Displacement mechanism for machining building reinforcement cage frame
Through the displacement mechanism for building steel cage processing, the automatic rotational displacement of the steel cage is achieved by using the displacement motor to drive the support arm, which solves the problems of low efficiency and high cost in the existing technology, improves operating efficiency and reduces labor intensity.
Patent Information
- Application Number
- CN202422146020.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-03
AI Technical Summary
In the prior art, the reinforcement laying process of the reinforcement of the steel cage frame requires the coordinated rotation and displacement of multiple operators, resulting in low operating efficiency, high labor intensity and high labor costs.
The displacement mechanism for the processing of building steel cage frames is adopted, and the automatic rotational displacement of the steel cage frame is realized through the coordinated operation of the two sets of braces, including the operating table engaging part, the left bracket group, the right bracket group, the first and second brackets, the first and second braces, and the first and second braces are driven by the transformer motor for rotation adjustment.
It reduces the labor intensity of operators and the labor costs of enterprises, improves the efficiency of steel cage processing, and ensures the uniform laying of reinforcement parts.
Smart Images

Figure CN223199009U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of auxiliary assembly structural parts, in particular to a displacement mechanism for processing building steel bar cages. Background Art
[0002] Prefabricated building structures are easy to industrialize, standardize, and reuse. They are a type of structure that can be quickly installed. They typically involve standardized production of building components for assembly in a workshop, which are then transported to the construction site for rapid installation and use.
[0003] The steel cage is a special basic frame component used in prefabricated building structures. During the processing of the steel cage in the prefabricated building structure, reinforcements need to be laid around it. During the laying of the existing reinforcements, in order to ensure the uniform laying of the reinforcements around the steel cage, multiple operators are required to cooperate in rotating and adjusting the steel cage. This operation method not only has low operating efficiency, but also consumes a lot of labor and physical strength. The company's labor costs are also high, which cannot meet the company's production needs. Utility Model Content
[0004] The purpose of the utility model is to provide a displacement mechanism for processing building steel cage frames, which can rotate and displace the steel cage frames through the coordinated operation of two groups of cage frame supporting displacement parts during specific operation, replacing the manual displacement method and reducing the labor workload of operators and the labor costs of enterprises.
[0005] In order to achieve the above-mentioned purpose of the invention, the present invention adopts the following technical solutions:
[0006] A displacement mechanism for processing building steel bar cages, comprising an operating table assembly, a left-side bracket group, a right-side bracket group, a first support, a second support, a first supporting displacement portion and a second supporting displacement portion; the bottom of the operating table assembly is arranged on the work floor; the left-side bracket group is installed on the left side of the operating table assembly, and the left-side bracket group is installed on the right side of the operating table assembly; the left-side bracket group, the right-side bracket group and the operating table assembly are installed together; the first support is installed on the left-side bracket group, and the first support is connected to the left-side bracket group by bolts; the second support is installed on the right-side bracket group, and the second support is connected to the right-side bracket group by bolts; the bottom of the first supporting displacement portion is installed on the first support, and the bottom of the second supporting displacement portion is installed on the second support.
[0007] The operating table assembly includes a left bracket, a right bracket, a pad and an operating table frame. The left bracket is installed at the lower left position of the operating table frame, and the right bracket is installed at the lower right position of the operating table frame. Pads are respectively installed on the top of the left bracket and the right bracket. The operating table frame is respectively installed and connected to the left bracket and the right bracket through the pads.
[0008] The left bracket group and the right bracket group have the same structure, and both include a bearing plate, a support guide rail, a bracket body and a slider. The bearing plate is installed at the outer side of the left bracket and the right bracket; the support guide rail is fixedly installed on the bearing plate, and the slider is engaged with the support guide rail and in sliding contact with the support guide rail; the lower part of the bracket body is installed on the slider and is fixedly connected to the slider.
