Steel bar binding equipment for bearing platform construction
By designing an automatically adjustable rebar tying device, the inefficiency and safety issues caused by the need for manual operation of existing equipment have been solved, achieving automation and improved safety in rebar tying.
Patent Information
- Application Number
- CN202422795467.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The existing steel reinforcement binding equipment used for foundation construction requires manual operation by workers, resulting in low work efficiency and low safety.
Design a device comprising a rebar tying module, a first adjustment component, a second adjustment component, and a third adjustment component. The device achieves automatic movement and position/angle adjustment of the rebar tying module by driving a slider and a threaded rod with a motor, thereby reducing manual operation.
The automation of rebar tying has been achieved, improving work efficiency and safety, and reducing safety hazards caused by improper manual operation.
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Figure CN223510623U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a reinforcing steel bar binding equipment field especially relates to a reinforcing steel bar binding equipment for bearing platform construction. BACKGROUND
[0002] The bearing platform construction is an important link in bridge and other construction projects, mainly involves the foundation pit treatment, reinforcing steel bar binding, form installation and concrete pouring steps, and the reinforcing steel bar binding equipment for bearing platform construction is mainly a reinforcing steel bar binding machine, also known as a full-automatic reinforcing steel bar binding machine, which can be widely applied to the construction engineering field to replace manual reinforcing steel bar binding, especially in the bearing platform construction, can significantly improve the construction efficiency.
[0003] The existing reinforcing steel bar binding equipment for bearing platform construction usually needs the staff to manually bind the reinforcing steel bars at different positions, which is not only time-consuming and laborious, but also low in work efficiency, and since the staff needs to constantly adjust the position to climb high or squat, it is easy to cause safety accidents due to improper operation, and the safety is low.
[0004] Therefore, in view of the problems of the existing reinforcing steel bar binding equipment for bearing platform construction, that is, the staff needs to manually bind the reinforcing steel bars, the work efficiency is low, and the safety is low, a device capable of automatically controlling the reinforcing steel bar binding module to move to bind the reinforcing steel bars at different positions can be designed to improve the convenience and safety of operation. SUMMARY
[0005] In order to overcome the problems of the existing reinforcing steel bar binding equipment for bearing platform construction, that is, the staff needs to manually bind the reinforcing steel bars at different positions, which is not only time-consuming and laborious, but also low in work efficiency, and since the staff needs to constantly adjust the position to climb high or squat, it is easy to cause safety accidents due to improper operation, and the safety is low.
[0006] The technical scheme of the utility model is as follows: a reinforcing steel bar binding equipment for bearing platform construction, comprising a reinforcing steel bar binding module, a first adjusting assembly, a second adjusting assembly and a third adjusting assembly, the upper end of the reinforcing steel bar binding module is fixedly installed with the third adjusting assembly for automatically adjusting the height and angle of the reinforcing steel bar binding module, the upper end of the third adjusting assembly is fixedly installed with the second adjusting assembly for automatically controlling the forward and backward translation of the reinforcing steel bar binding module, and the lower end of the second adjusting assembly is symmetrically detachably installed with two groups of first adjusting assemblies for cooperating with the automatic control of the left and right translation of the reinforcing steel bar binding module.
[0007] Preferably, by setting the first adjusting assembly, the second adjusting assembly and the third adjusting assembly capable of automatically controlling the reinforcing steel bar binding module to move to bind the reinforcing steel bars at different positions, the position, height and angle of the reinforcing steel bar binding module can be adjusted by mutual cooperation without manual operation, which is more convenient and fast for binding, can improve the work efficiency, and is more safe and reliable.
[0008] As preferred, the first adjusting assembly comprises a sliding rail box, a first threaded rod, a first sliding block, a first driving motor, a base and an antiskid pad, the inside of the sliding rail box is provided with the first threaded rod for rotation, the outside of the first threaded rod is provided with the first sliding block for sliding, the first driving motor is provided with an output shaft, the output shaft of the first driving motor extends to the inside through the outside of the sliding rail box to drive the first threaded rod to rotate, the first driving motor drives the first sliding block to slide back and forth along the surface thereof by driving the first threaded rod to rotate, and the upper end of the first sliding block is provided with a first connecting hole for detachable connection with the second adjusting assembly.
[0009] As preferred, the lower end of the sliding rail box is fixedly provided with the base for supporting the sliding rail box, the lower end of the base is attached with the antiskid pad for increasing friction, and the upper end of the base is symmetrically provided with mounting holes for mounting and fixing the base.
