Vibration and noise reduction base, compressor and refrigerator

By introducing vibration-absorbing and noise reduction bases for vertical and transverse vibration-absorbing components into the compressor, the problems of high vibration and noise of the compressor are solved, and better vibration-absorbing effect and user experience are achieved, while increasing the body space to improve ventilation and heat dissipation.

CN223152217UActive Publication Date: 2025-07-25GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202422599119.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-07-25
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

In the prior art, the vibration-absorbing structure of the compressor is not ideal, resulting in high vibration and noise during operation of the compressor, especially when starting or stopping the vibration and noise problems are serious.

Method used

A vibration-absorbing noise reduction base including a vertical vibration-absorbing assembly and a transverse vibration-absorbing assembly are adopted. The vertical vibration-absorbing assembly is used to slow down vertical vibration-absorbing assembly, and the transverse vibration-absorbing assembly is used to slow down horizontal vibration-absorbing and to relieve vibration through the connection between the support and the base.

Benefits of technology

It effectively reduces the amplitude and noise problems during the compressor operation, especially the instantaneous vibration and noise during start-up or stop, improves the user experience, and increases the height of the body to facilitate ventilation and heat dissipation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a vibration and noise reduction base, a compressor and a refrigerator, relates to the technical field of household appliances, and solves the technical problems that in the prior art, a vibration reduction structure is not ideal in vibration reduction effect, and vibration and noise are large when the compressor runs. The vibration and noise reduction base and the refrigerator comprise a base; the at least one supporting piece is connected with the base through a vertical vibration reduction assembly, and the vertical vibration reduction assembly is used for reducing vertical vibration force; and the at least one transverse vibration reduction assembly is connected between the supporting piece and the base and used for reducing transverse vibration force. According to the vibration and noise reduction base, the compressor and the refrigerator, vibration and noise generated during operation of the compressor are reduced, and user experience is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, in particular to a vibration damping and noise reduction base, a compressor and a refrigerator. Background Art

[0002] A piston compressor essentially compresses low-temperature and low-pressure refrigerant gas into high-temperature and high-pressure refrigerant gas in a cylinder to provide refrigeration capacity. As the volume of the refrigerator increases, high-speed and high-power variable-frequency piston compressors are gradually applied. The vibration of the compressor is transmitted to the refrigerator body through the bottom steel plate of the refrigerator. Especially when the compressor starts or stops, due to the large acceleration during these two periods, the movement mechanism will generate a large torsional amplitude, resulting in an excessive amplitude of the movement mechanism, which is transmitted to the housing and then to the refrigerator body, causing the refrigerator to vibrate and generate noise.

[0003] In the prior art, a vibration damping bottom plate for a compressor is provided. By arranging vibration damping springs on the bottom plate, the vibration damping springs are used to buffer the vibration force of the compressor in the vertical direction, thereby reducing vibration. However, the vibration damping effect of the existing vibration damping bottom plate is still not ideal, and the vibration and noise problems during the operation of the compressor are still obvious. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a vibration damping and noise reduction base, a compressor and a refrigerator to solve the technical problems existing in the prior art, that is, the vibration damping structure has an unsatisfactory vibration damping effect, and the vibration and noise are large during the operation of the compressor. The preferred technical solutions provided by the utility model can produce many technical effects, which will be elaborated below.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] The vibration damping and noise reduction base provided by the utility model includes:

[0007] A base;

[0008] At least one support member, at least one of the support members is connected to the base through a vertical vibration damping component, and the vertical vibration damping component is used to reduce the vertical vibration force;

[0009] At least one horizontal vibration damping component, at least one horizontal vibration damping component is connected between the support member and the base to reduce the horizontal vibration force.

[0010] As an optional implementation manner, the base includes a base body and a side wall;

[0011] At least one support member, at least one of the support members is connected to the base body through a vertical vibration damping component, and the vertical vibration damping component is arranged in the vertical direction to reduce the vertical vibration force;

[0012] At least one lateral damping component, the lateral damping component includes a contact member and a lateral damping structure, the contact member is slidably disposed on the base body, and the contact member is connected to the support member;

[0013] The lateral damping structure is disposed between the side wall and the contact member, and the lateral damping structure is disposed in the horizontal direction to slow down the lateral vibration force.

