Auxiliary cage binding tools and cage binding methods
By designing the support frame and rotating frame of the auxiliary wire mesh cage binding tool, the problem of frequent movement of workers during the wire mesh cage binding process was solved, and efficient wire mesh cage binding was achieved.
Patent Information
- Application Number
- CN202310798594.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-30
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2043-06-30
AI Technical Summary
In construction projects, the work of binding steel mesh cages requires workers to move frequently, which makes the operation difficult and inefficient.
An auxiliary wire mesh cage binding tool is provided, including a base frame, a support frame and a rotating frame. The position of the wire mesh cage can be adjusted by the rotatable connection of the support frame and the rotating frame, reducing the need for workers to move around.
With the help of auxiliary wire mesh cage binding tools, workers can complete the overall binding of the wire mesh cage in a fixed position, reducing the difficulty of operation and improving work efficiency.
Smart Images

Figure CN116766383B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of building engineering technology, specifically to an auxiliary cage binding tool and a cage binding method. Background Technology
[0002] In construction engineering, the steel mesh cages in precast wall panel components require binding operations. In related techniques, the steel mesh cage is typically placed horizontally first, and then workers bind different parts of the cage along a predetermined direction. During the binding process, workers need to constantly move to different positions to bind different parts of the cage. This movement can be restrictive due to the cage, leading to high operational difficulty and low work efficiency. Summary of the Invention
[0003] To address the aforementioned technical problems, embodiments of this application provide an auxiliary cage binding tool and a cage binding method, which can assist workers in binding cages, reduce the difficulty of operation for workers, and improve work efficiency.
[0004] Firstly, an auxiliary cage binding tool is provided, comprising:
[0005] Base frame;
[0006] A support frame, wherein a first end of the support frame is rotatably connected to the base frame about a first axis, so that a second end of the support frame is close to or far from the base frame; wherein the first end and the second end are arranged opposite to each other;
[0007] A slewing frame is rotatably connected to the support frame about a second axis; wherein the first axis and the second axis are out of plane.
[0008] According to a first aspect of this application, the support frame has a rotatable angle range of 0 to 90°, so that the support frame can rotate from a horizontal state to a vertical state.
[0009] According to a first aspect of this application, the auxiliary cage binding fixture further includes:
[0010] A slewing support is rotatably connected to the slewing frame and the support frame. The slewing support is used to assist the slewing frame in rotating about the second axis relative to the support frame.
[0011] According to a first aspect of this application, the auxiliary cage binding fixture further includes:
[0012] A first locking device is connected to the slewing frame and the support frame, and the first locking device is used to restrict the rotation of the slewing frame relative to the support frame.
[0013] According to a first aspect of this application, the slewing frame includes:
[0014] The base rod is equipped with a first hook;
[0015] The connecting rod is connected to the base rod;
[0016] A top rod is provided with a second hook, and the top rod is slidably connected to the connecting rod along the axial direction of the connecting rod so that the second hook is close to or far away from the first hook;
[0017] The first hook and the second hook are used to hang the wire mesh cage.
[0018] According to a first aspect of this application, the slewing frame further includes:
[0019] The transition rod is connected to the connecting rod;
[0020] A second locking device connects the transition rod and the top rod, and the second locking device is used to restrict the sliding of the top rod relative to the connecting rod.
[0021] According to a first aspect of this application, the second locking device includes:
[0022] A lead screw is threadedly engaged with the push rod, and the lead screw is rotatably connected to the transition rod to drive the push rod to slide along the axial direction of the connecting rod.
[0023] According to a first aspect of this application, the second locking device includes:
[0024] A locking rod, one end of which is connected to the transition rod, and the other end of which is slidably engaged with the top rod to allow the top rod to slide along the axial direction of the connecting rod; the locking rod is provided with a first toothed rack;
[0025] The locking block is provided with a second rack, which engages with the first rack to restrict the sliding of the push rod relative to the connecting rod;
[0026] A clamp is connected to the locking block, and the clamp is used to move the locking block closer to or away from the locking rod so that the second rack engages with or disengages from the first rack.
