Noise reduction mounting shell, booster pump and ice maker

By using a noise-reducing mounting shell in the ice maker and utilizing a dual buffer design of a shock-absorbing plate and a shock-absorbing support, the problem of poor vibration damping effect of the booster pump is solved, achieving a better noise reduction effect.

CN223594548UActive Publication Date: 2025-11-25FOSHAN YANGNENG ELECTRIC CO LTD
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Patent Information

Application Number
CN202423168634.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-25
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The existing ice maker's booster pump has a poor vibration damping effect, resulting in unsatisfactory noise reduction.

Method used

The noise-reducing mounting shell is used, with shock-absorbing plates and mounting bases separated and connected by shock-absorbing supports to achieve double buffering and reduce vibration transmission.

Benefits of technology

It significantly improves noise reduction, reduces vibration transmission during booster pump operation, and reduces noise interference to the surrounding environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a noise reduction mounting shell, a booster pump and an ice maker, and the noise reduction mounting shell comprises a mounting base body which is used for being connected with the ice maker; the damping plate and the mounting base body are arranged in a spaced mode, the damping plate is provided with a mounting part, and the mounting part is used for bearing the booster pump; and the first end of the damping supporting body is connected with the damping plate, the second end of the damping supporting body is connected with the mounting base body, and the damping supporting body bears the damping plate. According to the noise reduction mounting shell, due to the fact that the damping plate and the mounting base body are arranged in the spaced mode and connected together through the damping supporting body, when the booster pump works, the damping plate can conduct primary buffering on vibration generated when the booster pump works, and noise reduction is achieved. And the damping supporting body conducts secondary buffering on vibration generated when the booster pump works, the double buffering effect is achieved, vibration transmitted to the mounting base body by the booster pump can be greatly reduced, therefore, vibration to the surrounding environment can be greatly reduced, and the noise reduction effect is better.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of ice making, and particularly relates to a noise reduction mounting shell, a booster pump and an ice maker. BACKGROUND

[0002] The ice maker is a refrigeration mechanical equipment for generating ice by cooling water through a refrigerant provided by a refrigeration system, that is, using a refrigeration system and water as a carrier to generate ice through a certain device under the power-on state.

[0003] At present, in the ice maker, the booster pump has a special noise reduction and shock absorption device for noise reduction and sound insulation. However, since the noise reduction and shock absorption device only buffers the vibration generated during the pump operation through the shock absorption plate arranged on the bottom plate, the shock absorption effect is poor, and the noise reduction effect is not ideal. CONTENT OF THE UTILITY MODEL

[0004] The present application provides a noise reduction mounting shell, a booster pump and an ice maker to solve the problem of poor shock absorption effect in related technologies, and the technical scheme is as follows:

[0005] In a first aspect, the present application provides a noise reduction mounting shell for connecting with an ice maker, comprising:

[0006] A mounting base for connecting with the ice maker;

[0007] A shock absorption plate arranged apart from the mounting base, the shock absorption plate being provided with a mounting portion for supporting the booster pump;

[0008] A shock absorption support body, a first end of the shock absorption support body being connected to the shock absorption plate, a second end of the shock absorption support body being connected to the mounting base, and the shock absorption support body supporting the shock absorption plate.

[0009] In an embodiment, the first end of the shock absorption support body penetrates the shock absorption support body and extends above the shock absorption support body;

[0010] The noise reduction mounting shell further comprises:

[0011] A fastener, a head of the fastener abutting against the first end of the shock absorption support body, and a rod of the fastener penetrating the shock absorption support body and the mounting base to connect the shock absorption support body, the shock absorption plate and the mounting base together.

[0012] In an embodiment, the shock absorption support body has a mounting hole penetrating the first end and the second end of the shock absorption support body, and the mounting hole is provided for the rod of the fastener to penetrate;

[0013] The mounting base has a threaded hole which is threadedly connected with the shank of the fastener.

[0014] In one embodiment, the mounting hole is provided with a first hole section and a second hole section, the first hole section and the second hole section are sequentially arranged along the axial direction of the mounting hole, the first hole section is closer to the first end of the shock-absorbing support than the second hole section, and the hole diameter of the first hole section is larger than that of the second hole section.

