Mounting bracket and vehicle

By designing and installing a bracket and using vibration isolation components to connect the compressor and the vehicle body, the problem of compressor vibration transmission in new energy vehicles was solved, achieving better vibration isolation and installation stability.

CN223689903UActive Publication Date: 2025-12-19GUANGZHOU AUTOMOBILE GROUP CO LTD
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Patent Information

Application Number
CN202520065457.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-12-19
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

In new energy vehicles, the compressor vibrates during operation, resulting in the vibration isolation problem not being effectively solved.

Method used

Design an installation bracket including a support frame, first and second connecting frames, and a vibration damper disposed therebetween for connecting the compressor and the vehicle body to reduce vibration transmission.

Benefits of technology

By installing vibration damping components, the transmission of compressor vibration to the vehicle body is reduced, the vibration damping effect is improved, noise is reduced, and the installation stability of the compressor is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an installation support and a vehicle. The installation support comprises a supporting frame, a first connecting frame and a second connecting frame. The first connecting frame and the second connecting frame are arranged on the supporting frame in a spaced mode and located on the same side of the supporting frame. A mounting structure is arranged on the supporting frame, is located between the first connecting frame and the second connecting frame and is suitable for being connected with a first target object; the first connecting frame is suitable for connecting a second target object; the second connecting frame is suitable for connecting a third target object. The mounting bracket further comprises a first vibration isolation piece, and vibration transmission between the first connecting frame and the supporting frame is reduced through the arrangement of the first vibration isolation piece, so that the vibration isolation effect of the compressor can be improved. And / or, the mounting bracket further comprises a second vibration isolation piece, and through the arrangement of the second vibration isolation piece, vibration transmission between the second connecting frame and the supporting frame is reduced, so that the vibration isolation effect of the compressor can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of automobile parts, especially relates to a mounting bracket and vehicle. BACKGROUND

[0002] In a new energy vehicle, a compressor can be fixed to an electric drive body or a suspension bracket fixed to the electric drive body, or can be independently arranged.

[0003] The compressor generates vibration when working, so whether fixed directly or indirectly to the electric drive body or independently arranged, the vibration isolation problem of the compressor needs to be solved. SUMMARY

[0004] The utility model wants to solve the technical problem of providing a mounting bracket and vehicle to solve the vibration isolation problem of the compressor.

[0005] In order to solve the above problem, on the one hand, the utility model provides a mounting bracket, including support frame, first connecting frame and second connecting frame, the first connecting frame and the second connecting frame are arranged on the support frame with interval, and are located on the same side of the support frame, the support frame is equipped with mounting structure, the mounting structure is located between the first connecting frame and the second connecting frame, and is suitable for connecting the first target object, the first connecting frame is suitable for connecting the second target object, the second connecting frame is suitable for connecting the third target object, the mounting bracket further includes first vibration isolator, the first vibration isolator is arranged between the first connecting frame and the support frame, to reduce the vibration transmission between the first connecting frame and the support frame, and / or, the mounting bracket further includes second vibration isolator, the second vibration isolator is arranged between the second connecting frame and the support frame.

[0006] Optionally, the support frame is equipped with first window, in the arrangement direction of the support frame and the first connecting frame, the first window penetrates the support frame, in the first direction, both sides of the first window are equipped with the mounting structure, the first direction, the arrangement direction of the support frame and the first connecting frame and the arrangement direction of the first connecting frame and the second connecting frame are two by two intersection.

[0007] Optionally, the support frame comprises a first support arm, a second support arm, a third support arm and a fourth support arm for enclosing the first window; the first support arm and the second support arm are arranged in a spaced manner in the arrangement direction of the first connecting frame and the second connecting frame; the third support arm and the fourth support arm are arranged in a spaced manner in the first direction; the two ends of the first support arm are connected to the third support arm and the fourth support arm respectively; the two ends of the second support arm are connected to the third support arm and the fourth support arm respectively; the first connecting frame is connected to the first support arm, and the second connecting frame is connected to the second support arm.

