Pump body support, pump body assembly and vehicle

By designing an openable and closable pump body bracket and utilizing the self-locking structure of the inverted part and the recess, the problem of numerous parts and complex assembly of existing brackets is solved, achieving the effect of simplifying the disassembly and assembly process and reducing costs.

CN224090027UActive Publication Date: 2026-04-07ANQING WELLING AUTO PARTS CO LTD +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-02
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The existing electronic water pump bracket has a split structure, with many parts and complex assembly, resulting in high production costs and low efficiency.

Method used

Design a pump body bracket, wherein the second end of the bracket is closable to the base, and self-locking is achieved through the cooperation of the undercut and the recess, simplifying the assembly process, and reducing material usage by connecting the integrated bracket and the base.

Benefits of technology

It simplifies the disassembly and assembly of the pump body, improves assembly efficiency, reduces production costs, and ensures assembly accuracy and stability through a self-locking structure.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a pump body support, a pump body assembly and a vehicle. The support of the pump body comprises a support body, the support body comprises a seat body and a frame body, the first end of the frame body and the seat body are integrally formed, the second end of the frame body and the seat body are connected in an opening and closing mode, and a mounting cavity is defined by the frame body and the seat body; one of the frame body and the seat body is provided with an inverted buckling part, the other one is provided with a concave part, and when the inverted buckling part is inserted into the concave part, the second end part and the seat body can be limited to be separated. The reverse buckling part and the concave part are matched to limit separation of the second end part and the seat body, so that the assembly difficulty of the bracket of the pump body can be reduced, and the assembly efficiency of the bracket of the pump body can be improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of vehicles, in particular to a bracket of a pump body, a pump body assembly and a vehicle. BACKGROUND

[0002] The bracket of the electronic water pump is a split structure, and the bracket includes two relatively independent bracket bodies. After the two bracket bodies are assembled, an installation cavity is formed, and the water pump is arranged in the installation cavity. The bracket has many components, the assembly process is complex, the assembly efficiency is low, and the production cost of the product is high. CONTENT OF THE UTILITY MODEL

[0003] The present application aims to at least solve one of the problems in the prior art or related art.

[0004] To this end, the first aspect of the present application provides a bracket of a pump body.

[0005] The second aspect of the present application provides a pump body assembly.

[0006] The third aspect of the present application provides a vehicle.

[0007] Therefore, the first aspect of the present application provides a bracket of a pump body, which includes a bracket body. The bracket body includes a seat body and a bracket body. A first end of the bracket body is integrally formed with the seat body, and a second end of the bracket body is openably and closably connected with the seat body. The bracket body and the seat body enclose an installation cavity. One of the bracket body and the seat body is provided with a reverse buckle portion, and the other is provided with a recess portion. When the reverse buckle portion is inserted into the recess portion, the second end and the seat body can be limited to be separated.

[0008] The bracket of the pump body provided by the present application includes a bracket body.

[0009] The bracket body includes a seat body and a bracket body. The bracket body has a first end and a second end. The first end of the bracket body is integrally formed with the seat body, and the second end of the bracket body is openably and closably connected with the seat body. The bracket body and the seat body enclose an installation cavity. The installation cavity is used for mounting and fixing the pump body.

[0010] When the pump body needs to be assembled, the second end of the bracket body is separated from the seat body, and then the pump body is assembled in the installation cavity. After the assembly is completed, the second end of the bracket body is connected with the seat body, so that the pump body is stably assembled in the bracket of the pump body.

[0011] Because the second end 124 of the frame and the base are closable, the second end 124 of the frame and the base can be opened and closed according to the needs of disassembling and assembling the pump body. When the second end of the frame is separated from the base, the volume of the mounting cavity increases accordingly, thus reducing the difficulty of disassembling and assembling the pump body and facilitating its assembly and disassembly. Furthermore, since the first end of the frame and the base are integrally formed, the material input for fastening the first end of the frame and the base is reduced. This design simplifies the disassembly and assembly process of the base and frame, reduces the difficulty of disassembly and assembly, improves the efficiency of disassembly and assembly of the base and frame, and helps to reduce the production cost of the product.

[0012] Furthermore, one of the frame and the base has an undercut portion, and the other of the frame and the base has a recess. That is, the frame has an undercut portion and the base has a recess, or the frame has a recess and the base has an undercut portion.

[0013] The undercut inserts into the recess, and the undercut and recess cooperate to prevent the second end from separating from the seat. That is, when an external force is applied to the frame to move the second end of the frame to the seat, the undercut inserts into the recess. When the external force is removed, even without fasteners to secure the second end of the frame to the seat, the undercut and recess will prevent the second end from separating from the seat. In other words, the undercut and recess effectively limit the second end to the seat, creating a self-locking state that prevents separation. This eliminates the need for the operator to press to ensure the alignment of the second end of the frame and the seat when assembling the pump body's bushing. With the undercut inserted into the recess, the second end of the frame is engaged with the seat and will not separate; only the bushing needs to be assembled. This design reduces the assembly difficulty of the pump body's support and improves assembly efficiency.

[0014] The pump body bracket described above according to this application may also have the following additional technical features:

[0015] In some embodiments, optionally, along the thickness direction of the support body, the support body has a first end face and a second end face disposed opposite to each other, and the recess penetrates through the first end face and the second end face.

[0016] In this embodiment, the structure of the support body is further defined.

[0017] Specifically, the support body has a first end face and a second end face, which are disposed opposite to each other along the thickness direction of the support body. The recess penetrates through the first end face and the second end face.

[0018] This design facilitates demolding of the support body, reduces the processing difficulty of the mold for the support body, and thus indirectly reduces the production cost of the pump body support.

[0019] In addition, this setting allows the operator to effectively observe whether the undercut and recessed parts are properly assembled, which has the advantage of convenient operation and helps to ensure the assembly yield of the product.

[0020] In some embodiments, optionally, when the seat is provided with an inverted portion, the side wall of the inverted portion facing the second end of the frame is a stepped surface.

[0021] In this embodiment, the structure of the undercut portion is further defined such that when the base has the undercut portion, the side wall of the undercut portion facing the second end of the frame is a stepped surface. That is, the side wall of the undercut portion facing the second end of the frame is bent to form a stepped surface. It is understood that the shape of the wall opposite the recess and the stepped surface is the same. The corner of the stepped surface cooperates with the recess to limit the frame from multiple directions and angles, so that the second end of the frame will not separate from the base. Moreover, the side wall of the undercut portion facing the second end of the frame is a stepped surface, so that the force between the undercut portion and the recess can be effectively applied to the second end of the frame, which helps to reduce the gap between the second end of the frame and the base, and can ensure the assembly dimensional accuracy of the frame and the base.