[0014] As an optional implementation manner, there are four support members, and the four support members are distributed in a rectangular structure on the base body;

[0015] There are eight lateral damping components, and the eight lateral damping components are grouped in pairs, and the four groups of lateral damping components are respectively disposed on the four support members;

[0016] In each group of the lateral damping components, the first lateral damping component is disposed on the support member along the first direction, and the second lateral damping component is disposed on the support member along the second direction;

[0017] The eight lateral damping components are symmetrically disposed with respect to the central axis of the rectangular structure to slow down the lateral vibration of the four support members in the first direction and the second direction through the lateral damping components.

[0018] As an optional implementation manner, the first direction is consistent with the direction of the first vertical side of the rectangular structure, and the second direction is consistent with the direction of the second vertical side of the rectangular structure.

[0019] As an optional implementation manner, the bottom of at least one support member has a hemispherical structure, and the contact member is slidably connected to the hemispherical structure of the support member.

[0020] As an optional implementation manner, the surface of the contact member connected to at least one support member is an inclined surface.

[0021] As an optional implementation manner, the bottom of the contact member is provided with a sliding wheel, and the base body is provided with a sliding groove, and the contact member is slidably disposed in the sliding groove through the sliding wheel.

[0022] As an optional implementation manner, the bottom of the contact member is provided with a slider, and the base body is provided with a slide rail, and the contact member is slidably disposed on the slide rail through the slider.

[0023] As an optional implementation manner, both the vertical damping component and the lateral damping structure are springs.

[0024] A compressor includes a compressor main body and the vibration damping and noise reduction base as described above, and the compressor main body is disposed on at least one support member.

[0025] As an alternative embodiment, the compressor body is provided with foot pads, the foot pads are provided with mounting holes, the upper port diameter of the mounting holes is large, and the lower port diameter is small, and the foot pads are connected to at least one of the support members through the mounting holes.

[0026] A refrigerator includes the compressor as described above.

[0027] The beneficial effects of the present invention are as follows: The vibration damping and noise reduction base, compressor and refrigerator provided by the present invention include at least one support member and at least one lateral vibration damping assembly. At least one support member is disposed on the base through a vertical vibration damping assembly, and the vertical vibration damping assembly is used to slow down the vibration force of the support member in the vertical direction. At least one lateral vibration damping assembly is connected between the support member and the base to slow down the lateral vibration force, thereby effectively reducing the amplitude of the compressor during operation and reducing the noise problem caused by the transmission of the amplitude of the compressor during operation to the refrigerator base. In particular, the instantaneous vibration and noise during the start or stop of the compressor are reduced, improving the user experience. In addition, by using the vibration damping and noise reduction base provided by the present invention, the height of the machine body can be increased, the bottom space can be increased, which is beneficial to ventilation and heat dissipation, and further improves the user experience.

[0028] The beneficial effects of the further improvement are as follows: The vertical vibration damping assembly is used to slow down the vibration force of the support member in the vertical direction. The abutting member is slidably disposed on the base body, and the abutting member is connected to the support member. A lateral vibration damping structure is disposed between the side wall and the abutting member, and the lateral vibration damping structure is disposed in the horizontal direction, so as to slow down the vibration force of the support member in the lateral direction through the lateral vibration damping structure. When the compressor disposed on at least one support member operates, the vertical vibration damping assembly can slow down the vertical vibration force, and the lateral vibration damping structure can slow down the lateral vibration force, thereby effectively reducing the amplitude of the compressor during operation and reducing the noise problem caused by the transmission of the amplitude of the compressor during operation to the refrigerator base. In particular, the instantaneous vibration and noise during the start or stop of the compressor are reduced, improving the user experience. In addition, by using the vibration damping and noise reduction base provided by the present invention, the height of the machine body can be increased, the bottom space can be increased, which is beneficial to ventilation and heat dissipation, and further improves the user experience. Description of the Drawings