[0027] According to a first aspect of this application, the auxiliary cage binding fixture further includes:
[0028] A drive cylinder is connected to the base frame, and the piston rod of the drive cylinder is connected to the support frame to drive the support frame to rotate relative to the base frame.
[0029] Secondly, a method for binding a wire mesh cage is also provided, which is achieved by using the auxiliary wire mesh cage binding fixture described in the aforementioned embodiments.
[0030] The method for securing the wire cage includes:
[0031] When the support frame is in the first working position, the wire mesh cage is hung on the rotating frame;
[0032] The support frame is rotated relative to the base frame to the second working position;
[0033] The first part of the wire mesh cage is tied up;
[0034] The support frame is rotated relative to the base frame to the first working position;
[0035] The rotating frame is rotated relative to the support frame to interchange the positions of the first and second parts of the wire cage.
[0036] The support frame is rotated relative to the base frame to the second working position;
[0037] The second part of the wire mesh cage is then secured.
[0038] The auxiliary net cage binding fixture and net cage binding method provided in this application embodiment involve first rotating a support frame around a first axis to a first working position, then hanging the net cage on a rotating frame, and then rotating the support frame around the first axis to a second working position. In this case, the worker can bind the first part of the net cage. After binding, the support frame is rotated around the first axis to the first working position, and then the rotating frame is rotated around the second axis, so that the first part of the net cage and the unbound second part are exchanged. Then the support frame is rotated around the first axis to the second working position, and in this case, the worker can bind the second part of the net cage, thereby realizing the binding operation of the entire net cage. In this way, during the binding process, the worker can use this auxiliary net cage binding fixture to complete the binding of the entire net cage without moving to different parts of the net cage, reducing the difficulty of the binding operation and improving work efficiency. Attached Figure Description
[0039] The above and other objects, features, and advantages of this application will become more apparent from the more detailed description of the embodiments of this application in conjunction with the accompanying drawings. The drawings are provided to further illustrate the embodiments of this application and form part of the specification. They are used together with the embodiments of this application to explain this application and do not constitute a limitation thereof. In the drawings, the same reference numerals generally represent the same components or steps.
[0040] Figure 1 A schematic diagram of the structure of an auxiliary wire mesh cage binding tool provided for an exemplary embodiment of this application.
[0041] Figure 2A schematic diagram of the structure of an auxiliary wire mesh cage binding tool provided for another exemplary embodiment of this application.
[0042] Figure 3 A schematic diagram of the auxiliary net cage binding tool and the net cage provided for an exemplary embodiment of this application.
[0043] Figure 4 A schematic diagram of the auxiliary cage binding tool and the cage provided for another exemplary embodiment of this application.
[0044] Figure 5 for Figure 2 Enlarged diagram of point C in the middle.
[0045] Figure 6 A schematic diagram of the structure of an auxiliary wire mesh cage binding tool provided for another exemplary embodiment of this application.
[0046] Figure 7 for Figure 6 Enlarged diagram of point D in the middle.
[0047] Figure 8 A schematic flowchart illustrating a cage binding method provided for an exemplary embodiment of this application.
[0048] Figure 9 A schematic flowchart of a cage binding method provided for another exemplary embodiment of this application.
[0049] Reference numerals: 100-Auxiliary cage binding fixture; 110-Base frame; 120-Support frame; 121-First end; 122-Second end; 130-Rotating frame; 131-Bottom rod; 132-First hook; 133-Connecting rod; 134-Top rod; 135-Second hook; 136-Transition rod; 137-Second locking device; 1371-Screw rod; 1372-Locking rod; 1373-Locking block; 1374-Clamp; 1375-First rack; 1376-Second rack; 1378-Rocker wheel; 140-Rotating support; 150-First locking device; 151-First connecting piece; 152-Second connecting piece; 153-Pin; 160-Drive cylinder; 170-Control valve; 300-Cage; 310-First part; 320-Second part. Detailed Implementation
[0050] Hereinafter, exemplary embodiments according to this application will be described in detail with reference to the accompanying drawings. Obviously, the described embodiments are merely some embodiments of this application, and not all embodiments of this application. It should be understood that this application is not limited to the exemplary embodiments described herein.