[0010] As preferred, the second adjusting assembly comprises a supporting column, a second threaded rod, a second sliding block, a second driving motor and a supporting block, the supporting column is symmetrically provided with two groups, the inside between the upper ends of the two groups of supporting columns is provided with the second threaded rod for rotation, the outside of the second threaded rod is provided with the second sliding block for sliding, the lower end of the supporting column is fixedly connected with the supporting block for connection with the first adjusting assembly, and the upper end of the supporting block is provided with a second connecting hole for detachable connection with the first adjusting assembly.
[0011] As preferred, the second driving motor is provided with an output shaft, the output shaft of the second driving motor extends to the inside through the outside of the supporting column to drive the second threaded rod to rotate, and the second driving motor drives the second sliding block to slide back and forth along the surface thereof by driving the second threaded rod to rotate.
[0012] As preferred, the third adjusting assembly comprises an electric push rod, a telescopic air cylinder, a first connecting block, a second connecting block, a third driving motor, a fourth driving motor and a rotating shaft, the upper end of the electric push rod is provided with the telescopic air cylinder for controlling the up-down movement of the electric push rod, the lower end of the electric push rod is rotationally connected with the first connecting block and the second connecting block, the third driving motor is provided with an output shaft, and the output shaft of the third driving motor extends to the inside through the outside of the first connecting block to drive the second connecting block to rotate.
[0013] As preferred, the lower end of the second connecting block is embeddedly provided with the fourth driving motor for driving the rotating shaft to rotate, and the fourth driving motor drives the steel bar binding module to synchronously rotate by driving the rotating shaft to rotate.
[0014] The beneficial effects of the utility model are as follows:
[0015] 1、By setting the first adjusting assembly, the second adjusting assembly and the third adjusting assembly which can automatically control the movement of the steel bar binding module to bind the steel bars at different positions, the position, height and angle of the steel bar binding module can be adjusted by mutual cooperation without manual operation, so that the binding is more convenient and fast, the work efficiency is improved, and the steel bar binding device is more safe and reliable. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 A whole three-dimensional structure schematic view of the steel bar binding device for pile cap construction is shown.
[0017] Figure 2 A first adjusting assembly three-dimensional structure schematic view of the steel bar binding device for pile cap construction is shown.
[0018] Figure 3 A second adjusting assembly three-dimensional structure schematic view of the steel bar binding device for pile cap construction is shown.
[0019] Figure 4 A third adjusting assembly three-dimensional structure schematic view of the steel bar binding device for pile cap construction is shown.
[0020] Figure 5 A steel bar binding module three-dimensional structure schematic view of the steel bar binding device for pile cap construction is shown.
[0021] The figure mark explanation: 1, steel bar binding module; 201, sliding rail box; 202, first threaded rod; 203, first sliding block; 204, first driving motor; 205, base; 206, non-slip pad; 207, mounting hole; 208, first connecting hole; 301, support column; 302, second threaded rod; 303, second sliding block; 304, second driving motor; 305, support block; 306, second connecting hole; 401, electric push rod; 402, telescopic air cylinder; 403, first connecting block; 404, second connecting block; 405, third driving motor; 406, fourth driving motor; 407, rotating shaft. DETAILED DESCRIPTION
[0022] The utility model will be further explained in connection with the drawings and examples.
[0023] Please refer to Figure 1The utility model provides a kind of reinforcing bar binding equipment for bearing platform construction, including reinforcing bar binding module 1, first adjusting assembly, second adjusting assembly and third adjusting assembly, the upper end of reinforcing bar binding module 1 is fixedly installed with the third adjusting assembly for automatically adjusting the height and angle of reinforcing bar binding module 1, the upper end of third adjusting assembly is fixedly installed with the second adjusting assembly for automatically controlling the front and rear translation of reinforcing bar binding module 1, the lower end of second adjusting assembly is detachably installed with two groups of first adjusting assembly for cooperating with the automatic control left and right translation of reinforcing bar binding module 1 in front and back symmetry.