[0022] In some embodiments, the base may optionally include a support segment, a first connecting segment, and a second connecting segment. The support segment is connected between the first connecting segment and the second connecting segment. The first end is integrally formed with the support segment, and the second end is closable with the second connecting segment. Both the first connecting segment and the second connecting segment are used for the installation and positioning of the support segment. The connection between the second connecting segment and the support segment is provided with an undercut or a recess.

[0023] In this embodiment, the structure of the base is further defined.

[0024] Specifically, the base includes a support section, a first connecting section, and a second connecting section. The support section is connected to the first connecting section, and the support section is also connected to the second connecting section. That is, the support section is connected between the first connecting section and the second connecting section.

[0025] Specifically, the first end of the frame is integrally formed with the support section, and the second end of the frame is detachably connected with the second connecting section.

[0026] Both the first and second connecting sections are used for the installation and positioning of the support section. Specifically, both the first and second connecting sections are used for connection with other components of the vehicle, such as connecting with a crossbeam.

[0027] Furthermore, the connection between the second connecting section and the support section is provided with an undercut or a recess. That is, the connection between the second connecting section and the support section is provided with an undercut, or a recess. This indicates that the mating part of the undercut or the recess is located immediately adjacent to the second connecting section. This helps to further ensure the dimensional accuracy of the second end of the frame and the second connecting section. It reduces the probability of misalignment between the second end of the frame and the second connecting section, providing effective and reliable structural support for subsequent bushing assembly.

[0028] In some embodiments, the pump body support may optionally include an identification portion disposed on at least one of the base and the frame, the identification portion being used for the installation and positioning of the pump body.

[0029] In this embodiment, the structure of the pump body support is further defined.

[0030] Specifically, the pump body support also includes an identification section, which is located in at least one of the base and the frame. That is, the identification section is located in the base, or in the frame, or there are multiple identification sections, with some in the base and others in the frame.

[0031] The marking section serves to locate the pump body's installation position. Specifically, the marking section corresponds to a structure on the pump body. When installing the pump body and its bracket, this structure on the pump body can be aligned with the marking section on the pump body's bracket. This prevents incorrect installation of the pump body's bracket at the wrong angle and ensures the uniqueness of the bracket's installation angle. This improves the assembly efficiency and yield rate of the pump body and its bracket, and provides structural support for effective assembly with other vehicle components.

[0032] In some embodiments, the marking portion may be a recessed structure facing the mounting cavity, or the marking portion may be a protruding structure facing away from the mounting cavity.

[0033] In this embodiment, the specific structure of the marking section is refined.

[0034] Specifically, the marking part is a recessed structure that faces the mounting cavity.

[0035] Specifically, the marking section is a raised structure that protrudes away from the mounting cavity.

[0036] In some embodiments, the marking portion is optionally disposed on the frame, and the marking portion is disposed opposite to the first connecting section.

[0037] In this embodiment, the position of the marking portion is further defined.

[0038] Specifically, the marking section is located on the frame and is positioned opposite to the first connecting section. This arrangement prevents interference between the marking section and the pump body during assembly.

[0039] Understandably, the signage is located on the outer perimeter wall of the frame.

[0040] In some embodiments, the seat body may optionally have a first recess on the side opposite to the frame.

[0041] In this embodiment, the structure of the base is further refined.

[0042] The seat body has a first recess on the side away from the frame body. The first recess has the function of reducing the weight of the seat body and the overall weight of the pump body support, which helps to reduce the amount of material input for the support body and thus helps to reduce the production cost of the pump body support.

[0043] In addition, the side of the base away from the frame is the bottom surface of the support body, which is the mounting surface and the contact surface with the crossbeam. By providing a first recess on the side of the base away from the frame, the contact area between the pump body support and the crossbeam can be reduced.

[0044] When the vehicle is working, the vibration of the pump body is transmitted to the whole vehicle through the contact surface between the pump body bracket and the crossbeam. By setting the first recess, the contact area with the crossbeam can be reduced, thereby weakening the vibration transmission and playing a role in vibration isolation. This can effectively reduce the vibration isolation rate of the product and improve the vibration isolation effect.

[0045] In some embodiments, the first recess may be located between the first connecting segment and the second connecting segment.

[0046] In this embodiment, the mating structure of the first recess, the first connecting segment, and the second connecting segment is further defined.

[0047] Specifically, the first recess is located between the first connecting section and the second connecting section. That is, the support section is provided with the first recess. The first recess is spaced apart from the first connecting section and spaced apart from the second connecting section.

[0048] This design ensures that while reducing the contact area between the pump body's support and the crossbeam, it also avoids reducing the contact area between the first connecting section and the crossbeam, as well as the contact area between the second connecting section and the crossbeam. This ensures that the first connecting section and the crossbeam are effectively connected, and that the second connecting section and the crossbeam are effectively connected.

[0049] In some embodiments, optionally, the second end is provided with a first through hole, the second connecting section is provided with a second through hole, and when the second end is connected to the seat, the first through hole and the second through hole are arranged opposite to each other; the first connecting section is provided with a third through hole; the pump body bracket also includes a first bushing and a second bushing, the first bushing passes through the first through hole and the second through hole, and the second bushing passes through the third through hole.

[0050] In this embodiment, the structure of the pump body support is further defined.

[0051] The second end has a first through hole, and the second connecting section has a second through hole, with the first through hole and the second through hole engaging. Specifically, when the second end is connected to the base, the first through hole and the second through hole are positioned opposite each other.

[0052] The pump body support also includes a first bushing, which passes through a first through hole and a second through hole. Optionally, both the first through hole and the second through hole are interference-fitted with the first bushing.

[0053] After the buckle is inserted into the recess, the second end of the frame will not separate from the base. In other words, the buckle and recess work together to limit the second end to the base, thus creating a self-locking state between the base and the frame. The first and second through holes are aligned with the buckle and recess. Therefore, when assembling the first bushing, the first bushing can be effectively aligned and assembled with the first and second through holes without the operator pressing on the frame.

[0054] The first connecting section is provided with a third through hole, and the pump body bracket also includes a second bushing, which passes through the third through hole. Optionally, the third through hole is interference-fitted with the second bushing.