[0051] Figure 1 A schematic diagram of the structure of an auxiliary wire mesh cage binding tool provided for an exemplary embodiment of this application. Figure 2 A schematic diagram of the structure of an auxiliary wire mesh cage binding tool provided for another exemplary embodiment of this application. (See diagram below.) Figure 1 and Figure 2 As shown, the auxiliary wire mesh cage binding fixture 100 provided in this application embodiment may include a base frame 110 and a support frame 120. The support frame 120 includes a first end 121 and a second end 122, with the first end 121 and the second end 122 disposed opposite to each other. The first end 121 of the support frame 120 is arranged around a first axis ( Figure 2 The target indicated by the middle arrow A) is rotatably connected to the base frame 110. During this rotation, the second end 122 of the support frame 120 can move closer to or further away from the base frame 110.
[0052] Specifically, with Figure 2 For example, during the clockwise rotation of the first end 121 of the support frame 120 around the first axis, the second end 122 of the support frame 120 approaches the base frame 110, and during the counterclockwise rotation of the first end 121 of the support frame 120 around the first axis, the second end 122 of the support frame 120 moves away from the base frame 110.
[0053] like Figure 1 and Figure 2 As shown, the auxiliary net cage binding fixture 100 may also include a rotating frame 130, which can be used to hang the net cage 300. The rotating frame 130 rotates around the second axis ( Figure 2 The target indicated by the middle arrow B) is rotatably connected to the support frame 120, and the first axis and the second axis are out of plane. In this way, on the one hand, by operating the rotating frame 130 to rotate around the second axis, the position of the net cage 300 can be adjusted, so that the workers can tie different parts of the net cage 300, reducing the difficulty of operation for the workers and improving work efficiency; on the other hand, since the first axis and the second axis are out of plane, the rotation plane of the rotating frame 130 and the rotation plane of the support frame 120 are not in the same plane, so there will be no interference during the rotation process.
[0054] Figure 3 A schematic diagram of the auxiliary net cage binding tool and the net cage provided for an exemplary embodiment of this application. Figure 4 A schematic diagram of the auxiliary wire mesh cage binding tool and the wire mesh cage provided as another exemplary embodiment of this application. (See attached diagram.) Figure 3 and Figure 4 As shown, in practical applications, the support frame 120 can be rotated to the first working position (e.g., Figure 3 (as shown in the image), then hang the wire mesh cage 300 on the rotating frame 130, and then rotate the support frame 120 to the second working position (as shown in the image). Figure 4(As shown in the image) In this situation, the worker can tie the first part 310 of the wire mesh cage 300. After the first part 310 is tied, the support frame 120 is rotated to the first working position, and then the rotating frame 130 is rotated so that the first part 310 of the wire mesh cage 300 and the second part 320, which has not yet been tied, are exchanged. Then the support frame 120 is rotated to the second working position, and in this situation, the worker can tie the second part 320 of the wire mesh cage 300, thereby realizing the overall tying operation of the wire mesh cage 300. It should be understood that during the tying process of the wire mesh cage 300, the worker can use this auxiliary wire mesh cage tying tool 100 to complete the overall tying of the wire mesh cage 300 without moving to different parts of the wire mesh cage 300, reducing the difficulty of the tying operation and improving work efficiency.
[0055] In one embodiment, the first axis and the second axis can be perpendicular to each other in opposite planes. This can avoid interference between the rotating frame 130 and the support frame 120 during rotation, and ensure that the rotation process of the rotating frame 130 and the support frame 120 is smoother.
