Lifting device for building material detection
By designing a lifting device that combines a support frame, guard plate, telescopic rod, and gripper, the problems of unstable gripping and complex operation in existing technologies have been solved, enabling precise lifting and stable transportation of materials of different specifications.
Patent Information
- Application Number
- CN202520191002.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-07
AI Technical Summary
Existing lifting devices for building material testing have poor structural versatility, making it difficult to grasp materials with special specifications. Frequent module replacements increase operational complexity and time costs, and there is also the risk of unstable grasping and material falling.
A lifting device comprising a support frame, guard plate, telescopic rod, slide, gripper, and moving mechanism was designed. The gripper is adaptively adjusted through the combined movement of the telescopic rod and the rotating shaft, and stable transportation is ensured by combining the track and motor-driven moving mechanism.
It enables precise and stable lifting of building materials of different specifications, reduces operational complexity, improves equipment stability and convenience, and reduces the risk of materials falling.
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Figure CN223722576U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building material detection auxiliary equipment technical field especially relates to a building material detects and uses hoist device. BACKGROUND
[0002] The hoist device is a kind of mechanical equipment widely used in industrial production and construction field, is mainly used to hoist and carry various objects from one position to another specified position, by using mechanical structure and power system, hoist device can realize the carrying operation of different weight, shape and size object.
[0003] The hoist device for building material detection is a kind of hoist equipment specially designed for building material detection scene, in the building material detection process, various building materials need to be carried and placed on detection equipment to complete corresponding performance test work, hoist device can accurately and stably grab different specifications of building materials, and hoist them quickly and accurately to the specified position of detection equipment.
[0004] The existing hoist device for building material detection has defects in structural design, and the grabbing structure has poor universality, can only grab specific shape and size of building materials, and it is difficult to effectively grab special specification materials, which limits its application range, the existing technology designs the grabbing structure into multiple replaceable modules, each module is designed for different types and shapes of building materials, in actual operation, workers select appropriate modules for installation and use according to the characteristics of materials to be grabbed, but frequent replacement of modules increases the complexity and time cost of operation, improper module installation can cause unstable grabbing, and materials may fall off during hoisting. UTILITY MODEL CONTENTS
[0005] In order to make up for the above shortcomings, the utility model provides a hoist device for building material detection, to improve the problem that frequent replacement of modules in prior art increases the complexity and time cost of operation, improper module installation can cause unstable grabbing, and materials may fall off during hoisting.
[0006] In order to achieve the above object, the utility model discloses the following technical scheme: a building material detects and uses to hang the device, including the support, the top left side of support is all fixedly connected with the guard board, the left side fixedly connected with telescopic link no.
[0007] As a further description of the above technical scheme:
[0008] The moving mechanism comprises a plurality of connecting blocks one and two caterpillar belts, one side of the plurality of connecting blocks one is fixedly connected with the bottom left side of the support respectively, the bottom rear end left and right sides of the support are fixedly connected with connecting block no.
[0009] As a further description of the above technical scheme:
[0010] The clamping assembly comprises two fixed blocks two, and the opposite sides of the two fixed blocks two are fixedly connected with the adjacent sides of the grabber, the interiors of the two fixed blocks two are rotatably connected with rotating columns, the upper and lower ends of the two rotating columns are fixedly connected with corresponding rotating plates, and the adjacent sides of the two rotating plates are fixedly connected with corresponding top plates.
[0011] As a further description of the above technical scheme:
[0012] The front and back sides of the two guard boards are fixedly connected with corresponding sliding rods, and the outer walls of the two sliding rods are slidably connected with the same sliding frame.
[0013] As a further description of the above technical scheme:
[0014] The top rear end of the sliding frame is fixedly connected with a fixed block three, and the front side of the fixed block three is slidably connected with the rear side of the sliding block.
[0015] As a further description of the above technical solution:
[0016] The bottom four corners of the support are fixedly connected with anti-collision corners, and the anti-collision corners are made of rubber material.
[0017] As a further description of the above technical solution:
[0018] The right side of the support is fixedly connected with a controller, and the controller is electrically connected with the two motors, the telescopic rods one, two, three and four.
[0019] As a further description of the above technical solution:
[0020] The adjacent sides of the two top plates are fixedly connected with anti-skid sleeves, and the two anti-skid sleeves are made of rubber material.
[0021] The utility model has the advantages of the following:
[0022] 1、In the utility model, the connecting plate connected with the rotating shaft can pull the top of the grab to slide in the sliding groove, at this time, the two grabs are contracted to the middle, when the top plate contacts with the material, different specifications of materials can extrude the top plate, and the top plate is matched according to the shape of the material, at this time, the rotating plate drives the rotating column to rotate in the fixed block two, thereby realizing that the lifting device accurately and stably lifts different specifications of building materials.