[0055] The first and second bushings are used to connect with the vehicle's crossbeam. This arrangement prevents excessive installation torque from causing deformation of the pump body bracket. It also improves the structural strength and rigidity of the pump body bracket and crossbeam assembly.

[0056] In some embodiments, the outer peripheral wall of the frame may also be provided with a second recess, which extends through the first end face and the second end face.

[0057] In this embodiment, the structure of the frame is further defined, and the outer peripheral wall of the frame is also provided with a second recess, which penetrates the first end face and the second end face.

[0058] This design facilitates demolding of the support body, reduces the processing difficulty of the mold for the support body, and thus indirectly reduces the production cost of the pump body support.

[0059] Understandably, the base and frame are injection molded as a single unit. When the support body is in its natural state, the second end of the frame separates from the base, meaning the second end of the support is raised. After the support body is assembled with the pump body, the outer peripheral wall of the frame will be subjected to tension. The second recess can counteract this tension, ensuring the balance and consistency of the forces on the inner and outer peripheral walls of the frame, which helps extend the service life of the pump body's support.

[0060] In some embodiments, the number of second recesses may be multiple, and the multiple second recesses are arranged at intervals.

[0061] In this embodiment, the number of second recesses and their mating structure are further defined.

[0062] Specifically, there are multiple second recesses, which are arranged at intervals.

[0063] In this way, the tension force at the connection between the second end of the frame and the base can be offset at multiple locations on the outer peripheral wall of the frame, which helps to improve the balance and consistency of the force on the inner and outer peripheral walls of the frame.

[0064] It is understandable that the inner peripheral wall of the frame forms part of the cavity wall of the installation cavity.

[0065] In some embodiments, the cavity wall of the mounting cavity is provided with a plurality of third recesses, the plurality of third recesses are arranged at intervals, and each third recess penetrates the first end face and the second end face.

[0066] In this embodiment, the structure of the support body is further defined.

[0067] Specifically, the cavity wall of the mounting cavity is provided with multiple third recesses, which are arranged at intervals, and each third recess penetrates the first end face and the second end face.

[0068] This design facilitates demolding of the support body, reduces the processing difficulty of the mold for the support body, and thus indirectly reduces the production cost of the pump body support.

[0069] The third recess is used to mate with structural components on the pump body, such as inserting the structural components on the pump body into the third recess. In this way, the pump body can be positioned in the circumferential direction of the mounting cavity, increasing the mating area and mating angle between the pump body and the support body. This ensures the mating dimensions of the pump body and the support body, prevents the pump body from shifting relative to the support body, and improves the effectiveness and feasibility of assembling the pump body and the support body.

[0070] In some embodiments, optionally, at least one of the first end face and the second end face is provided with a recess, the recess surrounding the mounting cavity.

[0071] In this embodiment, the structure of the support body is further defined.

[0072] Specifically, at least one of the first end face and the second end face is provided with a recessed groove, which surrounds the mounting cavity. That is, the first end face is provided with a recessed groove, or the second end face is provided with a recessed groove, or both the first end face and the second end face are provided with recessed grooves, which surround the mounting cavity.

[0073] The recess is used to mate with structural components on the pump body, such as structural components on the pump body being recessed into the recess. This allows the pump body to be radially limited within the mounting cavity, increasing the mating area and angle between the pump body and the support body. This ensures the mating dimensions of the pump body and the support body, preventing displacement of the pump body relative to the support body, and improving the effectiveness and feasibility of assembling the pump body and the support body.

[0074] In some embodiments, the inner peripheral wall of the frame may optionally have a fourth recess.

[0075] In this embodiment, the structure of the frame is further defined, and the inner peripheral wall of the frame is provided with a fourth recess.

[0076] This design facilitates demolding of the support body, reduces the processing difficulty of the mold for the support body, and thus indirectly reduces the production cost of the pump body support.

[0077] Understandably, the base and frame are injection molded as a single unit. When the support body is in its natural state, the second end of the frame separates from the base, meaning the second end of the support is raised. After the support body is assembled with the pump body, the inner circumferential wall of the frame will be subjected to tension. The fourth recess can counteract this tension, ensuring the balance and consistency of the forces on the inner and outer circumferential walls of the frame, and thus extending the service life of the pump body's support.

[0078] Optionally, the number of fourth recesses is one.

[0079] Optionally, there may be multiple fourth recesses, which are arranged at intervals around the mounting cavity.

[0080] In some embodiments, optionally, a portion of the sidewall of the sink is recessed toward the outer peripheral wall of the frame to form a fourth recess.

[0081] In this embodiment, the structure of the frame is further defined.

[0082] Specifically, a portion of the sidewall of the settling trough is recessed toward the outer peripheral wall of the frame to form a fourth recess.

[0083] This design offers advantages in terms of ease of processing and also enriches the function of the settling tank. The settling tank not only serves to limit the pump body but also ensures the balance and consistency of the forces on the inner and outer circumferential walls of the frame.

[0084] The second aspect of this application provides a pump body assembly, comprising: a pump body; and a bracket for the pump body as described in the first aspect, the pump body being disposed in a mounting cavity.

[0085] The pump body assembly provided in this application includes a support for the pump body as described in the first aspect, and therefore has all the beneficial effects of the aforementioned support for the pump body, which will not be described in detail here.

[0086] A third aspect of this application proposes a vehicle comprising: a pump body assembly as described in the second aspect.

[0087] The vehicle provided in this application, because it includes the pump assembly as described in the second aspect, has all the beneficial effects of the aforementioned pump assembly, which will not be described in detail here.

[0088] Additional aspects and advantages of this application will become apparent in the following description or may be learned by practice of this application. Attached Figure Description

[0089] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0090] Figure 1 This invention provides a schematic diagram of the support body in a first state, based on an embodiment of the present application.

[0091] Figure 2 This invention provides a schematic diagram of the support body in a first state from a second perspective, representing an embodiment of the present application.

[0092] Figure 3 A schematic diagram of the structure of the support body in a second state according to an embodiment of this application is shown;

[0093] Figure 4 for Figure 3 A magnified view of part A of the support body shown;

[0094] Figure 5 This invention provides a schematic diagram of the support body in a first state from a third-view perspective, representing an embodiment of the present application.

[0095] Figure 6 for Figure 5 A magnified view of part B of the support body shown;

[0096] Figure 7 A schematic diagram of the pump body assembly according to an embodiment of this application is shown.

