Adjustable motor mounting rack for new energy automobile

By designing an adjustable new energy vehicle motor mount, the T-shaped limit slot and shock absorbing components are used to solve the problem of imperfect fixation and noise of the traditional motor mount, and the flexible adjustment and stable connection of the motor position are achieved to ensure the normal operation of the motor.

CN120454388AActive Publication Date: 2025-08-08SUZHOU LONGYUN ELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202510596873.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-08-08
Estimated Expiration
2045-05-09

AI Technical Summary

Technical Problem

The motor mounting frame for traditional new energy vehicles is not firmly fixed and cannot be adjusted, resulting in loose bolts and increased noise, affecting the normal use of the motor, and is complicated to disassemble and assembly.

Method used

An adjustable motor mounting frame including T-type limit slot, sliding T-type limit slot, support slot block, protective cover block and shock absorption components is designed. Through L-type card block, protective rubber pad and counterweight block, the motor is stable connection and shock absorption.

Benefits of technology

The motor position is adjustable, avoids the trouble of disassembly and assembly, enhances the fixed stability of the motor, reduces noise, and protects the normal use and structural integrity of the motor.

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Abstract

The invention relates to an adjustable motor mounting rack for a new energy automobile, and belongs to the technical field of motor mounting racks for new energy automobiles. The adjustable motor mounting rack comprises a connecting base, and T-shaped limiting grooves are formed in the left side and the right side of the top surface of the connecting base; the inner walls of the two T-shaped limiting grooves are jointly and fixedly provided with supporting groove blocks used for clamping and fixing through sliding T-shaped limiting blocks, the inner walls of the supporting groove blocks are provided with output motors used for rotating output, and the top faces of the output motors are connected with protective cover blocks used for wrapping protection in a clamped mode; according to the device, it is guaranteed that after the motor is fixed, the position of the output shaft can be adjusted, the problem that the motor is dismounted and then installed is avoided, and the device can also be conveniently and rapidly installed in the overall operation process. And the motor is fastened more and more strongly, so that the problem that the normal use function of the motor is affected directly due to noise caused by looseness of the motor is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of motor mounting brackets for new energy vehicles, and in particular to an adjustable motor mounting bracket for new energy vehicles. Background Art

[0002] The motor mount for new energy vehicles is an important component used to fix and support the motor of new energy vehicles. The motor mount for new energy vehicles provides a stable installation position for the motor, ensuring that the motor will not be displaced or shaken during vehicle driving, and ensuring the relative position accuracy of the motor and other components, so that the motor can work normally.

[0003] However, the general mounting structure of the motor mounting bracket for traditional new energy vehicles is fastened by bolts or screws, and the position where the motor mounting bracket for new energy vehicles is used is a position where vibration frequently occurs. Therefore, due to the vibration generated at the position where the motor mounting bracket for new energy vehicles is used, the bolts or screws may become loose, which in turn causes the connection between the mounting bracket and the motor to become loose, resulting in increased vibration, noise, and even directly affecting the normal use function of the motor. Moreover, the motor mounting bracket for traditional new energy vehicles is generally a fixed structure. Therefore, after the motor is installed, if the problem occurs that the motor output shaft is not long enough to operate, the motor needs to be dismantled and re-aligned before being installed, which increases the complexity of fixing the motor and affects the use effect of the motor mounting bracket for new energy vehicles. In order to solve the above problems, an adjustable motor mounting bracket for new energy vehicles is needed. Summary of the Invention