[0008] Optionally, the support frame is provided with a concave structure on the surface close to the first connecting frame, the mounting structure is located in the concave structure, and the concave structure is suitable for accommodating the first target object; the concave structure penetrates through the support frame in the first direction; two of the first direction, the arrangement direction of the support frame and the first connecting frame, and the arrangement direction of the first connecting frame and the second connecting frame intersect with each other.

[0009] Optionally, the first connecting frame is provided with a first channel, and the first channel penetrates through the first connecting frame in the arrangement direction of the first connecting frame and the second connecting frame.

[0010] Optionally, the first connecting frame comprises a first connecting piece, a second connecting piece, a third connecting piece and a fourth connecting piece for enclosing the first channel; the first connecting piece is connected to the support frame; the second connecting piece and the third connecting piece are both connected to the side of the first connecting piece away from the support frame and are arranged in a spaced manner along the first direction; the fourth connecting piece is connected to the second connecting piece and the third connecting piece respectively and is arranged in a spaced manner with the first connecting piece; the fourth connecting piece is provided with a first connecting structure suitable for connecting the second target object.

[0011] Optionally, the fourth connecting piece comprises a first connecting plate and a second connecting plate; the first connecting plate is connected to the second connecting piece and the third connecting piece respectively and is arranged in a spaced manner with the first connecting piece; the second connecting plate is connected to the side of the first connecting plate away from the first connecting piece and protrudes from the surface of the first connecting plate away from the second connecting frame; the first connecting structure is a connecting hole provided on the second connecting plate, and the connecting hole is located on the side of the first connecting plate away from the second connecting plate; the arrangement direction of the support frame and the first connecting frame, and the connecting hole penetrate through the second connecting plate.

[0012] Optionally, at least one of the first connecting piece, the second connecting piece, the third connecting piece and the fourth connecting piece is provided with a weight-reducing pit.

[0013] Optionally, the mounting bracket further comprises a third vibration isolation member connected to the first connecting frame and adapted to connect the second target object; and / or, the mounting bracket further comprises a fourth vibration isolation member connected to the second connecting frame and adapted to connect the third target object.

[0014] To solve the above problems, in another aspect, the utility model provides a kind of vehicle, including first target object, second target object, third target object and the mounting bracket described in any one of the above;The first target object is connected to the first mounting structure, and is located between the first connecting frame and the second connecting frame;The second target object is connected to the first connecting frame, and the third target object is connected to the second connecting frame.

[0015] Optionally, the first target object is a compressor, and the second target object and the third target object are part of a vehicle body.

[0016] In the mounting bracket and vehicle provided in the embodiment of the utility model, the first connecting frame and the support frame can be connected by the first vibration isolation member, which can reduce the transmission of vibration generated by the compressor to the vehicle body, thereby improving the vibration isolation effect of the compressor.

[0017] Similarly, the second connecting frame and the support frame can be connected by the second vibration isolation member, which can reduce the transmission of vibration generated by the compressor to the vehicle body, thereby improving the vibration isolation effect of the compressor. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is the schematic diagram of the mounting bracket and each target object provided in an embodiment of the utility model;

[0019] Figure 2 is the structural schematic diagram of the mounting bracket provided in an embodiment of the utility model;

[0020] Figure 3 is the structural schematic diagram of the support member of the mounting bracket provided in an embodiment of the utility model;

[0021] Figure 4 is the structural schematic diagram of the first connecting frame of the mounting bracket provided in an embodiment of the utility model.

[0022] The reference signs in the specification are as follows:

[0023] 10, mounting bracket; 20, first target object; 30, second target object; 40, third target object;

[0024] 1, support frame; 11, mounting structure; 12, concave structure; 13, first window; 14, first support arm; 15, second support arm; 16, third support arm; 161, first section structure; 162, second section structure; 163, third section structure; 164, seventh section structure; 165, eighth section structure; 17, fourth support arm; 171, fourth section structure; 172, fifth section structure; 173, sixth section structure; 174, ninth section structure; 175, tenth section structure;

[0025] 2, first connecting frame; 21, first channel; 22, first connecting piece; 23, second connecting piece; 24, third connecting piece; 25, fourth connecting piece; 251, first connecting plate; 252, second connecting plate; 253, reinforcing plate; 26, weight reduction pit; 27, reinforcing rib;

[0026] 3, second connecting frame;

[0027] 4, first vibration isolation piece;

[0028] 5, second vibration isolation piece;

[0029] 6, third vibration isolation piece;

[0030] 7, fourth vibration isolation piece. DETAILED DESCRIPTION

[0031] In order to make the technical problems, technical schemes and beneficial effects solved by the utility model more clearly understood, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and should not be used to limit the utility model.