[0097] in, Figures 1 to 7 The correspondence between the reference numerals and component names in the attached drawings is as follows:

[0098] 10 Pump body bracket, 100 Bracket body, 110 Base, 112 Support section, 114 First connecting section, 1142 Third through hole, 116 Second connecting section, 1162 Second through hole, 117 Connection between the second connecting section and the support section, 118 First recess, 120 Frame, 122 First end, 124 Second end, 1242 First through hole, 126 Outer peripheral wall of the frame, 128 Second recess, 129 Inner peripheral wall of the frame, 1292 Fourth recess, 130 Mounting cavity, 132 Third recess, 140 Undercut, 142 Stepped surface, 150 Recess, 160 First end face, 170 Second end face, 180 Sink, 200 Marking part, 300 First bushing, 400 Second bushing, 50 Pump body assembly, 500 Pump body. Detailed Implementation

[0099] To better understand the above-mentioned objectives, features, and advantages of this application, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0100] Many specific details are set forth in the following description in order to provide a full understanding of this application. However, this application may also be implemented in other ways different from those described herein. Therefore, the scope of protection of this application is not limited to the specific embodiments disclosed below.

[0101] The following is in conjunction with the appendix Figures 1 to 7 The support 10 for the pump body, the pump body assembly 50, and the vehicle provided in this application will be described in detail through specific embodiments and application scenarios.

[0102] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, a pump body bracket 10 according to some embodiments of this application includes a bracket body 100.

[0103] The support body 100 includes a base 110 and a frame 120.

[0104] The first end 122 of the frame 120 is integrally formed with the base 110.

[0105] The second end 124 of the frame 120 is detachably connected to the base 110.

[0106] The frame 120 and the base 110 enclose the mounting cavity 130.

[0107] One of the frame 120 and the base 110 is provided with an undercut 140, and the other is provided with a recess 150.

[0108] When the undercut 140 is inserted into the recess 150, it can prevent the separation of the second end 124 and the seat 110.

[0109] The pump body bracket 10 provided in this application includes a bracket body 100.

[0110] The support body 100 includes a base 110 and a frame 120. The frame 120 has a first end 122 and a second end 124. The first end 122 of the frame 120 is integrally formed with the base 110, and the second end 124 of the frame 120 is closablely connected to the base 110. The frame 120 and the base 110 enclose a mounting cavity 130, which is used to mount and fix the pump body 500.

[0111] When it is necessary to assemble the pump body 500, separate the second end 124 of the frame 120 from the base 110, and then assemble the pump body 500 into the mounting cavity 130. After assembly, connect the second end 124 of the frame 120 to the base 110 to securely assemble the pump body 500 into the pump body bracket 10.

[0112] Since the second end 124 of the frame 120 and the base 110 are closable, the second end 124 of the frame 120 and the base 110 can be opened and closed according to the needs of disassembling and assembling the pump body 500. When the second end 124 of the frame 120 is separated from the base 110, the volume of the mounting cavity 130 increases accordingly, thus reducing the difficulty of disassembling and assembling the pump body 500 and facilitating its disassembly and assembly. Furthermore, since the first end 122 of the frame 120 and the base 110 are integrally formed, the material input for fastening the first end 122 of the frame 120 and the base 110 is reduced. This design simplifies the disassembly and assembly process of the base 110 and the frame 120, reduces the difficulty of disassembly and assembly of the base 110 and the frame 120, and helps to improve the efficiency of disassembly and assembly of the base 110 and the frame 120, thereby reducing the production cost of the product.

[0113] Furthermore, one of the frame 120 and the seat 110 is provided with a buckle portion 140, and the other of the frame 120 and the seat 110 is provided with a recess 150. That is, the frame 120 is provided with a buckle portion 140 and the seat 110 is provided with a recess 150, or the frame 120 is provided with a recess 150 and the seat 110 is provided with a buckle portion 140.

[0114] The buckle 140 is inserted into the recess 150, and the buckle 140 and the recess 150 cooperate to prevent the second end 124 from separating from the base 110. That is, when an external force is applied to the frame 120 to move the second end 124 of the frame 120 to the base 110, the buckle 140 is inserted into the recess 150. When the external force applied to the frame 120 is removed, even if the second end 124 of the frame 120 and the base 110 are not fastened together using fasteners, the second end 124 of the frame 120 will not separate from the base 110 due to the cooperation of the buckle 140 and the recess 150. In other words, the cooperation of the buckle 140 and the recess 150 can limit the second end 124 to the base 110, so that the base 110 and the frame 120 are in a self-locking state, effectively preventing the second end 124 of the frame 120 from separating from the base 110. In this way, when assembling the bushing of the pump body bracket 10, the operator does not need to press to ensure the alignment dimensions of the second end 124 of the bracket 120 and the base 110. After the undercut 140 is inserted into the recess 150, the second end 124 of the bracket 120 and the base 110 are in a mating state, and the second end 124 of the bracket 120 will not separate from the base 110. At this time, only the bushing needs to be assembled. This setting can reduce the assembly difficulty of the pump body bracket 10 and improve the assembly efficiency of the pump body bracket 10.

[0115] In some embodiments, optionally, such as Figure 1 As shown, along the thickness direction of the support body 100, the support body 100 has a first end face 160 and a second end face 170 that are disposed opposite to each other.

[0116] The recess 150 penetrates the first end face 160 and the second end face 170.

[0117] In this embodiment, the structure of the support body 100 is further defined.

[0118] Specifically, the support body 100 has a first end face 160 and a second end face 170, which are disposed opposite to each other along the thickness direction of the support body 100. The recess 150 penetrates the first end face 160 and the second end face 170.

[0119] This design facilitates demolding of the support body 100, reduces the processing difficulty of the mold for processing the support body 100, and thus indirectly reduces the production cost of the pump body support 10.

[0120] In addition, this setting allows the operator to effectively observe whether the undercut 140 and the recess 150 are properly assembled, which has the advantage of convenient operation and helps to ensure the assembly yield of the product.

[0121] Optionally, the base 110 and the frame 120 are integrally injection molded. For example, the support body 100 is a rubber part, the support body 100 is a plastic part, etc., which will not be listed here.

[0122] In some embodiments, optionally, such as Figure 1 , Figure 2 , Figure 3 and Figure 5 As shown, the base 110 includes a support section 112, a first connecting section 114, and a second connecting section 116.

[0123] The support segment 112 is connected between the first connecting segment 114 and the second connecting segment 116.

