Multi-angle adjusting and overturning mounting platform

By designing a multi-angle adjustment of the flip installation platform, the safety hazards and low operating efficiency problems in the installation of the bottom surface of the battery module are solved, and safer and more efficient installation operations are achieved.

CN222867727UActive Publication Date: 2025-05-13SHANGHAI RONGHE ZHIDIAN NEW ENERGY CO LTD
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Patent Information

Application Number
CN202421461263.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-05-13
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

In the prior art, the bottom surface installation of the battery module has problems of safety hazards and low operating efficiency, especially when flipping and adjusting the angle is required.

Method used

A multi-angle adjustment flip installation platform is designed, including a bracket, flip plate and telescopic components. The flip plate can be rotated and adjust the angle through the telescopic components. It matches the angle limiting mechanism and locking device to ensure that the flip plate is stable at a specific angle.

Benefits of technology

By adjusting the flip installation platform from multiple angles, the battery module can be installed under safe and convenient conditions, improving the safety and efficiency of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-angle adjustment overturning installation platform which comprises a support, an overturning plate and a telescopic component. The turnover plate is rotatably connected to the support, and a fixing part is arranged on the turnover plate. The two ends of the telescopic component are connected to the turnover plate and the support respectively, and the telescopic component stretches out and draws back to drive the turnover plate to rotate to adjust the angle. When the multi-angle adjusting turnover mounting platform is used for mounting the battery module, the battery module is placed on the turnover plate, the telescopic component is controlled to stretch or retract to drive the turnover plate to change the angle, and therefore the battery module on the turnover plate is driven to incline; and an operator can conveniently stand on the side of the battery module to carry out mounting operation. Therefore, the operation is safer and more convenient, and the installation efficiency can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of battery module installation, in particular to a multi-angle adjustable flip installation platform. Background Art

[0002] During the assembly process of the battery module, there are structures in all directions of the battery module that require manual connection, such as the installation of bolts and other fasteners. Installation on the top and side surfaces is easier to operate, but installation on the bottom surface requires the use of equipment to lift the battery module off the ground. In the prior art, the battery module is usually hoisted by hoisting equipment, and the operator squats at the bottom of the battery pack to install it. This poses a great safety hazard, and the installation efficiency is low due to limited operating space and inconvenient operating posture.

[0003] In view of this, the present utility model is proposed. Utility Model Content

[0004] The utility model provides a multi-angle adjustable flip installation platform.

[0005] The utility model adopts the following technical solutions:

[0006] The embodiment of the present application provides a multi-angle adjustable flip installation platform, comprising:

[0007] Bracket;

[0008] A flip plate, the flip plate is rotatably connected to the bracket, and a fixing portion is provided on the flip plate;

[0009] A telescopic component, both ends of which are respectively connected to the flip plate and the bracket. The telescopic component can drive the flip plate to rotate and adjust the angle by telescoping movement.

[0010] Optionally, the multi-angle adjustable flip installation platform includes a first angle limiting mechanism, and the first angle limiting mechanism is adjustable and arranged on the bracket;

[0011] The first angle limiting mechanism includes a rigid top column;

[0012] When the flip plate rotates to the extreme position, the rigid top column abuts against the flip plate to limit the angle of the flip plate.

[0013] Optionally, the first angle limiting mechanism includes a base and an elastic top column, the base is installed on the bracket in an adjustable position, the elastic top column and the rigid top column are both connected to the base, the elastic top column is parallel to the rigid top column, and the length of the elastic top column is longer than that of the rigid top column.

[0014] Optionally, a first mounting beam is provided on the bracket, and the first mounting beam extends in a direction perpendicular to the rotation axis of the flip plate;

[0015] The base can be moved and fixed along the first mounting beam.

[0016] Optionally, the multi-angle adjustable flip installation platform includes a second angle limiting mechanism, the second angle limiting mechanism is adjustable and arranged on the bracket, and the second angle limiting mechanism has a first locking hole;

[0017] A locking device is provided on the flip plate, and the locking device has a telescopic shaft, and the telescopic shaft can telescopically move in a direction parallel to the rotation axis of the flip plate;

[0018] When the flip plate rotates to the extreme position, the telescopic shaft of the locking device can be extended to be inserted into the first locking hole.

