Continuous arc-shaped beam main reinforcement processing operation platform
By designing a continuous arc beam main reinforcement processing operation platform, and using sliding and rotating components combined with stepper motor drive, the arc and arc length of the arc beam main reinforcement can be flexibly adjusted, solving the problem of insufficient processing accuracy of arc beam reinforcement in traditional methods, and improving construction quality and efficiency.
Patent Information
- Application Number
- CN202310818747.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-30
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-06-30
AI Technical Summary
Traditional methods for processing steel bars in curved beams make it difficult to accurately adjust the curvature and length, resulting in poor construction quality and installation difficulties.
A continuous arc beam main reinforcement processing operation platform is designed, which adopts a sliding mechanism, a rotating component and a control mechanism. Driven by a stepper motor, it realizes flexible adjustment of arc and arc length, and combines clamping and blocking components to ensure bending accuracy.
It improved the processing accuracy and construction quality of the main reinforcement bars of the curved beam, reduced the consumption of manpower and material resources, and improved work efficiency.
Smart Images

Figure CN116833335B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of building operation platform, and particularly relates to a continuous arc-shaped beam main reinforcement processing operation platform. BACKGROUND
[0002] With the development of the construction industry, in order to make the lines smooth and beautiful, arc-shaped structures are used in a large part of buildings, and therefore various arc-shaped beams or continuous arc-shaped beams are used. In the process of pouring the continuous arc-shaped beam, the poor construction quality of the continuous arc-shaped beam reinforcement is a common problem, and the main reason is that the continuous arc-shaped beam is complex in stress, and in order to be safe, the design generally has large reinforcement, and the continuous arc-shaped beam generally has many reverse bending points and large curvature, so the reinforcement processing is very difficult. At the same time, the traditional method of processing the arc-shaped beam reinforcement is to use a reinforcement bending machine combined with manual processing, and there is a certain difficulty in adjusting the bending curvature, arc length, etc. of the continuous arc when the reinforcement is processed, which leads to large deviation of the processed reinforcement in installation and difficult installation, so as to be difficult to guarantee the construction quality of the continuous arc-shaped beam. Therefore, it is urgent to design a processing operation platform capable of flexibly processing the main reinforcement of the arc-shaped beam. SUMMARY
[0003] The present application aims to overcome the deficiencies in the prior art, and provides a continuous arc-shaped beam main reinforcement processing operation platform, which can flexibly adjust the curvature, arc length of the arc-shaped beam main reinforcement, and the distance between the continuous bending, and has multiple functions and strong applicability.
[0004] To achieve the above-mentioned purpose, the technical scheme adopted by the present application is to provide a continuous arc-shaped beam main reinforcement processing operation platform, comprising: a platform frame, the platform frame comprises a platform plate, two adjusting holes are provided in the platform plate in parallel along a first direction; two sliding mechanisms, the two sliding mechanisms are respectively arranged in the two adjusting holes, the two sliding mechanisms are symmetrically arranged, and each sliding mechanism can slide back and forth in the corresponding adjusting hole along the first direction; two moving mechanisms, the two moving mechanisms are respectively arranged on the two sliding mechanisms, and each moving mechanism can move back and forth on the corresponding sliding mechanism along a second direction; a rotating component, the rotating component comprises a first rotating component, a second rotating component and a third rotating component, the first rotating component and the second rotating component are respectively arranged on the two moving mechanisms, the third rotating component is arranged on the platform plate between the first rotating component and the second rotating component, and the heights of the first rotating component, the second rotating component and the third rotating component are consistent; a control mechanism, the control mechanism is arranged on the platform plate, and the control mechanism is connected with the two moving mechanisms.
[0005] Further, the platform frame further comprises a bottom plate, which is arranged in parallel to the lower part of the platform plate, and four universal wheels are arranged at the bottom surface of the bottom plate, and the platform plate and the bottom plate are connected by support rods.
[0006] Further, a first stepping motor is arranged on the bottom plate, the first stepping motor is connected with the control mechanism, and the first stepping motor is connected with the third rotating part; two second stepping motors are arranged on the two moving mechanisms, the two second stepping motors are connected with the control mechanism, and the two second stepping motors are connected with the first rotating part and the second rotating part respectively.