[0032] It should also be noted that the up, down, front, back, left, right and other orientation terms in the following examples are only relative concepts or are referenced to the normal use state of the product, and should not be considered as limiting.

[0033] For example, Figure 1 and Figure 2As shown in the drawings, in an embodiment, the mounting bracket 10 comprises a support frame 1, a first connecting frame 2 and a second connecting frame 3; wherein the first connecting frame 2 and the second connecting frame 3 are arranged on the support frame 1 in a spaced manner, and the first connecting frame 2 and the second connecting frame 3 are located on the same side of the support frame 1; the support frame 1 is provided with a mounting structure 11, the mounting structure 11 is located between the first connecting frame 2 and the second connecting frame 3, and is adapted to connect the first target object 20, after assembly, the first target object 20 is located between the first connecting frame 2 and the second connecting frame 3; the first connecting frame 2 is adapted to connect the second target object 30, and the second connecting frame 3 is adapted to connect the third target object 40; in this way, the first target object 20, the second target object 30 and the third target object 40 can be connected together through the mounting bracket 10.

[0034] Wherein, the second target object 30 and the third target object 40 can be two independent objects respectively; or, the second target object 30 and the third target object 40 can also belong to the same object (define the object as a carrier), at this time, the second target object 30 and the third target object 40 can be two different regions of the carrier.

[0035] In addition, the mounting structure 11 can be a corresponding mounting hole provided on the support frame 1, and the first target object 20 can be connected to the mounting hole by means of a corresponding connecting device, thereby realizing the connection of the first target object 20 to the mounting hole. For example, the mounting hole can be a threaded hole provided on the surface of the support frame 1 close to the first connecting frame 2, and the connecting device is a bolt, which is screwed into the threaded hole after passing through the corresponding hole on the first target object 20, thereby locking the first target object 20 on the support frame 1. Of course, the mounting structure can also be a threaded hole, and the mounting structure can also be a clamping groove or a clamping block, etc., which can realize the connection with other objects.

[0036] The number of mounting structures 11 can be one or more, wherein "more" means more than or equal to two, and the meaning of the word "more" in each embodiment is the same, and will not be repeated hereinafter.

[0037] As shown in the drawings, Figure 2 and Figure 3 As shown in the drawings, the mounting bracket 10 further comprises a first vibration isolation member 4, which is arranged between the first connecting frame 2 and the support frame 1 to reduce the transmission of vibration between the first connecting frame 2 and the support frame 1, thereby realizing the vibration isolation connection between the first connecting frame 2 and the support frame 1, which can reduce the transmission of vibration from the first target object 20 to the first connecting frame 2, thereby reducing noise.

[0038] The first vibration isolation member 4 comprises a first component, a second component and a third component; the first component and the second component are both annular structures; the first component is sleeved outside the second component and can be coaxially arranged; the third component is elastic, is connected with the first component and the second component and is located in the gap between the first component and the second component, at this time, the first component is sleeved on the third component and the third component is sleeved on the second component.

[0039] After assembly, one of the first component and the second component is connected with the support frame 1, and the other of the first component and the second component is connected with the first connecting frame 2; when the vibration on the support frame 1 is transmitted to the first vibration isolation member 4, the third component can play a buffering and vibration isolation role, thereby reducing the transmission of vibration from the support frame 1 to the first connecting frame 2.

[0040] Specifically, the support frame 1 is provided with an assembly hole, the first component is arranged in the assembly hole and can be in interference fit with the assembly hole, thereby realizing the connection between the first component and the support frame 1. The first connecting frame 2 is provided with a first threaded hole, and a corresponding bolt passes through the second component and is matched with the first threaded hole to lock the second component on the first connecting frame 2, thereby realizing the connection between the second component and the first connecting frame 2.

[0041] In addition, the first component and the second component can both be steel sleeves, and the third component can be a rubber sleeve.