[0015] The noise-reducing mounting shell further comprises:

[0016] A support sleeve is inserted into the second hole section, a central hole of the support sleeve is provided for the shank of the fastener to pass through, and an outer peripheral wall of the support sleeve is provided with a first annular limiting portion which is adapted to the first hole section and abuts against the head of the fastener.

[0017] In one embodiment, the shock-absorbing support is provided with a second annular limiting portion and a third annular limiting portion, the second annular limiting portion and the third annular limiting portion are arranged apart along the height direction of the shock-absorbing support, and the second annular limiting portion and the third annular limiting portion are respectively arranged on opposite sides of the shock-absorbing plate to limit the shock-absorbing support from being separated from the shock-absorbing plate.

[0018] In one embodiment, the mounting base has a positioning groove which is matched with the second end of the shock-absorbing support.

[0019] In one embodiment, the mounting portion has an arc-shaped groove which is adapted to the pump body of the booster pump.

[0020] In one embodiment, the mounting base comprises:

[0021] A first mounting plate is arranged apart from the shock-absorbing plate, the first mounting plate is connected with the second end of the shock-absorbing support, and the first mounting plate is provided with a first connecting portion which is used for being connected with a support bracket in the ice maker.

[0022] A second mounting plate is vertically arranged on the first mounting plate, the second mounting plate is arranged apart from the shock-absorbing plate, and the second mounting plate is provided with a second connecting portion which is used for being connected with a filtering device in the ice maker.

[0023] A third mounting plate is connected to the first mounting plate and the second mounting plate, and is located between the first mounting plate and the second mounting plate, the third mounting plate, the first mounting plate and the second mounting plate are arranged around the booster pump, the third mounting plate, the first mounting plate and the second mounting plate form an installation gap for the booster pump to enter and exit the mounting portion, and the third mounting plate is arranged separately from the booster pump.

[0024] In a second aspect, the embodiments of the present application provide a booster pump comprising the noise reduction mounting shell.

[0025] In a third aspect, the embodiments of the present application provide an ice maker comprising the noise reduction mounting shell.

[0026] The advantages or beneficial effects of the above technical solutions at least include:

[0027] The noise reduction mounting shell of the utility model, since the shock-absorbing plate and the mounting base are arranged separately, and the shock-absorbing plate and the mounting base are connected together through the shock-absorbing support, when the booster pump works, the shock-absorbing plate can buffer the vibration generated when the booster pump works once, and the shock-absorbing support buffers the vibration generated when the booster pump works twice, plays a double buffering role, can greatly reduce the vibration of the booster pump transmitted to the mounting base, thereby greatly reducing the vibration to the surrounding environment, and the noise reduction effect is more excellent.

[0028] The above summary is only for the purpose of the description and is not intended to limit in any way. In addition to the above-described illustrative aspects, embodiments, and features, further aspects, embodiments, and features of the present application will be readily apparent from the drawings and detailed description below. BRIEF DESCRIPTION OF DRAWINGS

[0029] In the drawings, like reference numerals refer to same or similar functionalities throughout the several views. The drawings are not necessarily to scale. It is to be understood that these drawings only depict several embodiments in accordance with the disclosure and should not be considered to be limiting.

[0030] Figure 1 It is a perspective view of the noise reduction mounting shell of the utility model;

[0031] Figure 2 It is an exploded view of the noise reduction mounting shell of the utility model;

[0032] Figure 3 It is a sectional view of the noise reduction mounting shell of the utility model;

[0033] Figure 4 It is Figure 3A local enlarged view of a portion of Figure 1.

[0034] Reference numerals

[0035] 1, mounting base; 11, first mounting plate; 111, threaded hole; 112, positioning groove; 113, first connecting part; 12, second mounting plate; 121, second connecting part; 13, third mounting plate; 2, damping plate; 21, mounting part; 211, arc-shaped groove; 3, damping support body; 31, mounting hole; 32, second annular limiting part; 33, third annular limiting part; 4, supporting sleeve; 41, first annular limiting part; 5, booster pump. DETAILED DESCRIPTION

[0036] Hereinafter, only certain exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than limiting.

[0037] Referring to Figures 1-4 , a noise reduction mounting shell is shown, the noise reduction mounting shell is used for being connected with an ice maker, and comprises:

[0038] A mounting base 1 is used for being connected with the ice maker;

[0039] A damping plate 2 is arranged apart from the mounting base 1, and the damping plate 2 is provided with a mounting part 21 for supporting the booster pump 5;

[0040] A damping support body 3 is connected to the first end of the damping plate 2, and the second end of the damping support body 3 is connected to the mounting base 1, and the damping support body 3 supports the damping plate 2.