[0056] like Figures 1 to 4 As shown, the support frame 120 has a rotation range of 0 to 90°, allowing it to rotate from a horizontal to a vertical position. It should be understood that when the support frame 120 is horizontal, the rotating frame 130 is also horizontal, and when the support frame 120 is vertical, the rotating frame 130 is also vertical. Specifically, the aforementioned first working position can be understood as the position of the support frame 120 when it is horizontal, which facilitates the hanging of the net cage 300. The aforementioned second working position can be understood as the position of the support frame 120 when it is vertical, which facilitates workers standing and securing the net cage 300, effectively improving work efficiency.
[0057] like Figure 2 and Figure 4 As shown, the auxiliary wire mesh cage binding fixture 100 may also include a drive cylinder 160, which is connected to the base frame 110, and the piston rod of the drive cylinder 160 is connected to the support frame 120. It should be understood that by controlling the extension or retraction of the piston rod of the drive cylinder 160, the support frame 120 can be driven to reciprocate around the first axis, thereby driving the support frame 120 to rotate to the first working position or the second working position.
[0058] In one embodiment, extending the piston rod of the control drive cylinder 160 can drive the support frame 120 to rotate counterclockwise around the first axis, and the support frame 120 can move to the second working position; retracting the piston rod of the control drive cylinder 160 can drive the support frame 120 to rotate clockwise around the first axis, and the support frame 120 can move to the first working position.
[0059] In one embodiment, the drive cylinder 160 may include a pneumatic cylinder, a hydraulic cylinder, an electric cylinder, etc.
[0060] like Figure 2 and Figure 4 As shown, the auxiliary cage binding fixture 100 may also include a control valve 170. The control valve 170 is connected to the drive cylinder 160. The control valve 170 can control the piston rod of the drive cylinder 160 to extend or retract. The control valve 170 can facilitate operation by the staff and play the role of quickly controlling the drive cylinder 160 and quickly adjusting the position of the support frame 120.
[0061] Figure 5 for Figure 2 An enlarged view of point C in the middle. (See diagram below.) Figure 2 and Figure 5 As shown, the auxiliary cage binding fixture 100 may also include a slewing support 140, which rotatably connects the slewing frame 130 and the support frame 120. In this way, with the assistance of the slewing support 140, the slewing frame 130 can rotate smoothly relative to the support frame 120 around the second axis.
[0062] In one embodiment, the slewing support 140 can be fixedly connected to the slewing frame 130, and the slewing support 140 is rotatably connected to the support frame 120.
[0063] In one embodiment, the slewing support 140 can be fixedly connected to the support frame 120, and the slewing support 140 is rotatably connected to the slewing frame 130.
[0064] In one embodiment, with the assistance of the slewing support 140, the slewing frame 130 can rotate 360° relative to the support frame 120 around the second axis. In this way, when the net cage 300 is hung on the slewing frame 130, the posture of the net cage 300 can be adjusted more accurately, and it is more convenient for workers to tie the net cage 300.
[0065] like Figure 2 and Figure 5 As shown, the auxiliary wire mesh cage binding fixture 100 may further include a first locking device 150, which connects the rotating frame 130 and the support frame 120. It should be noted that the first locking device 150 can be used to restrict the rotation of the rotating frame 130 relative to the support frame 120. This prevents the wire mesh cage 300 from rotating with the support frame 120 when workers are binding it, thus facilitating the binding operation.
[0066] like Figure 5As shown, the first locking device 150 may include a first connecting piece 151, a second connecting piece 152, and a pin 153. The first connecting piece 151 is connected to the support frame 120, the second connecting piece 152 is connected to the rotating frame 130, and the pin 153 is detachably connected to the first connecting piece 151 and the second connecting piece 152. It should be understood that after the pin 153 connects the first connecting piece 151 and the second connecting piece 152, the support frame 120 and the rotating frame 130 are relatively locked, and the rotating frame 130 cannot rotate relative to the support frame 120; after the pin 153 disengages from the first connecting piece 151 and the second connecting piece 152, the rotating frame 130 can rotate relative to the support frame 120.
[0067] In one embodiment, the first locking device 150 may further include a latching and slotting structure, a bolt and screw hole mating structure, etc.
