Containerized reinforcement cage production line

CN224727704UActive Publication Date: 2026-09-08TJK MACHINERY (TIANJIN) CO LTD
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Patent Information

Application Number
CN202521968234.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2026-09-08
Estimated Expiration
2035-09-12

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种集装箱式钢筋笼生产线,用以解决钢筋笼从集装内转移出来的难度高、生产钢筋笼效率低的问题

Benefits of technology

[0016] The container top of the aforementioned container steel cage production line is open. After the steel cage is produced, it can be lifted directly from the top of the container using hoisting equipment. Compared with containers with closed tops, the steel cage transfer efficiency is improved, and the processing efficiency of the steel cage is also improved as a result.

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Abstract

The utility model belongs to the technical field of steel bar cage processing, disclose a kind of container type steel bar cage production line, including container and steel bar cage production equipment, container top is set to open, the container includes bottom plate, the left side plate being pivoted in the left side of the bottom plate, the right side plate being pivoted in the right side of the bottom plate, the front side plate being pivoted in the front side of the bottom plate and the back side plate being pivoted in the back side of the bottom plate;The steel bar cage production equipment is set on the bottom plate. When steel bar cage is produced using the above-mentioned container type steel bar cage production line, the steel bar cage can be lifted from the top of the container, and the steel bar cage production efficiency is high.
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Description

Technical Field

[0001] This utility model relates to the field of steel cage production technology, and in particular to a containerized steel cage production line. Background Technology

[0002] Existing rebar cage production equipment is generally large in size and can only be used in the factory. After the rebar cages are processed, they need to be transported in batches to the designated construction site, which results in high transportation costs.

[0003] Therefore, a rebar cage fabrication device has been proposed in related technologies. This device assembles the entire rebar cage production equipment inside a shipping container, allowing it to be transported to a designated construction site at any time. Once at the site, rebar cage fabrication can be carried out directly inside the container, thus saving on transportation costs. However, after the rebar cages are processed, the size of the container limits the difficulty of transferring them out, which to some extent affects the processing efficiency. Utility Model Content

[0004] The purpose of this utility model is to provide a containerized rebar cage production line to solve the problems of high difficulty in transferring rebar cages out of the container and low efficiency in producing rebar cages.

[0005] A containerized rebar cage production line includes a container and rebar cage production equipment. The container has an open top and includes a bottom plate, a left side plate pivotally connected to the left side of the bottom plate, a right side plate pivotally connected to the right side of the bottom plate, a front side plate pivotally connected to the front side of the bottom plate, and a rear side plate pivotally connected to the rear side of the bottom plate. The rebar cage production equipment is mounted on the bottom plate.

[0006] In one embodiment, the steel cage production equipment includes a first turntable, a second turntable, and a bottom beam. The bottom beam is fixedly mounted on the base plate and extends along the length of the base plate. The first turntable and the second turntable are movably mounted on the bottom beam at intervals along the length of the bottom beam, and both the first turntable and the second turntable are capable of rotating around their own axes.

[0007] In one embodiment, the steel cage production equipment further includes a cage support mechanism, which is disposed on the bottom beam and is capable of extending or retracting from the bottom beam.

[0008] In one embodiment, the bottom beam includes a first beam, a second beam, and a third beam. The length of the second beam is not greater than the length of the container. The first beam and the third beam are detachably connected to both ends of the length of the second beam.

[0009] In one embodiment, when the left side plate and the right side plate are on the same plane as the bottom plate, the first beam can be laid on the left side plate and the third beam can be laid on the right side plate.

[0010] In one embodiment, a chain is fixed on the bottom beam, and both the first turntable and the second turntable are provided with sprockets that mesh with the chain. The sprockets are connected to a first driving member, which is used to drive the sprockets to rotate.

[0011] In one embodiment, a limit switch is provided on the first turntable and / or the second turntable, and the limit switch is controlled and connected to the second drive component.

[0012] In one embodiment, the steel cage production equipment further includes a reinforcement frame, which includes a reinforcement plate and a reinforcement machine frame. Multiple reinforcement machine frames are arranged in a one-to-one correspondence with multiple reinforcement plates. The reinforcement plate is rotatably mounted on the reinforcement machine frame and connected to the first turntable. Adjacent reinforcement machine frames are connected by connecting square tubes.