[0023] 2、In the utility model, the output end of the motor drives gear two to rotate, at this time, gear two drives the track to rotate, and the rotation of the track also drives gear one to rotate, at this time, the connecting block one at the top of the connecting shaft drives the support to move, thereby realizing that the lifted building materials are transported to the detection table, and the stability of the overall structure of the equipment is guaranteed. DRAWINGS
[0024] Figure 1 A perspective view of a building material detection lifting device is provided for the utility model;
[0025] Figure 2 A structure top view of a building material detection lifting device is provided for the utility model;
[0026] Figure 3 A grab structure partial schematic view of a building material detection lifting device is provided for the utility model;
[0027] Figure 4 A top plate structure split view of a building material detection lifting device is provided for the utility model;
[0028] Figure 5 A kind of building material detection is hung and is drawn with the mobile mechanism structure partial view of the device of the utility model.
[0029] Legend:
[0030] 1, support;2, mobile mechanism;201, connecting block one;202, connecting shaft;203, gear one;204, track;205, motor;206, gear two;207, connecting block two;3, guard plate;4, telescopic rod one;5, sliding frame;6, fixed block one;7, telescopic rod two;8, sliding block;9, sliding rod;10, fixed block three;11, telescopic rod three;12, fixed frame;13, telescopic rod four;14, sliding groove;15, connecting block three;16, rotating shaft;17, connecting plate;18, grab;19, fixed block two;20, rotary column;21, rotating plate;22, top plate;23, anti-skid sleeve;24, anti-collision angle;25, controller. Specific embodiments
[0031] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0032] Reference Figure 1 , Figure 3 and Figure 4The utility model provides a kind of embodiment: a hoisting device for building material detection, including support 1, the top left side of support 1 is fixedly connected with guard plate 3, the stability of the upper structure of entire hoisting device is guaranteed, the left side of right guard plate 3 is fixedly connected with telescopic link one 4, the other end of telescopic link one 4 is fixedly connected with sliding frame 5, the top front side of sliding frame 5 is fixedly connected with fixed block one 6, the rear side of fixed block one 6 is fixedly connected with telescopic link two 7, the other end of telescopic link two 7 is fixedly connected with sliding block 8, the bottom of sliding block 8 is fixedly connected with telescopic link three 11, the other end of telescopic link three 11 is fixedly connected with fixed frame 12, fixed frame 12 is fixedly connected with telescopic link four 13 in the inside, adapt to the hoisting demand of different position's building material, the bottom left side of fixed frame 12 is fixedly connected with sliding groove 14, the other end of telescopic link four 13 is fixedly connected with connecting block three 15 and is connected with the bottom of fixed frame 12, the left side of connecting block three 15 is rotatably connected with two pivot shafts 16, the side of multiple pivot shafts 16 is fixedly connected with connecting plate 17, the other side of multiple connecting plate 17 is fixedly connected with corresponding grab 18, the top of two grabs 18 is slidably connected in the inside of corresponding sliding groove 14 respectively, the adjacent side of two grabs 18 is provided with clamping assembly, clamping assembly includes two fixed blocks two 19, the adjacent side of two fixed blocks two 19 is fixedly connected with grab 18, the inside of two fixed blocks two 19 is rotatably connected with rotating column 20, the upper and lower end of two rotating columns 20 is fixedly connected with corresponding rotating plate 21, the adjacent side of two rotating plates 21 is fixedly connected with corresponding top plate 22, can be according to the shape and surface condition of building material and adaptively adjust, the bottom of support 1 is provided with moving mechanism 2, moving mechanism 2 is used to move hoisting device;
[0033] Specifically, the telescopic link one 4 is extended and retracted to push and pull the sliding frame 5 to move in the left-right direction, at this time, the grab 18 moves left and right, the telescopic link two 7 is extended and retracted to push and pull the sliding block 8 to move in the front-back direction, at this time, the grab 18 moves forward and backward, the telescopic link three 11 is extended and retracted to drive the fixed frame 12 to move up and down, at this time, the grab 18 also moves up and down, when the grab 18 reaches the material position, the telescopic link four 13 is retracted to drive the connecting block three 15 to move upward, the pivot shaft 16 rotates in the connecting block three 15 and moves upward with the connecting block three 15, at this time, the connecting plate 17 connected with the pivot shaft 16 pulls the top of the grab 18 to slide in the sliding groove 14, at this time, the two grabs 18 shrink to the middle, when the top plate 22 contacts with the material, different specifications of materials press the top plate 22, the top plate 22 is fitted according to the shape of the material, at this time, the rotating plate 21 drives the rotating column 20 to rotate in the fixed block two 19, thereby realizing the accurate and stable hoisting of the hoisting device for different specifications of building materials.