[0042] In addition, the first vibration isolation member 4 can also be a spring, a rubber pad or other objects that can realize vibration reduction, and the arrangement of the first vibration isolation member 4 is prior art, which is not limited in the embodiment.

[0043] As shown in FIGS. Figure 2 and Figure 3 The mounting bracket 10 further comprises a second vibration isolation member 5 arranged between the second connecting frame 3 and the support frame 1 to reduce the transmission of vibration between the second connecting frame 3 and the support frame 1, thereby realizing the vibration reduction connection between the second connecting frame 3 and the support frame 1, which can reduce the transmission of vibration generated by the first target object 20 to the second connecting frame 3, thereby reducing noise.

[0044] The arrangement of the second vibration isolation member 5 is the same as that of the first vibration isolation member 4, and the way in which the second vibration isolation member 5 connects the support frame 1 and the second connecting frame 3 can be the same as the way in which the first vibration isolation member 4 connects the support frame 1 and the first connecting frame 2.

[0045] It should be understood that for one mounting bracket 10, the structure of the vibration reduction connection between the first connecting frame 2 and the support frame 1 through the first vibration isolation member 4 and the structure of the vibration reduction connection between the second connecting frame 3 and the support frame 1 through the second vibration isolation member 5 can simultaneously have both or only one of them.

[0046] In an application scenario, the mounting bracket 10 can be applied to a vehicle, at this time, the first target object 20 can be a compressor, and the second target object 30 and the third target object 40 can be different regions of the vehicle body, so that the vibration of the compressor can be reduced to the vehicle body, and the vibration isolation effect of the compressor can be improved. Moreover, the compressor is located between the first connecting frame 2 and the second connecting frame 3, so that the compressor can be more firmly installed on the vehicle body.

[0047] Of course, when the mounting bracket 10 is applied to the vehicle, the first target object 20 can also be an object capable of generating vibration such as a motor; and when the mounting bracket 10 is applied to the vehicle, the second target object 30 and the third target object 40 can also be corresponding objects installed on the vehicle body.

[0048] As shown in FIGS. 1, 2 and 3, in an embodiment, the support frame 1 is provided with an inner recess structure 12 on the surface close to the first connecting frame 2, and the mounting structure 11 is located in the inner recess structure 12, and the inner recess structure 12 is adapted to accommodate the first target object 20; in the first direction, the inner recess structure 12 penetrates through the support frame 1; two of the first direction, the arrangement direction of the support frame 1 and the first connecting frame 2, and the arrangement direction of the first connecting frame 2 and the second connecting frame 3 are intersected. Figure 2 Figure 3 After assembly, the first target object 20 is installed in the inner recess structure 12, so that the first target object 20 can be effectively prevented from protruding out of the first connecting frame 2 along the direction from the support frame 1 to the first connecting frame 2.

[0049] In an embodiment, two of the first direction, the arrangement of the support frame 1 and the first connecting frame 2, and the arrangement direction of the first connecting frame 2 and the second connecting frame 3 are perpendicular to each other.

[0050] In addition, in the direction shown in FIGS. 1, 2 and 3, the arrangement direction of the first connecting frame 2 and the second connecting frame 3 is parallel to the X axis, that is, the first connecting frame 2 and the second connecting frame 3 are arranged along the X axis; the arrangement direction of the first connecting frame 2 and the support frame 1 is parallel to the Z axis, at this time, the arrangement direction of the second connecting frame 3 and the support frame 1 is also parallel to the Z axis; the first direction is parallel to the Y axis.

[0051] When the mounting bracket 10 is applied to the vehicle, the X axis can be parallel to the left-right direction of the vehicle, the Z axis can be parallel to the height direction of the vehicle (i.e. parallel to the vertical direction), and the Y axis can be parallel to the front-rear direction of the vehicle. In addition, the support frame 1 is located below the first connecting frame 2, and when the first connecting frame 2 and the second connecting frame 3 are connected to the vehicle body, the first target object 20 is equivalent to being hung on the vehicle body. At this time, through the arrangement of the inner recess structure 12, the height of the first target object 20 can be reduced, and the installation of the first target object 20 is facilitated. Figure 2