[0007] Further, each adjusting hole comprises a first side and a second side, the first side and the second side are arranged oppositely and extend along the first direction, a first sliding hole is arranged on the first side, and a second sliding hole is arranged on the second side, and the first sliding hole and the second sliding hole penetrate through the platform plate.
[0008] Further, each adjusting hole comprises a first side and a second side, the first side and the second side are arranged oppositely and extend along the first direction, a first sliding hole is arranged on the first side, and a second sliding hole is arranged on the second side, and the first sliding hole and the second sliding hole penetrate through the platform plate.
[0009] Further, each adjusting hole comprises a first side and a second side, the first side and the second side are arranged oppositely and extend along the first direction, a first sliding hole is arranged on the first side, and a second sliding hole is arranged on the second side, and the first sliding hole and the second sliding hole penetrate through the platform plate.
[0010] Further, the first rotating component, the second rotating component and the third rotating component each comprise a rotating disc, a clamping component and a blocking component, the rotating disc is provided with a reinforcing bar clamping groove on the circumferential side of the rotating disc, the reinforcing bar clamping groove extends along the circumference of the rotating disc, the clamping component is arranged on the top surface of the rotating disc, the top surface of the rotating disc is provided with a socket which is arranged opposite to the clamping component, the inner wall of the socket is a hexagonal structure, and the socket is used for inserting the blocking component.
[0011] Further, the clamping component comprises a positioning plate which is vertically arranged on the top surface of the rotating disc, two half circular plates which are arranged in parallel on one side of the positioning plate, a third screw rod which is vertically arranged between the two half circular plates, two ends of the third screw rod are rotationally connected with the two half circular plates respectively, and a rotating wheel is arranged on the top end of the third screw rod, a plurality of vertical rods are vertically arranged between the two half circular plates, and two ends of each vertical rod are connected with the two half circular plates respectively, a moving plate which is arranged between the two half circular plates in parallel, the moving plate comprises a lifting plate, a clamping ring and a clamping plate, the lifting plate is arranged on the inner side of the plurality of vertical rods and is threaded on the third screw rod, the clamping ring is arranged around the outer side of the plurality of vertical rods, two ends of the clamping plate are connected with the lifting plate and the clamping ring respectively, and a plurality of clamping plates are arranged between the plurality of vertical rods in a threaded manner.
[0012] Further, the blocking component comprises an insertion rod and a blocking wheel, the blocking wheel is arranged on the top of the insertion rod, and the cross section of the insertion rod is a hexagonal structure.
[0013] Further, the platform plate is provided with a limiting component at both ends in the first direction, the limiting component comprises two rotating shafts which are arranged in parallel in the second direction, the two rotating shafts are rotationally arranged on the platform plate, two rotating wheels are arranged on the top of the two rotating shafts in correspondence, and the heights of the two rotating wheels are consistent with the height of the blocking wheel.
[0014] Compared with the prior art, the present application has the following advantages:
[0015] 1、The sliding mechanism and the rotating component are used in cooperation, so that the main reinforcement can be bent by a large amplitude, and the bending radius of the main reinforcement and the distance between the continuous bending can be flexibly adjusted by changing the distance between the three rotating components in the first direction.
[0016] 2、The present application uses the moving mechanism and the rotating part in cooperation, changes the distance between the three rotating parts in the second direction, further adjusts the bending arc of the main reinforcement, and improves the flexibility of the bending arc adjustment of the main reinforcement.
[0017] 3、The present application sets the corresponding stepping motor for each rotating part, so that the first rotating part, the second rotating part and the third rotating part can be operated and used individually, the steel bar is bent, and the diversity of the operation platform function is improved.
[0018] 4、The present application sets the clamping part and the blocking part on each rotating part, changes the distance between the blocking part and the clamping part, cooperates with the use of the sliding mechanism and the moving mechanism, adjusts the arc length of the bending position of the main reinforcement, and the clamping part can clamp and fix the bent steel bar, avoids the sliding deviation during bending, and causes the bending angle to be inaccurate.