[0029] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0030] Figure 1 is a cross-sectional view of the vibration damping and noise reduction base of the present invention;

[0031] Figure 2 is the top view of the structure of the vibration damping and noise reduction base part of the present utility model;

[0032] Figure 3 is the cross-sectional view of the structure of the vibration damping and noise reduction base part of the present utility model;

[0033] Figure 4 is the cross-sectional view of the structure of the refrigerator part of the present utility model;

[0034] Figure 5 is the top view of the structure of the refrigerator part of the present utility model;

[0035] Figure 6 is the exploded view of the structure of the refrigerator part of the present utility model;

[0036] Figure 7 is the schematic diagram of the partial structure A of the present utility model.

[0037] In the figure:

[0038] 10. Base; 11. Base body; 12. Side wall; 13. Support member; 14. Vertical vibration damping component; 15. Horizontal vibration damping component; 16. Contact member; 17. Horizontal vibration damping structure; 18. Sliding wheel; 19. Sliding groove; 20. Compressor main body; 21. Foot pad; 22. Mounting hole. Detailed implementation manners

[0039] The following can refer to the drawings Figures 1 to 7 and the text content to understand the content of the present utility model and the differences between the present utility model and the prior art. The following further describes the technical solutions (including the preferred technical solutions) of the present utility model by way of the drawings and listing some optional embodiments of the present utility model. It should be noted that: any technical feature and any technical solution in this embodiment are one or several of a variety of optional technical features or optional technical solutions. For the sake of concise description, all alternative technical features and alternative technical solutions of the present utility model cannot be exhausted in this document, nor is it convenient to emphasize that each implementation manner of each technical feature is one of the optional multiple implementation manners. Therefore, those skilled in the art should know that: any technical means provided by the present utility model can be replaced or any two or more technical means or technical features provided by the present utility model can be combined with each other to obtain a new technical solution. Any technical feature and any technical solution within this embodiment do not limit the protection scope of the present utility model. The protection scope of the present utility model should include any alternative technical solution that those skilled in the art can think of without creative work and any new technical solution obtained by those skilled in the art by combining any two or more technical means or technical features provided by the present utility model.

[0040] In the description of the present invention, it should be noted that unless otherwise specified, the meaning of "a plurality of" is two or more; the orientation or positional relationships indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation on the present invention. In addition, the terms "first", "second", "third", etc. are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0041] In the description of the present invention, it should also be noted that unless otherwise clearly specified and limited, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0042] The present utility model provides a vibration and noise reduction base, a compressor, and a refrigerator that reduce the vibration and noise during the operation of the compressor and improve the user experience.

[0043] The following Figures 1 to 7 will elaborate on the technical solutions provided by the present utility model in more detail.

[0044] The present utility model provides a vibration and noise reduction base, comprising:

[0045] a base 10, comprising a base body 11 and a side wall 12;

[0046] at least one support member 13, at least one of the support members 13 is connected to the base body 11 through a vertical vibration damping assembly 14, and the vertical vibration damping assembly 14 is arranged along the vertical direction to reduce the vertical vibration force;

[0047] at least one horizontal vibration damping assembly 15, the horizontal vibration damping assembly 15 includes a contact member 16 and a horizontal vibration damping structure 17, the contact member 16 is slidably arranged on the base body 11, and the contact member 16 is connected to the support member 13;

[0048] the horizontal vibration damping structure 17 is arranged between the side wall 12 and at least one of the contact members 16, and the horizontal vibration damping structure 17 is arranged along the horizontal direction to reduce the horizontal vibration force.

[0049] The vibration damping and noise reduction base provided by the present utility model includes at least one support member 13 and at least one lateral vibration damping assembly 15. At least one support member 13 is arranged on the base body 11 through a vertical vibration damping assembly 14, and the vertical vibration damping assembly 14 is used to reduce the vibration force of the support member 13 in the vertical direction.