[0024] Please refer to Figure 2 In the embodiment, the first adjusting assembly includes slide rail box 201, first threaded rod 202, first sliding block 203, first drive motor 204, base 205 and non-slip pad 206, the inside of slide rail box 201 is provided with first threaded rod 202 for rotation, the outside of first threaded rod 202 is provided with first sliding block 203 for sliding, first drive motor 204 is provided with output shaft, the output shaft of first drive motor 204 extends to the inside through the outside of slide rail box 201 to drive first threaded rod 202 to rotate, first drive motor 204 drives first sliding block 203 to slide back and forth along its surface by driving first threaded rod 202 to rotate, the upper end of first sliding block 203 is surrounded with first connecting hole 208 for detachable connection with second adjusting assembly, the lower end of slide rail box 201 is fixedly installed with base 205 for supporting slide rail box 201, the lower end of base 205 is provided with non-slip pad 206 for increasing friction, the upper end of base 205 is provided with mounting hole 207 for mounting and fixing base 205 in symmetry.
[0025] Please refer to Figure 3 In the embodiment, the second adjusting assembly includes support column 301, second threaded rod 302, second sliding block 303, second drive motor 304 and support block 305, support column 301 is provided with two groups in symmetry, the inside between the upper end of two groups of support column 301 is provided with second threaded rod 302 for rotation, the outside of second threaded rod 302 is provided with second sliding block 303 for sliding, the lower end of support column 301 is fixedly connected with support block 305 for connecting with first adjusting assembly, the upper end of support block 305 is provided with second connecting hole 306 for detachable connection with first adjusting assembly in four corners, second drive motor 304 is provided with output shaft, the output shaft of second drive motor 304 extends to the inside through the outside of support column 301 to drive second threaded rod 302 to rotate, second drive motor 304 drives second sliding block 303 to slide back and forth along its surface by driving second threaded rod 302 to rotate.
[0026] Please refer to Figures 4-5In the embodiment, the third adjusting assembly comprises an electric push rod 401, a telescopic cylinder 402, a first connecting block 403, a second connecting block 404, a third driving motor 405, a fourth driving motor 406 and a rotating shaft 407, the telescopic cylinder 402 for controlling the up-down movement of the electric push rod 401 is arranged at the upper end of the electric push rod 401, the lower end of the electric push rod 401 is rotationally connected with the second connecting block 404 through the first connecting block 403, the third driving motor 405 is provided with an output shaft, the output shaft of the third driving motor 405 extends through the outer side of the first connecting block 403 to the inner side to drive the second connecting block 404 to rotate, the fourth driving motor 406 for driving the rotating shaft 407 to rotate is embedded and arranged at the lower end of the second connecting block 404, the fourth driving motor 406 drives the steel binding module 1 to rotate synchronously by driving the rotating shaft 407 to rotate.
[0027] When working, first, the device-related structure is taken to the position corresponding to the construction pile cap, and the device is installed and fixed at the corresponding position according to the actual situation of the steel bars to be bound;
[0028] First, place the two groups of bases 205 so that the anti-skid pads 206 at the lower ends of the bases 205 are closely attached to the surface of the pile cap, and according to the actual situation, it is selected whether the bases 205 need to be installed and fixed by using bolts passing through the mounting holes 207;
[0029] Then, the second adjusting assembly is installed and fixed on the first adjusting assembly, and the support block 305 is placed against the first sliding block 203, and the support block 305 is installed and fixed on the first sliding block 203 by bolts passing through the second connecting holes 306 and the first connecting holes 208;
[0030] Then, the binding work is started, and the steel bars are bound by the steel binding module 1;
[0031] During the binding, the left-right horizontal position of the steel binding module 1 is adjusted by the first adjusting assembly, and the left-right horizontal position of the steel binding module 1 is adjusted by driving the first threaded rod 202 to rotate by the first driving motor 204 to drive the first sliding block 203 to slide left-right along the surface thereof;
[0032] The front-back horizontal position of the steel binding module 1 is adjusted by the second adjusting assembly, and the front-back horizontal position of the steel binding module 1 is adjusted by driving the second threaded rod 302 to rotate by the second driving motor 304 to drive the second sliding block 303 to slide front-back along the surface thereof, and then drive the steel binding module 1 to move synchronously;
[0033] The height and angle of the steel binding mold set 1 are adjusted by the third adjusting assembly, the steel binding mold set 1 is driven to move synchronously by the up-and-down movement of the electric push rod 401 controlled by the telescopic cylinder 402, thereby adjusting the height of the steel binding mold set 1, the steel binding mold set 1 is driven to rotate synchronously by the rotation of the second connecting block 404 driven by the third driving motor 405, thereby adjusting the longitudinal angle of the steel binding mold set 1, and the horizontal angle of the steel binding mold set 1 is adjusted by the rotation of the steel binding mold set 1 driven by the rotation shaft 407 driven by the fourth driving motor 406.