[0013] In one embodiment, the container further includes a traction mechanism for driving the corresponding left side panel, right side panel, front side panel, and rear side panel to rotate relative to the bottom plate.

[0014] In one embodiment, the container further includes a left frame and a right frame. The left frame is vertically disposed on the left side of the bottom plate, and the right frame is vertically disposed on the right side of the bottom plate. The traction mechanism includes a traction rope, a reversing wheel, a third drive component, and a rotating roller. The reversing wheel is disposed on the top of the left frame or the right frame. One end of the traction rope is connected to one of the front side plate, the rear side plate, the left side plate, and the right side plate, and the other end passes around the reversing wheel and is wound around the rotating roller. The third drive component is connected to the rotating roller to drive the rotating roller to rotate.

[0015] The beneficial effects of this utility model are:

[0016] The container top of the aforementioned container steel cage production line is open. After the steel cage is produced, it can be lifted directly from the top of the container using hoisting equipment. Compared with containers with closed tops, the steel cage transfer efficiency is improved, and the processing efficiency of the steel cage is also improved as a result. Attached Figure Description

[0017] Figure 1 This is a front view of the steel cage production equipment assembled inside a container in an embodiment of this utility model;

[0018] Figure 2This is a top view of the steel cage production equipment assembled inside a container in an embodiment of this utility model;

[0019] Figure 3 This is a side view of the steel cage production equipment assembled inside a container in an embodiment of this utility model;

[0020] Figure 4 This is a front view of the containerized steel cage production line in this embodiment of the present invention during the production of steel cages;

[0021] Figure 5 This is a top view of the containerized steel cage production line in this embodiment of the present invention during the production of steel cages;

[0022] Figure 6 This is a side view of the containerized steel cage production line in this embodiment of the present invention during the production of steel cages;

[0023] Figure 7 This is a top view of the container in the unfolded state in an embodiment of this utility model.

[0024] In the picture:

[0025] 1. Reinforcement frame; 11. Reinforcement tray; 12. Reinforcement machine frame; 13. Connecting shaft; 14. Connecting square tube; 2. First turntable; 3. Wire feeding frame; 4. Cage support mechanism; 5. Bottom beam; 51. First beam; 52. Second beam; 53. Third beam; 6. Second turntable; 7. Straightening mechanism; 8. Operating table; 9. Hydraulic station; 10. Limit switch;

[0026] 100. Container; 101. Left side panel; 102. Right side panel; 103. Front side panel; 104. Rear side panel; 105. Bottom panel; 106. Left frame; 107. Traction mechanism; 108. Canopy; 109. Right frame. Detailed Implementation

[0027] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.

[0028] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0029] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0030] In the description of this embodiment, the terms "upper," "lower," "left," and "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.

[0031] refer to Figures 1-7 As shown, the container steel cage production line includes a container 100 and steel cage production equipment. The container 100 has an open top and includes a bottom plate 105, a left side plate 101 pivotally connected to the bottom plate 105, a right side plate 102 pivotally connected to the right side of the bottom plate 105, a front side plate 103 pivotally connected to the front of the bottom plate 105, and a rear side plate 104 pivotally connected to the rear of the bottom plate 105. The front side plate 103 and the rear side plate 104 are arranged opposite each other. The left side plate 101 and... The right side panel 102 is arranged opposite to the container 100, which has an unfolded state and a retracted state. When it is in the retracted state, the front side panel 103, rear side panel 104, left side panel 101 and right side panel 102 are all perpendicular to the bottom plate 105. When it is in the unfolded state, the front side panel 103, rear side panel 104, left side panel 101 and right side panel 102 are all on the same plane as the bottom plate 105. The steel cage production equipment is set on the bottom plate 105 when it is assembled inside the container 100.

[0032] The container 100 of the aforementioned container steel cage production line has an open top. After the steel cage is produced, it can be lifted directly from the top of the container 100 using hoisting equipment. Compared with the container 100 with a closed top, the steel cage transfer efficiency is improved, and the processing efficiency of the steel cage is also improved.