[0124] The first end 122 is integrally formed with the support section 112.

[0125] The second end 124 is closable with the second connecting section 116.

[0126] Both the first connecting section 114 and the second connecting section 116 are used to support the installation and positioning of the support section 112.

[0127] The connection 117 between the second connecting section and the support section is provided with an undercut 140 or a recess 150.

[0128] In this embodiment, the structure of the seat 110 is further defined.

[0129] Specifically, the base 110 includes a support section 112, a first connecting section 114, and a second connecting section 116. The support section 112 is connected to the first connecting section 114, and the support section 112 is also connected to the second connecting section 116. That is, the support section 112 is connected between the first connecting section 114 and the second connecting section 116.

[0130] Specifically, the first end 122 of the frame 120 is integrally formed with the support section 112, and the second end 124 of the frame 120 is closable connected with the second connecting section 116.

[0131] Both the first connecting section 114 and the second connecting section 116 are used for the installation and positioning of the support section 112. Specifically, both the first connecting section 114 and the second connecting section 116 are used for connection with other components of the vehicle, such as connecting with a crossbeam.

[0132] Furthermore, the connection 117 between the second connecting section and the support section is provided with a buckle 140 or a recess 150. That is, the connection 117 between the second connecting section and the support section is provided with a buckle 140, or the connection 117 between the second connecting section and the support section is provided with a recess 150. Thus, the mating points of the buckle 140 and the recess 150 are located adjacent to the second connecting section 116. This helps to further ensure the dimensional accuracy of the second end 124 of the frame 120 and the second connecting section 116. It can reduce the probability of misalignment between the second end 124 of the frame 120 and the second connecting section 116, providing effective and reliable structural support for subsequent bushing assembly.

[0133] In some embodiments, optionally, such as Figure 3 As shown, the pump body bracket 10 also includes an identification section 200.

[0134] The sign 200 is provided in at least one of the base 110 and the frame 120.

[0135] The marking section 200 is used for the installation and positioning of the pump body 500.

[0136] In this embodiment, the structure of the pump body support 10 is further defined.

[0137] Specifically, the pump body bracket 10 also includes an identification part 200, which is disposed in at least one of the base 110 and the frame 120. That is, the identification part 200 is disposed in the base 110, or the identification part 200 is disposed in the frame 120, or there are multiple identification parts 200, with some identification parts 200 disposed in the base 110 and others disposed in the frame 120.

[0138] The marking section 200 serves to locate the installation position of the pump body 500. Specifically, the marking section 200 corresponds to a structure on the pump body 500. When installing the pump body 500 and the pump body bracket 10, this structure on the pump body 500 can be aligned with the marking section 200 on the pump body bracket 10. This prevents incorrect installation of the pump body bracket 10 at the wrong angle and ensures the uniqueness of the bracket's installation angle. This improves the assembly efficiency and yield rate of the pump body 500 and the pump body bracket 10, and provides structural support for effective assembly with other vehicle components.

[0139] Optionally, the number of the sign section 200 is one.

[0140] Optionally, the number of signage units 200 may be multiple.

[0141] In some embodiments, the marking portion 200 may optionally be a recessed structure that faces the mounting cavity 130.

[0142] Alternatively, the marking section 200 may be a raised structure that protrudes away from the mounting cavity 130.

[0143] In this embodiment, the specific structure of the marking section 200 is refined.

[0144] Specifically, the marking part 200 is a recessed structure that faces the mounting cavity 130.

[0145] Specifically, the marking part 200 is a raised structure that protrudes away from the mounting cavity 130.

[0146] In some embodiments, optionally, such as Figure 3 As shown, the signage unit 200 is located on the frame 120.

[0147] The marking section 200 is positioned opposite to the first connecting section 114.

[0148] In this embodiment, the position of the marking portion 200 is further defined.

[0149] Specifically, the marking part 200 is provided on the frame 120, and the marking part 200 is disposed opposite to the first connecting section 114. This arrangement can prevent the marking part 200 from interfering with the pump body 500 when assembling the pump body 500.

[0150] Understandably, the signage unit 200 is located on the outer peripheral wall 126 of the frame.

[0151] In some embodiments, optionally, such as Figure 2 As shown, the seat 110 has a first recess 118 on the side opposite to the frame 120.

[0152] In this embodiment, the structure of the base 110 is further refined.

[0153] The seat 110 has a first recess 118 on the side away from the frame 120. The first recess 118 has the function of reducing the weight of the seat 110 and the overall weight of the pump body bracket 10, which helps to reduce the amount of material input of the bracket body 100, and thus helps to reduce the production cost of the pump body bracket 10.

[0154] In addition, the side of the base 110 away from the frame 120 is the bottom surface of the support body 100, which is the mounting surface and the contact surface with the crossbeam. By providing a first recess 118 on the side of the base 110 away from the frame 120, the contact area between the pump body support 10 and the crossbeam can be reduced.

[0155] When the vehicle is working, the vibration of the pump body 500 will be transmitted to the whole vehicle through the contact surface between the pump body bracket 10 and the crossbeam. By setting the first recess 118, the contact area with the crossbeam can be reduced, thereby weakening the vibration transmission and playing a role in vibration isolation. This can effectively reduce the vibration isolation rate of the product and improve the vibration isolation effect.

[0156] In some embodiments, optionally, such as Figure 2 As shown, the first recess 118 is located between the first connecting segment 114 and the second connecting segment 116.

[0157] In this embodiment, the mating structure of the first recess 118, the first connecting segment 114, and the second connecting segment 116 is further defined.

[0158] Specifically, the first recess 118 is located between the first connecting section 114 and the second connecting section 116. That is, the support section 112 is provided with the first recess 118. The first recess 118 is arranged at a distance from the first connecting section 114, and the first recess 118 is arranged at a distance from the second connecting section 116.

[0159] This design ensures that the contact area between the pump body bracket 10 and the crossbeam is reduced, while also avoiding reducing the contact area between the first connecting section 114 and the crossbeam, and avoiding reducing the contact area between the second connecting section 116 and the crossbeam. It ensures that the first connecting section 114 and the crossbeam are effectively connected, and that the second connecting section 116 and the crossbeam are effectively connected.

[0160] In some embodiments, optionally, such as Figure 1 , Figure 2 and Figure 7 As shown, the second end 124 is provided with a first through hole 1242.

[0161] The second connecting section 116 is provided with a second through hole 1162.

[0162] When the second end 124 is connected to the base 110, the first through hole 1242 and the second through hole 1162 are arranged opposite to each other.