[0050] The abutting member 16 is slidably arranged on the base body 11, and the abutting member 16 is connected to the support member 13. A lateral vibration damping structure 17 is arranged between the side wall 12 and the abutting member 16. The lateral vibration damping structure 17 is arranged in the horizontal direction, so as to reduce the vibration force of the support member 13 in the lateral direction through the lateral vibration damping structure 17.

[0051] When the compressor main body 20 arranged on at least one support member 13 operates, the vertical vibration damping assembly 14 can reduce the vertical vibration force, and the lateral vibration damping structure 17 can reduce the lateral vibration force, thereby effectively reducing the amplitude when the compressor main body 20 operates, and reducing the noise problem caused by the amplitude transmission of the compressor main body 20 to the refrigerator base 10 during operation, especially reducing the instantaneous vibration and noise when the compressor main body 20 starts or stops, and improving the user experience; in addition, by using the vibration damping and noise reduction base provided by the present utility model, the height of the machine body can be increased, the bottom space can be increased, which is beneficial to ventilation and heat dissipation, and further improves the user experience.

[0052] It should be noted that the vertical vibration damping assembly 14 is arranged between the base body 11 and the support member 13 to reduce the vertical vibration force, and the lateral vibration damping structure 17 is arranged between the side wall 12 and the abutting member 16. Thus, the lateral vibration damping structure 17 can reduce the lateral vibration force. Through the arrangement of the vertical vibration damping assembly 14 and the lateral vibration damping structure 17, the lateral vibration and the vertical vibration can be reduced simultaneously, and the noise problem during the operation of the compressor main body 20 is greatly reduced.

[0053] It can be understood that the vertical vibration damping assembly 14 is arranged in the vertical direction, and the lateral vibration damping structure 17 is arranged in the horizontal direction, so that the vertical vibration damping and the lateral vibration damping can be well realized by the vertical vibration damping assembly 14 and the lateral vibration damping structure 17.

[0054] In some embodiments of the present invention, when there is one support member 13, two lateral vibration damping assemblies 15 can be arranged. The two lateral vibration damping assemblies 15 are respectively arranged on the left and right sides or the front and back sides of the support member 13. When the support member 13 shakes due to external force, the two lateral vibration damping assemblies 15 can play a good vibration damping role.

[0055] Alternatively, four lateral damping components 15 are provided, and the four lateral damping components 15 are respectively arranged on the support member 13 in the up-down, left-right directions. The damping of the support member 13 can be achieved through the four lateral damping components 15.

[0056] In some embodiments of the present invention, four support members 13 are provided, and the four support members 13 are arranged in a rectangular structure on the base body 11.

[0057] Eight lateral damping components 15 are provided. The eight lateral damping components 15 are grouped in pairs, and the four groups of lateral damping components 15 are respectively arranged on the four support members 13.

[0058] In each group of the lateral damping components 15, the first lateral damping component 15 is arranged on the support member 13 in the first direction, and the second lateral damping component 15 is arranged on the support member 13 in the second direction.

[0059] The eight lateral damping components 15 are symmetrically arranged with respect to the central axis of the rectangular structure, so as to reduce the lateral vibration of the four groups of support members 13 distributed in a rectangular shape in the first direction and the second direction through the lateral damping components 15.

[0060] In some of the above embodiments of the present invention, four support members 13 are provided, and the four support members 13 are arranged in a rectangular structure on the base body 11. The compressor main body 20 is arranged on the four support members 13 and is supported by the four support members 13.

[0061] Eight lateral damping components 15 are provided. The eight lateral damping components 15 are grouped in pairs, and the four groups of lateral damping components 15 are respectively arranged on the four support members 13. In each group of lateral damping components 15, the first lateral damping component 15 is arranged on the support member 13 in the first direction, and the second lateral damping component 15 is arranged on the support member 13 in the second direction. Thus, the damping of the support member 13 in the first direction and the second direction is achieved through the two lateral damping components 15, and the damping of the four groups of support members 13 distributed in a rectangular shape in the first direction and the second direction is achieved through the eight lateral components, ensuring that when the compressor main body 20 arranged on the four support members 13 operates, the noise problem during the operation of the compressor main body 20 is greatly reduced.

