Efficient auxiliary equipment for bending reinforcing steel bars
By designing efficient steel bar bending auxiliary equipment and utilizing the lifting mechanism and limiting structure, the delivery and limiting of steel bars one by one are realized, which solves the problem of high operation intensity in the existing technology and improves the convenience and efficiency of operation.
Patent Information
- Application Number
- CN202422817607.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-18
AI Technical Summary
In the prior art, the operation intensity is high, and the operation intensity of the steel bar bending machine is high, especially because the operation of the steel bar bending machine is complicated and inefficient, and the operation intensity of the workers is high.
An efficient auxiliary equipment for steel bar bending is designed, including an incoming material inclined plate, a unloading material inclined plate, a fixed bracket, a movable bracket, a lifting mechanism, etc. The lifting mechanism controls the lifting and lowering of the movable bracket and the movable plate to realize the delivery and positioning of each steel bar, reducing the need for manual alignment and multiple bending.
It improves the convenience of steel bar bending operation, reduces the operating intensity of workers, and improves the efficiency and safety of steel bar bending.
Smart Images

Figure CN223352786U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of steel bar bending, and relates to a high-efficiency auxiliary equipment for steel bar bending. Background Art
[0002] Rebar refers to steel used in reinforced concrete and prestressed concrete. Its cross-section is round, or sometimes square with rounded corners. It includes plain round bars, ribbed bars, and twisted bars. Rebar for reinforced concrete refers to the straight or coiled steel used for concrete reinforcement. It comes in two shapes: plain round bars and deformed bars, and is delivered in either straight bars or coils.
[0003] During construction, long rebar is often cut to the required lengths and then bent into desired shapes, such as U-shaped or ring-shaped, using a bending machine. A typical rebar bending machine consists of a horizontal working disc that rotates on a vertical axis. The working disc has a fixed column in the middle and movable columns on the sides that can be adjusted. The rebar is clamped between the movable column and the fixed column during bending. A baffle on the outside of the rebar prevents it from swinging. The working disc then drives the movable column to swing, bending the rebar. Furthermore, for shorter rebar, workers may align the ends of multiple rebars at once to improve efficiency and then place them simultaneously between the movable and fixed columns. While this method improves efficiency, it requires workers to first align the ends of the columns and then arrange them vertically between the movable and fixed columns. Even with shorter rebar, the weight is substantial, so the actual operation is often quite demanding. Utility Model Content
[0004] The purpose of the utility model is to provide an efficient auxiliary device for bending steel bars, aiming to solve the problem of high operation intensity.
[0005] In order to solve the above technical problems, the utility model provides an efficient auxiliary equipment for steel bar bending, comprising:
[0006] An incoming material inclined plate, wherein the incoming material inclined plate is inclined;
[0007] A material discharge inclined plate, the material discharge inclined plate is inclined, and a fall prevention body is provided on the top of the downstream end of the material discharge inclined plate;
[0008] A fixed bracket, wherein a plurality of fixed plates are vertically arranged on the fixed bracket, all of the fixed plates are spaced apart, and the top of the fixed plate located upstream is lower than the top of the fixed plate located downstream, and the tops of the fixed plates are all inclined;
[0009] and a plurality of movable plates, each of which is vertically arranged on the movable bracket, and each of which is spaced apart and has a top portion of the movable plate located upstream and downstream and is lower than the top portion of the movable plate located downstream, and each of the movable plates is inclined, and the inclination directions of the incoming material inclined plate, the unloading material inclined plate, the top portion of the fixed plate and the top portion of the movable plate are all the same, and the number of the movable plates is equal to the number of the fixed plates, and the movable plates are staggered and the adjacent fixed plates are movably fitted with the movable plates, and the movable plates located at the upstream end and the downstream end of the incoming material inclined plate are fitted with or have a set gap, and the top portion of the fixed plate located at the downstream end is higher than the upstream end of the unloading material inclined plate, and the fixed plate is fixedly connected to the unloading material inclined plate, when the movable bracket is at the lowest height, the movable plate is used to receive the steel bars on the incoming material inclined plate or the adjacent fixed plate, and when the movable bracket is at the highest height, the movable plate is used to deliver the steel bars to the adjacent fixed plate or the unloading material inclined plate;
[0010] A lifting mechanism is used to control the movable bracket to move up and down.