[0041] The noise reduction mounting shell of the utility model, since the damping plate 2 and the mounting base 1 are arranged apart, and the damping plate 2 and the mounting base 1 are connected together through the damping support body 3, when the booster pump 5 works, the damping plate 2 can buffer the vibration generated when the booster pump 5 works once, and the damping support body 3 buffers the vibration generated when the booster pump 5 works twice, plays a double buffering role, can greatly reduce the vibration of the booster pump 5 transmitted to the mounting base 1, so as to greatly reduce the vibration to the surrounding environment, and the noise reduction effect is more excellent.

[0042] Referring to Figures 1-3 In an embodiment, the number of damping support bodies 3 is multiple, and the multiple damping support bodies 3 are arranged apart around the mounting part 21, which can improve the connection reliability between the damping plate 2 and the mounting base 1, and further improve the damping and noise reduction effect.

[0043] In an embodiment, the first end of the shock-absorbing support 3 penetrates the shock-absorbing support 3 and extends above the shock-absorbing support 3;

[0044] The noise-reducing mounting shell further comprises:

[0045] A fastener (not shown in the figure) whose head abuts against the first end of the shock-absorbing support 3 and whose shank penetrates the shock-absorbing support 3 and the mounting base 1 to connect the shock-absorbing support 3, the shock-absorbing plate 2 and the mounting base 1 together and realize the fixed mounting of the shock-absorbing support 3, the shock-absorbing plate 2 and the mounting base 1, which has high structural reliability and ensures that the shock-absorbing plate 2 and the shock-absorbing support 3 can effectively buffer the booster pump 5, thereby improving the shock-absorbing effect.

[0046] Referring to Figure 4 In an embodiment, the shock-absorbing support 3 has a mounting hole 31 that penetrates the first end and the second end of the shock-absorbing support 3, and the mounting hole 31 is for the shank of the fastener to penetrate;

[0047] The mounting base 1 has a threaded hole 111 that is threadedly connected with the shank of the fastener to reliably fix the shock-absorbing support 3, the shock-absorbing plate 2 and the mounting base 1 together, which has a simple and convenient assembly mode and is convenient for disassembly and maintenance.

[0048] In an embodiment, the fastener is a screw. Of course, in other embodiments, the fastener can be a rivet or a bolt.

[0049] Referring to Figure 4 In an embodiment, the mounting hole 31 is provided with a first hole section and a second hole section, which are sequentially arranged along the axial direction of the mounting hole 31, the first hole section is closer to the first end of the shock-absorbing support 3 than the second hole section, and the hole diameter of the first hole section is larger than that of the second hole section;

[0050] The noise-reducing mounting shell further comprises:

[0051] A support sleeve 4 that is inserted into the second hole section, a central hole of the support sleeve 4 is for the shank of the fastener to penetrate, and an outer peripheral wall of the support sleeve 4 is provided with a first annular limiting portion 41 that is adapted to the first hole section and abuts against the head of the fastener. In this way, the shock-absorbing support 3 can be supported by the support sleeve 4, and the shock-absorbing support 3, the shock-absorbing plate 2 and the mounting base 1 can be reliably fixed together by the fastener.

[0052] In an embodiment, the shock-absorbing support body 3 is provided with a second annular limiting portion 32 and a third annular limiting portion 33, which are arranged at intervals along the height direction of the shock-absorbing support body 3, and are respectively arranged on opposite sides of the shock-absorbing plate 2 to limit the shock-absorbing support body 3 from being separated from the shock-absorbing plate 2, thereby improving the connection reliability of the shock-absorbing support body 3 and the shock-absorbing plate 2.

[0053] In an embodiment, the shock-absorbing plate 2 can be a structure made of steel material, so that the shock-absorbing plate 2 has better shock-absorbing effect and can reliably support the booster pump 5, thereby improving the installation stability of the booster pump 5.

[0054] Of course, in other embodiments, the shock-absorbing plate 2 can also be a structure made of any one of plastic, silica gel, rubber and the like.

