Assembling device with electric rotating function

By designing an assembly device with a support frame, electric rotation, and self-locking components, the problem of angular deviation during equipment debugging of engineering vehicles was solved, achieving stable debugging and protection of the equipment.

CN223604331UActive Publication Date: 2025-11-28RIST ELECTRONIC TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202422829795.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-11-28
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

The existing engineering vehicles cannot lock themselves during equipment debugging, which causes the equipment angle to deviate, affecting the debugging effect and potentially causing equipment damage.

Method used

An assembly device is designed that includes a support frame assembly, an electric rotating assembly, a self-locking assembly, and a sliding support assembly. The electric rotating assembly drives the equipment to rotate, the self-locking assembly locks the rotation position, and the sliding support assembly supports the movement of the equipment.

Benefits of technology

It effectively prevents angle changes during equipment debugging, ensures debugging accuracy, and avoids equipment damage.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223604331U_ABST
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Abstract

The utility model relates to an assembling device with an electric rotating function. The electric rotating assembly is arranged at the supporting end of the supporting frame assembly, the driving end of the electric rotating assembly is used for fixing the debugging equipment and driving the debugging equipment to rotate, and the self-locking assembly is arranged at the supporting end of the supporting frame assembly and used for locking rotation of the driving end of the electric rotating assembly. The sliding supporting assembly is arranged at the bottom of the supporting frame assembly and used for supporting and sliding; according to the utility model, through the self-locking assembly, the situation that debugging is influenced by sudden angle change before equipment debugging can be effectively avoided, and the situation that the equipment is damaged due to the angle change when the equipment is debugged is also prevented.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of assembly vehicle, especially to an assembly device with electric rotation function. BACKGROUND

[0002] During equipment debugging, it is usually necessary to move and adjust the angle, and the existing engineering vehicle cannot self-lock the transformed equipment, which may cause angle deviation during debugging, affecting debugging and possibly causing damage to the equipment. UTILITY MODEL CONTENTS

[0003] The utility model aims at overcoming the defects of prior art and provides an assembly device with electric rotation function.

[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of an assembly device with electric rotation function, which comprises a support frame assembly for supporting the debugging equipment, an electric rotation assembly arranged on the support end of the support frame assembly and used for fixing and rotating the debugging equipment, a self-locking assembly arranged on the support end of the support frame assembly and used for locking the rotation of the driving end of the electric rotation assembly, and a sliding support assembly arranged at the bottom of the support frame assembly and used for supporting and sliding.

[0005] Preferably, the self-locking assembly comprises a fixed block arranged on the support end of the support frame assembly and having an arc-shaped avoiding slot in the middle of the top surface, two bolt slot grooves arranged on the upper end of the side of the fixed block opposite to the support end of the support assembly and located on both sides of the arc-shaped avoiding slot, two bolt rods arranged in the two bolt slot grooves in an extendable manner and having two ends penetrating through the two sides of the fixed block, respectively, two limiting plates sleeved on the sections of the bolt rods located in the bolt slot grooves, respectively, two springs sleeved on the sections of the bolt rods located in the bolt slot grooves and used for pushing the limiting plates, respectively, two L-shaped limiting sliding grooves arranged on the inner walls of both sides of the end of the two bolt slot grooves opposite to the driving end of the electric rotation assembly, two sliding blocks arranged on both sides of the two limiting plates and used for sliding in the two limiting sliding grooves, and a plurality of self-locking holes arranged in a ring shape at the driving end of the electric rotation assembly and used for inserting the two bolt rods.

[0006] Preferably, the fixed block is fixed on the support end of the support frame assembly by bolts.

[0007] Preferably, the sliding support assembly comprises a plurality of pulleys arranged on the four corners of the bottom of the support frame assembly and used for sliding, and a plurality of support legs arranged on the four corners of the bottom of the support frame assembly and located on one side of the plurality of pulleys.

[0008] Preferably, a plurality of connecting columns are arranged between the plurality of support legs and the bottom of the support frame assembly; a threaded telescopic cavity is arranged in the middle of each of the plurality of connecting columns; and the plurality of support legs are connected to the threaded telescopic cavities by threaded connection.

[0009] By means of the technical scheme, the utility model has the following advantages compared with the prior art:

[0010] The self-locking assembly can effectively avoid the angle change of the equipment before debugging, prevent the angle change of the equipment during debugging and prevent the equipment from being damaged. BRIEF DESCRIPTION OF DRAWINGS

[0011] The technical scheme of the utility model will be further described below in combination with the drawings:

[0012] ATTACHED Figure 1 The utility model discloses a total structure schematic diagram of assembly device with electric rotation function

[0013] ATTACHED Figure 2 The utility model discloses a front face local section structure schematic diagram of assembly device with electric rotation function

[0014] ATTACHED Figure 3 The utility model discloses assembly device with electric rotation function Figure 2 The utility model discloses assembly device with electric rotation function

[0015] ATTACHED Figure 4 The utility model discloses a front face structure schematic diagram of fixing block of assembly device with electric rotation function.

[0016] 1, support frame assembly, 2, electric rotation assembly, 3, self-locking assembly, 31, fixed block, 32, bolt slot, 33, bolt rod, 34, limit board, 35, spring, 36, limit sliding slot, 37, sliding block, 4, sliding support assembly, 41, pulley, 42, support leg, 5, connecting column, 6, telescopic cavity. DETAILED DESCRIPTION

[0017] The utility model will be further described in detail in combination with the drawings and specific embodiment.