[0011] The present invention is further configured as follows: the lifting mechanism includes two lifting frames arranged opposite to each other, a lifting rod is arranged horizontally and rotatably between the two lifting frames, one of the lifting frames is provided with a motor for driving the lifting rod to rotate, a plurality of disc-shaped driving disks are provided on the lifting rod, and the connection between the lifting rod and the driving disk is separated from the center of the driving disk, a transmission member is rotatably sleeved on the outer wall of the driving disk, a lifting part is vertically provided at the bottom of the movable plate, and the top of the transmission member is hinged to the bottom of the lifting part.
[0012] The utility model is further configured such that limit plates are provided on the tops of both sides of the incoming material inclined plate.
[0013] The utility model is further configured such that the anti-fall body includes a connecting portion and an anti-fall portion vertically connected to the top of the downstream end of the connecting portion, the plane where the top of the connecting portion is located is coplanar with the plane where the top of the unloading inclined plate is located, and several anti-fall bodies are arranged at intervals.
[0014] The utility model is further configured such that guide members are provided on both sides of the top of the unloading inclined plate, the two guide members are in an eight-shaped shape with the openings facing the direction of the fixed plate, and an alignment member is provided at the bottom of the guide member, the two alignment members are parallel, all the anti-fall bodies are located between the two alignment members, and the two ends of the steel bars located on the anti-fall bodies abut against the two alignment members.
[0015] The utility model is further configured such that a plurality of blocking holes and drop holes are vertically opened through the unloading inclined plate, a plurality of the blocking holes and the drop holes are opened, the plurality of the blocking holes and the plurality of the drop holes are respectively distributed in a row, and the blocking holes are located upstream of the drop holes;
[0016] Also included are:
[0017] A blocking plate and a drop plate, wherein each blocking hole is provided with a blocking plate for vertical movement, and each drop hole is provided with a drop plate for vertical movement;
[0018] A first driving mechanism and a second driving mechanism, wherein the first driving mechanism is used to control the blocking plate to be lifted and lowered, and the second driving mechanism is used to control the dropping plate to be lifted and lowered.
[0019] The utility model is further configured such that the first driving mechanism includes a horizontal support plate, two dovetail-shaped or T-shaped guide grooves are horizontally opened on the top of the support plate, a horizontal driving plate is provided on the top of the support plate, a linkage plate and a guide bar matched with the guide groove are provided at the bottom of the driving plate, a long strip-shaped clearance hole is vertically opened through the support plate, the linkage plate movably passes through the clearance hole, and a driving cylinder for driving the linkage plate is provided at the bottom of the support plate;
[0020] A first support rod is vertically arranged on the top of the driving plate, and a first driving rod is obliquely arranged on the top of the first support rod. The first driving rod moves through the blocking plate, and the outer wall of the first driving rod moves and fits the blocking plate. The blocking plate is higher than the driving plate.
[0021] The present invention is further configured such that the second driving mechanism includes a second support rod vertically arranged on the top of the driving plate, a second driving rod is obliquely arranged on the top of the second support rod, the second driving rod moves through the drop plate, and the outer wall of the second driving rod movesably fits the drop plate, the inclination directions of the first driving rod and the second driving rod are opposite, and the drop plate is higher than the driving plate.
[0022] The present invention is further configured such that the first driving rod and the second driving rod are located between the first support rod and the second support rod, and the bottom of the first driving rod is connected to the bottom of the second driving rod;
[0023] The blocking plate is provided with a long first stabilizing cylinder, the dropping plate is provided with a long second stabilizing cylinder, the outer wall of the first driving rod is movably fitted to the inner wall of the first stabilizing cylinder, and the outer wall of the second driving rod is movably fitted to the inner wall of the second stabilizing cylinder.