[0019] 5、The present application uses the control mechanism to control the operation of the moving mechanism and the stepping motor, the bending adjustment precision is high, the construction quality is improved, the work efficiency is high, and the manpower and material resources are saved.
[0020] The present application will be further described in detail below by means of the drawings and examples. DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a structural schematic view of the present application.
[0022] Figure 2 It is a structural schematic view of the platform plate of the present application.
[0023] Figure 3 It is an installation schematic view of the sliding mechanism and the moving mechanism of the present application.
[0024] Figure 4 It is a structural schematic view of the moving mechanism and the first stepping motor of the present application.
[0025] Figure 5 It is a structural schematic view of the rotating disc of the present application.
[0026] Figure 6 It is a structural schematic view of the clamping part of the present application.
[0027] Figure 7 It is a structural schematic view of the moving plate in the clamping mechanism of the present application.
[0028] Figure 8 It is a structural schematic view of the blocking part of the present application.
[0029] Explanation of reference signs:
[0030] 1 - bottom plate; 2 - support rod; 3 - platform plate;
[0031] 31 - adjustment hole; 32 - first sliding hole; 33 - second sliding hole;
[0032] 4 - sliding mechanism; 41 - I-beam; 42 - connecting rod;
[0033] 43 - U-shaped connecting plate; 44 - first lead screw; 45 - moving mechanism;
[0034] 451 - sliding plate; 452 - second stepper motor; 453 - U-shaped fixed plate;
[0035] 454 - L-shaped plate; 455 - support plate; 456 - driving motor;
[0036] 457 - second lead screw; 458 - sleeve hole; 46 - rotating rod;
[0037] 5 - first rotating part; 51 - rotating disc; 52 - rib groove;
[0038] 53 - insertion hole; 6 - clamping part; 61 - positioning plate;
[0039] 62 - semicircular plate; 63 - vertical rod; 64 - clamping plate;
[0040] 65 - lifting plate; 67 - clamping ring; 68 - rotating wheel;
[0041] 7 - blocking part; 71 - insertion rod; 72 - blocking wheel;
[0042] 8 - second rotating part; 9 - third rotating part; 10 - first stepper motor;
[0043] 11 - rotating shaft; 12 - universal wheel; 13 - rotating shaft;
[0044] 14 - rotating wheel. DETAILED DESCRIPTION
[0045] Embodiments of the present application will be described in more detail with reference to the drawings. Although certain embodiments of the present application will be shown in the drawings, it is understood that the present application can be embodied in various forms and should not be interpreted in a limiting sense from the embodiments set forth herein. Rather, these embodiments are provided so that the present application will be thoroughly and completely understood. It should be understood that the drawings and embodiments of the present application are for illustrative purposes only and are not intended to limit the scope of the present application.
[0046] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.
[0047] AsFigures 1-8 The continuous arc-shaped beam main reinforcement processing operation platform shown in the embodiment comprises a platform frame, two sliding mechanisms 4, two moving mechanisms 45, a rotating part and a control mechanism 15. Specifically, the platform frame comprises a platform plate 3, two adjusting holes 31 are arranged in parallel on the plane of the platform plate 3 along a first direction, two sliding mechanisms 4 are arranged in the adjusting holes 31 respectively, the two sliding mechanisms 4 are arranged symmetrically, and each sliding mechanism 4 can slide back and forth in the corresponding adjusting hole 31 along the first direction. Two moving mechanisms 45 are arranged on the two sliding mechanisms 4 respectively, and each moving mechanism 45 can move back and forth on the corresponding sliding mechanism 4 along a second direction. The rotating part comprises a first rotating part 5, a second rotating part 8 and a third rotating part 9, the first rotating part 5 and the second rotating part 8 are arranged on the two moving mechanisms 45 respectively, the third rotating part 9 is arranged on the platform plate 3 between the first rotating part 5 and the second rotating part 8, and the heights of the first rotating part 5, the second rotating part 8 and the third rotating part 9 are consistent. The control mechanism 15 is arranged on the platform plate 3, the control mechanism 15 is a controller, and the control mechanism 15 is connected with the two moving mechanisms 45 respectively.
[0048] The first direction refers to the length direction of the platform plate 3, and the second direction intersects the first direction perpendicularly in the horizontal plane, and in the embodiment, the second direction is the width direction of the platform plate 3.