[0052] When the mounting bracket 10 is applied to the vehicle, the X axis can be parallel to the left-right direction of the vehicle, the Z axis can be parallel to the height direction of the vehicle (i.e. parallel to the vertical direction), and the Y axis can be parallel to the front-rear direction of the vehicle. In addition, the support frame 1 is located below the first connecting frame 2, and when the first connecting frame 2 and the second connecting frame 3 are connected to the vehicle body, the first target object 20 is equivalent to being hung on the vehicle body. At this time, through the arrangement of the inner recess structure 12, the height of the first target object 20 can be reduced, and the installation of the first target object 20 is facilitated. ​​

[0053] As shown in Figure 2 and Figure 3 In an embodiment, the inner recess structure 12 extends through the support frame 1 along the first direction, so as to increase the mounting space of the first target object 20.

[0054] As shown in Figure 2 and Figure 3 In an embodiment, the support frame 1 is provided with a first window 13, and the first window 13 extends through the support frame 1 along the arrangement direction of the support frame 1 and the first connecting frame 2. In this way, the weight of the support frame 1 can be reduced. In addition, part of the structure of the first target object 20 can be placed into the first window 13 during assembly, so as to further increase the mounting space of the first target object 20 and reduce the mounting height of the first target object 20.

[0055] In addition, the first window 13 and the inner recess structure 12 can have an overlapping area, so as to facilitate the mounting of the first target object 20.

[0056] In an embodiment, the support frame 1 is provided with the mounting structure 11 on both sides of the first window 13 along the first direction, so as to improve the connection strength of the first target object 20 on the support frame 1.

[0057] As shown in Figure 3 In an embodiment, the support frame 1 includes a first support arm 14, a second support arm 15, a third support arm 16, and a fourth support arm 17 for enclosing the first window 13; the first support arm 14 and the second support arm 15 are arranged in a spaced manner along the X-axis direction; the third support arm 16 and the fourth support arm 17 are arranged in a spaced manner along the Y-axis direction; the two ends of the first support arm 14 are respectively connected to the third support arm 16 and the fourth support arm 17; the two ends of the second support arm 15 are respectively connected to the third support arm 16 and the fourth support arm 17; the first connecting frame 2 is connected to the first support arm 14, and the second connecting frame 3 is connected to the second support arm 15. That is, the support frame 1 is a frame structure enclosed by the first support arm 14, the second support arm 15, the third support arm 16, and the fourth support arm 17, so as to make the support frame 1 more simple to set up.

[0058] In addition, the third support arm 16 and the fourth support arm 17 are both provided with the mounting structure 11.

[0059] As shown in Figure 3As shown, in an embodiment, in the X-axis direction, the third support arm 16 comprises the first segment structure 161, the second segment structure 162 and the third segment structure 163 connected in sequence, and the fourth support arm 17 comprises the fourth segment structure 171, the fifth segment structure 172 and the sixth segment structure 173 connected in sequence; the two ends of the first support arm 14 are connected with the first segment structure 161 and the fourth segment structure 171 respectively; the two ends of the second support arm 15 are connected with the third segment structure 163 and the sixth segment structure 173 respectively; in the Z-axis direction, the first segment structure 161 and the third segment structure 163 are located on the side of the second segment structure 162 close to the first connecting frame 2, and the fourth segment structure 171 and the sixth segment structure 173 are located on the side of the fifth segment structure 172 close to the first connecting frame 2; in the Y-axis direction, the gap between the first segment structure 161 and the third segment structure 163 (defined as the first space) is opposite to the gap between the fourth segment structure 171 and the sixth segment structure 173 (defined as the second space).

[0060] In the Y-axis direction, the first space and the second space are opposite, which means that in the orthographic projection on a plane perpendicular to the Y-axis, the projection of the first space and the projection of the second space at least partially overlap.

[0061] In addition, in the X-axis direction, the space where the above-mentioned inner recess structure 12 is located is between the first segment structure 161 and the third segment structure 163, and between the fourth segment structure 171 and the sixth segment structure 173.

[0062] As shown, Figure 3 the first segment structure 161, the second segment structure 162 and the third segment structure 163 are actually arranged in sequence along the arrangement direction of the first support arm 14 to the second support arm 15, and the fourth segment structure 171, the fifth segment structure 172 and the sixth segment structure 173 are actually arranged in sequence along the arrangement direction of the first support arm 14 to the second support arm 15.