[0009] The first supporting and shifting part and the second supporting and shifting part have the same structure, and both include a support frame, a push rod cylinder, a push rod and a displacement execution assembly; the lower part of the support frame is installed on the first support and the second support, and a push rod cylinder is installed on the support frame. The push rod cylinder is tightly connected to the support frame, and a push rod is installed on the push rod cylinder. The outer side of the displacement execution assembly is installed on the outer end of the push rod and fixedly connected to the outer end of the push rod.
[0010] The shifting execution assembly includes a motor base, a shifting motor, a rotating disk and a supporting arm. The motor base is installed at the outer end of the push rod; the shifting motor is installed on the motor base, and the motor drive shaft is installed on the shifting motor. The rotating disk is installed on the motor shaft and fixedly connected to the motor shaft; the supporting arm is installed on the rotating disk and fixedly connected to the rotating disk.
[0011] Furthermore, auxiliary support parts for auxiliary support of the steel cage are installed on the inner sides of the left bracket and the right bracket. The auxiliary support parts include a cylinder seat, a lifting cylinder, a lifting rod and a support head. The bottom of the lifting cylinder is installed on the cylinder seat, and a liftable lifting rod is installed on the lifting cylinder. The support head is installed on the top of the lifting rod and is connected to the lifting rod.
[0012] The beneficial effects of the present invention are as follows: the overall structural design of the displacement mechanism for processing the building steel bar cage frame of the present invention is scientific, the installation operation process is simple and convenient to use, the displacement mechanism for processing the building steel bar cage frame of the present invention can replace manual operation to rotate and adjust the entire building steel bar cage frame, greatly reducing the labor intensity of operators and the labor cost of enterprises, and ensuring the processing efficiency of the steel bar cage frame; specifically, the displacement execution assembly in the first supporting displacement part and the second supporting displacement part in the present invention can realize the clamping and positioning of the two sides of the building steel bar cage frame through the action of the push rod cylinder and the push rod, at the same time, the displacement motor in the displacement execution assembly can drive the supporting arm to rotate and displace through the motor-driven shaft and the rotating disk, and the supporting arm directly contacts and clamps the two sides of the building steel bar cage frame, and the building steel bar cage frame can realize rotation adjustment under the support and drive of the supporting arm, thereby meeting the need for uniform laying of the reinforcement members on the circumference of the steel bar cage frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a structural diagram of a displacement mechanism for processing a building steel bar cage frame according to the present invention;
[0014] Figure 2 It is a structural diagram of the operating table assembly in the utility model;
[0015] Figure 3 It is a structural schematic diagram of the left bracket group and the right bracket group in the utility model;
[0016] Figure 4 It is a structural diagram of the first supporting and displacing part and the second supporting and displacing part in the present utility model;
[0017] Figure 5 It is a structural diagram of the displacement execution assembly in the utility model;
[0018] Figure 6 It is a structural diagram of the auxiliary support part in the utility model;
[0019] The numbers in the figure are: 1-operating platform assembly, 2-left bracket group, 3-right bracket group, 4-first support, 5-second support, 6-first supporting and shifting part, 7-second supporting and shifting part, 8-auxiliary support part, 11-left bracket, 12-right bracket, 13-pad, 14-operating platform, 21-load plate, 22-support guide rail, 23-bracket body, 24-slider, 61-support frame, 62-push rod cylinder, 63-push rod, 64-displacement execution assembly, 641-motor seat, 642-displacement motor, 643-rotating disk, 644-supporting arm, 81-cylinder seat, 82-lifting cylinder, 83-lifting rod, 84-support head. DETAILED DESCRIPTION
[0020] Specific embodiment 1: As shown in the specification of this utility model Figure 1 As shown, in order to solve the problem that when reinforcing members of a steel cage are laid, multiple operators need to cooperate to rotate and displace the steel cage, which has low working efficiency, consumes a lot of labor and physical strength, and has high labor costs for enterprises, the utility model provides a displacement mechanism for processing building steel cages, which mainly includes an operating table assembly 1, a left bracket group 2, a right bracket group 3, a first support 4, a second support 5, a first supporting displacement part 6 and a second supporting displacement part 7; wherein the operating table assembly 1 is used to rotate and displace the left bracket group 2 and the right bracket group 3 Installation support. During installation, the bottom of the operating table assembly 1 is arranged on the work floor; a left side bracket group 2 is installed on the left side of the operating table assembly 1, and the left side bracket group 2 is used to install and bear the first support 4 and the first supporting displacement part 6; a left side bracket group 2 is installed on the right side of the operating table assembly 1, and the right side bracket group 3 is used to install and bear the second support 5 and the second supporting displacement part 7; during installation, the left side bracket group 2 and the right side bracket group 3 are installed together with the operating table assembly 1; a first support 4 is installed on the left side bracket group 2, and the first support 4 is connected to the left side bracket group 2 by bolts; a second support 5 is installed on the right side bracket group 3, and the second support 5 is connected to the right side bracket group 3 by bolts; the bottom of the first supporting displacement part 6 for clamping and rotating one side of the steel cage is installed on the first support 4, and the bottom of the second supporting displacement part 7 for clamping and rotating the other side of the steel cage is installed on the second support 5.