[0049] In the embodiment, the platform frame further comprises a bottom plate 1, which is arranged in parallel at the lower part of the platform plate 3, for the convenience of moving the whole operation platform, universal wheels 12 are arranged at the bottom corners of the bottom plate 1 respectively, the platform plate 3 and the bottom plate 1 are connected through support rods 2, the number of the support rods 2 is four, one end of each of the four support rods 2 is arranged at the bottom corners of the platform plate 3 respectively, and the other end of each of the four support rods 2 is arranged at the top corners of the bottom plate 1 respectively.
[0050] In the embodiment, the bottom plate 1 is provided with a first stepping motor 10, an input end of the first stepping motor 10 is electrically connected with an output end of the control mechanism 15, the first stepping motor 10 is connected with the third rotating part 9, a rotating shaft 11 is fixedly arranged on an output shaft of the first stepping motor 10, the rotating shaft 11 penetrates through the platform plate 3 and is rotationally connected with the platform plate 3 through a bearing, the rotating shaft 11 is fixedly connected with the third rotating part 9, the control mechanism 15 controls rotation of the first stepping motor 10, the first stepping motor 10 drives the rotating shaft 11 to rotate and drives the third rotating part 9 to rotate. The two moving mechanisms are both provided with a second stepping motor 452, input ends of the two second stepping motors 452 are both electrically connected with the output end of the control mechanism 15, output shafts of the two second stepping motors 452 are respectively fixedly connected with the first rotating part 5 and the second rotating part 8, the first rotating part 5 and the second rotating part 8 are respectively driven to rotate by the two second stepping motors 452, the first rotating part 5 and the second rotating part 8 can be independently used by arranging corresponding stepping motors for the first rotating part 5 and the second rotating part 8, the diversity of the operation platform function is increased, and flexible use is facilitated.
[0051] In the embodiment, each of the adjusting holes 31 comprises a first side and a second side, the first side and the second side are oppositely arranged and both extend along the first direction, a first sliding hole 32 is arranged on the first side, and a second sliding hole 33 is arranged on the second side, the first sliding hole 32 and the second sliding hole 33 both penetrate through the platform plate 3.
[0052] In the embodiment, each of the adjusting holes 31 comprises a first side and a second side, the first side and the second side are oppositely arranged and both extend along the first direction, a first sliding hole 32 is arranged on the first side, and a second sliding hole 33 is arranged on the second side, the first sliding hole 32 and the second sliding hole 33 both penetrate through the platform plate 3.
[0053] The U-shaped connecting plate 43 is parallel to the connecting rod 42, and is arranged close to the end of the platform plate 3, and the two ends of the U-shaped connecting plate 43 are fixedly connected with one end of the two I-shaped plates 41 respectively; the middle part of the side surface of the platform plate 3 extending in the second direction is provided with a threaded hole, the first lead screw 44 is threaded through the threaded hole on the platform plate 3, one end of the first lead screw 44 is rotatably connected with the U-shaped connecting plate 43 through a bearing, and the other end of the first lead screw 44 is provided with a rotating rod 46. Rotating the rotating rod 46, the rotating rod 46 drives the first lead screw 44 to rotate, the first lead screw 44 moves in the threaded hole on the platform plate 3, the whole sliding mechanism 4 is pushed to move along the first sliding hole 32 and the second sliding hole 33 through the U-shaped connecting plate 43, so that the first rotating part 5 or the second rotating part 8 on the sliding mechanism 4 is moved, and then the distance between the first rotating part 5 and the third rotating part 9 or the distance between the second rotating part 8 and the third rotating part 9 is adjusted, so as to process the bending of the longer main reinforcement, and the distance between the continuous bendings can be adjusted.