[0024] The utility model is further configured to include an auxiliary frame and an auxiliary plate horizontally arranged on the top of the auxiliary frame, and a plurality of auxiliary tubes are vertically arranged on the auxiliary plate. The middle part of each of the blocking plates and the middle part of the dropping plate are movably fitted on the inner wall of one of the auxiliary tubes, and the top of the dropping plate is inclined, and the inclination direction of the top of the dropping plate is the same as the inclination direction of the unloading inclined plate.
[0025] Compared with the prior art, the present invention provides an efficient auxiliary equipment for steel bar bending. First, the steel bars are placed on the incoming material inclined plate to wait for bending processing, and the steel bars at the downstream end of the incoming material inclined plate abut against the upstream side of the movable plate at the upstream end. Then, during bending, the lifting mechanism first lowers the movable bracket and all the movable plates. After the movable plate on the upstream side descends, one (or several) steel bars are raised. However, due to the small width of the movable plate (slightly greater than, equal to, or slightly less than the diameter of a steel bar), only one steel bar can be raised by the movable plate on the upstream side, and the downstream side of the steel bar is in contact with the fixed plate on the upstream side during the raising process. When the movable plate is raised to a level higher than the adjacent fixed plate, the raised steel bar slides to the top of the adjacent fixed plate under the guidance of gravity and the top of the movable plate and the fixed plate. At the same time, the side of the steel bar is limited by the side of the second movable plate.
[0026] Afterwards, the movable bracket and the movable plate are lowered. When the top of the second movable plate is lower than the top of the first fixed plate, the steel bar moves from the first fixed plate to the second movable plate; then when the movable bracket and the movable plate are raised again, the first movable plate sends another steel bar to the first fixed plate, and the second movable plate sends the steel bar on its top to the second fixed plate. In this way, the movable bracket and the movable plate are lifted and lowered back and forth, and the steel bars on the incoming material inclined plate can be sent downstream one by one, and finally fall one by one to the top of the unloading inclined plate, and move downstream along the upper side of the unloading inclined plate.
[0027] The anti-drop body at the bottom of the unloading ramp acts as a limiter for the rebar, allowing it to be placed one by one on the incoming ramp. When bending the rebar, workers can simply remove the required number of rebars from the anti-drop body. Furthermore, because the rebars are already placed one by one on the anti-drop body, workers no longer need to manually arrange the rebar vertically and then bend multiple rebars at once, making the operation more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a structural diagram of the utility model;
[0029] Figure 2 yes Figure 1 Enlarged view of part A;
[0030] Figure 3 yes Figure 1 Enlarged view of part B;
[0031] Figure 4 It is a cross-sectional view of the utility model;
[0032] Figure 5 yes Figure 4 Enlarged view of part C;
[0033] Figure 6 yes Figure 4 Enlarged view of part D in the middle;
[0034] Figure 7 It is a schematic diagram of the drive plate in the utility model;
[0035] Figure 8 It is a schematic diagram of the fixing bracket and the fixing plate in the utility model;
[0036] Figure 9 It is a schematic diagram of the movable bracket and the movable plate in the utility model.
[0037] Among them, 1. Incoming material inclined plate; 2. Unloading material inclined plate; 3. Anti-falling body; 3a. Connecting part 3b. Anti-falling part; 4. Fixed bracket; 5. Fixed plate; 6. Movable bracket; 7. Movable plate; 8. Lifting frame; 9. Lifting rod; 10. Motor; 11. Drive disk 12. Transmission part; 13. Lifting part 14. Limiting plate; 15. Guide part; 16. Alignment part; 17. Blocking plate; 18. Dropping plate; 19. Support plate; 20. Drive plate; 21. Linkage plate 22. Guide bar; 23. Make way hole 24. Drive cylinder 25. First support rod 26. First drive rod 27. Second support rod; 28. Second drive rod 29. First stabilizing cylinder; 30. Second stabilizing cylinder; 31. Auxiliary frame 32. Auxiliary plate; 33. Auxiliary cylinder. DETAILED DESCRIPTION
[0038] The following is a detailed description of the efficient rebar bending auxiliary equipment proposed by the present invention, combined with the accompanying drawings and specific embodiments. The advantages and features of the present invention will become more apparent from the following description. It should be noted that the drawings are highly simplified and not to exact scale, and are intended solely to facilitate and clearly illustrate the embodiments of the present invention. Identical or similar reference numerals in the drawings represent identical or similar components.