[0068] Figure 6 A schematic diagram of the structure of an auxiliary wire mesh cage binding tool provided for another exemplary embodiment of this application. (See diagram below.) Figure 4 and Figure 6 As shown, the slewing frame 130 may include a base rod 131, a connecting rod 133, and a top rod 134. The base rod 131 is provided with a first hook 132. The connecting rod 133 is connected to the base rod 131. The top rod 134 is provided with a second hook 135. The top rod 134 is slidably connected to the connecting rod 133 along the axial direction of the connecting rod 133.
[0069] It should be understood that during the sliding of the top rod 134 along the axis of the connecting rod 133, the second hook 135 can move closer to or further away from the first hook 132. Specifically, in practical applications, after the two ends of the net cage 300 are respectively hooked onto the first hook 132 and the second hook 135, the position of the top rod 134 can be adjusted by sliding the top rod 134, thereby adjusting the distance between the first hook 132 and the second hook 135, so that the first hook 132 and the second hook 135 can tighten the net cage 300, making it convenient for subsequent workers to tie the net cage 300.
[0070] In one embodiment, there can be two connecting rods 133, which are distributed in parallel. The two ends of each connecting rod 133 are connected to the bottom rod 131 and the top rod 134, which can improve the overall structural strength of the slewing frame 130.
[0071] In one embodiment, the number of first hooks 132 can be one, two, multiple, etc.
[0072] In one embodiment, the number of second hooks 135 can be one, two, multiple, etc.
[0073] like Figure 4 and Figure 6As shown, the slewing frame 130 also includes a transition rod 136 and a second locking device 137. The transition rod 136 is connected to the connecting rod 133, which can enhance the overall strength of the slewing frame 130. The second locking device 137 connects the transition rod 136 and the top rod 134, and the second locking device 137 can restrict the top rod 134 from sliding relative to the connecting rod 133.
[0074] Specifically, in practical applications, when the top rod 134 slides to the appropriate position, the net cage 300 is in a taut state. The second locking device 137 can be operated to lock the top rod 134 and the connecting rod 133, restricting the top rod 134 from sliding relative to the connecting rod 133. In this way, the net cage 300 can be kept in a stable state during the process of workers binding the net cage 300, making it convenient for workers to bind the net cage 300.
[0075] like Figure 4 As shown, in one embodiment, the second locking device 137 may include a lead screw 1371, which is threadedly engaged with a push rod 134. The lead screw 1371 is rotatably connected to the connecting rod 133. Specifically, during the rotation of the lead screw 1371 relative to the connecting rod 133, the threaded engagement structure allows the push rod 134 to slide along the axial direction of the connecting rod 133. It should be understood that the sliding direction of the push rod 134 varies depending on the direction of rotation of the lead screw 1371. For example, clockwise rotation of the lead screw 1371 can cause the push rod 134 to slide away from the bottom rod 131, while counterclockwise rotation of the lead screw 1371 can cause the push rod 134 to slide closer to the bottom rod 131.
[0076] like Figure 4 As shown, in one embodiment, the second locking device 137 may further include a rocker wheel 1378, which is connected to the lead screw 1371. When the operator turns the rocker wheel 1378, the lead screw 1371 can be driven to rotate. The rocker wheel 1378 is easy for the operator to hold.
[0077] Figure 7 for Figure 6 An enlarged diagram of point D in the middle. (See diagram below.) Figure 6 and Figure 7 As shown, in one embodiment, the second locking device 137 may include a locking rod 1372, a locking block 1373, and a clamp 1374. One end of the locking rod 1372 is connected to the transition rod 136, and the other end of the locking rod 1372 is slidably engaged with the top rod 134. The locking rod 1372 is provided with a first rack 1375, and correspondingly, the locking block 1373 is provided with a second rack 1376. The clamp 1374 is connected to the locking block 1373. By operating the clamp 1374, the locking block 1373 can be moved closer to or away from the locking rod 1372, so that the second rack 1376 engages with or disengages from the first rack 1375.