[0062] It should be noted that four support members 13 are provided, which are respectively the first support member 13, the second support member 13, the third support member 13, and the fourth support member 13, and eight lateral damping components 15 are provided.

[0063] The eight lateral damping components 15 are grouped in pairs, namely the first group of the lateral damping components 15, the second group of the lateral damping components 15, the third group of the lateral damping components 15, and the fourth group of the lateral damping components 15;

[0064] The first group of the lateral damping components 15 is arranged on the first support member 13, the second group of the lateral damping components 15 is arranged on the second support member 13, the third group of the lateral damping components 15 is arranged on the third support member 13, and the fourth group of the lateral damping components 15 is arranged on the fourth support member 13;

[0065] Among them, in the first group of the lateral damping components 15, the first lateral damping component 15 is arranged on the first support member 13 along the first direction, and the second lateral damping component 15 is arranged on the first support member 13 along the second direction;

[0066] Among the second group of the lateral damping components 15, the first lateral damping component 15 is arranged on the second support member 13 along the first direction, and the second lateral damping component 15 is arranged on the second support member 13 along the second direction;

[0067] Among the third group of the lateral damping components 15, the first lateral damping component 15 is arranged on the first support member 13 along the first direction, and the second lateral damping component 15 is arranged on the first support member 13 along the second direction;

[0068] Among the fourth group of the lateral damping components 15, the first lateral damping component 15 is arranged on the first support member 13 along the first direction, and the second lateral damping component 15 is arranged on the first support member 13 along the second direction;

[0069] Moreover, the first lateral damping component 15 in the first group of the lateral damping components 15 and the first lateral damping component 15 in the second group of the lateral damping components 15 are symmetrically arranged with respect to the vertical central axis of the rectangular structure; the second lateral damping component 15 in the first group of the lateral damping components 15 and the second lateral damping component 15 in the second group of the lateral damping components 15 are symmetrically arranged with respect to the vertical central axis of the rectangular structure.

[0070] The first lateral damping component 15 in the first group of the lateral damping components 15 and the first lateral damping component 15 in the third group of the lateral damping components 15 are symmetrically arranged with respect to the horizontal central axis of the rectangular structure; the second lateral damping component 15 in the first group of the lateral damping components 15 and the second lateral damping component 15 in the third group of the lateral damping components 15 are symmetrically arranged with respect to the horizontal central axis of the rectangular structure.

[0071] The first lateral shock-absorbing component 15 in the second group of lateral shock-absorbing components 15 and the first lateral shock-absorbing component 15 in the fourth group of lateral shock-absorbing components 15 are symmetrically arranged with respect to the horizontal central axis of the rectangular structure; the second lateral shock-absorbing component 15 in the second group of lateral shock-absorbing components 15 and the second lateral shock-absorbing component 15 in the fourth group of lateral shock-absorbing components 15 are symmetrically arranged with respect to the horizontal central axis of the rectangular structure.

[0072] The first lateral shock-absorbing component 15 in the third group of lateral shock-absorbing components 15 and the first lateral shock-absorbing component 15 in the fourth group of lateral shock-absorbing components 15 are symmetrically arranged with respect to the vertical central axis of the rectangular structure; the second lateral shock-absorbing component 15 in the third group of lateral shock-absorbing components 15 and the second lateral shock-absorbing component 15 in the fourth group of lateral shock-absorbing components 15 are symmetrically arranged with respect to the vertical central axis of the rectangular structure.

[0073] It can be understood that there are four groups of the support members 13, and four groups of the lateral shock-absorbing components 15 can also be provided. The four groups of the lateral shock-absorbing components 15 are respectively arranged at the four corners of the four groups of the support members 13 distributed in a rectangular shape, and the four groups of the lateral shock-absorbing components 15 are all arranged on the support members 13 along the diagonal direction of the rectangular structure.

[0074] In some embodiments of the present invention, the first direction is consistent with the direction of the first perpendicular side of the rectangular structure, and the second direction is consistent with the direction of the second perpendicular side of the rectangular structure.