[0019] Optionally, the bracket has a second mounting beam, and the second mounting beam extends in a direction perpendicular to the rotation axis of the flip plate;

[0020] The second angle limiting mechanism can be moved and fixed along the second mounting beam.

[0021] Optionally, the second angle limiting mechanism comprises a connecting plate and a vertical plate vertically connected to the connecting plate;

[0022] The connecting plate can be moved and fixed along the second mounting beam;

[0023] The first locking hole is disposed on the vertical plate.

[0024] Optionally, a hinged seat is provided at the top of the second mounting beam, and the second angle limiting mechanism is provided at the bottom;

[0025] The flip plate has a rotating shaft, and the rotating shaft is rotatably connected to the hinge seat.

[0026] Optionally, the multi-angle adjustable flip installation platform further includes a third angle limiting mechanism;

[0027] The third angle limiting mechanism is arranged on the top of the second mounting beam, and the third angle limiting mechanism has a second locking hole;

[0028] When the flip plate is rotated to a horizontal state, the telescopic shaft of the locking device can be extended to be inserted into the second locking hole.

[0029] Optionally, a position sensor is provided on the first angle limiting mechanism;

[0030] The position sensor is electrically connected to the locking device;

[0031] The flip plate is provided with a position-matching portion;

[0032] When the flip plate rotates to the extreme position, the in-position matching portion can trigger the position sensor, so that the locking device controls the extension of the telescopic shaft.

[0033] By adopting the above technical solution, the utility model has the following beneficial effects:

[0034] When the multi-angle adjustable flip installation platform provided by the present application is used, the battery module is placed on the flip plate, and the telescopic component is controlled to extend or contract to drive the flip plate to change the angle, thereby driving the battery module on the flip plate to tilt, so that the operator can stand on the side of the battery module to perform the installation operation. This is safer and more convenient, and can also improve the efficiency of installation.

[0035] The specific implementation of the utility model is further described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] The accompanying drawings are part of this application and are used to provide a further understanding of the utility model. The schematic embodiments of the utility model and their descriptions are used to explain the utility model, but do not constitute an improper limitation of the utility model. Obviously, the drawings described below are only some embodiments. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work. In the drawings:

[0037] Figure 1 A schematic diagram of the structure of a multi-angle adjustable flip installation platform provided in an embodiment of the present application is shown;

[0038] Figure 2 A partial structure enlarged schematic diagram of a multi-angle adjustable flip installation platform provided in an embodiment of the present application is shown;

[0039] Figure 3 A partial enlarged structural schematic diagram of a first angle limiting mechanism of a multi-angle adjustable flip installation platform provided in an embodiment of the present application is shown;

[0040] Figure 4 It shows a partial enlarged structural schematic diagram of the multi-angle adjustable flip installation platform provided by an embodiment of the present application, where the first angle limit mechanism of the flip plate thickness is removed;

[0041] Figure 5 A schematic diagram of the structure of the multi-angle adjustable flip installation platform in another direction provided by an embodiment of the present application is shown;

[0042] Figure 6A structural schematic diagram of another direction of the multi-angle adjustable flip installation platform provided in an embodiment of the present application is shown.

[0043] In the figure: bracket 1, first mounting beam 11, second mounting beam 12, column 13, support member 14, horizontal support plate 141, turnover vehicle locking part 15, locking shaft 151, roller 16, telescopic seat 17, hinged seat 18, auxiliary support 19, working chamber 101, inlet and outlet 102, flip mechanism 2, flip plate 21, rotating shaft 211, telescopic component 22, avoidance hole 23, first angle limiting mechanism 3, rigid top column 31, base 32, elastic top column 33, second angle limiting mechanism 41, connecting plate 411, vertical plate 412, first locking hole 413, locking device 42, telescopic shaft 421, third angle limiting mechanism 43, second locking hole 431, position sensor 51, in-place matching part 52, latch 6, control component 7, first control button 71, second control button 72, first safety component 8, first transmitting part 81, first receiving part 82, second safety component 9, ray 100.