[0039] An efficient auxiliary equipment for steel bar bending, such as Figures 1 to 9 Shown, including:
[0040] An incoming material inclined plate 1, wherein the incoming material inclined plate 1 is inclined;
[0041] A material discharge inclined plate 2, the material discharge inclined plate 2 is inclined, and a fall prevention body 3 is provided on the top of the downstream end of the material discharge inclined plate 2;
[0042] A fixed bracket 4, wherein a plurality of fixed plates 5 are vertically arranged on the fixed bracket 4, wherein all the fixed plates 5 are spaced apart, and the top of the fixed plate 5 located upstream is lower than the top of the fixed plate 5 located downstream, and the tops of the fixed plates 5 are all inclined;
[0043] The movable bracket 6 has a plurality of movable plates 7 vertically arranged on the movable bracket 6. All the movable plates 7 are spaced apart, and the top of the movable plate 7 located upstream is lower than the top of the movable plate 7 located downstream. The tops of the movable plates 7 are all inclined. The inclination directions of the incoming inclined plate 1, the unloading inclined plate 2, the top of the fixed plate 5 and the top of the movable plate 7 are all the same. The number of the movable plates 7 is equal to the number of the fixed plates 5. The movable plates 7 and the fixed plates 5 are staggered, and the adjacent fixed plates 5 and the movable plates are staggered. The movable plate 7 is movably fitted, and the movable plate 7 located at the upstream end is fitted with the downstream end of the incoming material inclined plate 1 or has a set gap. The top of the fixed plate 5 located at the downstream end is higher than the upstream end of the unloading inclined plate 2, and the fixed plate 5 is fixedly connected to the unloading inclined plate 2. When the movable bracket 6 is at the lowest height, the movable plate 7 is used to receive the steel bars on the incoming material inclined plate 1 or the adjacent fixed plate 5. When the movable bracket 6 is at the highest height, the movable plate 7 is used to deliver the steel bars to the adjacent fixed plate 5 or the unloading inclined plate 2.
[0044] The lifting mechanism is used to control the movable bracket 6 to move up and down.
[0045] The lifting mechanism includes two lifting frames 8 arranged opposite to each other, and a lifting rod 9 is horizontally rotatably arranged between the two lifting frames 8. A motor 10 for driving the lifting rod 9 to rotate is provided on one of the lifting frames 8. A plurality of disc-shaped driving disks 11 are provided on the lifting rod 9, and the connection between the lifting rod 9 and the driving disk 11 is separated from the center of the driving disk 11. A transmission member 12 is rotatably sleeved on the outer wall of the driving disk 11, and a lifting part 13 is vertically provided at the bottom of the movable plate 7. The top of the transmission member 12 is hinged to the bottom of the lifting part 13.
[0046] Limiting plates 14 are provided on the tops of both sides of the incoming material inclined plate 1 .
[0047] The anti-fall body 3 includes a connecting portion 3a and an anti-fall portion 3b vertically connected to the top of the downstream end of the connecting portion 3a. The plane where the top of the connecting portion 3a is located is coplanar with the plane where the top of the unloading inclined plate 2 is located. Several anti-fall bodies 3 are arranged at intervals.
[0048] Guide members 15 are provided on both sides of the top of the unloading inclined plate 2. The two guide members 15 are in an eight-shaped shape with the opening facing the fixed plate 5. An alignment member 16 is provided at the bottom of the guide member 15. The two alignment members 16 are parallel. All the anti-fall bodies 3 are located between the two alignment members 16, and the two ends of the steel bars on the anti-fall bodies 3 are in contact with the two alignment members 16.