[0004] In response to the shortcomings of the existing technology, the present invention provides an adjustable motor mounting bracket for new energy vehicles, which solves the problems of traditional devices being loose and unable to adjust the motor, avoids the problem of removing the motor and then installing it, increases the convenience of using the device, and the device can also tighten the motor more and more during the overall operation process, avoiding the problem of the motor loosening and generating noise, which may even directly affect the normal use function of the motor.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an adjustable motor mounting bracket for new energy vehicles, comprising a connecting base, wherein the left and right sides of the top surface of the connecting base are provided with T-shaped limit grooves, and the inner walls of the two T-shaped limit grooves are fixedly installed with a support groove block for clamping and fixing through a sliding T-shaped limit block, and the inner wall of the support groove block is provided with an output motor for rotating output, the top surface of the output motor is clamped with a protective cover block for wrapping and protection, and the bottom surface of the protective cover block is provided with a number of connecting components for fixed connection, the left and right sides of the connecting base are provided with sliding openings for movement, and the inner wall of the sliding opening is threadedly connected to the surface of the T-shaped limit block by a fixing bolt, storage cavities for storage are provided on the left and right sides of the inside of the support groove block, and two limit assemblies for clamping and limiting are provided on the upper sides of the inner walls of the two storage cavities.

[0006] Furthermore, the connecting assembly includes a movable square groove opened on the bottom surface of the protective cover block, and the inner wall of the movable square groove is slidably installed with a connecting groove block, the top surface of the protective cover block is located on the upper side of the movable square groove and is provided with a threaded opening for threaded fixation, and the inner wall of the threaded opening is threadedly connected to the inner wall of the connecting groove block through a threaded long-axis screw, and the bottom surface of the connecting groove block is fixedly installed with an L-shaped clamping block for clamping.

[0007] Furthermore, the limit assembly includes a fixed vertical plate, and the top surface of the fixed vertical plate is provided with a T-shaped connecting groove for clamping and limiting, and the lower sides of the left and right surfaces of the fixed vertical plate are provided with extrusion grooves for squeezing downward, and the inner walls of the two extrusion grooves are slidably installed with trapezoidal push blocks for sliding and pushing, and the front and rear surfaces of the trapezoidal push blocks are slidably installed with L-shaped limit blocks for limiting sliding through the opened guide grooves, the top surfaces of the two L-shaped limit blocks are fixedly connected to the upper side of the inner wall of the storage cavity, and the bottom surface of the fixed vertical plate is provided with a shock-absorbing assembly for shock absorption, and the shock-absorbing assembly is connected to the trapezoidal push block through a conversion assembly.

[0008] Furthermore, the shock absorbing assembly includes a spring plate fixedly mounted on the bottom surface of the fixed vertical plate, and a counterweight block for shaking is fixedly mounted on the side of the spring plate away from the fixed vertical plate, and a pulling rope for pulling is fixedly mounted on the top surface of the counterweight block.

[0009] Furthermore, the conversion assembly includes a trapezoidal extrusion block fixedly connected to the upper end of the pulling rope, and the front and rear sides of the top surface of the trapezoidal extrusion block are mounted inside the storage cavity through a penetrating limiting vertical slot plate, and the inner walls of the two limiting vertical slot plates are fixedly installed with a number of blocking oblique blocks for limiting and resisting, and the bottom surface of the trapezoidal extrusion block is located on one side of the limiting vertical slot plate and is connected to a rotating shaft through two fixed blocks, and the center of the rotating shaft wall is fixedly installed with a top block for clamping the blocking oblique block, and the left and right sides of the rotating shaft wall are fixedly installed with a rotation spring pushed by the rotation, and the opposite ends of the two rotation springs are respectively fixedly connected to the corresponding fixed blocks.

[0010] Furthermore, the plurality of L-shaped blocks are all made of stainless steel, and the opposite sides of two corresponding L-shaped blocks are tightly fitted with the opposite sides of the inner wall of the corresponding T-shaped connecting groove.

[0011] Furthermore, the protective cover block is a semicircular plate structure, and the supporting slot block is an arched slot block structure, and the inner wall of the protective cover block and the inner wall of the supporting slot block are both embedded with protective rubber pads for protection.

[0012] Furthermore, the plurality of counterweight blocks are rectangular blocks made of hard rubber, and the plurality of pulling ropes are elastic rope structures made of rubber.