[0021] As the specification in this utility model Figure 2 As shown, the operating table assembly 1 for mounting and supporting the left bracket group 2 and the right bracket group 3 includes a left bracket 11, a right bracket 12, a pad 13 and an operating table frame 14, wherein the left bracket 11 for supporting one side of the operating table frame 14 is installed at the lower left position of the operating table frame 14, and the right bracket 12 for supporting the other side of the operating table frame 14 is installed at the lower right position of the operating table frame 14, and pads 13 are respectively installed on the top of the left bracket 11 and the right bracket 12. During installation, the operating table frame 14 is respectively mounted and connected to the left bracket 11 and the right bracket 12 through the pads 13.
[0022] As the specification in this utility model Figure 3As shown, the left bracket group 2 and the right bracket group 3 for supporting the first supporting displacement part 6 and the second supporting displacement part 7 have the same structure, and both include a bearing plate 21, a supporting guide rail 22, a bracket body 23 and a slider 24, wherein the bearing plate 21 is used to install and support the supporting guide rail 22, and the bearing plate 21 is installed at the outer position of the left bracket 11 and the right bracket 12; the supporting guide rail 22 for guiding the bracket body 23 is fixedly installed on the bearing plate 21, and the slider 24 is engaged with the supporting guide rail 22 and in sliding contact with the supporting guide rail 22; the lower part of the bracket body 23 is installed on the slider 24 and is fixedly connected to the slider 24.
[0023] As the specification in this utility model Figure 4 As shown, the first supporting and displacement part 6 and the second supporting and displacement part 7 for supporting and rotating and adjusting the two sides of the building steel cage have the same structure, and both include a support frame 61, a push rod cylinder 62, a push rod 63 and a displacement execution assembly 64; wherein, the support frame 61 is used to install and support the side of the push rod cylinder 62. During installation, the lower part of the support frame 61 is installed on the first support 4 and the second support 5 by installing bolts, and a push rod cylinder 62 for driving the push rod 63 to retract is installed on the support frame 61. The push rod cylinder 62 is fastened to the support frame 61, and a retractable push rod 63 is installed on the push rod cylinder 62. The outer side of the displacement execution assembly 64 for performing contact clamping and rotation operations is installed on the outer end of the push rod 63 and is fixedly connected to the outer end of the push rod 63.
[0024] As the specification in this utility model Figure 5 As shown, the displacement execution assembly 64 for performing contact clamping and displacement operations on the construction steel cage includes a motor base 641, a displacement motor 642, a rotating disk 643 and a supporting arm 644, wherein the motor base 641 is used to install and support the displacement motor 642. During installation, the motor base 641 is installed at the outer end position of the push rod 63; a displacement motor 642 for providing a displacement rotation torque is installed on the motor base 641, a motor drive shaft for outputting a rotation torque is installed on the displacement motor 642, and the rotating disk 643 for installing the supporting arm 644 is installed on the motor drive shaft and fixedly connected to the motor drive shaft; the supporting arm 644 for direct contact clamping with the construction steel cage is installed on the rotating disk 643 and fixedly connected to the rotating disk 643.