[0049] A plurality of blocking holes and drop holes are vertically opened through the unloading inclined plate 2, and a plurality of the blocking holes and the drop holes are opened. The plurality of the blocking holes and the plurality of the drop holes are respectively distributed in a row, and the blocking holes are located upstream of the drop holes;
[0050] Also included are:
[0051] A blocking plate 17 and a drop plate 18 are provided in each blocking hole so as to be vertically movable. A drop plate 18 is provided in each drop hole so as to be vertically movable.
[0052] The first driving mechanism and the second driving mechanism are used to control the blocking plate 17 to move up and down, and the second driving mechanism is used to control the dropping plate 18 to move up and down.
[0053] The first driving mechanism includes a horizontal support plate 19, with two dovetail-shaped or T-shaped guide grooves horizontally opened on the top of the support plate 19, a horizontal driving plate 20 is provided on the top of the support plate 19, a linkage plate 21 and a guide bar 22 that cooperates with the guide grooves are provided at the bottom of the driving plate 20, a long strip-shaped clearance hole 23 is vertically opened through the support plate 19, the linkage plate 21 moves through the clearance hole 23, and a driving cylinder 24 for driving the linkage plate 21 is provided at the bottom of the support plate 19;
[0054] A first support rod 25 is vertically provided on the top of the driving plate 20, and a first driving rod 26 is obliquely provided on the top of the first support rod 25. The first driving rod 26 moves through the blocking plate 17, and the outer wall of the first driving rod 26 moves to fit the blocking plate 17. The blocking plate 17 is higher than the driving plate 20.
[0055] The second driving mechanism includes a second support rod 27 vertically arranged on the top of the driving plate 20, and a second driving rod 28 is obliquely arranged on the top of the second support rod 27. The second driving rod 28 moves through the drop plate 18, and the outer wall of the second driving rod 28 moves to fit the drop plate 18. The inclination directions of the first driving rod 26 and the second driving rod 28 are opposite, and the drop plate 18 is higher than the driving plate 20.
[0056] The first driving rod 26 and the second driving rod 28 are located between the first support rod 25 and the second support rod 27, and the bottom of the first driving rod 26 is connected to the bottom of the second driving rod 28;
[0057] The blocking plate 17 is provided with a long first stabilizing cylinder 29, and the dropping plate 18 is provided with a long second stabilizing cylinder 30. The outer wall of the first driving rod 26 is movably fitted to the inner wall of the first stabilizing cylinder 29, and the outer wall of the second driving rod 28 is movably fitted to the inner wall of the second stabilizing cylinder 30.
[0058] It also includes an auxiliary frame 31 and an auxiliary plate 32 horizontally arranged on the top of the auxiliary frame 31. Several auxiliary cylinders 33 are vertically arranged on the auxiliary plate 32. The middle part of each of the blocking plates 17 and the middle part of the dropping plate 18 are movably fitted to the inner wall of the auxiliary cylinder 33. The top of the dropping plate 18 is inclined, and the inclination direction of the top of the dropping plate 18 is the same as the inclination direction of the unloading inclined plate 2.
[0059] The utility model provides an efficient auxiliary equipment for steel bar bending. First, the steel bars are placed on the incoming material inclined plate 1 to wait for bending processing, and the steel bars at the downstream end of the incoming material inclined plate 1 are in contact with the upstream side of the movable plate 7 at the upstream end. Then, during bending, the lifting mechanism first lowers the movable bracket 6 and all the movable plates 7. After the movable plate 7 on the upstream side descends, one (or several) steel bars are raised. However, due to the small width of the movable plate 7 (slightly greater than, equal to, or slightly less than the diameter of a steel bar), only one steel bar can be raised by the movable plate 7 on the upstream side, and the downstream side of the steel bar is in contact with the fixed plate 5 on the upstream side during the raising process. When the movable plate 7 is raised to a level higher than the adjacent fixed plate 5, the raised steel bar slides to the top of the adjacent fixed plate 5 under the guidance of gravity and the top of the movable plate 7 and the fixed plate 5. At the same time, the side of the steel bar is limited by the side of the second movable plate 7.