[0018] ATTACHED Figures 1-4The utility model discloses an assembly device with electric rotation function, containing support frame subassembly 1 for supporting debugging equipment, set up on the support end of support frame subassembly 1 and drive end is used for fixing debugging equipment and drive debugging equipment rotation's electric rotation subassembly 2, set up on the support end of support frame subassembly 1 for locking electric rotation subassembly 2 drive end rotation's self locking subassembly 3, set up in the bottom of support frame subassembly 1 for supporting and sliding's sliding support subassembly 4, the self locking subassembly 3 includes set up on the support end of support frame subassembly 1 and the arc-shaped avoidance slot with the top middle part of fixed block 31, set up on the one end of fixed block 31 and opposite support subassembly support end one side in the arc-shaped avoidance slot both sides inside two bolt slots 32, respectively telescopic set up in two bolt slots 32 and two bolt rods 33 both ends respectively penetrate the both sides of fixed block 31, respectively two limit plates 34 of sleeve setting in one segment on bolt rod 33 in bolt slot 32, respectively two springs 35 of sleeve setting in one segment on bolt rod 33 in bolt slot 32 for pushing limit plate 34, respectively set up in two bolt slots 32 and opposite electric rotation subassembly 2 drive end one end two sides inside wall on the L-shaped two limit sliding grooves 36 of two, correspondingly set up in two limit plates 34 both sides for in two limit sliding grooves 36 sliding two sliding blocks 37, annular setting in electric rotation subassembly 2 drive end place for two bolt rods 33 insertion several self locking holes, the sliding support subassembly 4 includes setting in the bottom of support frame subassembly 1 four corners on for sliding multiple pulleys 41, set up in the bottom of support frame subassembly 1 four corners on in multiple pulleys 41 one side multiple support legs 42.

[0019] Further, the fixed block 31 is fixed on the support end of the support frame subassembly 1 by bolts, which is convenient to disassemble.

[0020] Further, multiple support legs 42 and the bottom of the support frame subassembly 1 are provided with connecting columns 5; multiple connecting columns 5 are provided with threaded telescopic cavities 6 in the middle; multiple support legs 42 are connected to the threaded telescopic cavities 6 by screws, which is convenient to adjust the height.

[0021] In use: first, the debug device is installed on the driving end of the electric rotating assembly 2, then the support leg 42 is retracted towards the connecting column 5, then the support frame assembly 1 is pushed, the pulley 41 drives the support frame assembly 1 to move, then the support frame moves the debug device to the debug device position, then the electric rotating assembly 2 is started to drive the debug device to rotate an angle to connect the debug device, then one end of the latch rod 33 is held and the latch rod 33 is rotated, then the latch rod 33 drives the limiting plate 34 to rotate, then the limiting plate 34 drives the sliding block 37 to slide in the limiting sliding groove 36, when the sliding block 37 moves to one end of the limiting sliding groove 36 in the same direction as the extension direction of the latch rod 33, the latch rod 33 is released, then the spring 35 loses the block to drive the limiting plate 34 to move towards the self-locking hole, the limiting plate 34 drives one end of the latch rod 33 to insert into the self-locking hole, then the driving end of the electric rotating assembly 2 is self-locked, finally the debug device is connected with the debug device for debugging.

[0022] The above is only a specific application example of the utility model, and does not constitute any limitation on the protection scope of the utility model. Any technical solution formed by equivalent transformation or equivalent replacement falls within the protection scope of the utility model.

Claims

1. An assembly device having an electric rotation function, characterized by: The support frame assembly is used for supporting the debugging device, the electric rotating assembly is arranged on the supporting end of the support frame assembly and used for fixing and rotating the debugging device, the self-locking assembly is arranged on the supporting end of the support frame assembly and used for locking the rotation of the driving end of the electric rotating assembly, and the sliding support assembly is arranged at the bottom of the support frame assembly and used for supporting and sliding.

2. The assembly device with electric rotation function according to claim 1, characterized in that: The self-locking assembly comprises a fixing block arranged on the supporting end of the support frame assembly and provided with an arc-shaped avoiding slot in the middle of the top surface, two bolt slot arranged on the upper end of the side of the fixing block opposite to the supporting end of the support assembly and located on the two sides of the arc-shaped avoiding slot, two bolt rods arranged in the two bolt slots in an extendible manner and respectively penetrating through the two sides of the fixing block, two limiting plates respectively sleeved on the sections of the bolt rods located in the bolt slots, two springs respectively sleeved on the sections of the bolt rods located in the bolt slots and used for pushing the limiting plates, two L-shaped limiting sliding grooves respectively arranged on the two side inner walls of the two bolt slots at the side of the driving end of the electric rotating assembly, two sliding blocks respectively arranged on the two sides of the two limiting plates and used for sliding in the two limiting sliding grooves, and a plurality of self-locking holes arranged in a ring shape at the driving end of the electric rotating assembly and used for the insertion of the two bolt rods.

3. The assembly device with electric rotation function according to claim 2, characterized in that: The fixing block is fixed on the supporting end of the support frame assembly by bolts.

4. The assembly device with electric rotation function according to claim 1, characterized in that: The sliding support assembly comprises a plurality of pulleys arranged on the four corners of the bottom of the support frame assembly and used for sliding, and a plurality of supporting legs arranged on the four corners of the bottom of the support frame assembly and located on the side of the plurality of pulleys.

5. The assembly device with electric rotation function according to claim 4, characterized in that: A plurality of connecting columns are arranged between the plurality of supporting legs and the bottom of the support frame assembly, a threaded telescopic cavity is arranged in the middle of each of the plurality of connecting columns, and the plurality of supporting legs are connected to the threaded telescopic cavities in a threaded manner.