[0055] In an embodiment, the shock-absorbing support body 3 is a structure made of rubber material, so that the shock-absorbing support body 3 has better buffering performance and improves the shock-absorbing effect on the booster pump 5.

[0056] Of course, in other embodiments, the shock-absorbing support body 3 can also be a structure made of silica gel material, which can also make the shock-absorbing support body 3 have better buffering performance.

[0057] Referring to Figure 4 In an embodiment, the mounting base 1 has a positioning groove 112, which cooperates with the second end of the shock-absorbing support body 3 to mount and position the second end of the shock-absorbing support body 3, thereby facilitating the quick assembly of the shock-absorbing support body 3 and improving the installation efficiency.

[0058] Referring to Figure 2 In an embodiment, the mounting portion 21 has an arc-shaped groove 211, which cooperates with the pump body of the booster pump 5 to increase the contact area between the shock-absorbing plate 2 and the booster pump 5, thereby facilitating the further improvement of the shock-absorbing and noise-reducing effect.

[0059] Referring to Figures 1-4 In an embodiment, the mounting base 1 comprises:

[0060] The first mounting plate 11 is arranged at an interval from the shock-absorbing plate 2, the first mounting plate 11 connects the second end of the shock-absorbing support body 3, and the first mounting plate 11 is provided with a first connecting portion 113 for connecting with a supporting bracket in the ice maker;

[0061] A second mounting plate 12 is vertically mounted on the first mounting plate 11. The second mounting plate 12 and the shock-absorbing plate 2 are spaced apart. The second mounting plate 12 has a second connecting part 121 for connecting to the filter device inside the ice maker.

[0062] The third mounting plate 13 connects the first mounting plate 11 and the second mounting plate 12. The third mounting plate 13 is located between the first mounting plate 11 and the second mounting plate 12. The third mounting plate 13, the first mounting plate 11 and the second mounting plate 12 are arranged around the booster pump 5. The third mounting plate 13, the first mounting plate 11 and the second mounting plate 12 form a mounting notch for the booster pump 5 to enter and exit the mounting part 21. The third mounting plate 13 and the booster pump 5 are spaced apart. Since the third mounting plate 13, the first mounting plate 11, and the second mounting plate 12 form a mounting notch, the mounting notch allows the booster pump 5 to enter and exit the mounting part 21, facilitating the installation of the booster pump 5 onto the mounting part 21 and also facilitating the maintenance of the booster pump 5. Secondly, since the first mounting plate 11 is provided with a first connecting part 113, the first connecting part 113 can be connected to the support bracket inside the ice maker, allowing the mounting base 1 to be connected to the support bracket inside the ice maker. This facilitates the fixing of the mounting base 1 and also enhances the structural strength and stability of the support bracket. In addition, since the second mounting plate 12 is provided with a second connecting part 121, the second connecting part 121 can be connected to the filter device inside the ice maker, allowing the mounting base 1 to be connected to the filter device as well. This facilitates the installation of the mounting base 1 and also improves the installation stability of the mounting base 1.

[0063] In one embodiment, the length direction of the booster pump 5 is parallel to the length direction of the first mounting plate 11. The first mounting plate 11 has a first connecting part 113 on both sides of its length direction. Each first connecting part 113 is connected to the support bracket to further improve the installation stability of the mounting base 1 and provide stable support for the booster pump 5.

[0064] A preferred embodiment of this utility model provides a booster pump 5, which includes the aforementioned noise-reducing mounting housing.

[0065] The booster pump 5 of this utility model adopts the aforementioned noise-reducing mounting shell. It is also based on the damping plate 2 and the mounting base 1 being separated and connected together by the damping support 3. When the booster pump 5 is working, the damping plate 2 can buffer the vibration generated by the booster pump 5 at first, while the damping support 3 buffers the vibration generated by the booster pump 5 at second, playing a double buffering role. This can greatly reduce the vibration transmitted from the booster pump 5 to the mounting base 1, thereby greatly reducing the vibration to the surrounding environment and achieving a better noise reduction effect.

[0066] The utility model provides a kind of ice maker of a preferred implementation mode, including the noise reduction installation shell of above.