[0034] Through the above steps, the first adjusting assembly, the second adjusting assembly and the third adjusting assembly that can automatically control the movement of the steel binding mold set 1 to bind the steel bars at different positions are arranged, the adjustment of the position, height and angle of the steel binding mold set 1 can be completed by mutual cooperation, manual operation is not needed, the binding is more convenient and fast, the work efficiency is improved, and the safety is more reliable, so as to solve the problem that the existing pile cap construction steel binding equipment usually needs workers to bind the steel bars at different positions in a hand-held manner, which is time-consuming and laborious, has low work efficiency, the workers need to constantly adjust the position to climb high or crouch down, and safety accidents are prone to occur due to improper operation, and the safety is low.
Claims
1. A rebar tying device for foundation construction, comprising a rebar tying module (1); characterized in that: It also includes a first adjustment component, a second adjustment component and a third adjustment component. The upper end of the rebar tying module (1) is fixedly installed with a third adjustment component for automatically adjusting the height and angle of the rebar tying module (1). The upper end of the third adjustment component is fixedly installed with a second adjustment component for automatically controlling the forward and backward translation of the rebar tying module (1). The lower end of the second adjustment component is symmetrically and detachably installed with two sets of first adjustment components for cooperating with the automatic control of the left and right translation of the rebar tying module (1).
2. The rebar tying equipment for foundation construction according to claim 1, characterized in that: The first adjustment assembly includes a slide rail box (201), a first threaded rod (202), a first slider (203), a first drive motor (204), a base (205), and an anti-slip pad (206). The slide rail box (201) is provided with a first threaded rod (202) for rotation inside. A first slider (203) for sliding is sleeved on the outside of the first threaded rod (202). The first drive motor (204) is provided with an output shaft. The output shaft of the first drive motor (204) extends through the outside of the slide rail box (201) to the inside to drive the first threaded rod (202) to rotate. The first drive motor (204) drives the first slider (203) to slide back and forth along its surface by driving the first threaded rod (202) to rotate. The upper end of the first slider (203) is provided with first connection holes (208) for detachable connection with the second adjustment assembly at the four corners.
3. The rebar tying equipment for foundation construction according to claim 2, characterized in that: The lower end of the slide rail box (201) is fixedly installed with a base (205) for supporting the slide rail box (201). The lower end of the base (205) is fitted with an anti-slip pad (206) for increasing friction. The upper side of the base (205) is symmetrically provided with mounting holes (207) for mounting and fixing the base (205).
4. The rebar tying equipment for foundation construction according to claim 1, characterized in that: The second adjustment component includes a support column (301), a second threaded rod (302), a second slider (303), a second drive motor (304), and a support block (305). The support columns (301) are arranged in two symmetrical sets. The upper inner sides of the two sets of support columns (301) are provided with a second threaded rod (302) for rotation. The outer side of the second threaded rod (302) is sleeved with a second slider (303) for sliding. The lower end of the support column (301) is fixedly connected to a support block (305) for connection with the first adjustment component. The upper end of the support block (305) has two second connecting holes (306) at the four corners for detachable connection with the first adjustment component.
5. The rebar tying equipment for foundation construction according to claim 4, characterized in that: The second drive motor (304) is provided with an output shaft. The output shaft of the second drive motor (304) extends from the outside of the support column (301) to the inside to drive the second threaded rod (302) to rotate. The second drive motor (304) drives the second slider (303) to slide back and forth along its surface by driving the second threaded rod (302) to rotate.
6. The rebar tying equipment for foundation construction according to claim 1, characterized in that: The third adjustment assembly includes an electric push rod (401), a telescopic cylinder (402), a first connecting block (403), a second connecting block (404), a third drive motor (405), a fourth drive motor (406), and a rotating shaft (407). The upper end of the electric push rod (401) is provided with a telescopic cylinder (402) for controlling the up and down movement of the electric push rod (401). The lower end of the electric push rod (401) is rotatably connected to the second connecting block (404) through the first connecting block (403). The third drive motor (405) is provided with an output shaft. The output shaft of the third drive motor (405) extends through the outer side of the first connecting block (403) to the inner side to drive the second connecting block (404) to rotate.
7. The rebar tying equipment for foundation construction according to claim 6, characterized in that: The lower end of the second connecting block (404) is embedded with a fourth drive motor (406) for driving the rotating shaft (407) to rotate. The fourth drive motor (406) drives the steel bar binding module (1) to rotate synchronously by driving the rotating shaft (407) to rotate.