[0054] In the embodiment, the two moving mechanisms 45 are centrally symmetrically arranged with the midpoint of the line connecting the two sliding mechanisms 4 as the center, and the two moving mechanisms 45 each include a sliding plate 451, a U-shaped fixed plate 453, an L-shaped plate 454 and a second lead screw 457, the side surface of the sliding plate 451 is provided with two sleeve holes 458, and the two sleeve holes 458 are sleeved on the two connecting rods 42 respectively; the U-shaped fixed plate 453 is fixedly arranged on the bottom surface of the sliding plate 451, the second stepper motor 452 is arranged in the U-shaped fixed plate 453, the output shaft of the second stepper motor 452 is movably threaded through the sliding plate 451, and the output shaft of the second stepper motor 452 in the two moving mechanisms 45 is fixedly connected with the first rotating part 5 and the second rotating part 8 respectively.
[0055] One side of the L-shaped plate 454 is arranged perpendicularly to the side plate of the U-shaped fixing plate 453, and a support plate 455 is sleeved on one side of the L-shaped plate 454, the number of the support plate 455 is two, and the top of the two support plates 455 is fixedly connected with the bottom edge of one of the I-shaped plates 41; one end of the second lead screw 457 is connected with the other side of the L-shaped plate 454, the other end of the lead screw 457 is rotatably connected with the sliding plate 451 through a bearing, the second lead screw 457 is threaded through the I-shaped plate 41 connected with the support plate 455, and the end, where the second lead screw 457 is connected with the L-shaped plate 454, is provided with a driving motor 456; the driving motor 456 is fixedly arranged on the other side of the L-shaped plate 454, the input end of the driving motor 456 is electrically connected with the output end of the control mechanism 15, and the driving motor 456 is a servo motor. The driving motor 456 is controlled to rotate through the control mechanism 15, so as to drive the second lead screw 457 to rotate, and since the I-shaped plate 41 threaded through by the second lead screw 457 is clamped in the first sliding hole 32 and cannot move, the second lead screw 457 can move along the I-shaped plate 41, so as to push the whole moving mechanism 45 to move back and forth along the two connecting rods 42, the second stepping motor 452 in the moving mechanism 45 moves synchronously, and the first rotating part 5 or the second rotating part 8 on the second stepping motor 452 moves synchronously, so as to adjust the bending radius of the main rib, and the arrangement of the moving mechanism 45 improves the flexibility of the bending radius adjustment of the main rib.
[0056] In the embodiment, the first rotating part 5, the second rotating part 8 and the third rotating part 9 all comprise a rotating disc 51, a clamping part 6 and a blocking part 7. Specifically, the rotating disc 51 of the first rotating part 5 is fixedly connected with the output shaft of one of the second stepping motors 452 at the bottom surface, the rotating disc 51 of the second rotating part 8 is fixedly connected with the output shaft of the other second stepping motor 452 at the bottom surface, and the rotating disc 51 of the third rotating part 9 is fixedly connected with the rotating shaft 11 at the bottom surface.
[0057] The circumferential side of the rotating disc 51 is provided with a reinforcing bar clamping groove 52 for placing reinforcing bars, the reinforcing bar clamping groove 52 extends along the circumference of the rotating disc 51, the clamping component 6 is arranged on the top surface of the rotating disc 51, the top surface of the rotating disc 51 is provided with a bushing 53 arranged opposite to the clamping component 6, the inner wall of the bushing 53 is a hexagonal structure, the bushing 53 is used for inserting the blocking component 7, the clamping component 6 and the blocking component 7 are used in cooperation for the bending treatment of the main reinforcing bar, and the distance between the clamping component 6 and the blocking component 7 is adjusted to adjust the arc length of the bending position of the main reinforcing bar. Specifically, the number of the bushing 53 is four, the four bushings 53 are arranged side by side, the line formed by connecting the four bushings 53 is perpendicular to the midpoint of the clamping component 6, and the inner wall of the bushing 53 is provided with a hexagonal structure to prevent the blocking component 7 from rotating when being inserted into the bushing 53. Thus, when the main reinforcing bar is bent, the bending treatment of the main reinforcing bar can be performed by relying on the torsional force of rotation.