[0163] The first connecting section 114 is provided with a third through hole 1142.

[0164] The pump body support 10 also includes a first bushing 300 and a second bushing 400.

[0165] The first bushing 300 is inserted into the first through hole 1242 and the second through hole 1162.

[0166] The second bushing 400 is inserted into the third through hole 1142.

[0167] In this embodiment, the structure of the pump body support 10 is further defined.

[0168] The second end 124 is provided with a first through hole 1242, and the second connecting section 116 is provided with a second through hole 1162. The first through hole 1242 and the second through hole 1162 are engaged. Specifically, when the second end 124 is connected to the base 110, the first through hole 1242 and the second through hole 1162 are arranged opposite to each other.

[0169] The pump body bracket 10 also includes a first bushing 300, which passes through a first through hole 1242 and a second through hole 1162. Optionally, both the first through hole 1242 and the second through hole 1162 are interference-fitted with the first bushing 300.

[0170] After the buckle 140 is inserted into the recess 150, the second end 124 of the frame 120 will not separate from the base 110. In other words, the buckle 140 and the recess 150 work together to limit the second end 124 at the base 110, thus placing the base 110 and the frame 120 in a self-locking state. The first through hole 1242 and the second through hole 1162 are aligned with the buckle 140 and the recess 150. Therefore, when assembling the first bushing 300, the first bushing 300 can be effectively aligned and assembled with the first through hole 1242 and the second through hole 1162 without the operator pressing the frame 120.

[0171] The first connecting section 114 is provided with a third through hole 1142, and the pump body bracket 10 also includes a second bushing 400, which passes through the third through hole 1142. Optionally, the third through hole 1142 is interference-fitted with the second bushing 400.

[0172] The first bushing 300 and the second bushing 400 are used to connect with the vehicle's crossbeam. This arrangement prevents excessive installation torque from causing deformation of the pump body bracket 10. It also enhances the structural strength and rigidity of the assembly between the pump body bracket 10 and the crossbeam.

[0173] In some embodiments, optionally, such as Figure 1 , Figure 2 , Figure 3 and Figure 5 As shown, the outer peripheral wall 126 of the frame is also provided with a second recess 128.

[0174] The second recess 128 penetrates the first end face 160 and the second end face 170.

[0175] In this embodiment, the structure of the frame 120 is further defined, and the outer peripheral wall 126 of the frame is also provided with a second recess 128, which penetrates the first end face 160 and the second end face 170.

[0176] This design facilitates demolding of the support body 100, reduces the processing difficulty of the mold for processing the support body 100, and thus indirectly reduces the production cost of the pump body support 10.

[0177] It is understandable that the base 110 and the frame 120 are integrally injection molded. When the support body 100 is in its natural state, the second end 124 of the frame 120 separates from the base 110, that is, the second end 124 of the support is raised. When the support body 100 is assembled with the pump body 500, the outer peripheral wall 126 of the frame will be subjected to tension. By providing the second recess 128, the tension can be offset, which can ensure the balance and consistency of the force on the inner and outer peripheral walls of the frame 120, and is conducive to extending the service life of the pump body's support 10.

[0178] In some embodiments, the number of second recesses 128 may be multiple.

[0179] Multiple second recesses 128 are arranged at intervals.

[0180] In this embodiment, the number and mating structure of the second recess 128 are further defined.

[0181] Specifically, there are multiple second recesses 128, which are arranged at intervals.

[0182] In this way, the tension force when the second end 124 of the frame 120 is connected to the base 110 can be offset at multiple locations on the outer peripheral wall 126 of the frame, which is beneficial to improving the balance and consistency of the force on the inner and outer peripheral walls of the frame 120.

[0183] Understandably, the inner peripheral wall of the frame 120 forms part of the cavity wall of the mounting cavity 130.

[0184] In some other embodiments, the number of second recesses 128 is one.

[0185] In some embodiments, optionally, such as Figure 1 and Figure 2 As shown, the cavity wall of the mounting cavity 130 is provided with a plurality of third recesses 132.

[0186] Multiple third recesses 132 are arranged at intervals.

[0187] Each third recess 132 penetrates the first end face 160 and the second end face 170.

[0188] In this embodiment, the structure of the support body 100 is further defined.

[0189] Specifically, the cavity wall of the mounting cavity 130 is provided with a plurality of third recesses 132, which are arranged at intervals, and each third recess 132 penetrates the first end face 160 and the second end face 170.

[0190] This design facilitates demolding of the support body 100, reduces the processing difficulty of the mold for processing the support body 100, and thus indirectly reduces the production cost of the pump body support 10.

[0191] The third recess 132 is used to mate with structural components on the pump body 500, such as inserting structural components on the pump body 500 into the third recess 132. In this way, the pump body 500 can be positioned in the circumferential direction of the mounting cavity 130, increasing the mating area and mating angle between the pump body 500 and the bracket body 100. This ensures the mating dimensions between the pump body 500 and the bracket body 100, preventing the pump body 500 from shifting relative to the bracket body 100, and improving the effectiveness and feasibility of assembling the pump body bracket 10 and the pump body 500.

[0192] like Figure 7 As shown, a pump body assembly 50 according to some embodiments of this application includes: a pump body 500; and a support 10 for the pump body as in any of the above embodiments, wherein the pump body 500 is disposed in the mounting cavity 130.

[0193] The pump body assembly 50 provided in this application includes the pump body bracket 10 as described in any of the above embodiments, and therefore has all the beneficial effects of the pump body bracket 10, which will not be described in detail here.

[0194] A vehicle according to some embodiments of the present application includes: a pump assembly 50 as described in the above embodiments.

[0195] The vehicle provided in this application includes the pump assembly 50 as described in the above embodiments, and therefore has all the beneficial effects of the pump assembly 50, which will not be described in detail here.

[0196] It is worth noting that the vehicle can be a new energy vehicle. New energy vehicles include pure electric vehicles, range-extended electric vehicles, hybrid electric vehicles, fuel cell electric vehicles, and hydrogen engine vehicles.

[0197] Of course, vehicles are not limited to new energy vehicles; they also include gasoline vehicles, diesel vehicles, and hybrid vehicles, etc., which will not be listed here.

[0198] Optionally, the base 110 and the frame 120 are integrally molded. This structural design eliminates the assembly process for the base 110 and the frame 120, thus simplifying the molding process and improving product processing efficiency. Furthermore, integral molding of the base 110 and the frame 120 ensures dimensional accuracy. It also offers advantages such as fewer parts and lower cost.