[0013] Furthermore, several of the trapezoidal extrusion blocks are set to be narrow at the bottom and wide at the top, and several of the trapezoidal push blocks are set to be narrow at the top and wide at the bottom. The inclined surfaces of the trapezoidal extrusion blocks and the inclined surfaces of the trapezoidal push blocks are set parallel to each other, and the inclined surfaces of the trapezoidal extrusion blocks and the inclined surfaces of the trapezoidal push blocks are tightly fitted. The upper and lower surfaces of several of the limiting vertical slot plates are respectively fixedly connected to the upper and lower sides of the inner wall of the storage cavity.

[0014] Furthermore, the plurality of oblique blocking blocks are all arranged on the inner wall of the limiting vertical slot plate, and the height of the oblique blocking blocks is set to 0.9 times the depth of the limiting vertical slot plate.

[0015] Compared with the prior art, the present invention provides an adjustable motor mounting bracket for new energy vehicles, which has the following beneficial effects: 1. The device can ensure that the output shaft position can be adjusted after the motor is fixed, avoiding the problem of removing the motor and then installing it. In addition, the device can tighten the motor more and more during the overall operation process, avoiding the motor loosening and generating noise, and even directly affecting the normal use function of the motor. 2. The device is made of stainless steel of the L-shaped block, which can ensure that the L-shaped block has a certain rigidity while not affecting the overall flexibility, and can ensure that the L-shaped block is tightly clamped when pushed into the T-shaped connecting groove. 3. The device can better wrap the output motor through the semicircular structure of the protective cover block and the arched groove block of the support groove block. The setting of the protective rubber pad can ensure that the output motor is firmly fixed without causing damage to the surface of the output motor. 4. The device uses the hard rubber material of the counterweight block to protect the surface safety of the structure in the storage cavity. Even if the entire device encounters a large vibration, it will not be damaged by the sharp corners on the surface of the counterweight block colliding with the structure in the storage cavity. 5. In this device, the resisting oblique block is arranged inside the limiting vertical slot plate, and the height of the resisting oblique block is lower than the slot depth of the limiting vertical slot plate, so that the resisting oblique block will not protrude from the limiting vertical slot plate and affect the overall flatness, thereby ensuring the vertical guiding sliding effect of the limiting vertical slot plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is an overall three-dimensional diagram of the present invention; Figure 2 It is a perspective view of the present invention as a whole; Figure 3 This is a vertical sectional perspective view of the protective cover block of the present invention; Figure 4 For the present invention Figure 3 A schematic diagram of the enlarged structure of the middle part A; Figure 5 This is a vertical sectional perspective view of the support trough block of the present invention; Figure 6 This is a vertical sectional perspective view of a fixed vertical plate of the present invention; Figure 7 This is an expanded perspective view of the shock absorbing assembly and the conversion assembly of the present invention; Figure 8 This is a three-dimensional cross-sectional view of the position-limiting vertical slot plate of the present invention.

[0017] Figure: 1, connecting base; 2, T-shaped limit slot; 3, T-shaped limit block; 4, support slot block; 5, output motor; 6, protective cover block; 601, protective rubber pad; 7, connecting assembly; 701, movable square slot; 702, connecting slot block; 703, long axis screw; 704, L-shaped block; 8, sliding mouth; 9, storage chamber; 10, limit assembly; 1001, fixed vertical plate; 1002, T-shaped connecting slot; 1003, extrusion slot ; 1004, trapezoidal push block; 1005, guide slide; 1006, L-shaped limit block; 11, shock absorption assembly; 1101, spring plate; 1102, counterweight block; 1103, pull rope; 12, conversion assembly; 1201, trapezoidal extrusion block; 1202, limit vertical slot plate; 1203, resist oblique block; 1204, fixed block; 1205, rotating shaft; 1206, top block; 1207, rotary spring; 13, threaded mouth. DETAILED DESCRIPTION