[0058] In the embodiment, the clamping component 6 comprises a positioning plate 61, two semicircular plates 62, a third lead screw 66, vertical rods 63 and a moving plate. The positioning plate 61 is vertically arranged on the top surface of the rotating disc 51, and the two semicircular plates 62 are arranged in parallel on one side of the positioning plate 61; the third lead screw 66 is vertically arranged between the two semicircular plates 62, and the two ends of the third lead screw 66 are rotatably connected to the two semicircular plates 62 through bearings, and the top end of the third lead screw 66 is provided with a rotating wheel 68; the vertical rods 63 are vertically arranged between the two semicircular plates 62, and the two ends of the vertical rods 63 are connected to the two semicircular plates 62, respectively; the number of the vertical rods 63 is multiple, the outer side surface of the vertical rods 63 is an arc surface, and the vertical rods 63 are distributed along the circumference of the two semicircular plates 62 and surround a semicircular structure to facilitate the bending treatment of the main reinforcing bar.
[0059] The moving plate is arranged in parallel between the two semicircular plates 62, and the moving plate comprises a lifting plate 65, a clamping ring 67 and clamping plates 64. The lifting plate 65 is arranged on the inner side of the vertical rods 63, a threaded hole is formed in the lifting plate 65, and the lifting plate 65 is threaded on the third lead screw 66. The clamping ring 67 is semicircular and surrounds the outer side of the vertical rods 63. The two ends of the clamping plate 64 are connected to the lifting plate 65 and the clamping ring 67, respectively. The number of the clamping plates 64 is multiple, and the clamping plates 64 are arranged between the vertical rods 63 to prevent the moving plate from rotating when moving up and down on the third lead screw 66. Rotating the rotating wheel 68 to rotate the third lead screw 66, which drives the lifting plate 65 to move downward, and the clamping ring 67 moves downward, so that the rotating disc 51 and the clamping ring 67 clamp and fix the main reinforcing bar, thereby avoiding the deviation caused by the sliding of the main reinforcing bar when bending, and ensuring the accuracy of the bending angle.
[0060] In the embodiment, the blocking component 7 comprises a plug rod 71 and a blocking wheel 72 arranged on the top of the plug rod 71, the cross section of the plug rod 71 is a hexagonal structure, the plug rod 71 can be inserted into any one of the insertion holes 53, so as to change the distance between the blocking wheel 72 and the vertical rod 63, and the arc length of the bending position of the main reinforcement can be adjusted.
[0061] In the embodiment, the platform plate 3 is provided with a limiting component at both ends in the first direction, the limiting component comprises two rotating shafts 13 arranged side by side in the second direction, the two rotating shafts 13 are rotationally arranged on the platform plate 3, and the top of the two rotating shafts 13 is correspondingly provided with two rotating wheels 14, the height of the two rotating wheels 14 is consistent with the height of the blocking wheel 72. In use, the main reinforcement is first inserted between the two rotating wheels 14 and then inserted into the corresponding rotating component for bending.
[0062] The principle of the application is as follows:
[0063] In use, the rotating rod 46 is rotated, the first screw rod 44 is driven to rotate, the first screw rod 44 moves in the threaded hole on the platform plate 3, the whole sliding mechanism 4 is pushed to move along the first sliding hole 32 and the second sliding hole 33 through the U-shaped connecting plate 43, the first rotating component 5 or the second rotating component 8 on the sliding mechanism 4 is moved, and then the distance between the first rotating component 5 and the third rotating component 9 or the distance between the second rotating component 8 and the third rotating component 9 is adjusted, so that the main reinforcement can be placed in the clamping reinforcement groove 52 on the rotating component;
[0064] Then, the driving motor 456 on the moving mechanism 45 is controlled to rotate through the control mechanism 15, the second screw rod 457 is driven to rotate, since the work-shaped plate 41 penetrated by the second screw rod 457 is clamped in the first sliding hole 32 and cannot move, the second screw rod 457 can move along the work-shaped plate 41, so as to push the whole moving mechanism 45 to move back and forth along the two connecting rods 42, the second stepping motor 452 in the moving mechanism 45 moves synchronously, the first rotating component 5 or the second rotating component 8 on the second stepping motor 452 moves synchronously, and the position of the third rotating component 9 is always fixed, so that the main reinforcement is bent in a large amplitude through the first rotating component 5, the second rotating component 8 and the third rotating component 9;
[0065] Further, in use, the main reinforcement to be bent can be placed in the lower part of the clamping part 6 of the three rotating parts, the rotating wheel 68 is rotated, the third screw rod 66 is rotated, the lifting plate 65 is moved downwards, the clamping ring 67 is moved downwards, the clamping ring 67 and the rotating disc 51 clamp and fix the main reinforcement, the position of the insertion hole 53 where the blocking wheel 72 is located is adjusted, the distance between the blocking wheel 72 and the vertical rod 63 of the clamping part 6 is changed, the two second stepping motors 452 are opened through the control mechanism 15, the rotating disc 51 of the first rotating part 5 and the rotating disc 51 of the second rotating part 8 are rotated, and the arc length of the bending position of the main reinforcement is adjusted; the distance between the clamping parts 6 on each rotating part can be adjusted through the sliding mechanism 4, the blocking parts 7 corresponding to the clamping parts 6 are synchronously changed, the same main reinforcement is continuously bent, and the distance between the continuous bending can be adjusted through the sliding mechanism 4.