[0044] It should be noted that these drawings and textual descriptions are not intended to limit the conceptual scope of the present invention in any way, but rather to illustrate the concept of the present invention for those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION

[0045] In order to make the purpose, technical solutions and advantages of the embodiments of the utility model clearer, the technical solutions in the embodiments will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. The following embodiments are used to illustrate the utility model but are not used to limit the scope of the utility model.

[0046] In the description of the present invention, it should be noted that the terms "upper", "lower", "inside", "outside", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or component referred to must have a specific direction, be constructed and operated in a specific direction, and therefore cannot be understood as a limitation on the present invention.

[0047] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0048] See also Figures 1 to 6As shown, an embodiment of the present application provides a multi-angle adjustable flip installation platform, including a bracket 1, a flip plate 21 and a telescopic component 22. The flip plate 21 is rotatably connected to the bracket 1, and a fixing portion is provided on the flip plate 21. The two ends of the telescopic component 22 are respectively connected to the flip plate 21 and the bracket 1, and the telescopic component 22 telescopically moves, which can drive the flip plate 21 to rotate and adjust the angle. When the multi-angle adjustable flip installation platform of the present application is used to install a battery module, the battery module is placed on the flip plate 21, and the telescopic component 22 is controlled to extend or contract to drive the flip plate 21 to change the angle, thereby driving the battery module on the flip plate 21 to tilt, so that the operator can stand on the side of the battery module to perform the installation operation. This operation is safer and more convenient, and can also improve the efficiency of installation.

[0049] Among them, a fixing part is provided on the flip plate 21, and the function of the fixing part is to limit the battery module to prevent the battery module from sliding after the flip plate 21 is flipped to a certain angle with the horizontal plane. When the battery module is placed on the flip plate 21, the fixing part can be connected to the battery module, and the fixing part can also be limited to the workpiece, such as the side of the battery module.

[0050] In some possible implementations, the multi-angle adjustable flip installation platform includes a first angle limiting mechanism 3, which is adjustable and arranged on the bracket 1. The first angle limiting mechanism 3 includes a rigid top column 31, and when the flip plate 21 rotates to the limit position, the rigid top column 31 abuts against the flip plate 21 to limit the angle of the flip plate 21. The limit position to which the flip plate 21 rotates is the maximum angle at which the flip plate 21 can flip, and is also the angle at which the flip plate 21 should be when installed under the battery module. The angle most suitable for the installation of the batch of battery modules (i.e., the limit position of the flip plate 21) is measured in advance through multiple tests, and then the first angle limiting mechanism 3 is installed and fixed according to the most suitable limit position. The first angle limiting mechanism 3 limits the maximum angle at which the flip plate 21 can flip, ensuring that the flip plate 21 flips and falls accurately. Changing the position of the first angle limiting mechanism 3 on the bracket 1 can change the maximum angle at which the flip plate 21 can flip, and prevent the battery module from slipping due to excessive flipping. When using the multi-angle adjustable flip installation platform of the present application, the first angle limit mechanism 3 is fixed in a suitable position according to the flip angle of the flip plate 21 before use, ensuring that the position is most suitable for installing the bottom of the battery module and will not cause the battery module to slip.

[0051] In some possible implementation schemes, the first angle limiting mechanism 3 includes a base 32 and an elastic top column 33. The base 32 is installed on the bracket 1 in an adjustable position. The elastic top column 33 and the rigid top column 31 are both connected to the base 32. The elastic top column 33 is parallel to the rigid top column 31, and the length of the elastic top column 33 is longer than that of the rigid top column 31. The base 32 can drive the elastic top column 33 and the rigid top column 31 to move relative to the bracket 1 and fix them in a suitable position. When the flip plate 21 approaches the first angle limiting mechanism 3, it first contacts the elastic top column 33 and then contacts the rigid top column 31. The elastic top column 33 provides a buffering force for the flip plate 21, so that the speed of the flip plate 21 when contacting the rigid top column 31 will not be too high, and the rigid top column 31 and the flip plate 21 will not be damaged during the collision.