[0067] The ice maker of the utility model, since the noise reduction installation shell is used, is also based on the setting apart of damping plate 2 and installation base body 1, and damping plate 2 and installation base body 1 are connected together by damping support 3, when booster pump 5 works, damping plate 2 can buffer the vibration generated when booster pump 5 works once, and damping support 3 buffers the vibration generated when booster pump 5 works twice, plays double buffering effect, can greatly reduce the vibration of booster pump 5 to installation base body 1, so as to greatly reduce the vibration to surrounding environment, and the noise reduction effect is more excellent.

[0068] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples without contradiction.

[0069] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one feature. In the description of the present application, the meaning of "multiple" is two or more than two, unless otherwise specifically limited.

[0070] The above is only the specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can easily think of various changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of claims.

Claims

1. A noise-reducing mounting housing, the noise-reducing mounting housing being used to connect to an ice maker, characterized in that, include: Mounting base, which is used to connect to an ice maker; A shock-absorbing plate is provided, which is spaced apart from the mounting base. The shock-absorbing plate is provided with a mounting part for supporting the booster pump. A shock-absorbing support body, wherein the first end of the shock-absorbing support body is connected to the shock-absorbing plate, the second end of the shock-absorbing support body is connected to the mounting base, and the shock-absorbing support body supports the shock-absorbing plate.

2. The noise-reducing mounting housing according to claim 1, characterized in that, The first end of the shock-absorbing support body passes through the shock-absorbing support body and extends to the top of the shock-absorbing support body; The noise-reducing mounting housing also includes: A fastener, the head of which abuts against the first end of the shock-absorbing support, and the rod of which passes through the shock-absorbing support and the mounting base to connect the shock-absorbing support, the shock-absorbing plate and the mounting base together.

3. The noise-reducing mounting housing according to claim 2, characterized in that, The shock-absorbing support has mounting holes that extend through the first and second ends of the shock-absorbing support, and the mounting holes allow the rod portion of the fastener to pass through. The mounting base has a threaded hole, which is threadedly connected to the rod portion of the fastener.

4. The noise-reducing mounting housing according to claim 3, characterized in that, The mounting hole has a first hole section and a second hole section, which are arranged sequentially along the axial direction of the mounting hole. The first hole section is closer to the first end of the shock-absorbing support than the second hole section, and the diameter of the first hole section is larger than the diameter of the second hole section. The noise-reducing mounting housing also includes: A support sleeve is inserted into the second hole section. The central hole of the support sleeve is for the rod portion of the fastener to pass through. The outer peripheral wall of the support sleeve is provided with a first annular limiting part. The first annular limiting part is adapted to the first hole section, and the first annular limiting part abuts against the head of the fastener.

5. The noise-reducing mounting housing according to claim 2, characterized in that, The shock-absorbing support is provided with a second annular limiting part and a third annular limiting part. The second annular limiting part and the third annular limiting part are spaced apart along the height direction of the shock-absorbing support. The second annular limiting part and the third annular limiting part are respectively placed on opposite sides of the shock-absorbing plate to restrict the shock-absorbing support from detaching from the shock-absorbing plate.

6. The noise-reducing mounting housing according to claim 1, characterized in that, The mounting base has a positioning groove, which engages with the second end of the shock-absorbing support.

7. The noise-reducing mounting housing according to claim 1, characterized in that, The mounting part has an arc-shaped groove, which is adapted to the pump body of the booster pump.

8. The noise-reducing mounting housing according to claim 1, characterized in that, The mounting base includes: A first mounting plate is provided, which is spaced apart from the shock-absorbing plate. The first mounting plate is connected to the second end of the shock-absorbing support body. The first mounting plate is provided with a first connecting part, which is used to connect with the support bracket inside the ice maker. A second mounting plate, vertically placed on the first mounting plate, is spaced apart from the shock-absorbing plate. The second mounting plate has a second connecting portion for connecting to a filter device inside the ice maker. A third mounting plate is connected to the first mounting plate and the second mounting plate. The third mounting plate is located between the first mounting plate and the second mounting plate. The third mounting plate, the first mounting plate and the second mounting plate are arranged around the booster pump. The third mounting plate, the first mounting plate and the second mounting plate form a mounting notch. The mounting notch allows the booster pump to enter and exit the mounting part. The third mounting plate and the booster pump are spaced apart.

9. A booster pump, characterized in that, The noise-reducing mounting housing includes any one of claims 1-8.

10. An ice maker, characterized in that, The noise-reducing mounting housing includes any one of claims 1-8.