[0025] As the specification in this utility model Figure 6As shown, in order to facilitate the operation of the steel cage during processing, an auxiliary support part 8 for auxiliary support of the steel cage is installed on the inner side of the left bracket 11 and the right bracket 12. The auxiliary support part 8 includes a cylinder seat 81, a lifting cylinder 82, a lifting rod 83 and a support head 84. The bottom of the lifting cylinder 82 is installed on the cylinder seat 81, and a liftable lifting rod 83 is installed on the lifting cylinder 82. The support head 84 is installed on the top of the lifting rod 83 and is connected to the lifting rod 83. When in use, the lifting cylinder 82 can be started by controlling the lifting cylinder 82. The lifting cylinder 82 can control the lifting rod 83 to drive the support head 84 to rise and fall. The upper part of the support head 84 is in contact with the lower part of the steel cage and can lift the steel cage to realize lifting displacement adjustment, thereby meeting the need to adjust the height position of the steel cage.
[0026] The installation and use process of the displacement mechanism for processing a building steel bar cage frame of the utility model is as follows:
[0027] 1. The installation process is as follows: First, the installer can install the operating table assembly 1. Specifically, the left bracket 11 for supporting one side of the operating table frame 14 can be installed at the lower left position of the operating table frame 14, and the right bracket 12 for supporting the other side of the operating table frame 14 can be installed at the lower right position of the operating table frame 14. Pads 13 are installed on the top of the left bracket 11 and the right bracket 12 respectively. The operating table 14 is installed and connected to the left bracket 11 and the right bracket 12 respectively through the pads 13. Then, the left bracket group 2 and the right bracket group 3 are installed respectively. During the specific installation, the carrying plate 21 can be installed at the outer position of the left bracket 11 and the right bracket 12; the support rail 22 for guiding the bracket body 23 is fixedly installed on the carrying plate 21, and the slider 24 is slidably engaged with the support rail 22; the lower part of the bracket body 23 is installed on the slider 24 and fixedly connected to the slider 24, and the first bracket is installed on the upper part of the bracket body 23. The first supporting part 6 and the second supporting part 7 are installed on the second supporting part 5. Finally, the first supporting part 6 and the second supporting part 7 are installed. Specifically, during installation, the lower part of the supporting frame 61 can be installed on the first supporting part 4 and the second supporting part 5 by installing bolts, the push rod cylinder 62 is installed on the supporting frame 61, and the retractable push rod 63 is installed on the push rod cylinder 62. The displacement execution part 64 for performing the contact clamping indexing operation is installed on the outer end of the push rod 63. During specific installation, the motor seat 641 can be installed at the outer end position of the push rod 63; the displacement motor 642 is installed on the motor seat 641, and the motor drive shaft is installed on the displacement motor 642. The rotating disk 643 for installing the supporting arm 644 is installed on the motor shaft; finally, the supporting arm 644 is fixedly installed on the rotating disk 643. At this point, the installation process of the utility model is completed;
[0028] 2. The specific operation process is as follows:
[0029] When the displacement mechanism for processing the building steel bar cage frame of the present invention is in operation, the operator can hang the building steel bar cage frame to be displaced between the first supporting displacement part 6 and the second supporting displacement part 7 on the upper part of the operating platform 14 through an external sling. At this time, the push rod cylinder 62 in the first supporting displacement part 6 and the second supporting displacement part 7 can be synchronously controlled to start. The push rod cylinder 62 in the first supporting displacement part 6 can control the push rod 63 to drive the displacement execution part 64 installed thereon to move toward the left end of the building steel bar cage frame. The push rod cylinder 62 in the second supporting displacement part 7 can control the push rod 63 to drive the displacement execution part 64 installed thereon to move toward the left end of the building steel bar cage frame. The rod 63 drives the displacement execution assembly 64 installed thereon to move toward the right end of the building steel cage. When the supporting arms 644 in the displacement execution assembly 64 contact and clamp the left and right ends of the building steel cage, the push rod cylinder 62 can be controlled to stop working. Then, the displacement motor 642 in the displacement execution assembly 64 is controlled to start. The displacement motor 642 can drive the rotating disk 643 and the supporting arms 644 to rotate and adjust through the motor drive shaft installed thereon. At this time, the building steel cage between the supporting arms 644 can be rotated and adjusted under the drive of the supporting arms 644.