[0052] Furthermore, the elastic top column 33 includes a shell, an elastic structure and an elastic column. The elastic structure can be arranged in the shell, one end of the elastic column is located outside the shell, and the other end is deeply inserted into the shell and connected to the elastic structure. The elastic structure can be a micro cylinder with a built-in elastic force provided by compressed gas. The elastic structure can also be a spring, and the elastic force is provided by the spring.

[0053] In some possible implementations, the bracket 1 is provided with a first mounting beam 11, the first mounting beam 11 extends in a direction perpendicular to the rotation axis of the flip plate 21, and the base 32 can be moved and fixed along the first mounting beam 11. The first mounting beam 11 is provided with multiple groups of first connection holes at intervals, and the base 32 can be connected to different first connection holes through a connecting member, which can be a bolt, and the base 32 is connected and matched with different first connection holes on the first mounting beam 11 to adjust the position of the first angle limiting mechanism 3 on the first mounting beam 11.

[0054] In some possible implementations, the multi-angle adjustable flip installation platform includes at least two parallel and spaced first installation beams 11, each of which is provided with at least one first angle limiting mechanism 3, and the connecting line of the first angle limiting mechanisms 3 on different first installation beams 11 is parallel to the rotation axis of the flip plate 21. Preferably, two first installation beams 11 are included, and the two first installation beams 11 are respectively provided on both sides below the flip plate 21. Both sides are limited to ensure the limiting force, and prevent the flip plate 21 from being subjected to force on one side, resulting in skew.

[0055] In some possible implementations, the multi-angle adjustable flip installation platform further includes a second angle limiting mechanism 41, which is adjustable and arranged on the bracket 1, and has a first locking hole 413. A locking device 42 is arranged on the flip plate 21, and the locking device 42 has a telescopic shaft 421, and the telescopic shaft 421 can telescopically move in a direction parallel to the rotation axis of the flip plate 21. When the flip plate 21 rotates to the extreme position, the telescopic shaft 421 of the locking device 42 can be extended to be inserted into the first locking hole 413. The second angle limiting mechanism 41 further limits the flip plate 21 when the flip plate 21 flips to the extreme position. The telescopic shaft 421 cooperates with the locking hole to prevent the flip plate 21 from continuing to flip, and also prevents the flip plate 21 from flipping back, so as to ensure that the flip plate 21 is in a stable position when the battery module is installed after the flip plate 21 is flipped, and to avoid the occurrence of injuries to the operator due to the rotation of the flip plate 21.

[0056] In some possible implementations, the bracket 1 has a second mounting beam 12, the second mounting beam 12 extends in a direction perpendicular to the rotation axis of the flip plate 21, and the second angle limiting mechanism 41 can move and fix along the second mounting beam 12. The locking device 42 is located on the flip plate 21, and the second angle limiting mechanism 41 is located on the second mounting beam 12, so the second mounting beam 12 needs to be located at a position close to the side of the flip plate 21. Therefore, the second mounting beam 12 needs to be extended in a direction perpendicular to the rotation axis of the flip plate 21 so as not to become an obstacle during the flipping process of the flip plate 21, and ensure that the second angle limiting mechanism 41 is set at the same distance from the flip plate 21 at any position of the second mounting beam 12.

[0057] In some possible implementations, the multi-angle adjustable flip installation platform includes two parallel and spaced second installation beams 12, the two second installation beams 12 are arranged on both sides of the flip plate 21, each second installation beam 12 is provided with a second angle limiting mechanism 41, and the connecting line of the two second angle limiting mechanisms 41 is parallel to the rotation axis of the rotating plate. The flip plate 21 is respectively provided with locking devices 42 on both sides along the rotation axis, and the flip plate 21 is limited by two sets of second angle limiting mechanisms 41, further improving the limiting force.