[0063] As shown, Figure 3 in an embodiment, the third support arm 16 further comprises a seventh segment structure 164 and an eighth segment structure 165, and the fourth support arm 17 further comprises a ninth segment structure 174 and a tenth segment structure 175, wherein the seventh segment structure 164 is connected to one end of the first segment structure 161 away from the second segment structure 162, the eighth segment structure 165 is connected to one end of the third segment structure 163 away from the second segment structure 162, the ninth segment structure 174 is connected to one end of the fourth segment structure 171 away from the fifth segment structure 172, and the tenth segment structure 175 is connected to one end of the sixth segment structure 173 away from the fifth segment structure 172.

[0064] One end of the first support arm 14 is connected to the end of the seventh segment 164 that is away from the first segment 161, and the other end of the first support arm 14 is connected to the end of the ninth segment 174 that is away from the fourth segment 171; one end of the second support arm 15 is connected to the end of the eighth segment 165 that is away from the third segment 163, and the other end of the second support arm 15 is connected to the end of the tenth segment 175 that is away from the sixth segment 173.

[0065] Additionally, the first vibration isolator 4 can be connected to the first support arm 14, and the second vibration isolator 5 can be connected to the second support arm 15. There can be multiple first vibration isolators 4, arranged at intervals along the Y-axis. Similarly, there can be multiple second vibration isolators 5, arranged at intervals along the Y-axis.

[0066] like Figure 2 and Figure 4 As shown, in one embodiment, the first connecting frame 2 is provided with a first channel 21, which passes through the first connecting frame 2 in the X-axis direction, thereby reducing the weight of the first connecting frame 2.

[0067] like Figure 4 As shown, in one embodiment, the first connecting frame 2 includes a first connecting member 22, a second connecting member 23, a third connecting member 24, and a fourth connecting member 25 that enclose a first channel 21; the first connecting member 22 is connected to the support frame 1; the second connecting member 23 and the third connecting member 24 are both connected to the side of the first connecting member 22 away from the support frame 1 and are spaced apart along a first direction; the fourth connecting member 25 is connected to the second connecting member 23 and the third connecting member 24 respectively and is spaced apart from the first connecting member 22; the fourth connecting member 25 is provided with a first connecting structure suitable for connecting a second target object 30.

[0068] The first connecting structure is a connecting hole provided on the fourth connecting member 25. The connecting hole can penetrate the fourth connecting member 25 along the Z-axis direction. During assembly, the corresponding bolt passes through the connecting hole and the fourth connecting member 25 and engages with the corresponding threaded hole on the second target object 30, thereby realizing the connection between the first connecting structure and the second target object 30, and thus realizing the connection between the first connecting frame 2 and the second target object 30.

[0069] like Figure 4As shown in the drawings, in an embodiment, the fourth connecting member 25 comprises a first connecting plate 251 and a second connecting plate 252; the first connecting plate 251 is connected to the second connecting member 23 and the third connecting member 24 respectively, and is arranged apart from the first connecting member 22; the second connecting plate 252 is connected to the side of the first connecting plate 251 away from the first connecting member 22, and protrudes from the surface of the first connecting plate 251 away from the second connecting frame 3; the first connecting structure is arranged on the second connecting plate 252, and is located on the side of the first connecting plate 251 away from the second connecting plate 252. In this embodiment, the connecting hole is arranged on the second connecting plate 252, and penetrates the second connecting plate 252 along the Z-axis direction. In this way, it is more convenient to connect the first connecting frame 2 and the second target object 30 by bolts.

[0070] As shown in the drawings, Figure 4 As shown in the drawings, in an embodiment, the fourth connecting member 25 further comprises a reinforcing plate 253, the reinforcing plate 253 is connected to the first connecting plate 251 and the second connecting plate 252 respectively, and is located on the side of the first connecting plate 251 away from the second connecting frame 3, so as to improve the strength of the fourth connecting member 25.