[0034] Refer to Figure 1 And Figure 5The moving mechanism 2 includes multiple connecting blocks 201 and two tracks 204. One side of each connecting block 201 is fixedly connected to the bottom left and right sides of the support 1. The bottom rear end of the support 1 is fixedly connected to connecting blocks 207 on both the left and right sides. The bottom of each connecting block 207 is fixedly connected to a corresponding motor 205, which can provide strong and stable power output, enabling the equipment to have good mobility. The output ends of each motor 205 are fixedly connected to gears 206. The bottom of each connecting block 201 is fixedly connected to a corresponding connecting shaft 202. The outer walls of each connecting shaft 202 are rotatably connected to gears 203. The outer walls of each gear 203 and the two gears 206 are rotatably connected to the inner walls of the tracks 204.
[0035] Specifically, when a building material testing lifting device is used to place the lifted building material onto the testing platform, the motor 205 is started first, providing a powerful and stable power output, giving the equipment good mobility. The output end of the motor 205 drives the gear 206 to rotate, which in turn drives the track 204 to rotate. The rotation of the track 204 also drives the gear 203 to rotate. At this time, the connecting block 201 at the top of the connecting shaft 202 will drive the support 1 to move, thereby transporting the lifted building material to the testing platform and ensuring the stability of the overall structure of the equipment.
[0036] Reference Figure 1 , Figure 2 and Figure 3 Both guard plates 3 are fixedly connected to corresponding slide rods 9 on their front and rear sides. The outer walls of both slide rods 9 are slidably connected to the same carriage 5, providing reliable track support for the flexible movement of the equipment and enabling precise adjustments to different working positions. A fixing block 3 10 is fixedly connected to the top rear end of the carriage 5. The front side of the fixing block 3 10 is slidably connected to the rear side of the slider 8, allowing for more precise position adjustments and flexible movement trajectories. Anti-collision corners 24 are fixedly connected to the four corners at the bottom of the support 1. The anti-collision corners 24 are made of rubber, which has good elasticity and cushioning performance, ensuring protection during equipment movement or use. In the event of a collision, the anti-collision corner 24 can effectively absorb and disperse the impact force, protecting the bracket 1 and the entire equipment from damage. The right side of the bracket 1 is fixedly connected to the controller 25, which is electrically connected to two motors 205, telescopic rod 1 4, telescopic rod 2 7, telescopic rod 3 11 and telescopic rod 4 13 respectively. The centralized control method greatly improves the ease of operation and work efficiency of the equipment. Anti-slip sleeves 23 are fixedly connected to the adjacent sides of the two top plates 22. Both anti-slip sleeves 23 are made of rubber material to ensure that the items are always kept in the correct position during transportation or processing, improving the accuracy and reliability of the work.
[0037] Specifically, the sliding frame 5 can slide smoothly along the sliding rod 9 to realize accurate adjustment of different working positions, and compared with other connection modes, the sliding frame 5 can reduce the jamming and resistance in the movement process, greatly improve the flexibility and convenience of the operation of the device, the sliding block 8 can realize more accurate position adjustment and flexible movement track under the cooperation of the fixed block three 10, and once collision occurs during the movement or use of the device, the anti-collision angle 24 can effectively absorb and disperse the impact force, protect the support 1 and the whole device from being damaged, greatly improve the operation convenience and working efficiency of the device, reduce the operation steps and the possibility of errors, ensure that the articles always remain in the correct position during transportation or processing, and improve the accuracy and reliability of work.
[0038] Working principle: when the building material detection lifting device is used, the telescopic rod one 4 is telescoped to push and pull the sliding frame 5 to move in the left-right direction, at this time the clamping jaws 18 move left and right, the telescopic rod two 7 is telescoped to push and pull the sliding block 8 to move in the front-back direction, at this time the clamping jaws 18 move forward and backward, and then the telescopic rod three 11 is telescoped to drive the fixed frame 12 to move up and down, at this time the clamping jaws 18 also move up and down, when the clamping jaws 18 reach the material position, the telescopic rod four 13 is retracted to drive the connecting block three 15 to move upward, the rotating shaft 16 rotates in the connecting block three 15 and moves upward with the connecting block three 15, at this time the connecting plate 17 connected with the rotating shaft 16 pulls the top of the clamping jaws 18 to slide in the sliding groove 14, at this time the two clamping jaws 18 are retracted to the middle, when the top plate 22 contacts the material, different specifications of materials can extrude the top plate 22, and the top plate 22 is fitted according to the shape of the material, at this time the rotating plate 21 drives the rotating column 20 to rotate in the fixed block two 19, thereby realizing accurate and stable lifting of the building material of different specifications by the lifting device;
[0039] When the building material detection lifting device is used to put the lifted building material into the detection table, first, the motor 205 is started, the output end of the motor 205 drives the gear two 206 to rotate, at this time the gear two 206 drives the track 204 to rotate, the rotation of the track 204 also drives the gear one 203 to rotate, at this time the connecting block one 201 at the top of the connecting shaft 202 drives the support 1 to move, thereby realizing transportation of the lifted building material to the detection table, and guaranteeing the stability of the overall structure of the device.