[0058] In some possible implementations, the second angle limiting mechanism 41 includes a connecting plate 411 and a vertical plate 412 vertically connected to the connecting plate 411. The connecting plate 411 can be moved and fixed along the second mounting beam 12, and the first locking hole 413 is provided on the vertical plate 412. The connecting plate 411 can increase the connection area with the second mounting beam 12, making the connection structure more stable, and the connection plate 411 fits one side of the second mounting beam 12 to prevent the second angle limiting mechanism 41 from shaking after connection. The connecting plate 411 and the vertical plate 412 can be integrally formed, for example, the connecting plate 411 and the vertical plate 412 are formed by bending a plate body.

[0059] Furthermore, multiple groups of second connection holes are arranged at intervals on the second mounting beam 12, and the connection plate 411 can be connected to any group of the second connection holes. The connection plate 411 adjusts the position of the second angle limiting mechanism 41 on the second mounting beam 12 by connecting and cooperating with different second connection holes on the second mounting beam 12. Before use, the second angle limiting mechanism 41 is fixed in advance at a suitable position on the second mounting beam 12 according to the pre-measured limit position of the flip plate 21.

[0060] In some possible implementations, the second mounting beam 12 is provided with an articulated seat 18 at the top and the second angle limiting mechanism 41 at the bottom. The flip plate 21 has a rotating shaft 211, and the rotating shaft 211 is rotatably connected to the articulated seat 18. The articulated seat 18 and the second angle limiting mechanism 41 are both integrated on the second mounting beam 12, and the structural arrangement is more compact and reasonable. In addition, the articulated seat 18 and the second angle limiting mechanism 41 are respectively arranged on both sides of the second mounting beam 12, and both have more sufficient arrangement positions, and the two complement each other.

[0061] In some possible implementations, the multi-angle adjustable flip installation platform also includes a third angle limiting mechanism 43. The third angle limiting mechanism 43 is arranged at the top of the second mounting beam 12, and the third angle limiting mechanism 43 has a second locking hole 431. When the flip plate 21 rotates to a horizontal state, the telescopic shaft 421 of the locking device 42 can be extended to be plugged into the second locking hole 431. The function of the third angle limiting mechanism 43 is to limit the flip plate 21 to a horizontal state that cannot be changed, which can prevent the flip plate 21 from flipping due to accidental touch when an operator is at the bottom or side of the flip plate 21, thereby improving the safety of the equipment.

[0062] Furthermore, the third angle limiting mechanism 43 includes a second connecting plate and a second vertical plate vertically connected to the second connecting plate. The second connecting plate can be moved and fixed along the second mounting beam 12, and the second locking hole 431 is arranged on the second vertical plate. The second connecting plate 411 increases the connection area with the second mounting beam 12, making the connection more stable, and the second connecting plate fits one side of the second mounting beam 12 to prevent the third angle limiting mechanism 43 from shaking after the connection. The second connecting plate and the second vertical plate can be an integral part.

[0063] In some possible implementation schemes, a position sensor 51 is provided on the first angle limiting mechanism 3, and the position sensor 51 is electrically connected to the locking device 42. A mating portion 52 is provided on the flip plate 21, and when the flip plate 21 rotates to the extreme position, the mating portion 52 can trigger the position sensor 51, so that the locking device 42 controls the extension of the telescopic shaft 421. When the flip plate 21 flips into place, the position sensor 51 will detect the mating portion 52 in place, and then send a signal to the locking device 42. The locking device 42 receives the signal and moves deep into the telescopic shaft 421. The limiting of the first angle limiting mechanism 3 can be completed without manual operation, which is accurate and convenient. The position sensor 51 can be any one of a proximity switch, an infrared sensor, a photoresistor and a Hall element.

[0064] In some possible implementation schemes, the multi-angle adjustable flip installation platform further includes a control component 7 , and the position sensor 51 , the telescopic component 22 , and the locking device 42 are all electrically connected to the control component 7 .

[0065] In some possible implementations, the telescopic component 22 may be a telescopic cylinder. The locking device 42 may be a linear motor with a telescopic shaft.