[0071] As shown in the drawings, Figure 4 As shown in the drawings, in an embodiment, the distance between the second connecting member 23 and the third connecting member 24 gradually decreases along the direction from the support frame 1 to the first connecting frame 2 (i.e. along the direction from the first connecting member 22 to the fourth connecting member 25). The distance between the second connecting member 23 and the third connecting member 24 can refer to the minimum distance between them in the Y-axis direction, or can also refer to the maximum distance between them in the Y-axis direction.

[0072] As shown in the drawings, Figure 4 As shown in the drawings, in an embodiment, at least one of the first connecting member 22, the second connecting member 23, the third connecting member 24 and the fourth connecting member 25 is provided with a weight-reducing recess 26. In this way, the weight of the first connecting frame 2 can be further reduced.

[0073] In addition, when the weight-reducing recess 26 is arranged on the first connecting member 22, in the X-axis direction, the weight-reducing recess 26 can be arranged on the surface of the first connecting member 22 away from the second connecting frame 3.

[0074] When the weight-reducing recess 26 is arranged on the second connecting member 23, in the X-axis direction, the weight-reducing recess 26 can be arranged on the surface of the second connecting member 23 away from the second connecting frame 3.

[0075] When the weight-reducing recess 26 is arranged on the third connecting member 24, in the X-axis direction, the weight-reducing recess 26 can be arranged on the surface of the third connecting member 24 away from the second connecting frame 3.

[0076] When the fourth connecting member 25 is provided with the weight-reducing recess 26, in the X-axis direction, the weight-reducing recess 26 can be provided on the surface of the fourth connecting member 25 away from the second connecting frame 3.

[0077] In an embodiment, in the X-axis direction, the weight-reducing recess 26 can be a connecting member that is not penetrated by the weight-reducing recess 26. Of course, in other embodiments, in the X-axis direction, the weight-reducing recess 26 can be a connecting member that is penetrated by the weight-reducing recess 26.

[0078] As shown in the drawings, Figure 4 In an embodiment, the weight-reducing recess 26 is provided with a reinforcing rib 27, and the two ends of the reinforcing rib 27 can be connected to the two opposite side walls of the weight-reducing recess 26, respectively. In this way, the strength of the connecting member where the weight-reducing recess 26 is located can be improved.

[0079] In an embodiment, the structure of the second connecting frame 3 can be the same as that of the first connecting frame 2.

[0080] As shown in the drawings, Figure 2 In an embodiment, the mounting bracket 10 further comprises a third vibration isolation member 6 connected to the first connecting frame 2 and adapted to connect the second target object 30, thereby achieving a vibration isolation connection between the first connecting frame 2 and the second target object 30, so as to further block the transmission of the vibration of the first target object 20 to the second target object 30; and / or, the mounting bracket 10 further comprises a fourth vibration isolation member 7 connected to the second connecting frame 3 and adapted to connect the third target object 40, thereby achieving a vibration isolation connection between the second connecting frame 3 and the third target object 40, so as to further block the transmission of the vibration of the first target object 20 to the third target object 40.

[0081] In addition, the structures of the third vibration isolation member 6 and the fourth vibration isolation member 7 can be the same as that of the first vibration isolation member 4, and the ways in which the third vibration isolation member 6 connects the first connecting frame 2 and the second target object 30 and the fourth vibration isolation member 7 connects the second connecting frame 3 and the third target object 40 can be the same as the way in which the first vibration isolation member 4 connects the mounting bracket 1 and the first connecting frame 2.

[0082] The utility model embodiment further provides a kind of vehicle, and the automobile includes first target object 20, second target object 30, third target object 40 and the mounting bracket 10 of any one embodiment described above, first target object 20 is connected to first mounting structure 11, and it is located between first connecting frame 2 and second connecting frame 3;Second target object 30 is connected to first connecting frame 2, and third target object 40 is connected to second connecting frame 3.

[0083] In addition, the first target object 20 can be a vibration source such as an air compressor or a motor, and the second target object 30 and the third target object 40 both belong to a part of a vehicle body.

[0084] Each technical feature of the above-described embodiments can be combined with any other technical feature, and for the sake of brevity, not all possible combinations are described, but it is understood that the scope of the disclosure encompasses all such possible combinations.