[0075] In some of the above embodiments of the present invention, the first direction and the second direction are perpendicular, and the first direction is consistent with the direction of the first perpendicular side of the rectangular structure, and the second direction is consistent with the direction of the second perpendicular side of the rectangular structure. The compressor main body 20 can be shock-absorbed in two perpendicular directions, and the compressor main body 20 can be completely defined from the front, back, left, and right by the eight groups of the lateral shock-absorbing components 15, improving the shock-absorbing effect.

[0076] In some embodiments of the present invention, the bottom of at least one of the support members 13 has a hemispherical structure, and the abutting member 16 is slidably connected to the hemispherical structure of the support member 13.

[0077] In some of the above embodiments of the present invention, the bottom of the support member 13 has a hemispherical structure, and the abutting member 16 is slidably connected to the hemispherical structure of the support frame. The hemispherical structure can ensure the connection effect between the support member 13 and the abutting member 16, effectively prevent the abutting member 16 from separating from the support frame, and can effectively ensure that the abutting member 16 can slide on the base body 11 under the action of the support member 13.

[0078] It is understandable that the sliding fit connection between the abutting member 16 and the supporting member 13 means that the abutting member 16 is in contact or in fit with the supporting member 13. When the compressor main body 20 vibrates, the vibration will be transmitted to the supporting member 13 connected to the compressor main body 20, and the supporting member 13 will transmit the vibration to the abutting member 16. When the bottom of the supporting member 13 is in a hemispherical structure, it can limit the upward displacement of the abutting member 16, thereby making the abutting member 16 more stable.

[0079] In some embodiments of the present invention, the surface of the abutting member 16 connected to at least one of the supporting members 13 is an inclined surface.

[0080] In some of the above embodiments of the present invention, the surface of the abutting member 16 connected to at least one of the supporting members 13 is an inclined surface, and the inclined surface can ensure that the hemispherical structure is always in a tangent state with the abutting member 16 during vibration, so as to ensure that the vibration is evenly transmitted to the lateral vibration damping structure 17, and the lateral vibration damping structure 17 can evenly relieve the vibration, improving the stability and reliability of the lateral vibration damping structure 17.

[0081] It is understandable that the surface of the abutting member 16 connected to at least one of the supporting members 13 is an arc surface, and the arc surface structure can also transmit vibration to the hemispherical structure, so as to slow down the vibration through the lateral vibration damping structure 17, achieving the purpose of slowing down the vibration and improving the vibration damping effect.

[0082] In some embodiments of the present invention, a sliding wheel 18 is provided at the bottom of the abutting member 16, a sliding groove 19 is provided on the base body 11, and the abutting member 16 is slidably arranged in the sliding groove 19 through the sliding wheel 18.

[0083] In some of the above embodiments of the present invention, the abutting member 16 is slidably arranged in the sliding groove 19 through the sliding wheel 18, so as to ensure that the abutting member 16 moves along the sliding groove 19, so as to ensure that the vibration is transmitted to the lateral vibration damping structure 17, ensuring a good vibration damping effect.

[0084] In some embodiments of the present invention, a slider is provided at the bottom of the abutting member 16, a slide rail is provided on the base body 11, and the abutting member 16 is slidably arranged on the slide rail through the slider.

[0085] In some of the above embodiments of the present invention, the abutting member 16 can also cooperate with the slider and the slide rail to achieve vibration transmission, so as to ensure that the vibration is transmitted to the lateral vibration damping structure 17, ensuring a good vibration damping effect.

[0086] In some embodiments of the present invention, both the vertical vibration damping component 14 and the lateral vibration damping structure 17 are springs. Springs have a relatively low cost and can effectively reduce costs. The vertical vibration damping component 14 and the lateral vibration damping structure 17 can also adopt some existing vibration damping structures, such as rubber pads, damping vibration damping, etc.

[0087] A compressor includes a compressor main body 20 and a vibration damping and noise reduction base as described above, and the compressor main body 20 is disposed on at least one of the support members 13.