[0060] Afterwards, the movable bracket 6 and the movable plate 7 are both lowered. When the top of the second movable plate 7 is lower than the top of the first fixed plate 5, the steel bar moves from the first fixed plate 5 to the second movable plate 7; then when the movable bracket 6 and the movable plate 7 are raised again, the first movable plate 7 sends another steel bar to the first fixed plate 5, and the second movable plate 7 sends the steel bar on its top to the second fixed plate 5. In this way, the movable bracket 6 and the movable plate 7 rise and fall back and forth, and the steel bars on the incoming material inclined plate 1 can be sent downstream one by one, and finally fall one by one to the top of the unloading inclined plate 2, and move downstream along the upper side of the unloading inclined plate 2.
[0061] The anti-drop body 3 at the bottom of the unloading ramp 2 can limit the position of the steel bars, so that the steel bars can be placed one by one on the incoming ramp 1. When bending the steel bars, workers can directly remove the required number of steel bars from the anti-drop body 3. At the same time, because the steel bars on the anti-drop body 3 are already placed one by one, there is no need for workers to manually arrange the steel bars vertically and then bend multiple bars at once, which makes the operation more convenient.
[0062] When the steel bars move on the incoming inclined plate 1, both ends of the steel bars are also limited by the limiting plates 14, thereby ensuring the movement stability of the steel bars; at the same time, it is preferred that the length of the steel bars is slightly shorter than the distance between the two limiting plates 14, so that the movement of the steel bars can be more convenient, and angle deviation will not or will occur less frequently.
[0063] The motor 10 drives the lifting rod 9 to rotate, and at the same time, the lifting rod 9 drives all the driving disks 11 to rotate. The connection between the driving disk 11 and the lifting cylinder is not the center position of the lifting disk, so the driving disk 11 rotates eccentrically. At the same time, it is connected to the transmission member 12 for rotation, and the top of the transmission member 12 is hinged to the lifting part 13. Therefore, when the lifting rod 9 rotates, it can drive the movable bracket 6 to perform lifting activities through the driving disk 11, the transmission member 12 and the lifting part 13.
[0064] As the rebar rolls down the unloading ramp 2, its sides are sequentially acted upon by the guide members 15 and alignment members 16, ultimately ensuring that both ends of the rebar contact the alignment members 16. This eliminates the need for workers to manually align the rebar, making operation more convenient. Furthermore, because the anti-fall bodies 3 are spaced apart, workers can use their hands to remove the rebar from the anti-fall bodies 3 through the spaces between them, further facilitating operation.
[0065] Moreover, during actual operation, the driving cylinder 24 (preferably a pneumatic cylinder, or a conventional structure such as an electric push rod) reciprocates to drive the linkage plate 21 and the driving plate 20 to move, and the driving plate 20 can drive the blocking plate 17 and the drop plate 18 to move up and down through the first driving rod 26 and the second driving rod 28; moreover, when the height of the blocking plate 17 is at the lowest height, the top of the blocking plate 17 is at the same height as the blanking inclined plate 2, and the drop plate 18 is at the highest height, and the steel bars at the upstream end of the drop plate 18 are all limited by the drop plate 18. Then, when the number of steel bars is large enough (covering the blocking plate 17), the driving plate 20 moves again, and at this time, the blocking plate 17 is first raised, and the steel bars on the upstream side of the blocking plate 17 can be blocked by the blocking plate 17; then at a certain time point, the blocking plate 17 is raised to the highest height, and the drop plate 18 is lowered to the lowest height, and the top is at the same height as the blanking plate. At this time, the steel bars between the blocking plate 17 and the falling plate 18 can move downward onto the anti-fall body 3 and be taken away by the workers.