[0033] It is known that the reinforcing cage is welded from main bars and stirrups. The main bars are arranged in a ring at intervals and parallel to each other, and the stirrups need to be wound and welded onto the main bars according to a predetermined pitch. Based on this, refer to... Figures 4-6 As shown, the rebar cage production equipment includes a reinforcement rack 1, a wire feeding rack 3, a first turntable 2, a second turntable 6, a cage support mechanism 4, a straightening mechanism 7, a bottom beam 5, and an operating platform 8. The bottom beam 5 is fixedly mounted on a base plate 105 and extends along the length of the base plate 105. The first turntable 2 and the second turntable 6 are movably mounted on the bottom beam 5 at intervals along its length, and both the first turntable 2 and the second turntable 6 can rotate around their own axes to drive the main reinforcement bars to rotate. The cage support mechanism 4 is mounted on the bottom beam 5 and can extend or retract from the bottom beam 5. For example, four cage support mechanisms 4 are provided. Each cage support mechanism 4 includes a roller, a rotating arm, and a first driving member. The rotating arm is rotatably mounted on the bottom beam 5, with one end connected to the first driving member and the other end connected to the roller. The first driving member can be a hydraulic cylinder. Therefore, the rebar cage production equipment also includes a hydraulic station 9 connected to the first driving member. When producing steel cages, the reinforcement rack 1 is set on the side of the first turntable 2 facing away from the second turntable 6 to position the main reinforcement bars so that each main reinforcement bar is evenly distributed in a ring. The wire feeding rack 3 is set on one side of the bottom beam 5 to provide stirrups. The straightening mechanism 7 is used to pre-straighten the stirrups, and it can be set on the first turntable 2.

[0034] It is worth noting that the welding of the main reinforcement bars and stirrups can be done manually with a welding gun or by a welding robot. That is, the steel cage production equipment can also include a welding robot. The welding robot can use any known welding device for welding steel cages, which will not be elaborated here.

[0035] In order to enable the automatic movement of the first turntable 2 and the second turntable 6 along the bottom beam 5, in some embodiments, a chain is fixedly installed on the bottom beam 5, and both the first turntable 2 and the second turntable 6 are provided with sprockets that mesh with the chain and a second driving component that drives the sprockets to rotate. The second driving component can be a motor.

[0036] Since both the first turntable 2 and the second turntable 6 can move along the bottom beam 5, in order to prevent the first turntable 2 and the second turntable 6 from colliding and being damaged, a limit switch 10 is provided on the first turntable 2 and / or the second turntable 6. The limit switch 10 is connected to the second drive unit.

[0037] In some embodiments, the bottom beam 5 includes a first beam 51, a second beam 52, and a third beam 53. The length of the second beam 52 is not greater than the length of the container 100. For example, the length of the second beam 52 is the same as the length of the container 100. The first beam 51 and the third beam 53 are detachably connected to both ends of the length of the second beam 52. When producing the rebar cage, the first beam 51 and the third beam 53 are both connected to the second beam 52, and the first turntable 2 is set on the first beam 51. Then, the rebar cage production equipment can process rebar cages with a length longer than the length of the container 100. When transferring the rebar cage production equipment, the first beam 51 and the third beam 53 are separated from the second beam 52, and the first beam 51 and the third beam 53 are placed above the second beam 52. At this time, the cage support mechanism 4 retracts the bottom beam 5. It is worth emphasizing that the chains are segmented to correspond to the first beam 51, the second beam 52 and the third beam 53. When the first beam 51 and the third beam 53 are connected to the second beam 52, the adjacent chains are also connected to each other.

[0038] Specifically, the first beam 51 and the second beam 52, as well as the second beam 52 and the third beam 53, are connected by connecting plates, which are bolted to the first beam 51, the second beam 52, and the third beam 53. Of course, the first beam 51 and the second beam 52, and the second beam 52 and the third beam 53, can also be connected by snap-fit ​​or other methods. More specifically, the first beam 51, the second beam 52, and the third beam 53 are all made of structural steel. Based on the existing length of the structural steel, the second beam 52 can also be segmented.