[0088] As an alternative embodiment, a foot pad 21 is provided on the compressor main body 20. An installation hole 22 is provided on the foot pad 21. The upper port diameter of the installation hole 22 is large and the lower port diameter is small. The foot pad 21 is connected to at least one of the support members 13 through the installation hole 22.

[0089] In some of the above embodiments of the present invention, a foot pad 21 is provided on the compressor main body 20. The foot pad 21 is connected to at least one of the support members 13 through the installation hole 22, and the installation hole 22 on the foot pad 21 has a structure with a large upper port diameter and a small lower port diameter, which can make a gap exist between the upper part of the support member 13 and the installation hole 22, thereby further reducing vibration.

[0090] A refrigerator includes the compressor as described above.

[0091] In the description of this specification, the description with reference to terms such as "example", "embodiment" or "some embodiments" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0092] Certainly, the present invention is not limited to the above embodiments. Those skilled in the art can make equivalent deformations or substitutions without departing from the spirit of the present invention, and these equivalent deformations or substitutions are all included in the scope defined by the claims of this application.

Claims

1. A vibration and noise reduction base, characterized in that, Comprising: A base; At least one support member, at least one of the support members being connected to the base through a vertical vibration damping assembly for damping vertical vibration force; At least one lateral vibration damping assembly connected between the support member and the base for damping lateral vibration force.

2. The vibration damping and noise reduction base according to claim 1, characterized in that The base includes a base body and side walls; At least one of the support members is connected to the base body through a vertical vibration damping assembly, the vertical vibration damping assembly being arranged in the vertical direction for damping vertical vibration force; The lateral vibration damping assembly includes a contact member and a lateral vibration damping structure, the contact member being slidably arranged on the base body and the contact member being connected to the support member; The lateral vibration damping structure is arranged between the side wall and the contact member, the lateral vibration damping structure being arranged in the horizontal direction for damping lateral vibration force.

3. The vibration damping and noise reduction base according to claim 2, characterized in that There are four support members, and the four support members are arranged in a rectangular structure on the base body; There are eight lateral vibration damping assemblies, and the eight lateral vibration damping assemblies are grouped in pairs, and the four groups of lateral vibration damping assemblies are respectively arranged on the four support members; In each group of the lateral vibration damping assemblies, the first lateral vibration damping assembly is arranged on the support member in the first direction, and the second lateral vibration damping assembly is arranged on the support member in the second direction; The eight lateral vibration damping assemblies are symmetrically arranged with respect to the central axis of the rectangular structure to damp the lateral vibration of the four support members in the first direction and the second direction through the lateral vibration damping assemblies.

4. The vibration damping and noise reduction base according to claim 3, wherein The first direction is the same as the direction of the first vertical side of the rectangular structure, and the second direction is the same as the direction of the second vertical side of the rectangular structure.

5. The vibration damping and noise reduction base according to any one of claims 2-4, characterized in that, The bottom of at least one of the support members is in a hemispherical structure, and the contact member is slidably and matingly connected to the hemispherical structure of the support member.

6. The vibration damping and noise reduction base according to any one of claims 2-4, characterized in that, The surface of the contact member connected to at least one of the support members is an inclined surface.

7. The vibration damping and noise reduction base according to any one of claims 2-4, characterized in that, Sliding wheels are arranged at the bottom of the contact member, and sliding grooves are arranged on the base body, and the contact member is slidably arranged in the sliding grooves through the sliding wheels.

8. The vibration damping and noise reduction base according to any one of claims 2-4, characterized in that, Sliding blocks are arranged at the bottom of the contact member, and sliding rails are arranged on the base body, and the contact member is slidably arranged on the sliding rails through the sliding blocks.

9. A compressor, comprising a compressor main body and a vibration damping and noise reduction base as described in any one of claims 1-8, the compressor main body being arranged on at least one of the support members.

10. The compressor according to claim 9, characterized in that, Foot pads are arranged on the compressor main body, mounting holes are arranged on the foot pads, the upper port diameter of the mounting holes is large and the lower port diameter is small, and the foot pads are connected to at least one of the support members through the mounting holes.

11. A refrigerator, characterized in that, Comprising the compressor as described in claim 9.