[0085] The above merely describes the preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A mounting bracket, characterized by The mounting support comprises a support frame, a first connecting frame and a second connecting frame; The first connecting frame and the second connecting frame are arranged on the support frame and are located on the same side of the support frame; The support frame is provided with a mounting structure, which is located between the first connecting frame and the second connecting frame and is adapted to connect a first target object; The first connecting frame is adapted to connect a second target object; The second connecting frame is adapted to connect a third target object; The mounting support further comprises a first vibration isolation member arranged between the first connecting frame and the support frame to reduce vibration transmission between the first connecting frame and the support frame; and / or the mounting support further comprises a second vibration isolation member arranged between the second connecting frame and the support frame.

2. The mounting bracket of claim 1, wherein The support frame is provided with a first window, which penetrates the support frame in the arrangement direction of the support frame and the first connecting frame; The first window is provided with the mounting structure on both sides in the first direction; The first direction, the arrangement direction of the support frame and the first connecting frame, and the arrangement direction of the first connecting frame and the second connecting frame intersect with each other in pairs.

3. The mounting bracket of claim 2, wherein The support frame comprises a first support arm, a second support arm, a third support arm and a fourth support arm for enclosing the first window; The first support arm and the second support arm are arranged in a spaced manner in the arrangement direction of the first connecting frame and the second connecting frame; The third support arm and the fourth support arm are arranged in a spaced manner in the first direction; Both ends of the first support arm are connected to the third support arm and the fourth support arm, respectively; Both ends of the second support arm are connected to the third support arm and the fourth support arm, respectively; The first connecting frame is connected to the first support arm, and the second connecting frame is connected to the second support arm.

4. The mounting bracket of claim 1, wherein The support frame is provided with a concave structure on the surface close to the first connecting frame, the mounting structure is located in the concave structure, and the concave structure is adapted to accommodate the first target object; The concave structure penetrates the support frame in the first direction; The first direction, the arrangement direction of the support frame and the first connecting frame, and the arrangement direction of the first connecting frame and the second connecting frame intersect with each other in pairs.

5. The mounting bracket of claim 1, wherein The first connecting frame is provided with a first channel, which penetrates the first connecting frame in the arrangement direction of the first connecting frame and the second connecting frame.

6. The mounting bracket of claim 5, wherein The first connecting frame comprises a first connecting member, a second connecting member, a third connecting member and a fourth connecting member for enclosing the first channel; The first connecting member is connected to the support frame; The second connecting member and the third connecting member are connected to the side of the first connecting member away from the support frame and are arranged in a spaced manner along the first direction; The fourth connecting member is connected to the second connecting member and the third connecting member, respectively, and is arranged in a spaced manner from the first connecting member; The fourth connecting member is provided with a first connecting structure adapted to connect the second target object.

7. The mounting bracket of claim 6, wherein The fourth connecting member comprises a first connecting plate and a second connecting plate; The first connecting plate is connected to the second connecting member and the third connecting member respectively and is spaced apart from the first connecting member; The second connecting plate is connected to the side of the first connecting plate away from the first connecting member and protrudes from the surface of the first connecting plate away from the second connecting frame; The first connecting structure is a connecting hole provided on the second connecting plate, and the connecting hole is located on the side of the first connecting plate away from the second connecting plate; The arrangement direction of the support frame and the first connecting frame, and the connecting hole penetrates through the second connecting plate.

8. The mounting bracket of claim 6, wherein At least one of the first connecting member, the second connecting member, the third connecting member and the fourth connecting member is provided with a weight reduction pit.

9. The mounting bracket of claim 1, wherein, The mounting support further comprises a third vibration isolation member connected to the first connecting frame and adapted to connect the second target object; and / or, The mounting support further comprises a fourth vibration isolation member connected to the second connecting frame and adapted to connect the third target object.

10. A vehicle characterized by comprising: The mounting support comprises a first target object, a second target object, a third target object and any one of claims 1 to 9; The first target object is connected to the first mounting structure and located between the first connecting frame and the second connecting frame; The second target object is connected to the first connecting frame, and the third target object is connected to the second connecting frame.

11. The vehicle of claim 10, wherein, The first target object is a compressor, and the second target object and the third target object belong to a part of a vehicle body.