[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0019] See also Figures 1 to 8 In this embodiment, an adjustable motor mounting bracket for new energy vehicles includes a connecting base 1, and T-shaped limit slots 2 are provided on both sides of the top surface of the connecting base 1, and the inner walls of the two T-shaped limit slots 2 are fixedly installed with support slot blocks 4 for clamping and fixing through sliding T-shaped limit blocks 3, and the inner wall of the support slot block 4 is provided with an output motor 5 for rotating output, and the top surface of the output motor 5 is clamped with a protective cover block 6 for wrapping and protecting, the protective cover block 6 is a semicircular plate structure, and the support slot block 4 is an arched slot block structure, and the inner wall of the protective cover block 6 and the inner wall of the support slot block 4 are both embedded with protective rubber pads 601 for protection, and the protective rubber pad 601 not only It can protect the output motor 5 and avoid the slippage problem of the output motor 5 during the fixing process. The bottom surface of the protective cover block 6 is provided with several connecting components 7 for fixed connection. The left and right sides of the connecting base 1 are provided with sliding openings 8 for movement, and the inner wall of the sliding opening 8 is threadedly connected to the surface of the T-shaped limit block 3 through a fixing bolt. The moving space setting of the sliding opening 8 can ensure that the support slot block 4 moves to the appropriate position, and then the threaded tightening effect of the fixing bolt is used to ensure the positioning and fixation of the position of the output motor 5. Storage cavities 9 for storage are provided on the left and right sides of the interior of the support slot block 4, and two limit components 10 for clamping and limiting are provided on the upper sides of the inner walls of the two storage cavities 9.

[0020] Among them, the connecting component 7 includes a movable square groove 701 opened on the bottom surface of the protective cover block 6, and the inner wall of the movable square groove 701 is slidably installed with a connecting groove block 702, the top surface of the protective cover block 6 is located on the upper side of the movable square groove 701 and is provided with a threaded opening 13 for threaded fixation, and the inner wall of the threaded opening 13 is threadedly connected to the inner wall of the connecting groove block 702 through a threaded long axis screw 703, and the bottom surface of the connecting groove block 702 is fixedly installed with an L-shaped clamping block 704 for clamping, and several L-shaped clamping blocks 704 are all made of 316 stainless steel, and the opposite sides of the two corresponding L-shaped clamping blocks 704 are tightly fitted with the opposite side of the inner wall of the corresponding T-shaped connecting groove 1002.

[0021] Among them, the limit assembly 10 includes a fixed vertical plate 1001, and the top surface of the fixed vertical plate 1001 is provided with a T-shaped connecting groove 1002 for clamping and limiting, and the lower sides of the left and right surfaces of the surface of the fixed vertical plate 1001 are provided with extrusion grooves 1003 for extrusion and pressing, and the inner walls of the two extrusion grooves 1003 are slidably installed with trapezoidal push blocks 1004 for sliding and pushing, and the front and rear surfaces of the trapezoidal push blocks 1004 are slidably installed with L-shaped limit blocks 1006 for limiting sliding through the opened guide grooves 1005, the top surfaces of the two L-shaped limit blocks 1006 are fixedly connected to the upper side of the inner wall of the storage cavity 9, and the bottom surface of the fixed vertical plate 1001 is provided with a shock absorbing assembly 11 for shock absorption, and the shock absorbing assembly 11 is connected to the trapezoidal push block 1004 through the conversion assembly 12.

[0022] Among them, the shock-absorbing assembly 11 includes a spring plate 1101 fixedly installed on the bottom surface of the fixed vertical plate 1001, and a counterweight block 1102 for shaking is fixedly installed on the side of the spring plate 1101 away from the fixed vertical plate 1001. Several counterweight blocks 1102 are rectangular blocks made of hard rubber, and several pulling ropes 1103 are elastic rope structures made of rubber. A pulling rope 1103 for pulling is fixedly installed on the top surface of the counterweight block 1102.