[0199] The base 110 has a first recess 118 on the side opposite to the frame 120, which reduces the contact area between the support body 100 and the crossbeam (e.g., reduces the contact area by 50%), and can effectively reduce the vibration isolation rate (e.g., keep the vibration isolation rate within 20dB).

[0200] This application provides a buckle 140 on one of the frame 120 and the base 110, and a recess 150 on the other of the frame 120 and the base 110. The buckle 140 and the recess 150 cooperate to give the bracket body 100 a self-locking function, which facilitates the subsequent installation of bushings (e.g., bushings are metal parts).

[0201] Optionally, the frame 120 has a first end 122 and a second end 124. The first end 122 is integrally formed with the base 110, and the second end 124 is closable with the base 110. That is, the base 110 and the frame 120 can be opened. This setting can realize manual installation of the pump body 500, reduce the investment in tooling equipment, and reduce production costs.

[0202] The marking part 200 is provided on at least one of the base 110 and the frame 120. The marking part 200 corresponds to a structure on the pump body 500. During installation, the marking part 200 and the structure of the pump body 500 need to be aligned to prevent incorrect installation of the bracket angle and ensure the uniqueness of the bracket angle.

[0203] like Figure 2 As shown, the bottom surface of the bracket body 100 is provided with a first recess 118. This serves two purposes: firstly, it reduces weight, decreases material usage, and controls costs; secondly, the bottom surface of the bracket body 100 is the mounting surface, which contacts the vehicle's crossbeam and is fixed to the crossbeam via a bushing. Therefore, the vibration of the pump body 500 (e.g., a water pump) is transmitted to the entire vehicle through the contact surface between the bracket body 100 and the crossbeam. The first recess 118 reduces the contact area between the bracket body 100 and the crossbeam, thus weakening vibration transmission and further isolating vibrations.

[0204] like Figures 3 to 6As shown, a buckle 140 or a recess 150 is provided at the connection between the support section 112 and the second connecting section 116 of the base 110. The buckle 140 and the recess 150 cooperate to achieve a locked state after the base 110 and the frame 120 are engaged. This effectively prevents the bracket body 100 from opening and tilting, making subsequent bushing assembly more convenient.

[0205] The pump body support 10 includes a support body 100.

[0206] The support body 100 includes a base 110 and a frame 120. The frame 120 has a first end 122 and a second end 124. The first end 122 of the frame 120 is integrally formed with the base 110, and the second end 124 of the frame 120 is closablely connected to the base 110. The frame 120 and the base 110 enclose a mounting cavity 130, which is used to mount and fix the pump body 500.

[0207] When it is necessary to assemble the pump body 500, separate the second end 124 of the frame 120 from the base 110, and then assemble the pump body 500 into the mounting cavity 130. After assembly, connect the second end 124 of the frame 120 to the base 110 to securely assemble the pump body 500 into the pump body bracket 10.

[0208] Since the second end 124 of the frame 120 and the base 110 are closable, the second end 124 of the frame 120 and the base 110 can be opened and closed according to the needs of disassembling and assembling the pump body 500. When the second end 124 of the frame 120 is separated from the base 110, the volume of the mounting cavity 130 increases accordingly, thus reducing the difficulty of disassembling and assembling the pump body 500 and facilitating its disassembly and assembly. Furthermore, since the first end 122 of the frame 120 and the base 110 are integrally formed, the material input for fastening the first end 122 of the frame 120 and the base 110 is reduced. This design simplifies the disassembly and assembly process of the base 110 and the frame 120, reduces the difficulty of disassembly and assembly of the base 110 and the frame 120, and helps to improve the efficiency of disassembly and assembly of the base 110 and the frame 120, thereby reducing the production cost of the product.

[0209] Furthermore, one of the frame 120 and the seat 110 is provided with a buckle portion 140, and the other of the frame 120 and the seat 110 is provided with a recess 150. That is, the frame 120 is provided with a buckle portion 140 and the seat 110 is provided with a recess 150, or the frame 120 is provided with a recess 150 and the seat 110 is provided with a buckle portion 140.

[0210] The buckle 140 is inserted into the recess 150, and the buckle 140 and the recess 150 cooperate to prevent the second end 124 from separating from the base 110. That is, when an external force is applied to the frame 120 to move the second end 124 of the frame 120 to the base 110, the buckle 140 is inserted into the recess 150. When the external force applied to the frame 120 is removed, even if the second end 124 of the frame 120 and the base 110 are not fastened together using fasteners, the second end 124 of the frame 120 will not separate from the base 110 due to the cooperation of the buckle 140 and the recess 150. In other words, the cooperation of the buckle 140 and the recess 150 can limit the second end 124 to the base 110, so that the base 110 and the frame 120 are in a self-locking state, effectively preventing the second end 124 of the frame 120 from separating from the base 110. In this way, when assembling the bushing of the pump body bracket 10, the operator does not need to press to ensure the alignment dimensions of the second end 124 of the bracket 120 and the base 110. After the undercut 140 is inserted into the recess 150, the second end 124 of the bracket 120 and the base 110 are in a mating state, and the second end 124 of the bracket 120 will not separate from the base 110. At this time, only the bushing needs to be assembled. This setting can reduce the assembly difficulty of the pump body bracket 10 and improve the assembly efficiency of the pump body bracket 10.

[0211] In some embodiments, optionally, such as Figure 5 and Figure 6 As shown, when the seat 110 is provided with a buckle 140, the side wall of the buckle 140 facing the second end of the frame 120 is a stepped surface 142.

[0212] In this embodiment, the structure of the buckle portion 140 is further defined such that when the seat 110 is provided with the buckle portion 140, the side wall of the buckle portion 140 facing the second end of the frame 120 is a stepped surface 142. That is, the side wall of the buckle portion 140 facing the second end of the frame 120 is bent to form the stepped surface 142. It is understood that the recess 150 has the same shape as the wall opposite to the stepped surface 142. The corner of the stepped surface 142 cooperates with the recess 150 to limit the frame 120 from multiple directions and angles, so that the second end of the frame 120 will not separate from the seat 110. Furthermore, the side wall of the buckle 140 facing the second end of the frame 120 is a stepped surface 142, which allows the force between the buckle 140 and the recess 150 to be effectively applied to the second end of the frame 120. This helps to reduce the gap between the second end of the frame 120 and the base 110, and ensures the assembly dimensional accuracy of the frame 120 and the base 110.

