusting structure and air conditioner
By designing an adjustable connection component to adjust the relative position of the shock-absorbing pad and the compressor, the problem of difficulty in replacing the shock-absorbing pad after wear in the existing technology is solved, and the effect of convenient replacement and adaptation to different installation environments is achieved.
Patent Information
- Application Number
- CN202422963295.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-03
AI Technical Summary
The existing air-conditioning compressor shock-absorbing pad is easy to wear and age after long-term use, resulting in reduced shock absorption effect. In addition, the replacement process is complicated and requires the removal of the compressor connecting pipe, which causes waste and trouble.
A shock-absorbing pad adjustment structure is designed. Through the adjustable position relationship of the first connecting component and the second connecting component, the relative position of the shock-absorbing pad and the compressor is adjusted to form a replacement space, which facilitates the replacement of the shock-absorbing pad and adapts to the height difference of different installation environments.
The shock-absorbing pad can be easily replaced without removing the connecting pipe, which improves the adaptability and service life of the compressor, reduces the difficulty of replacement, and ensures the stable operation of the compressor.
Smart Images

Figure CN223484503U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioner compressor technology, specifically to a shock-absorbing pad adjustment structure and an air conditioner. Background Technology
[0002] The compressor is one of the core components of an air conditioning system. Since the compressor generates a lot of vibration and noise during operation, installing compressor vibration damping pads has become the key to ensuring the stable operation of the air conditioning system, extending the equipment life and improving the user experience.
[0003] Currently, vibration damping pads on the market are installed by bolts and screws to the compressor's feet, which are then welded to the compressor. While this design allows for the installation of the vibration damping pads, it has certain limitations in practical use. During air conditioning use, due to friction and the installation environment, the vibration damping pads are prone to wear, aging, and deformation after long-term use, resulting in reduced vibration damping effect and affecting the compressor's lifespan. Replacing the compressor vibration damping pads requires removing the compressor connecting pipes and lifting the compressor cylinder; this method of replacement, which damages the connecting pipes, not only wastes resources on the compressor connecting pipes and involves multiple welding operations, but the removal process is also quite cumbersome.
[0004] Therefore, the existing technology needs further improvement. Utility Model Content
[0005] To address the shortcomings of existing technologies, a shock-absorbing pad adjustment structure and air conditioner are proposed, which solves the problems of difficult replacement of compressor shock-absorbing pads in existing air conditioning equipment and incompatibility of installation structures under different installation environments.
[0006] To achieve the above objectives, the present invention proposes the following technologies:
[0007] A shock-absorbing pad adjustment structure includes a connecting assembly. The connecting assembly includes a first connecting assembly connected to a compressor and a second connecting assembly connected to the shock-absorbing pad. The relative position of the second connecting assembly and the first connecting assembly is adjustable. By adjusting the relative position of the second connecting assembly and the first connecting assembly, the installation position of the shock-absorbing pad on the compressor can be adjusted to form a replacement space for easy replacement of the shock-absorbing pad.
[0008] Furthermore, the first connecting component includes a first connecting portion fixedly connected to the compressor, and the second connecting component can reciprocate along the extension direction of the first connecting portion to drive the shock-absorbing pad to move, thereby adjusting the relative position of the shock-absorbing pad and the compressor.
[0009] Furthermore, the second connecting component includes a second connecting part that is detachably connected to the shock-absorbing pad. The second connecting part slides along the first connecting part to drive the shock-absorbing pad to move, thereby adjusting the installation position of the shock-absorbing pad and the compressor, and thus forming a replacement space to facilitate the replacement of the shock-absorbing pad.
[0010] Furthermore, the first connecting part is provided in several parts, and the corresponding second connecting part is provided in several parts. The relative positions of several second connecting parts and the first connecting part are adjusted to adjust the height of each shock-absorbing pad to adapt to different compressor mounting chassis.