[0078] Specifically, in practical applications, after the wire mesh cage 300 is installed, when it is necessary to slide the top rod 134 to pull the wire mesh cage 300 in, the clamp 1374 can be operated to move the locking block 1373 away from the locking rod 1372, so that the second rack 1376 is released from the first rack 1375, and then the top rod 134 can be slid; after the wire mesh cage 300 is tightened, when it is necessary to restrict the sliding of the top rod 134 relative to the connecting rod 133, the clamp 1374 can be operated to move the locking block 1373 closer to the locking rod 1372, so that the second rack 1376 is engaged with the first rack 1375.
[0079] In one embodiment, the clamp 1374 is movably connected to the top rod 134. In practical applications, the clamp 1374 can be operated by means of flicking, rotating, sliding, etc., so as to drive the locking block 1373 to move closer to or away from the locking rod 1372.
[0080] In summary, the working principle of the auxiliary wire mesh cage binding fixture 100 provided in this application embodiment is as follows:
[0081] When the support frame 120 is in the first working position (e.g.) Figure 3 In the position shown, first hang the two opposite ends of the wire mesh cage 300 on the first hook 132 and the second hook 135. Slide the top rod 134 along the axial direction of the connecting rod 133 to adjust the distance between the second hook 135 and the first hook 132, tighten the wire mesh cage 300, then operate the second locking device 137 to lock the top rod 134, restricting the sliding of the top rod 134 relative to the connecting rod 133. Then operate the control valve 170 to control the piston rod of the drive cylinder 160 to extend, and the support frame 120 rotates around the first axis to the second working position (e.g., Figure 4(As shown in the image), the worker ties the first part 310 of the wire mesh cage 300. After the first part 310 of the wire mesh cage 300 is tied, the control valve 170 is operated to retract the piston rod of the drive cylinder 160, and the support frame 120 rotates around the first axis to the first working position. The first locking device 150 is operated to unlock the support frame 120 and the rotating frame 130, and then the rotating frame 130 is rotated 180° around the second axis, so that the first part 310 and the second part 320 of the wire mesh cage 300 exchange positions. Then the first locking device 150 is operated to lock the support frame 120 and the rotating frame 130, restricting the rotation of the rotating frame 130 relative to the support frame 120. Then, the control valve 170 is operated to extend the piston rod of the drive cylinder 160, and the support frame 120 rotates around the first axis to the second working position. The worker then ties the second part 320 of the wire mesh cage 300. After the second part 320 of the wire mesh cage 300 is tied, the control valve 170 is operated to control the piston rod of the drive cylinder 160 to retract, the support frame 120 rotates around the first axis to the first working position, the second locking device 137 is operated so that the top rod 134 can slide relative to the connecting rod 133, the state of the wire mesh cage 300 being tightened is released, and the tied wire mesh cage 300 is removed.
[0082] Figure 8 This is a flowchart illustrating a wire mesh cage binding method provided as an exemplary embodiment of this application. Figure 8 As shown, the wire mesh cage binding method provided in this application embodiment is implemented by applying the auxiliary wire mesh cage binding fixture described in the previous embodiment. Specifically, the wire mesh cage binding method may include:
[0083] S610: When the support frame is in the first working position, hang the wire mesh cage on the slewing frame.
[0084] S620: The operating support frame rotates relative to the base frame to the second working position.
[0085] S630: Bind the first part of the wire mesh cage.
[0086] S640: The operating support frame rotates relative to the base frame to the first working position.
[0087] S650: Operate the slewing frame to rotate relative to the support frame so that the first and second parts of the cage are interchanged.
[0088] S660: The operating support frame rotates relative to the base frame to the second working position.
[0089] S670: Secure the second part of the wire mesh cage.