[0023] Among them, the conversion component 12 includes a trapezoidal extrusion block 1201 fixedly connected to the upper end of the pulling rope 1103, and several trapezoidal extrusion blocks 1201 are all set to be narrow at the bottom and wide at the top, while several trapezoidal push blocks 1004 are all set to be narrow at the top and wide at the bottom. The inclined surfaces of the trapezoidal extrusion blocks 1201 and the inclined surfaces of the trapezoidal push blocks 1004 are arranged parallel to each other, and the inclined surfaces of the trapezoidal extrusion blocks 1201 and the inclined surfaces of the trapezoidal push blocks 1004 are tightly fitted, and the front and rear sides of the top surface of the trapezoidal extrusion blocks 1201 are mounted inside the storage cavity 9 through the penetrating limiting vertical slot plates 1202, and the upper and lower surfaces of several limiting vertical slot plates 1202 are respectively fixedly connected to the upper and lower sides of the inner wall of the storage cavity 9, and the inner walls of the two limiting vertical slot plates 1202 are fixedly installed with several resisting inclined blocks 1203 for limiting resistance. , several resisting oblique blocks 1203 are arranged on the inner wall of the limiting vertical slot plate 1202, and the height of the resisting oblique blocks 1203 is set to 0.9 times the depth of the limiting vertical slot plate 1202. The bottom surface of the trapezoidal extrusion block 1201 is located on one side of the limiting vertical slot plate 1202 and is connected to the rotating shaft 1205 through two fixed blocks 1204 for common rotation, and the center of the rotating shaft 1205 axis wall is fixedly installed with a top block 1206 for clamping the resisting oblique blocks 1203, and the left and right sides of the rotating shaft 1205 axis wall are fixedly installed with rotation springs 1207 driven by rotation, and the opposite ends of the two rotation springs 1207 are respectively fixedly connected to the corresponding fixed blocks 1204. The resisting oblique blocks 1203 in the device are arrayed in the same direction inside the limiting vertical slot plate 1202.

[0024] The working principle of the above embodiment is: When the device is in use, it can be fixedly installed with other equipment by connecting the base 1 to ensure the use effect of the overall structure. During the use of the device, the T-shaped limit slot 2 can provide a moving track for the overall structure and the output motor 5, so that the output shaft position of the output motor 5 can be adjusted. In this way, even if the position of the output motor 5 is fixed, the output force transmission of the output motor 5 can be maximized. When fixing the output motor 5, first, the protective cover block 6 is engaged with the T-shaped connecting groove 1002 in the fixed vertical plate 1001 through the L-shaped block 704 under the connecting groove block 702, so as to ensure the mutual connection between the protective cover block 6 and the supporting groove block 4, forming a bracket for fixing the output motor 5. After the L-shaped block 704 is engaged, the long-axis screw 703 can be rotated by a tool such as a screwdriver. Under the thread tension of the long-axis screw 703, the connecting groove block 702 and the fixed vertical plate 1001 are tightened and pulled, so that the output motor 5 can be firmly fixed, and the surface of the output motor 5 can be protected by the protective rubber pad 601 to avoid damage to the surface of the output motor 5. When the output motor 5 is in use, the vibration force generated by the shock absorbing component 11 in the storage chamber 9 is absorbed, and the conversion component 12 is used to transfer the force to pull the protective cover block 6 and the support slot block 4, so that the protective cover block 6 and the support slot block 4 are squeezed against each other more firmly, ensuring the stability of the output motor 5 during operation, avoiding the problem of shaking of the output motor 5, and ensuring the normal use function of the output motor 5. The shock absorbing component 11 here mainly includes the elastic shaking of the spring plate 1101 and the counterweight block 1102 to absorb the vibration generated during the process. The vibration force generated thereby achieves the effect of shock absorption, which is mainly because the vibration energy is converted into elastic potential energy of the spring plate 1101, thereby consuming part of the vibration energy, and under the up and down fluctuations and left and right movements of the counterweight block 1102, the pulling rope 1103 is driven to pull the trapezoidal extrusion block 1201 to squeeze the trapezoidal push block 1004, so that the trapezoidal push block 1004 will use the inclined surface to squeeze the extrusion groove 1003. Under the pushing force of the inclined surface, the fixed vertical plate 1001 has a tendency to move downward, thereby ensuring that the connecting groove block 702 and the fixed vertical plate are connected. The plate 1001 is more firmly connected under the clamping action of the L-shaped clamping block 704 and the T-shaped connecting groove 1002, ensuring the fixed stability of the output motor 5. Since the pulling rope 1103 is an elastic rope, it undergoes elastic deformation in the process of transmitting the vibration force, storing and releasing energy, playing a buffering role, making the vibration force more smoothly transmitted, reducing the impact on the trapezoidal extrusion block 1201, and avoiding the problem of structural damage in the device. Here, the trapezoidal extrusion block 1201 will be clamped at the top block 1206 to resist the non-return effect of the inclined block 1203 There will be no upward movement because the inclined surface of the resisting inclined block 1203 here is downward sloping, so in conjunction with the top limit of the top block 1206, the trapezoidal extrusion block 1201 can only slide downward, and will not move upward, thereby ensuring the downward pulling of the fixed vertical plate 1001 and the overall effect of fixing the output motor 5. The device highlights the innovative structure and does not elaborate too much on the existing mature technology, and the rotational force generated by the rotating rotary spring 1207 is to make the top block 1206 fit closely with the resisting inclined block 1203.