[0011] Furthermore, the first connecting part is arranged vertically, and several first connecting parts are distributed circumferentially along the compressor. The second connecting part slides along the first connecting part to facilitate adjustment of the height of the shock-absorbing pads at different positions.
[0012] Furthermore, several of the first connecting parts are arranged in a circular array along the circumference of the compressor so that the second connecting parts and the shock-absorbing pads that are slidably connected to them can provide uniform support for the compressor. At the same time, it is convenient to adjust the installation height of the individual shock-absorbing pads to form a replacement space for easy replacement of the shock-absorbing pads.
[0013] Furthermore, the first connecting part is specifically a guide rail, and the second connecting part slides along the guide rail to adjust the installation position of the shock-absorbing pad and the compressor to form a replacement space for easy replacement of the shock-absorbing pad. The first connecting assembly also includes a limiting part for limiting the second connecting part.
[0014] Furthermore, the second connecting part is specifically a foot, which is detachably installed above the shock-absorbing pad and slidably connected to the guide rail. The limiting part limits the foot to fix the relative position of the shock-absorbing pad and the compressor.
[0015] Furthermore, the limiting part includes several first limiting holes opened on both sides of the guide rail and distributed in the vertical direction, and second limiting holes opened on both sides of the machine foot. The second limiting holes match the first limiting holes of different heights and are connected with limiting pins to realize the height adjustment and positioning of the machine foot.
[0016] Furthermore, the second connecting assembly also includes a bolt that penetrates the shock-absorbing pad in a vertical direction, the top of the bolt extending above the second connecting part and being locked with a nut to achieve a detachable connection between the shock-absorbing pad and the second connecting part.
[0017] An air conditioner comprising a shock-absorbing pad adjustment structure as described in any of the preceding claims.
[0018] Compared with the prior art, the comprehensive effects brought about by this utility model include:
[0019] This application connects the compressor and the shock absorber pad respectively by setting a first connecting component and a second connecting component. By adjusting the position between the first connecting component and the second connecting component, the relative position between the shock absorber pad and the compressor can be changed. This facilitates the creation of sufficient replacement space to replace the shock absorber pad that is detachably connected to the second connecting component, or by adjusting the distance between the shock absorber pad and the compressor to adapt to different heights and installation environments with height differences, thereby improving the compressor's adaptability to the installation environment. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall exploded structure of an embodiment of this utility model;
[0021] Figure 2 for Figure 1 Schematic diagram of a local structure in the middle;
[0022] Figure 3 This is a schematic diagram of the embodiment of the present utility model and the mounting structure of the flat mounting chassis;
[0023] Figure 4 for Figure 3 Schematic diagram of a local structure in the middle;
[0024] Figure 5 This is a schematic diagram of the mounting structure of the height difference mounting chassis according to an embodiment of this utility model;
[0025] Figure 6 for Figure 5 Schematic diagram of a local structure in the middle;
[0026] Figure 7 This is a schematic diagram of the mounting structure of the protrusion and the foot in an embodiment of this utility model;
[0027] Figure 8 for Figure 7 A schematic diagram of a local part of the structure.
[0028] Legend: 1. Compressor; 2. Shock-absorbing pad; 3. Mounting chassis; 4. Guide rail; 5. Machine feet; 6. First limit hole; 7. Second limit hole; 8. Bolt; 9. Nut; 10. Protrusion. Detailed Implementation
[0029] The technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0030] In this document, terms such as “up,” “down,” “left,” “right,” and “top” indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0031] like Figures 1 to 8 As shown, a shock-absorbing pad adjustment structure includes a connecting component. The connecting component includes a first connecting component connected to a compressor 1 and a second connecting component connected to a shock-absorbing pad 2. The relative position of the second connecting component and the first connecting component is adjustable. By adjusting the relative position of the second connecting component and the first connecting component, the installation position of the shock-absorbing pad 2 on the compressor 1 can be adjusted to form a replacement space for easy replacement of the shock-absorbing pad 2.