[0090] Specifically, when the support frame 120 is in the first working position (e.g. Figure 3When the position shown is reached, the wire mesh cage 300 is then hung on the rotating frame 130, and then the support frame 120 is rotated to the second working position (as shown). Figure 4 (As shown in the image) In this situation, the worker can tie the first part 310 of the wire mesh cage 300. After tying, the support frame 120 is rotated to the first working position, and then the rotating frame 130 is rotated so that the first part 310 of the wire mesh cage 300 and the untied second part 320 are exchanged. Then the support frame 120 is rotated to the second working position, and in this situation, the worker can tie the second part 320 of the wire mesh cage 300, thereby realizing the overall tying operation of the wire mesh cage 300. It should be understood that in the process of tying the wire mesh cage 300, the worker can complete the overall tying of the wire mesh cage 300 without moving to different parts of the wire mesh cage 300, which reduces the difficulty of the tying operation and improves work efficiency.
[0091] Figure 9 A schematic flowchart illustrating a wire mesh cage binding method provided as another exemplary embodiment of this application. Figure 9 As shown, after step S610 and before step S620, the cage binding method may further include:
[0092] S680: A sliding push rod that slides along the axial direction of the connecting rod.
[0093] Specifically, step S680 can adjust the distance between the second hook 135 and the first hook 132, thereby allowing the net cage 300 to be pulled in, making it easier for subsequent staff to tie the net cage 300.
[0094] S690: Operate the second locking device to lock the top rod.
[0095] Specifically, step S690 can restrict the sliding of the top rod 134 relative to the connecting rod 133 after the wire mesh cage 300 is tightened, so as to ensure that the wire mesh cage 300 remains taut during the binding process, making it convenient for workers to bind.
[0096] like Figure 9 As shown, after step S640 and before step S650, the cage binding method may further include:
[0097] S700: Operate the first locking device to unlock the support frame and the slewing frame.
[0098] Specifically, performing step S700 facilitates the subsequent rotation of the rotating frame 130, allowing the first part 310 and the second part 320 of the wire mesh cage 300 to interchange positions.
[0099] like Figure 9As shown, after step S650 and before step S660, the cage binding method may further include:
[0100] S710: Operate the first locking device to lock the support frame and the slewing frame.
[0101] Specifically, step S710 can prevent the net cage 300 from rotating with the support frame 120 when the staff subsequently binds the net cage 300, making it easier for the staff to carry out the binding operation.
[0102] The basic principles of this application have been described above with reference to specific embodiments. However, it should be noted that the advantages, benefits, and effects mentioned in this application are merely examples and not limitations, and should not be considered as essential features of each embodiment of this application. Furthermore, the specific details disclosed above are for illustrative and facilitative purposes only, and are not limitations. These details do not limit the application to the necessity of employing the aforementioned specific details for implementation.
[0103] The block diagrams of devices, apparatuses, devices, and systems involved in this application are merely illustrative examples and are not intended to require or imply that they must be connected, arranged, or configured in the manner shown in the block diagrams. As those skilled in the art will recognize, these devices, apparatuses, devices, and systems can be connected, arranged, and configured in any manner. Words such as “comprising,” “including,” “having,” etc., are open-ended terms meaning “including but not limited to,” and are used interchangeably with them. The terms “or” and “and” as used herein refer to the terms “and / or,” and are used interchangeably with them unless the context clearly indicates otherwise. The term “such as” as used herein refers to the phrase “such as but not limited to,” and is used interchangeably with it.
[0104] It should also be noted that in the apparatus, equipment, and methods of this application, the components or steps can be disassembled and / or recombined. These disassemblies and / or recombinations should be considered as equivalent solutions of this application.
[0105] The above description of the disclosed aspects is provided to enable any person skilled in the art to make or use this application. Various modifications to these aspects will not be obvious to those skilled in the art, and the general principles defined herein can be applied to other aspects without departing from the scope of this application. Therefore, this application is not intended to be limited to the aspects shown herein, but rather to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0106] The above description has been given for purposes of illustration and description. Furthermore, this description is not intended to limit the embodiments of this application to the forms disclosed herein. Although numerous exemplary aspects and embodiments have been discussed above, those skilled in the art will recognize certain variations, modifications, alterations, additions, and sub-combinations thereof.