[0040] Finally, it should be noted that: the above only describes the preferred embodiments of the present application, and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application should be included in the protection scope of the present application.
Claims
1. A hoisting device for detecting a building material, comprising a support (1), characterized in that: The top left and right sides of the support (1) are fixedly connected with the guard plates (3), the left side of the guard plate (3) on the right side is fixedly connected with the telescopic rod one (4), the other end of the telescopic rod one (4) is fixedly connected with the sliding frame (5), the top front side of the sliding frame (5) is fixedly connected with the fixed block one (6), the rear side of the fixed block one (6) is fixedly connected with the telescopic rod two (7), the other end of the telescopic rod two (7) is fixedly connected with the sliding block (8), the bottom of the sliding block (8) is fixedly connected with the telescopic rod three (11), the other end of the telescopic rod three (11) is fixedly connected with the fixed frame (12), the inside of the fixed frame (12) is fixedly connected with the telescopic rod four (13), the bottom left and right sides of the fixed frame (12) are fixedly connected with the sliding groove (14), the other end of the telescopic rod four (13) penetrates through the bottom of the fixed frame (12) and is fixedly connected with the connecting block three (15), the left and right sides of the connecting block three (15) are rotatably connected with two rotating shafts (16), one side of the plurality of rotating shafts (16) is fixedly connected with the connecting plate (17), the other side of the plurality of connecting plates (17) is fixedly connected with the corresponding grab (18), the top of the two grab (18) is slidably connected in the corresponding sliding groove (14), the adjacent side of the two grab (18) is provided with a clamping assembly, and the bottom of the support (1) is provided with a moving mechanism (2).
2. The hoisting device for detecting a building material according to claim 1, characterized in that: The moving mechanism (2) comprises a plurality of connecting blocks one (201) and two tracks (204), one side of the plurality of connecting blocks one (201) is fixedly connected with the bottom left and right sides of the support (1), the bottom rear ends of the left and right sides of the support (1) are fixedly connected with the connecting blocks two (207), the bottoms of the two connecting blocks two (207) are fixedly connected with corresponding motors (205), the output ends of the two motors (205) are fixedly connected with gear two (206), the bottoms of the plurality of connecting blocks one (201) are fixedly connected with corresponding connecting shafts (202), the outer walls of the plurality of connecting shafts (202) are rotatably connected with gear one (203), and the outer walls of the plurality of gear one (203) and the two gear two (206) are rotatably connected with the inner walls of the track (204).
3. The hoisting device for detecting a building material according to claim 1, characterized in that: The clamping assembly comprises two fixed blocks two (19), the opposite sides of the two fixed blocks two (19) are fixedly connected with the adjacent sides of the grab (18), the interiors of the two fixed blocks two (19) are rotatably connected with rotating columns (20), the upper and lower ends of the two rotating columns (20) are fixedly connected with corresponding rotating plates (21), and the adjacent sides of the two rotating plates (21) are fixedly connected with corresponding top plates (22).
4. The hoisting device for detecting a building material according to claim 1, characterized in that: The front and rear sides of the two guard plates (3) are fixedly connected with corresponding sliding rods (9), and the outer walls of the two sliding rods (9) are slidably connected with the same sliding frame (5).
5. The hoisting device for detecting a building material according to claim 1, characterized in that: The top rear end of the sliding frame (5) is fixedly connected with a fixed block three (10), and the front side of the fixed block three (10) is slidably connected with the rear side of the sliding block (8).
6. The hoisting device for detecting a building material according to claim 1, characterized in that: The bottom four corners of the support (1) are fixedly connected with anti-collision corners (24), and the anti-collision corners (24) are made of rubber material.
7. The building material detecting hoisting and taking device according to claim 1, characterized in that: The right side of the support (1) is fixedly connected with a controller (25), and the controller (25) is electrically connected with two motors (205), telescopic rods one (4), telescopic rods two (7), telescopic rods three (11) and telescopic rods four (13) respectively.
8. The building material detecting hoisting and taking device according to claim 3, characterized in that: The adjacent sides of the two top plates (22) are fixedly connected with anti-skid sleeves (23), and the two anti-skid sleeves (23) are made of rubber material.