[0032] By setting a first connecting component and a second connecting component to connect the compressor 1 and the shock absorber 2 respectively, and by adjusting the position between the first connecting component and the second connecting component, the relative position of the shock absorber 2 and the compressor 1 can be changed. This facilitates the creation of sufficient replacement space to replace the shock absorber 2, which is detachably connected to the second connecting component. Alternatively, by adjusting the distance between the shock absorber 2 and the compressor 1, the compressor 1 can adapt to different heights and installation environments with height differences, thereby improving the compressor 1's adaptability to the installation environment.
[0033] With the above settings, this application can replace the shock absorber 2 without removing the connecting pipe, which reduces the difficulty of replacing the shock absorber 2 and makes up for the problems of reduced shock absorption effect, large vibration of compressor 1 and reduced service life caused by aging or wear and deformation of the shock absorber 2.
[0034] In the shock-absorbing pad adjustment structure of this embodiment, the first connecting component includes a first connecting part fixedly connected to the compressor 1, and the second connecting component can reciprocate along the extension direction of the first connecting part to drive the shock-absorbing pad 2 to move and thereby adjust the relative position of the shock-absorbing pad 2 and the compressor 1.
[0035] With the above configuration, the first connecting part provides support for the second connecting component and the shock-absorbing pad 2. Adjusting the position of the second connecting component on the first connecting part changes the relative position of the shock-absorbing pad 2 and the compressor 1. When the shock-absorbing pad 2 of the compressor 1 becomes noisy and its shock absorption effect decreases due to long-term wear, and the shock-absorbing pad 2 needs to be replaced, the position of the second connecting component is adjusted so that the shock-absorbing pad 2 has sufficient height. The shock-absorbing pad 2 can be removed and replaced with a new one, achieving quick replacement and improving maintenance efficiency.
[0036] In the shock-absorbing pad adjustment structure of this embodiment, the second connecting component includes a second connecting part that is detachably connected to the shock-absorbing pad 2. The second connecting part slides along the first connecting part to drive the shock-absorbing pad 2 to move so as to adjust the installation position of the shock-absorbing pad 2 and the compressor 1, thereby forming a replacement space to facilitate the replacement of the shock-absorbing pad 2.
[0037] A second connecting part is provided to indirectly connect the first connecting part and the shock-absorbing pad 2. The second connecting part is slidably connected to the first connecting part. The second connecting part drives the shock-absorbing pad 2 to slide back and forth along the height direction of the compressor 1 under the guidance and limiting action of the first connecting part, thereby realizing the height adjustment of the shock-absorbing pad 2. This makes it easier to raise the worn and deformed shock-absorbing pad 2 and leave enough space to replace the new shock-absorbing pad 2.
[0038] In the shock-absorbing pad adjustment structure of this embodiment, there are several first connecting parts and several corresponding second connecting parts. The relative positions of several second connecting parts and the first connecting parts are adjusted to adjust the height of each shock-absorbing pad 2 to adapt to different compressor mounting chassis 3.
[0039] Specifically, multiple first and second connecting parts are set up to install shock-absorbing pads 2 from various directions to support and dampen the compressor 1, ensuring the shock absorption effect. At the same time, through the above setting, when a certain shock-absorbing pad 2 is replaced, the other first and second connecting parts can provide support for the remaining shock-absorbing pads 2, thereby ensuring the stability of the compressor 1 and avoiding uneven force on the compressor 1.
[0040] Preferably, the above settings can adaptively adjust the height of the shock-absorbing pads 2 at various points on the compressor 1 according to the shape and height difference of the mounting chassis 3, so as to match the height of the mounting chassis 3, thereby ensuring the level of the compressor 1, enabling the compressor 1 to operate normally, realizing the installation of the compressor 1 on mounting plates at different heights, and ensuring the positioning and balance of the compressor 1 under the mounting chassis 3 with height differences.