[0030] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and improvements shall fall within the scope of the present invention as claimed.
Claims
1. A displacement mechanism for processing building steel bar cages, characterized in that: The invention comprises an operating table assembly (1), a left bracket group (2), a right bracket group (3), a first support (4), a second support (5), a first supporting displacement part (6) and a second supporting displacement part (7); the left bracket group (2) is installed on the left side of the operating table assembly (1), and the left bracket group (2) is installed on the right side of the operating table assembly (1); the left bracket group (2), the right bracket group (3) and the operating table assembly (1) are installed together; the first support (4) is installed on the left bracket group (2), and the first support (4) is connected to the left bracket group (2) by bolts; the second support (5) is installed on the right bracket group (3), and the second support (5) is connected to the right bracket group (3) by bolts; the bottom of the first supporting displacement part (6) is installed on the first support (4), and the bottom of the second supporting displacement part (7) is installed on the second support (5).
2. A displacement mechanism for processing a building steel bar cage according to claim 1, characterized in that: The operating table assembly (1) comprises a left bracket (11), a right bracket (12), a pad (13) and an operating table frame (14), wherein the left bracket (11) is mounted on the lower left side of the operating table frame (14), and the right bracket (12) is mounted on the lower right side of the operating table frame (14). Pads (13) are respectively mounted on the tops of the left bracket (11) and the right bracket (12), and the operating table frame (14) is respectively mounted and connected to the left bracket (11) and the right bracket (12) through the pads (13).
3. A displacement mechanism for processing a building steel bar cage according to claim 2, characterized in that: The left bracket group (2) and the right bracket group (3) have the same structure, and both include: A load-bearing plate (21), a support rail (22), a bracket body (23) and a slider (24), wherein the load-bearing plate (21) is mounted on the outer sides of the left bracket (11) and the right bracket (12); the support rail (22) is fixedly mounted on the load-bearing plate (21); the slider (24) is engaged with the support rail (22); and the lower part of the bracket body (23) is mounted on the slider (24).
4. A displacement mechanism for processing a building steel bar cage according to claim 1, characterized in that: The first supporting displacement part (6) and the second supporting displacement part (7) have the same structure, and both include a support frame (61), a push rod cylinder (62), a push rod (63) and a displacement execution assembly (64); the lower part of the support frame (61) is installed on the first support (4) and the second support (5), the push rod cylinder (62) is installed on the support frame (61), the push rod (63) is installed on the push rod cylinder (62), and the outer side of the displacement execution assembly (64) is installed on the outer end of the push rod (63).
5. A displacement mechanism for processing a building steel bar cage according to claim 4, characterized in that: The shifting execution assembly (64) includes a motor base (641), a shifting motor (642), a rotating disk (643) and a supporting arm (644). The motor base (641) is installed at the outer end of the push rod (63); the shifting motor (642) is installed on the motor base (641), the motor drive shaft is installed on the shifting motor (642), and the rotating disk (643) is installed on the motor shaft; the supporting arm (644) is installed on the rotating disk (643).
6. A displacement mechanism for processing a building steel bar cage according to claim 3, characterized in that: An auxiliary support portion (8) is installed on the inner side of the left bracket (11) and the right bracket (12). The auxiliary support portion (8) includes a cylinder seat (81), a lifting cylinder (82), a lifting rod (83) and a support head (84). The bottom of the lifting cylinder (82) is installed on the cylinder seat (81), a lifting rod (83) that can be lifted and lowered is installed on the lifting cylinder (82), and the support head (84) is installed on the top of the lifting rod (83).