[0066] In some possible implementations, the multi-angle adjustable flip installation platform further includes a flip mechanism 2, a control component 7, and a first safety component 8. The bracket 1 has a working chamber 101 and an inlet and outlet 102 connected to the working chamber 101, the flip mechanism 2 includes the flip plate 21 and a telescopic component 22, the flip plate 21 is at least partially located in the working chamber 101, and the flip plate 21 is rotatably arranged on the bracket 1. The control component 7 is arranged on the bracket 1, the control component 7 is electrically connected to the flip mechanism 2, the first safety component 8 is electrically connected to the control component 7, the first safety component 8 includes a first transmitting part 81 and a first receiving part 82, the first transmitting part 81 and the first receiving part 82 are both arranged on the bracket 1, and the first transmitting part 81 and the first receiving part 82 are respectively arranged on both sides of the inlet and outlet 102. A first safety component 8 is provided on both sides of the entrance and exit 102 of the working chamber 101. The first transmitting part 81 of the first safety component 8 transmits a detection ray to the first receiving part 82. If an operator enters or exits from the entrance and exit 102, the ray between the first transmitting part 81 and the first receiving part 82 will be blocked. The first safety component 8 sends a ray blocking signal to the control component 7. The control component 7 can determine whether there is an operator in the working chamber 101 according to the signal. The control component 7 controls the flip mechanism 2 to rotate the flip plate 21 only when there is no operator in the working chamber 101, thereby further improving the safety of the battery module installation process.

[0067] In some possible implementations, the multi-angle adjustable flip installation platform includes the second safety component 9, which includes a second transmitting part and a second receiving part. The second safety component 9 is electrically connected to the control component 7, and the second transmitting part and the second receiving part are both arranged on the bracket 1. The second transmitting part and the second receiving part are located on both sides of the flip plate 21, and the connecting line of the second transmitting part and the second receiving part is located below the flip plate 21. The ray 100 emitted by the second safety component 9 is located below the flip plate 21. When an operator stands in the working chamber 101, the ray 100 between the second transmitting part and the second receiving part will be blocked. Therefore, the second safety component 9 can detect whether there is an operator in the working chamber 101, and transmit the measured result to the control component 7. The control component 7 controls the flip mechanism 2 not to rotate the flip plate 21 when there is an operator in the working chamber 101. The results measured by the second safety component 9 and the results measured by the first safety component 8 are both transmitted to the control component 7, and the control component 7 comprehensively judges whether there is a staff in the working chamber 101, so that the judgment result is more accurate and it is not easy to have a misjudgment. The rays in the figure are non-solid and do not hinder the operator from walking in the working chamber.

[0068] In some possible implementations, the multi-angle adjustable flip installation platform includes two second safety components 9, and an angle is formed between a line connecting the second transmitting portion and the second receiving portion of one second safety component 9 and a line connecting the second transmitting portion and the second receiving portion of another second safety component 9. The two second safety components 9 can emit two rays 100 with an angle, and the coverage of the working chamber 101 by the two rays 100 is greatly increased. When an operator enters the working chamber 101, at least one ray 100 can be blocked, thereby preventing the operator from being located in the working chamber 101 without being detected by the second safety component 9.

[0069] In some possible implementations, the second emitting portion and the second receiving portion of one second safety component 9 are arranged on both sides of the bracket 1 along a diagonal line, and the second emitting portion and the second receiving portion of another second safety component 9 are arranged on both sides of the bracket 1 along another diagonal line. Such an arrangement has the best coverage effect on the working chamber 101, and prevents the operator from being located in the working chamber 101 without being detected by the second safety component 9 to the greatest extent. Among them, the height of the second emitting portion and the second receiving portion can be the same or different. The rays 100 emitted by the two second safety components 9 may intersect or not intersect. Adaptive adjustments can be made according to the use environment, etc.

[0070] In some possible implementations, the bracket 1 includes a plurality of columns 13, at least some of the columns 13 are provided with a support member 14, the support member 14 has a horizontal support plate 141, and each of the second emitting part and the second receiving part is respectively provided on the corresponding horizontal support plate 141. The column 13 provides a mounting surface for the support member 14, and the support member 14 provides a mounting surface for the second emitting part and the second receiving part, so as to ensure the stable installation of the second emitting part and the second receiving part. Among them, the support member 14 includes a connecting surface and a supporting surface which are vertically connected, the connecting surface is connected to the column 13, and the second emitting part and the second receiving part are provided on the supporting surface of the corresponding support member 14. The supporting surface is parallel to the state where the flip plate 21 is not flipped, that is, the supporting surface is parallel to the horizontal plane.