[0041] In the shock-absorbing pad adjustment structure of this embodiment, the first connecting part is arranged in the vertical direction, a plurality of first connecting parts are distributed along the circumference of the compressor 1, and the second connecting part slides along the first connecting part to facilitate adjustment of the height of the shock-absorbing pad 2 at different positions.
[0042] With the above settings, the first connecting part is parallel to the axis of the compressor 1, which limits and guides the sliding direction of the second connecting part and the shock-absorbing pad 2, ensuring that the shock-absorbing pad 2 rises and falls along the height direction, avoiding the deviation of the shock-absorbing pad 2 after replacement and affecting normal use, thereby improving the shock absorption effect on the compressor 1.
[0043] Specifically, the installation position of the first connecting part on the compressor 1 is set according to the shape of the mounting chassis 3 and the size of the installation space of the compressor 1. Through the above setting, the compressor 1 adapts to the installation environment, while ensuring the stable support of the shock-absorbing pad 2 for the compressor 1, thus achieving effective shock absorption.
[0044] In the shock-absorbing pad adjustment structure of this embodiment, a plurality of the first connecting parts are arranged in a circular array along the circumference of the compressor 1 so that the second connecting parts and the shock-absorbing pads 2 that are slidably connected to them can uniformly support the compressor 1. At the same time, it is convenient to adjust the installation height of a single shock-absorbing pad 2 to form a replacement space for easy replacement of the shock-absorbing pad 2.
[0045] By setting the first connecting parts in a circular array, the second connecting parts can drive the shock-absorbing pads 2 to be evenly distributed along the circumference of the compressor 1, thereby providing uniform support and shock absorption. Specifically, in this embodiment, four first connecting parts are evenly distributed around the cylindrical compressor 1, and the four first connecting parts are set at the same height to ensure that the connection strength between them and the compressor 1 is consistent, so that the compressor 1 is subjected to uniform force.
[0046] In the shock-absorbing pad adjustment structure of this embodiment, the first connecting part is specifically a guide rail 4, and the second connecting part slides along the guide rail 4 to adjust the installation position of the shock-absorbing pad 2 and the compressor 1 to form a replacement space for easy replacement of the shock-absorbing pad 2. The first connecting component also includes a limiting part for limiting the second connecting part.
[0047] Specifically, the guide rail 4 is welded to the compressor 1, and the guide rail 4 is set at the bottom of the compressor 1. The guide rail 4 serves as the second connecting part and is guided by support and limiting.
[0048] The second connecting part moves the shock-absorbing pad 2 up and down along the guide rail 4 to adjust its height, thereby raising the worn and deformed shock-absorbing pad 2 so that its bottom has enough space for disassembly and replacement. This makes it easy to remove the worn shock-absorbing pad 2 from the second connecting part and replace it with a new shock-absorbing pad 2. Then, the second connecting part is adjusted so that the new shock-absorbing pad 2 contacts the mounting chassis 3 to achieve the shock absorption function for the compressor 1.
[0049] In the shock-absorbing pad adjustment structure of this embodiment, the second connecting part is specifically the machine foot 5. The machine foot 5 is detachably installed above the shock-absorbing pad 2 and slidably connected to the guide rail 4. The limiting part limits the machine foot 5 to fix the relative position of the shock-absorbing pad 2 and the compressor 1.
[0050] With the above configuration, in this embodiment, by integrating the compressor 1 foot 5 with the guide rail 4, the foot 5 is set as a detachable structure from the compressor 1. The height of the shock-absorbing pad 2 can be adjusted by adjusting the position of the foot 5 and the shock-absorbing pad 2, thereby increasing the space for replacing the shock-absorbing pad 2 in the longitudinal direction. Compared with the existing technology where the foot 5 is integrated with the compressor 1 and has a fixed position, it is easier to remove and replace the shock-absorbing pad 2 after raising the foot 5, reducing the difficulty of replacing the shock-absorbing pad 2 and thus improving the replacement efficiency.