[0039] refer to Figure 4 As shown, the reinforcement frame 1 includes reinforcement discs 11 and reinforcement machine frames 12, with each reinforcement disc 11 corresponding to the other. During the production of the reinforcing cage, multiple reinforcement discs 11 are rotated at intervals along the length of the bottom beam 5 on their respective reinforcement machine frames 12. Adjacent reinforcement discs 11 are connected by connecting shafts 13. Simultaneously, the reinforcement disc 11 closest to the first turntable 2 is also connected to the first turntable 2 via a connecting shaft 13. Both the reinforcement discs 11 and the reinforcement machine frames 12 are existing technologies; for details, please refer to the structure of the reinforcement rotating frame and reinforcement support frame in CN202367123U, which will not be elaborated upon here. It is worth emphasizing that, in order to improve the stability of the reinforcement frame 12, adjacent reinforcement frames 12 are connected by connecting square tubes 14. The connecting square tubes 14 are bolted to the reinforcement frames 12. Compared with the use of round tubes, the contact area between the connecting square tubes 14 and the reinforcement frames 12 is larger, and the bolt assembly is easier. Compared with the use of H-beams, it is lighter and easier to disassemble and assemble. More specifically, the connecting square tubes 14 are divided into a first square tube and a second square tube. The first square tube connects each reinforcement frame 12, and the second square tube is located below the first square tube. In addition to connecting each reinforcement frame 12, it is also connected to the bottom beam 5 to further improve the stability of the reinforcement frame 1.

[0040] For example, taking the processing of a 12m steel cage as an example, three reinforcement trays 11 and three reinforcement racks 12 are provided. If the number of reinforcement trays 11 and reinforcement racks 12 is too large, the number of connecting square tubes 14 used to connect the reinforcement racks 12 will also increase, increasing the difficulty of assembling and disassembling the reinforcement rack 1; if the number of reinforcement trays 11 and reinforcement racks 12 is too small, the positioning effect of the main reinforcement will be poor. Of course, the number of reinforcement trays 11 and reinforcement racks 12 will vary depending on the length of the steel cage to be processed, which will not be elaborated here.

[0041] refer to Figure 4 and Figure 5 As shown, during the production of the rebar cage, the left side plate 101 and the right side plate 102 are unfolded to be in the same plane as the bottom plate 105. The first beam 51 is laid on the left side plate 101, and the third beam 53 is laid on the right side plate 102. This arrangement ensures that the upper surface height of the first beam 51 and the third beam 53 is consistent with the upper surface height of the second beam 52, reducing the difficulty of moving the first turntable 2 and the second turntable 6 on the beams. Moreover, the first beam 51 and the third beam 53 can avoid direct contact with the ground, eliminating the need for subsequent cleaning of the first beam 51 and the third beam 53 in harsh processing environments. Similarly, the operating platform 8 and the hydraulic station 9 are set on the front side plate 103, and the wire feeding frame 3 is set on the rear side plate 104, thus avoiding direct contact with the ground.

[0042] In order to achieve automatic switching between the unfolded and retracted states of the container 100, the container 100 also includes a traction mechanism 107, which is used to drive the left side panel 101, right side panel 102, front side panel 103 and rear side panel 104 to rotate relative to the bottom panel 105.

[0043] In some embodiments, the container 100 further includes a left frame 106 and a right frame 109, both of which are U-shaped with their openings facing downwards. The left frame 106 is vertically disposed on the left side of the bottom plate 105, and the right frame 109 is vertically disposed on the right side of the bottom plate 105. When the container 100 is in the folded state, the left side panel 101 is attached to the left frame 106, the right side panel 102 is attached to the right frame 109, and the left and right ends of the front side panel 103 and the left and right ends of the rear side panel 104 are attached to the left frame 106 and the right frame 109, thereby improving the stability of the container 100 when it is in the folded state.

[0044] Based on this, the traction mechanism 107 includes a traction rope, a reversing wheel, a third driving member, and a rotating roller. The reversing wheel is located on the top of the left frame 106 or the top of the right frame 109. One end of the traction rope is connected to one of the side plates of the front side plate 103, the rear side plate 104, the left side plate 101, and the right side plate 102, and the other end passes around the reversing wheel and is wound around the rotating roller. The rotating roller is connected to the third driving member and rotates around its own axis under the action of the third driving member.

[0045] Understandably, the two traction ropes connecting the front side panel 103 and the rear side panel 104 can be wound around the same rotating roller extending in the front-rear direction, thereby reducing the number of third drive components used and thus reducing the cost of switching between the unfolded and retracted states of the container 100. Similarly, the two traction ropes connecting the left side panel 101 and the right side panel 102 can also be wound around the same rotating roller extending in the left-right direction.