Claims
1. An auxiliary wire mesh cage binding tool, characterized in that, include: Base frame (110); A support frame (120) has a first end (121) rotatably connected to a base frame (110) about a first axis, such that a second end (122) of the support frame (120) is close to or away from the base frame (110); wherein the first end (121) and the second end (122) are arranged opposite to each other; A rotating frame (130) is rotatably connected to the support frame (120) about a second axis; wherein the first axis and the second axis are out of plane; The rotating frame (130) includes: The bottom rod (131) is equipped with a first hook (132); The connecting rod (133) is connected to the bottom rod (131); The top rod (134) is provided with a second hook (135). The top rod (134) is slidably connected to the connecting rod (133) along the axial direction of the connecting rod (133) so that the second hook (135) is close to or away from the first hook (132). The first hook (132) and the second hook (135) are used to hang the wire mesh cage (300). The auxiliary cage binding fixture also includes: A first locking device (150) connects the slewing frame (130) and the support frame (120), and the first locking device (150) is used to restrict the slewing frame (130) from rotating relative to the support frame (120); The slewing frame (130) also includes: The transition rod (136) is connected to the connecting rod (133); A second locking device (137) connects the transition rod (136) and the top rod (134), and the second locking device (137) is used to restrict the sliding of the top rod (134) relative to the connecting rod (133).
2. The auxiliary wire mesh cage binding fixture according to claim 1, characterized in that, The rotatable angle range of the support frame (120) is 0 to 90°, so that the support frame (120) can rotate from a horizontal state to a vertical state.
3. The auxiliary wire mesh cage binding fixture according to claim 1, characterized in that, The auxiliary cage binding fixture also includes: A slewing support (140) rotatably connects the slewing frame (130) and the support frame (120). The slewing support (140) assists the slewing frame (130) in rotating about the second axis relative to the support frame (120).
4. The auxiliary wire mesh cage binding fixture according to claim 1, characterized in that, The second locking device (137) includes: The lead screw (1371) is threadedly engaged with the push rod (134), and the lead screw (1371) is rotatably connected to the transition rod (136) so as to drive the push rod (134) to slide along the axial direction of the connecting rod (133).
5. The auxiliary wire mesh cage binding fixture according to claim 1, characterized in that, The second locking device (137) includes: A locking rod (1372) is provided, one end of which is connected to the transition rod (136), and the other end of which is slidably engaged with the top rod (134) so that the top rod (134) slides along the axial direction of the connecting rod (133); the locking rod (1372) is provided with a first rack (1375). The locking block (1373) is provided with a second rack (1376), which is used to engage with the first rack (1375) to restrict the sliding of the top rod (134) relative to the connecting rod (133); A clamp (1374) is connected to the locking block (1373). The clamp (1374) is used to move the locking block (1373) closer to or away from the locking rod (1372) so that the second rack (1376) engages or disengages from the first rack (1375).
6. The auxiliary wire mesh cage binding fixture according to any one of claims 1 to 3, characterized in that, The auxiliary cage binding fixture also includes: A drive cylinder (160) is connected to the base frame (110), and the piston rod of the drive cylinder (160) is connected to the support frame (120) to drive the support frame (120) to rotate relative to the base frame (110).
7. A method for binding a wire mesh cage, characterized in that, This is achieved using the auxiliary cage binding fixture as described in any one of claims 1 to 6; The method for securing the wire cage includes: When the support frame (120) is in the first working position, the wire mesh cage (300) is hung on the rotating frame (130); The support frame (120) is rotated relative to the base frame (110) to a second working position; The first part (310) of the wire mesh cage (300) is tied; The support frame (120) is rotated relative to the base frame (110) to a first working position; The rotating frame (130) is operated to rotate relative to the support frame (120) so that the first part (310) and the second part (320) of the wire mesh cage (300) exchange positions; The support frame (120) is rotated relative to the base frame (110) to the second working position; The second part (320) of the wire mesh cage (300) is tied.
Citation Information
Patent Citations
Reinforcement assembling frame
JP2020131644A