[0051] When there is a height difference between the mounting chassis 3 and the compressor 1, the fixed position of the machine feet 5 can be adjusted on the longitudinal guide rail 4 according to the height difference of the mounting chassis 3, so that the shock-absorbing pads 2 are located at different heights to match the mounting chassis 3, ensuring that the compressor 1 is horizontal, so that the compressor 1 can be installed to adapt to the mounting chassis 3 at different heights, and avoid the lack of installation accuracy leading to accelerated wear of the shock-absorbing pads 2.
[0052] Specifically, the machine foot 5 slides on the guide rail 4, causing the shock-absorbing pad 2 to rise and fall to achieve height adjustment, and the limiting part fixes the relative position of the machine foot 5 and the guide rail 4 to achieve positioning.
[0053] Preferably, the inner walls on both sides of the guide rail 4 can be configured as dovetail groove structures, and wedge structures can be added on both sides of the corresponding foot 5 to match the dovetail groove structure. The above matching increases the guiding and limiting effect, ensuring the stable sliding of the shock-absorbing pad 2 in the vertical direction.
[0054] In the shock-absorbing pad adjustment structure of this embodiment, the limiting part includes a plurality of first limiting holes 6 opened on both sides of the guide rail 4 and distributed in the vertical direction, and second limiting holes 7 opened on both sides of the foot 5. The second limiting holes 7 are matched with the first limiting holes 6 of different heights and the limiting pins are inserted to realize the height adjustment and positioning of the foot 5.
[0055] Specifically, multiple sets of first limiting holes 6 are equally spaced on the guide rail 4. The first limiting holes 6 on the multiple guide rails 4 are set at the same height. A set of second limiting holes 7 corresponding to the first limiting holes 6 is opened on the foot 5. After adjusting the second limiting hole 7 to align with the first limiting hole 6, the limiting pin is inserted to fix the foot 5 to the guide rail 4, thereby fixing the height of the shock-absorbing pad 2. This makes it easy for the shock-absorbing pad 2 to fully contact the mounting chassis 3 to achieve shock absorption or to raise the height of the foot 5 to replace the shock-absorbing pad 2.
[0056] In the shock-absorbing pad adjustment structure of this embodiment, the second connecting component further includes a bolt 8 that penetrates the shock-absorbing pad 2 in a vertical direction. The top end of the bolt 8 extends above the second connecting part and is locked by a nut 9 to achieve a detachable connection between the shock-absorbing pad 2 and the second connecting part.
[0057] When the vibration damping pad 2 of compressor 1 becomes noisy and its vibration damping effect decreases due to long-term wear, and it needs to be replaced, the position of the vibration damping pad 2 is determined by the position of the machine foot 5. Therefore, the machine foot 5 can be adjusted to a suitable position by releasing the limiting fit between the machine foot 5 and the guide rail 4 in the longitudinal direction, and then the bolts 8 and nuts 9 connecting the machine foot 5 and the vibration damping pad 2 can be released to replace the vibration damping pad 2.
[0058] Preferably, the top of the shock-absorbing pad 2 is provided with a protrusion 10, and the machine foot 5 is provided with a mounting hole. After the protrusion 10 is engaged in the mounting hole, the protrusion 10 and the machine foot 5 are pressed together by the nut 9 and the bolt 8 to strengthen the connection between the shock-absorbing pad 2 and the machine foot 5, thereby achieving a stable connection between the compressor 1 and the shock-absorbing pad 2.
[0059] Preferably, the nut 9 is a washer nut, which increases the contact area with the shock-absorbing pad 2 and improves the connection strength with the bolt 8. At the same time, it is simpler than setting a separate washer structure, and it is easier to disassemble and install, further improving the replacement efficiency of the shock-absorbing pad 2.