[0066] The number of steel bars between the blocking plate 17 and the drop plate 18 is fixed, for example, five. Each time the driving plate 20 moves in a cycle, five steel bars naturally move downward onto the anti-fall body 3, eliminating the need for workers to count the bars before taking them. Furthermore, each time a fixed number of steel bars are taken from the anti-fall body 3, excess steel bars are prevented from becoming obstructive (for example, if only five bars are needed and there are seven bars above the anti-fall body 3, the worker needs to push two bars upward before taking out five bars), making operation more convenient. Furthermore, because the top of the blocking plate 17 is pointed (or tilted), it is easier to insert the blocking plate 17 between two adjacent steel bars without having to drive the bars upward for movement, requiring less power and causing less wear on the equipment.
[0067] The above description is only a description of the preferred embodiment of the present invention and does not limit the scope of the present invention. Any changes and modifications made by ordinary technicians in the field of the present invention based on the above disclosure shall fall within the scope of protection of the claims.
Claims
1. An efficient auxiliary equipment for steel bar bending, characterized in that: include: An incoming material inclined plate (1), wherein the incoming material inclined plate (1) is inclined; A material discharging inclined plate (2), wherein the material discharging inclined plate (2) is inclined, and a fall prevention body (3) is provided at the top of the downstream end of the material discharging inclined plate (2); A fixed bracket (4), wherein a plurality of fixed plates (5) are vertically arranged on the fixed bracket (4), all the fixed plates (5) are spaced apart, and the top of the fixed plate (5) located upstream is lower than the top of the fixed plate (5) located downstream, and the tops of the fixed plates (5) are all inclined; A movable bracket (6), wherein a plurality of movable plates (7) are vertically arranged on the movable bracket (6), all of the movable plates (7) are in a spaced-apart shape, and the top of the movable plate (7) located upstream is lower than the top of the movable plate (7) located downstream, and the tops of the movable plates (7) are all inclined, and the inclination directions of the incoming material inclined plate (1), the unloading material inclined plate (2), the top of the fixed plate (5) and the top of the movable plate (7) are all the same, the number of the movable plates (7) is equal to the number of the fixed plates (5), the movable plates (7) and the fixed plates (5) are staggered, and the adjacent fixed plates (5) and the The movable plate (7) is movably fitted, and the movable plate (7) located at the upstream end is fitted with the downstream end of the incoming material inclined plate (1) or has a set gap, the top of the fixed plate (5) located at the downstream end is higher than the upstream end of the unloading inclined plate (2), and the fixed plate (5) is fixedly connected to the unloading inclined plate (2), when the movable bracket (6) is at the lowest height, the movable plate (7) is used to receive the steel bars on the incoming material inclined plate (1) or the adjacent fixed plate (5), and when the movable bracket (6) is at the highest height, the movable plate (7) is used to deliver the steel bars to the adjacent fixed plate (5) or the unloading inclined plate (2); A lifting mechanism is provided, wherein the lifting mechanism is used to control the movable bracket (6) to move up and down.
2. The high-efficiency steel bar bending auxiliary equipment according to claim 1, characterized in that: The lifting mechanism comprises two lifting frames (8) arranged opposite to each other, a lifting rod (9) being arranged horizontally and rotatably between the two lifting frames (8), a motor (10) being arranged on one of the lifting frames (8) for driving the lifting rod (9) to rotate, a plurality of disc-shaped driving disks (11) being arranged on the lifting rod (9), and a connection point between the lifting rod (9) and the driving disk (11) and a center of the driving disk (11) being separated, a transmission member (12) being rotatably sleeved on the outer wall of the driving disk (11), a lifting portion (13) being vertically arranged on the bottom of the movable plate (7), and a top of the transmission member (12) being hinged to the bottom of the lifting portion (13).
3. The high-efficiency steel bar bending auxiliary equipment according to claim 1 or 2, characterized in that: Limiting plates (14) are provided on the tops of both sides of the incoming material inclined plate (1).
4. The high-efficiency steel bar bending auxiliary equipment according to claim 1 or 2, characterized in that: The anti-fall body (3) comprises a connecting portion (3a) and an anti-fall portion (3b) vertically connected to the top of the downstream end of the connecting portion (3a); the plane where the top of the connecting portion (3a) is located is coplanar with the plane where the top of the unloading inclined plate (2) is located; and a plurality of anti-fall bodies (3) are arranged at intervals.