[0046] Of course, the traction mechanism 107 can also use electric cylinders, hydraulic cylinders, etc., which will not be elaborated here.

[0047] To provide a better operating environment, the containerized rebar cage production line includes a canopy 108. The canopy 108 is connected to the left frame 106 and the right frame 109 and is located in front of the left frame 106 and the right frame 109. It is used to shield the operating platform 8 from water ingress and to provide shade or rain protection for the operators. Of course, the canopy can also be set behind the left frame 106 and the right frame 109 to provide a better operating environment.

[0048] Specifically, in order to improve the stability of the canopy 108 and facilitate its storage in the container 100, the canopy 108 includes a canopy cloth and a support frame. The canopy cloth is made of a rainproof material, and the support frame is used to support the canopy cloth.

[0049] The assembly steps of the containerized steel cage production line are described in further detail below.

[0050] S1, the left side panel 101, the right side panel 102, the front side panel 103, and the rear side panel 104 are all driven to open by the corresponding traction mechanism 107.

[0051] S2. Install the first beam 51 and the third beam 53 on both sides of the length of the second beam 52, respectively.

[0052] S3. Adjust the positions of the first turntable 2 and the second turntable 6.

[0053] S4. Install the operating platform 8 and the hydraulic station 9 on the front side plate 103, install the wire feeding frame 3 on the rear side plate 104, and connect the hydraulic station 9 and the hydraulically driven drive unit (including but not limited to the first drive unit).

[0054] S5. Place the reinforcement frame 12 along the length of the bottom beam 5, and connect the adjacent reinforcement frames 12 with the first square tube and the second square tube. At the same time, the second square tube is also connected to the first beam 51.

[0055] S6. Connect the reinforcement trays 11 with the connecting shaft 13 and hoist them onto the reinforcement frame 12 from the top of the container. During this process, pay attention to the positional relationship between the reinforcement trays 11 and the reinforcement frame 12.

[0056] S7. Connect the reinforcement plate 11 to the first turntable 2 via the connecting shaft 13 and bolts.

[0057] S8. Perform an unloaded test on the rebar cage production equipment to determine if the equipment is functioning properly.

[0058] The detailed steps for producing steel cages using the aforementioned containerized steel cage production line are as follows:

[0059] S1. Place the main reinforcement bars on the side of the reinforcement rack 12 and manually feed the main reinforcement bars into the reinforcement tray 11. In order to reduce the labor intensity of workers, a roller device is installed on the side of the reinforcement rack 1. The main reinforcement bars can be easily passed manually into the mold of the first turntable 2 and then passed to the right into the mold of the second turntable 6. The main reinforcement bars are fixed in the mold by the bolts installed on the second turntable 6, thus completing the feeding.

[0060] S2. Insert the end of the stirrup through the wire feeding frame 3 into the straightening mechanism 7 and place it on top of the main reinforcement.

[0061] S3. The first turntable 2 and the second turntable 6 rotate, thereby wrapping the stirrups around the main reinforcement. At the same time, the second turntable 6 moves away from the first turntable 2, and the stirrups move with the second turntable 6 while being wrapped, forming a steel cage.

[0062] It is worth emphasizing that during the production of the steel cage, the cage support mechanism 4 can be lifted sequentially according to the production length of the steel cage.

[0063] S4. After the steel cage is produced, loosen the bolts on the second turntable 6. The main reinforcement bars will detach from the second turntable 6. The second turntable 6 will continue to move away from the first turntable 2, so that the main reinforcement bars will completely detach from the second turntable 6.

[0064] S5. Lift the steel cage away from above container 100.

[0065] S6, the second turntable 6 returns to its initial position.

[0066] The dismantling steps for the containerized steel cage production line after the production task is completed are as follows:

[0067] S1. Remove the bolts connecting the connecting shaft 13 and the first turntable 2, and lift the reinforcing plate 11 down as a whole. In order to facilitate its assembly in the container 100, the reinforcing plate 11 can be disassembled in advance.

[0068] S2. Remove the connecting square tube 14 connected to the reinforcement frame 12, and separate the three sets of reinforcement frames 12.