[0060] On the other hand, this application also proposes an air conditioner that includes a shock-absorbing pad adjustment structure as described in any of the above embodiments. It is foreseeable that the air conditioner in this application includes all the beneficial effects of the shock-absorbing pad adjustment structure in the above embodiments, which will not be repeated here.
[0061] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "rotation", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0062] Although embodiments of the present invention have been shown and described in detail, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A shock-absorbing pad adjustment structure, characterized in that, The device includes a connecting assembly, which includes a first connecting assembly connected to the compressor and a second connecting assembly connected to the shock absorber. The relative positions of the second connecting assembly and the first connecting assembly are adjustable. By adjusting the relative positions of the second connecting assembly and the first connecting assembly, the installation position of the shock absorber on the compressor can be adjusted to create a replacement space for easy replacement of the shock absorber.
2. The shock-absorbing pad adjustment structure according to claim 1, characterized in that, The first connecting component includes a first connecting part fixedly connected to the compressor, and the second connecting component can reciprocate along the extension direction of the first connecting part to drive the shock-absorbing pad to move, thereby adjusting the relative position of the shock-absorbing pad and the compressor.
3. The shock-absorbing pad adjustment structure according to claim 2, characterized in that, The second connecting component includes a second connecting part that is detachably connected to the shock-absorbing pad. The second connecting part slides along the first connecting part to drive the shock-absorbing pad to move, thereby adjusting the installation position of the shock-absorbing pad and the compressor, thus forming a replacement space to facilitate the replacement of the shock-absorbing pad.
4. The shock-absorbing pad adjustment structure according to claim 3, characterized in that, The first connecting part is provided in several parts, and the corresponding second connecting part is provided in several parts. The relative positions of the second connecting parts and the first connecting part are adjusted to adjust the height of each shock-absorbing pad to adapt to different compressor mounting chassis.
5. The shock-absorbing pad adjustment structure according to claim 4, characterized in that, The first connecting part is arranged vertically, and several first connecting parts are distributed around the compressor. The second connecting part slides along the first connecting part to adjust the height of the shock-absorbing pads at different positions.
6. The shock-absorbing pad adjustment structure according to claim 5, characterized in that, Several first connecting parts are arranged in a circular array along the circumference of the compressor so that the second connecting parts and shock-absorbing pads that are slidably connected to them can provide uniform support for the compressor. At the same time, it is convenient to adjust the installation height of individual shock-absorbing pads to form a replacement space for easy replacement of shock-absorbing pads.
7. The shock-absorbing pad adjustment structure according to claim 3, characterized in that, The first connecting part is specifically a guide rail, and the second connecting part slides along the guide rail to adjust the installation position of the shock-absorbing pad and the compressor to form a replacement space for easy replacement of the shock-absorbing pad. The first connecting assembly also includes a limiting part for limiting the second connecting part.
8. The shock-absorbing pad adjustment structure according to claim 7, characterized in that, The second connecting part is specifically a foot, which is detachably installed above the shock-absorbing pad and slidably connected to the guide rail. The limiting part limits the foot to fix the relative position of the shock-absorbing pad and the compressor.
9. The shock-absorbing pad adjustment structure according to claim 8, characterized in that, The limiting part includes several first limiting holes opened on both sides of the guide rail and distributed in the vertical direction, and second limiting holes opened on both sides of the machine foot. The second limiting holes match the first limiting holes of different heights and are connected with limiting pins to realize the height adjustment and positioning of the machine foot.
10. The shock-absorbing pad adjustment structure according to claim 3, characterized in that, The second connecting assembly also includes a bolt that passes through the shock-absorbing pad in a vertical direction. The top of the bolt extends above the second connecting part and is locked with a nut to achieve a detachable connection between the shock-absorbing pad and the second connecting part.
11. An air conditioner, characterized in that, Includes a shock-absorbing pad adjustment structure as described in any one of claims 1-10.