[0025] The installation method, connection method or setting method disclosed in this embodiment are all common mechanical connection methods, and can be implemented as long as they can achieve their beneficial effects. In addition, the electrical components appearing in this embodiment are all electrically connected to the main controller and the power supply. The main controller can be a conventional known device such as a computer that plays a control role. Technicians in this field can control the electrical components through simple programming, and the existing disclosed power connection technology is also common knowledge in this field, so the specific structural composition and working principle will not be described in detail in this embodiment.

Claims

1. An adjustable motor mounting bracket for a new energy vehicle, comprising a connecting base (1), characterized in that: The left and right sides of the top surface of the connecting base (1) are provided with T-shaped limit grooves (2), and the inner walls of the two T-shaped limit grooves (2) are fixedly installed with a support groove block (4) for clamping and fixing through a sliding T-shaped limit block (3), and the inner wall of the support groove block (4) is provided with an output motor (5) for rotating output, and the top surface of the output motor (5) is clamped with a protective cover block (6) for wrapping and protecting, and the bottom surface of the protective cover block (6) is provided with a plurality of connection components (7) for fixed connection, and the left and right sides of the connecting base (1) are provided with a sliding opening (8) for movement, and the inner wall of the sliding opening (8) is threadedly connected to the surface of the T-shaped limit block (3) through a fixing bolt, and the left and right sides of the inside of the support groove block (4) are provided with a storage cavity (9) for storage, and the upper side of the inner wall of the two storage cavities (9) is provided with two limit assemblies (10) for clamping and limiting.

2. The adjustable motor mounting bracket for new energy vehicles according to claim 1, characterized in that: The connecting assembly (7) includes a movable square groove (701) provided on the bottom surface of the protective cover block (6), and the inner wall of the movable square groove (701) is slidably mounted with a connecting groove block (702), the top surface of the protective cover block (6) is located on the upper side of the movable square groove (701) and is provided with a threaded opening (13) for threaded fixing, and the inner wall of the threaded opening (13) is threadedly connected to the inner wall of the connecting groove block (702) through a long-axis screw (703) connected by thread, and the bottom surface of the connecting groove block (702) is fixedly mounted with an L-shaped clamping block (704) for clamping.

3. The adjustable motor mounting bracket for new energy vehicles according to claim 2, characterized in that: The limiting assembly (10) includes a fixed vertical plate (1001), and a T-shaped connecting groove (1002) for clamping and limiting is provided on the top surface of the fixed vertical plate (1001), and an extrusion groove (1003) for extrusion and pressing is provided on the lower sides of the left and right surfaces of the surface of the fixed vertical plate (1001), and the inner walls of the two extrusion grooves (1003) are slidably mounted with a trapezoidal push block (1004) for sliding and pushing, and the front and rear surfaces of the trapezoidal push block (1004) are slidably mounted with an L-shaped limiting block (1006) for limiting sliding through the provided guide groove (1005), the top surfaces of the two L-shaped limiting blocks (1006) are fixedly connected to the upper side of the inner wall of the storage cavity (9), and the bottom surface of the fixed vertical plate (1001) is provided with a shock absorbing assembly (11) for shock absorption, and the shock absorbing assembly (11) is connected to the trapezoidal push block (1004) through a conversion assembly (12).