[0213] In some embodiments, optionally, such as Figure 1 and Figure 3As shown, at least one of the first end face 160 and the second end face 170 is provided with a recess 180, which surrounds the mounting cavity 130.

[0214] In this embodiment, the structure of the support body 100 is further defined.

[0215] Specifically, at least one of the first end face 160 and the second end face 170 is provided with a recess 180, which surrounds the mounting cavity 130. That is, the first end face 160 is provided with a recess 180, or the second end face 170 is provided with a recess 180, or both the first end face 160 and the second end face 170 are provided with recesses 180, which surround the mounting cavity 130.

[0216] The recess 180 is used to mate with structural components on the pump body 500, such as structural components on the pump body 500 being recessed into the recess 180. This allows the pump body 500 to be radially positioned within the mounting cavity 130, increasing the mating area and angle between the pump body 500 and the support body 100. This ensures the proper fit between the pump body 500 and the support body 100, preventing displacement of the pump body 500 relative to the support body 100, and improving the effectiveness and feasibility of assembling the pump body 500 with the support body 10.

[0217] In some embodiments, optionally, such as Figure 1 and Figure 3 As shown, the inner peripheral wall 129 of the frame is provided with a fourth recess 1292.

[0218] In this embodiment, the structure of the frame 120 is further defined, and the inner peripheral wall 129 of the frame is provided with a fourth recess 1292.

[0219] This design facilitates demolding of the support body 100, reduces the processing difficulty of the mold for processing the support body 100, and thus indirectly reduces the production cost of the pump body support 10.

[0220] It is understandable that the base 110 and the frame 120 are integrally injection molded. When the support body 100 is in its natural state, the second end of the frame 120 separates from the base 110, that is, the second end of the support is raised. When the support body 100 is assembled with the pump body 500, the inner peripheral wall 129 of the frame will be subjected to tension. The fourth recess 1292 can offset the tension, which helps to ensure the balance and consistency of the force on the inner peripheral wall 129 and the outer peripheral wall of the frame, and helps to extend the service life of the pump body's support 10.

[0221] Optionally, the number of fourth recesses 1292 is one.

[0222] Optionally, there may be multiple fourth recesses 1292, which are arranged at intervals around the mounting cavity 130.

[0223] In some embodiments, optionally, such as Figure 1 and Figure 3 As shown, a portion of the sidewall of the sink 180 is recessed toward the outer peripheral wall of the frame 120 to form a fourth recess 1292.

[0224] In this embodiment, the structure of the frame 120 is further defined.

[0225] Specifically, a portion of the sidewall of the settling trough 180 is recessed toward the outer peripheral wall of the frame 120 to form a fourth recess 1292.

[0226] This design offers advantages in terms of ease of processing and also enriches the function of the settling tank 180. As a result, the settling tank 180 not only serves to limit the pump body 500, but also ensures the balance and consistency of the forces on the inner and outer peripheral walls of the frame.

[0227] In some other embodiments, one of the first end face 160 and the second end face 170 is provided with a groove 180, and the other of the first end face 160 and the second end face 170 is provided with a fourth recess 1292.

[0228] In this application, the term "multiple" refers to two or more unless otherwise expressly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0229] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. The above descriptions are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A pump body support, characterized in that, include: The bracket body includes a base and a frame. The first end of the frame is integrally formed with the base, and the second end of the frame is closably connected to the base. The frame and the base enclose an installation cavity. One of the frame and the base is provided with an undercut, and the other is provided with a recess. When the undercut is inserted into the recess, it can prevent the second end from separating from the base.

2. The pump body support according to claim 1, characterized in that, Along the thickness direction of the support body, the support body has a first end face and a second end face disposed opposite to each other, and the recess penetrates through the first end face and the second end face.

3. The pump body support according to claim 1 or 2, characterized in that, When the seat is provided with the inverted part, the side wall of the inverted part facing the second end of the frame is a stepped surface.

4. The pump body support according to claim 1 or 2, characterized in that, The base includes a support section, a first connecting section, and a second connecting section. The support section is connected between the first connecting section and the second connecting section. The first end is integrally formed with the support section, and the second end is closable connected with the second connecting section. Both the first connecting section and the second connecting section are used for the installation and positioning of the support section. The connection between the second connecting section and the supporting section is provided with the undercut or the recess.

5. The pump body support according to claim 4, characterized in that, Also includes: An identification section is provided on at least one of the base and the frame, and the identification section is used for the installation and positioning of the pump body.

6. The pump body support according to claim 5, characterized in that, The marking portion is a recessed structure facing the mounting cavity, or the marking portion is a protruding structure facing away from the mounting cavity.

7. The pump body support according to claim 5, characterized in that, The marking section is located on the frame and is positioned opposite to the first connecting section.

8. The pump body support according to claim 4, characterized in that, The second end is provided with a first through hole, and the second connecting section is provided with a second through hole. When the second end is connected to the base, the first through hole and the second through hole are arranged opposite to each other. The first connecting section is provided with a third through hole; The pump body bracket also includes a first bushing and a second bushing, the first bushing passing through the first through hole and the second through hole, and the second bushing passing through the third through hole.

9. The pump body support according to claim 1 or 2, characterized in that, The seat body has a first recess on the side opposite to the frame body.

10. The pump body support according to claim 2, characterized in that, The outer peripheral wall of the frame is also provided with a second recess, which penetrates the first end face and the second end face.

11. The pump body support according to claim 10, characterized in that, There are multiple second recesses, and the multiple second recesses are arranged at intervals.

12. The pump body support according to claim 2, characterized in that, The cavity wall of the mounting cavity is provided with a plurality of third recesses, which are arranged at intervals, and each third recess penetrates the first end face and the second end face.

13. The pump body support according to claim 2, characterized in that, At least one of the first end face and the second end face is provided with a recess, the recess surrounding the mounting cavity.

14. The pump body support according to claim 13, characterized in that, The inner peripheral wall of the frame is provided with a fourth recess.

15. The pump body support according to claim 14, characterized in that, A portion of the sidewall of the settling trough is recessed toward the outer peripheral wall of the frame to form the fourth recess.

16. A pump body assembly, characterized in that, include: Pump body; and The pump body bracket as described in any one of claims 1 to 15, wherein the pump body is disposed in the mounting cavity.

17. A vehicle, characterized in that, include: The pump assembly as claimed in claim 16.