[0071] In some possible implementations, the control assembly 7 includes a first control button 71 and a second control button 72. The first control button 71 and the second control button 72 are both arranged on the bracket 1, and the first control button 71 and the second control button 72 are respectively arranged on both sides of the inlet and outlet 102, and the rotation of the flip plate 21 can be controlled only when the first control button 71 and the second control button 72 are both triggered. The first control button 71 and the second control button 72 are separated by a certain distance, and two people need to press the first control button 71 and the second control button 72 at the same time to start the flip mechanism 2 to rotate the flip plate 21. This arrangement prevents the occurrence of a situation where the flip plate 21 rotates and injures the operator due to the accidental touch of the control button, and further improves the safety of the device.

[0072] In some possible implementation schemes, a trolley locking portion 15 is provided on the bracket 1, and the trolley locking portion 15 has a telescopic locking shaft 151. The locking shaft 151 can be inserted into the trolley to prevent the trolley from being in a stable position when it is located on the side of the multi-angle adjustment flip installation platform, so as to facilitate the lifting and placement of the battery module that needs to be installed. The trolley locking portion 15 can be a linear motor, and the locking shaft 151 is connected to the output end of the linear motor. The linear motor drives the locking shaft 151 to telescopically move. The locking shaft 151 can also be a push rod of the linear motor.

[0073] In some possible implementations, the bracket 1 is provided with a roller 16 and a telescopic seat 17. The multi-angle adjustable flip installation platform has a fixed state and a movable state. In the movable state, the telescopic seat 17 retracts and detaches from the support surface, and the roller 16 is supported on the support surface; in the fixed state, the telescopic seat 17 is extended and supported on the support surface. The roller 16 facilitates the movement of the multi-angle adjustable flip installation platform and facilitates turnover. The telescopic seat 17 fixes the position of the multi-angle adjustable flip installation platform when it is in the fixed state.

[0074] Furthermore, the multi-angle adjustable flip installation platform includes four rollers 16 and four telescopic seats 17 , and the four rollers 16 and the four telescopic seats 17 are respectively arranged at the four corners of the bottom of the bracket 1 .

[0075] Furthermore, four auxiliary supports 19 are arranged on the bracket, and the four auxiliary supports 19 are arranged adjacent to the four rollers 16 respectively, and the height of the lowest point of the auxiliary support 19 is slightly higher than the height of the lowest point of the roller. When the battery module auxiliary assembly equipment uses the roller 16 to move, there is a gap between the bottom of the auxiliary support and the support surface, but when the roller 16 fails and suddenly retracts or breaks, the auxiliary support 19 can be supported on the support surface. Among them, the support surface can be the ground, etc.

[0076] Furthermore, the auxiliary support 19 can be a "U"-shaped structure or an "L"-shaped structure. The auxiliary support 19 includes a connecting plate and a support plate. The connecting plate is connected to the bracket, and the support plate is connected to the side of the connecting plate away from the bracket. The support plate can be parallel to the horizontal plane. If the roller fails, the support plate can be supported on the supporting surface (such as the ground). The support plate is provided with connecting holes and can be connected to the supporting surface through a connecting piece. The connecting piece can be a bolt or an anchor.

[0077] In some possible implementations, the fixing portion may include a plurality of latches 6. The flip plate 21 is provided with a plurality of sockets, and the latches 6 can be plugged into the sockets to fix or limit the workpiece supported on the flip plate 21. The latches 6 are used to limit the battery module to prevent the battery module from sliding after the flip plate 21 is flipped to a certain angle with the horizontal plane. When the battery module is placed on the flip plate 21, each latch 6 can pass through the battery module and connect to the socket, or each latch 6 may not pass through the battery module and is limited to being located on the peripheral side of the battery module.