[0069] S3. Place the operating table 8 and the wire feeding rack 3 onto the second beam 52.

[0070] S4. Move the first turntable 2 to the right onto the second beam 52, then remove the first beam 51 and the third beam 53 from the second beam 52 and place them on the second beam 52.

[0071] S5. After securing the above-mentioned functional mechanisms with cable ties, the left side panel 101, right side panel 102, front side panel 103 and rear side panel 104 of the container 100 are all driven to close by the corresponding traction mechanism 107, and can then be transported to the next project.

[0072] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. A containerized steel cage production line, characterized in that, include: A container (100) having an open top, the container (100) including a bottom plate (105), a left side plate (101) pivotally connected to the left side of the bottom plate (105), a right side plate (102) pivotally connected to the right side of the bottom plate (105), a front side plate (103) pivotally connected to the front side of the bottom plate (105), and a rear side plate (104) pivotally connected to the rear side of the bottom plate (105); A steel cage production equipment is installed on the base plate (105).

2. The containerized steel cage production line according to claim 1, characterized in that, The steel cage production equipment includes a first turntable (2), a second turntable (6), and a bottom beam (5). The bottom beam (5) is fixedly installed on the bottom plate (105) and extends along the length direction of the bottom plate (105). The first turntable (2) and the second turntable (6) are movably installed on the bottom beam (5) at intervals along the length direction of the bottom beam (5), and both the first turntable (2) and the second turntable (6) can rotate around their own axes.

3. The containerized steel cage production line according to claim 2, characterized in that, The steel cage production equipment also includes a cage support mechanism (4), which is mounted on the bottom beam (5) and can extend or retract from the bottom beam (5).

4. The containerized steel cage production line according to claim 2, characterized in that, The bottom beam (5) includes a first beam (51), a second beam (52) and a third beam (53). The length of the second beam (52) is not greater than the length of the container (100). The first beam (51) and the third beam (53) are detachably connected to both ends of the length of the second beam (52).

5. The containerized steel cage production line according to claim 4, characterized in that, When the left side plate (101) and the right side plate (102) are in the same plane as the bottom plate (105), the first beam (51) can be laid on the left side plate (101) and the third beam (53) can be laid on the right side plate (102).

6. The containerized steel cage production line according to claim 2, characterized in that, A chain is fixed on the bottom beam (5). Both the first turntable (2) and the second turntable (6) are provided with sprockets that mesh with the chain. The sprockets are connected to a second driving member, which is used to drive the sprockets to rotate.

7. The containerized steel cage production line according to claim 6, characterized in that, Limit switches (10) are provided on the first turntable (2) and / or the second turntable (6), and the limit switches (10) are connected to the second drive unit.

8. The containerized steel cage production line according to any one of claims 2-7, characterized in that, The steel cage production equipment also includes a reinforcement rack (1), which includes a reinforcement plate (11) and a reinforcement frame (12). Multiple reinforcement frames (12) are arranged in a one-to-one correspondence with multiple reinforcement plates (11). The reinforcement plate (11) is rotatably mounted on the reinforcement frame (12) and connected to the first turntable (2). Adjacent reinforcement frames (12) are connected by connecting square tubes (14).

9. The containerized steel cage production line according to any one of claims 1-7, characterized in that, The container (100) also includes a traction mechanism (107) for driving the corresponding left side plate (101), right side plate (102), front side plate (103) and rear side plate (104) to rotate relative to the bottom plate (105).

10. The containerized steel cage production line according to claim 9, characterized in that, The container (100) also includes a left frame (106) and a right frame (109). The left frame (106) is vertically disposed on the left side of the bottom plate (105), and the right frame (109) is vertically disposed on the right side of the bottom plate (105). The traction mechanism (107) includes a traction rope, a reversing wheel, a third drive member, and a rotating roller. The reversing wheel is disposed on the top of the left frame (106) or the right frame (109). One end of the traction rope is connected to one of the front side plate (103), the rear side plate (104), the left side plate (101), and the right side plate (102), and the other end is wrapped around the reversing wheel and mounted on the rotating roller. The third drive member is connected to the rotating roller to drive the rotating roller to rotate.

Citation Information

Patent Citations

  • Extensible bar distributing structure of molding machine of reinforcement cage

    CN202367123U