4. The adjustable motor mounting bracket for new energy vehicles according to claim 3, characterized in that: The shock absorbing assembly (11) comprises a spring plate (1101) fixedly mounted on the bottom surface of the fixed vertical plate (1001), and a counterweight (1102) for shaking is fixedly mounted on a side of the spring plate (1101) away from the fixed vertical plate (1001), and a pulling rope (1103) for pulling is fixedly mounted on the top surface of the counterweight (1102).

5. The adjustable motor mounting bracket for new energy vehicles according to claim 4, characterized in that: The conversion assembly (12) includes a trapezoidal extrusion block (1201) fixedly connected to the upper end of the pulling rope (1103), and the front and rear sides of the top surface of the trapezoidal extrusion block (1201) are mounted inside the storage cavity (9) through a through-limiting vertical slot plate (1202), and the inner walls of the two limiting vertical slot plates (1202) are fixedly installed with a plurality of blocking oblique blocks (1203) for limiting and resisting, and the bottom surface of the trapezoidal extrusion block (1201) is located on the limiting vertical slot plate (12 02) is connected to a rotating shaft (1205) on one side through two fixed blocks (1204) for common rotation, and a top block (1206) for engaging and resisting the inclined block (1203) is fixedly installed at the center of the axis wall of the rotating shaft (1205), and a rotation spring (1207) driven by rotation is fixedly installed on the left and right sides of the axis wall of the rotating shaft (1205), and the opposite ends of the two rotation springs (1207) are fixedly connected to the corresponding fixed blocks (1204) respectively.

6. The adjustable motor mounting bracket for new energy vehicles according to claim 4, characterized in that: The plurality of L-shaped blocks (704) are all made of (316) stainless steel, and the opposite sides of the two corresponding L-shaped blocks (704) are tightly fitted with the opposite sides of the inner wall of the corresponding T-shaped connecting groove (1002).

7. The adjustable motor mounting bracket for new energy vehicles according to claim 5, characterized in that: The protective cover block (6) is a semicircular plate structure, while the supporting slot block (4) is an arched slot block structure, and the inner wall of the protective cover block (6) and the inner wall of the supporting slot block (4) are both embedded with protective rubber pads (601) for protection.

8. The adjustable motor mounting bracket for new energy vehicles according to claim 5, characterized in that: The plurality of counterweight blocks (1102) are all rectangular blocks made of hard rubber, and the plurality of pulling ropes (1103) are all elastic rope structures made of rubber.

9. The adjustable motor mounting bracket for new energy vehicles according to claim 5, characterized in that: The plurality of trapezoidal extrusion blocks (1201) are all configured to be narrow at the bottom and wide at the top, while the plurality of trapezoidal push blocks (1004) are all configured to be narrow at the top and wide at the bottom. The inclined surfaces of the trapezoidal extrusion blocks (1201) and the inclined surfaces of the trapezoidal push blocks (1004) are arranged parallel to each other, and the inclined surfaces of the trapezoidal extrusion blocks (1201) and the inclined surfaces of the trapezoidal push blocks (1004) fit closely together. The upper and lower surfaces of the plurality of limiting vertical slot plates (1202) are fixedly connected to the upper and lower sides of the inner wall of the storage cavity (9), respectively.

10. The adjustable motor mounting bracket for new energy vehicles according to claim 5, characterized in that: The plurality of oblique blocking blocks (1203) are all arranged on the inner wall of the position-limiting vertical slot plate (1202), and the height of the oblique blocking blocks (1203) is set to 0.9 times the slot depth of the position-limiting vertical slot plate (1202).

Citation Information

Patent Citations

  • An adjustable motor for a vehicle chassis

    CN109149857A

  • Motor mounting equipment capable of self-adaptively adjusting support balance according to uneven ground

    CN110868012A

  • Mounting base for new energy automobile motor

    CN110912328A

  • Fixing frame structure for new energy automobile motor

    CN212627389U