5. The high-efficiency steel bar bending auxiliary equipment according to claim 4, characterized in that: Guide members (15) are provided on both sides of the top of the blanking inclined plate (2), and the two guide members (15) are in an eight-shaped shape with the opening facing the direction of the fixed plate (5). An alignment member (16) is provided at the bottom of the guide member (15), and the two alignment members (16) are parallel. All the anti-fall bodies (3) are located between the two alignment members (16), and the two ends of the steel bars located on the anti-fall bodies (3) are in contact with the two alignment members (16).
6. The high-efficiency steel bar bending auxiliary equipment according to claim 1, characterized in that: A plurality of blocking holes and drop holes are vertically penetrated through the discharge inclined plate (2), and a plurality of the blocking holes and the drop holes are provided. The blocking holes and the drop holes are respectively distributed in a row, and the blocking holes are located upstream of the drop holes; Also included are: A blocking plate (17) and a drop plate (18), wherein each blocking hole is provided with a blocking plate (17) for vertical movement, and each drop hole is provided with a drop plate (18) for vertical movement; A first driving mechanism and a second driving mechanism, wherein the first driving mechanism is used to control the blocking plate (17) to be lifted and lowered, and the second driving mechanism is used to control the dropping plate (18) to be lifted and lowered.
7. The high-efficiency steel bar bending auxiliary equipment according to claim 6, characterized in that: The first driving mechanism comprises a horizontal support plate (19), two dovetail-shaped or T-shaped guide grooves are horizontally opened on the top of the support plate (19), a horizontal driving plate (20) is provided on the top of the support plate (19), a linkage plate (21) and a guide strip (22) matched with the guide groove are provided at the bottom of the driving plate (20), a long strip-shaped clearance hole (23) is vertically opened through the support plate (19), the linkage plate (21) moves through the clearance hole (23), and a driving cylinder (24) for driving the linkage plate (21) is provided at the bottom of the support plate (19); A first support rod (25) is vertically arranged on the top of the driving plate (20), and a first driving rod (26) is obliquely arranged on the top of the first support rod (25), the first driving rod (26) movably passes through the blocking plate (17), and the outer wall of the first driving rod (26) movably fits the blocking plate (17), and the blocking plate (17) is higher than the driving plate (20).
8. The high-efficiency steel bar bending auxiliary equipment according to claim 7, characterized in that: The second driving mechanism comprises a second support rod (27) vertically arranged on the top of the driving plate (20); a second driving rod (28) is obliquely arranged on the top of the second support rod (27); the second driving rod (28) moves through the drop plate (18), and the outer wall of the second driving rod (28) moves to fit the drop plate (18); the first driving rod (26) and the second driving rod (28) have opposite inclination directions, and the drop plate (18) is higher than the driving plate (20).
9. The high-efficiency steel bar bending auxiliary equipment according to claim 8, characterized in that: The first driving rod (26) and the second driving rod (28) are located between the first supporting rod (25) and the second supporting rod (27), and the bottom of the first driving rod (26) is connected to the bottom of the second driving rod (28); The blocking plate (17) is provided with a long first stabilizing cylinder (29), the dropping plate (18) is provided with a long second stabilizing cylinder (30), the outer wall of the first driving rod (26) is movably fitted to the inner wall of the first stabilizing cylinder (29), and the outer wall of the second driving rod (28) is movably fitted to the inner wall of the second stabilizing cylinder (30).
10. The high-efficiency steel bar bending auxiliary equipment according to claim 6, characterized in that: It also includes an auxiliary frame (31) and an auxiliary plate (32) horizontally arranged on the top of the auxiliary frame (31), and a plurality of auxiliary cylinders (33) are vertically arranged on the auxiliary plate (32). The middle part of each of the blocking plates (17) and the middle part of the drop plate (18) are movably fitted to the inner wall of an auxiliary cylinder (33), and the top of the drop plate (18) is inclined, and the inclination direction of the top of the drop plate (18) is the same as the inclination direction of the unloading inclined plate (2).