[0078] In some possible implementations, the flip plate 21 is provided with a plurality of avoidance holes 23. The avoidance holes 23 correspond to the parts on the workpiece (such as the battery module) that need to be operated, and the avoidance holes 23 expose the parts on the bottom of the workpiece that need to be operated, so as to facilitate the operator to perform assembly operations, such as bolt connection, welding and other processes.

[0079] The above is only a preferred embodiment of the present invention, and does not constitute any form of limitation to the present invention. Although the present invention has been disclosed as a preferred embodiment as above, it is not intended to limit the present invention. Any technician familiar with the present invention can make some changes or modify the technical contents suggested above into equivalent embodiments without departing from the scope of the technical solution of the present invention. However, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still fall within the scope of the solution of the present invention.

Claims

1. A multi-angle adjustable flip installation platform, characterized in that: include: Bracket; A flip plate, the flip plate is rotatably connected to the bracket, and a fixing portion is provided on the flip plate; A telescopic component, both ends of which are respectively connected to the flip plate and the bracket. The telescopic component can drive the flip plate to rotate and adjust the angle by telescoping movement.

2. The multi-angle adjustable flip installation platform according to claim 1, characterized in that: It comprises a first angle limiting mechanism, wherein the first angle limiting mechanism is adjustable and arranged on the bracket; The first angle limiting mechanism includes a rigid top column; When the flip plate rotates to the extreme position, the rigid top column abuts against the flip plate to limit the angle of the flip plate.

3. The multi-angle adjustable flip installation platform according to claim 2, characterized in that: The first angle limiting mechanism includes a base and an elastic top column, the base is installed on the bracket in an adjustable position, the elastic top column and the rigid top column are both connected to the base, the elastic top column is parallel to the rigid top column, and the length of the elastic top column is longer than that of the rigid top column.

4. The multi-angle adjustable flip installation platform according to claim 3, characterized in that: A first mounting beam is disposed on the bracket, and the first mounting beam extends in a direction perpendicular to the rotation axis of the flip plate; The base can be moved and fixed along the first mounting beam.

5. The multi-angle adjustable flip installation platform according to claim 2, characterized in that: It comprises a second angle limiting mechanism, the second angle limiting mechanism is arranged on the bracket in an adjustable position, and the second angle limiting mechanism has a first locking hole; A locking device is provided on the flip plate, and the locking device has a telescopic shaft, and the telescopic shaft can telescopically move in a direction parallel to the rotation axis of the flip plate; When the flip plate rotates to the extreme position, the telescopic shaft of the locking device can be extended to be inserted into the first locking hole.

6. The multi-angle adjustable flip installation platform according to claim 5, characterized in that: The bracket has a second mounting beam, and the second mounting beam extends in a direction perpendicular to the rotation axis of the flip plate; The second angle limiting mechanism can be moved and fixed along the second mounting beam.

7. The multi-angle adjustable flip installation platform according to claim 6, characterized in that: The second angle limiting mechanism includes a connecting plate and a vertical plate vertically connected to the connecting plate; The connecting plate can be moved and fixed along the second mounting beam; The first locking hole is disposed on the vertical plate.

8. The multi-angle adjustable flip installation platform according to claim 6, characterized in that: The second mounting beam is provided with a hinged seat at the top and the second angle limiting mechanism at the bottom; The flip plate has a rotating shaft, and the rotating shaft is rotatably connected to the hinge seat.

9. The multi-angle adjustable flip installation platform according to claim 8, characterized in that: Also includes a third angle limiting mechanism; The third angle limiting mechanism is arranged on the top of the second mounting beam, and the third angle limiting mechanism has a second locking hole; When the flip plate is rotated to a horizontal state, the telescopic shaft of the locking device can be extended to be inserted into the second locking hole.

10. The multi-angle adjustable flip installation platform according to any one of claims 5 to 9, characterized in that: A position sensor is provided on the first angle limiting mechanism; The position sensor is electrically connected to the locking device; The flip plate is provided with a fitting portion; When the flip plate rotates to the extreme position, the in-position matching portion can trigger the position sensor, so that the locking device controls the extension of the telescopic shaft.