[0066] The above is only the preferred embodiment of the present application, and does not limit the present application, any simple modification, change and equivalent structure change of the above embodiment according to the technical essence of the present application are still within the protection scope of the technical scheme of the present application.
Claims
1. A continuous arc-shaped beam main reinforcement processing operation platform, characterized in that, The utility model relates to a platform frame, including: Platform frame, the platform frame includes platform board (3), two adjusting holes (31) are opened in parallel on the plane of platform board (3) along the first direction; Two sliding mechanisms (4), two sliding mechanisms (4) are correspondingly arranged in two adjusting holes (31) respectively, two sliding mechanisms (4) are symmetrically arranged, each sliding mechanism (4) can slide back and forth in the corresponding adjusting hole (31) along the first direction; Two moving mechanisms (45), two moving mechanisms (45) are correspondingly arranged on two sliding mechanisms (4) respectively, each moving mechanism (45) can move back and forth on the corresponding sliding mechanism (4) along the second direction; Rotating part, the rotating part includes first rotating part (5), second rotating part (8) and third rotating part (9), first rotating part (5) and second rotating part (8) are rotatably arranged on two moving mechanisms (45) respectively, third rotating part (9) is rotatably arranged on platform board (3) between first rotating part (5) and second rotating part (8), the height of first rotating part (5), second rotating part (8) and third rotating part (9) is consistent; Control mechanism (15), control mechanism (15) is arranged on platform board (3), control mechanism (15) is connected with two moving mechanisms (45) respectively; Second stepping motor (452) is arranged on two moving mechanisms, two second stepping motors (452) are connected with control mechanism (15), two second stepping motors (452) are connected with first rotating part (5) and second rotating part (8) respectively; First rotating part (5), second rotating part (8) and third rotating part (9) all include rotating disc (51), clamping part (6) and blocking part (7).
2. The continuous arc-shaped beam main reinforcement processing operation platform according to claim 1, characterized in that, The platform frame further includes a bottom plate (1) arranged in parallel to the lower part of the platform plate (3), the bottom surface of the bottom plate (1) is provided with universal wheels (12) at four corners, and the platform plate (3) and the bottom plate (1) are connected by a support rod (2).
3. The continuous arc-shaped beam bar processing operation platform according to claim 2, characterized in that, The bottom plate (1) is provided with a first stepping motor (10), the first stepping motor (10) is connected with the control mechanism (15), and the first stepping motor (10) is connected with the third rotating part (9).
4. The continuous arc-shaped beam bar processing operation platform according to claim 3, characterized in that, Each adjusting hole (31) includes a first side and a second side, the first side and the second side are oppositely arranged and extend along the first direction, a first sliding hole (32) is formed on the first side, and a second sliding hole (33) is formed on the second side, the first sliding hole (32) and the second sliding hole (33) are arranged through the platform plate (3).
5. The continuous arc-shaped beam bar processing operation platform according to claim 4, characterized in that, Each sliding mechanism (4) includes: Two I-shaped plates (41) are respectively clamped in the first sliding hole (32) and the second sliding hole (33). Connecting rods (42) are connected to opposite sides of two H-shaped plates (41) respectively; U-shaped connecting plates (43) are parallel to the connecting rods (42) and are connected to one end of two H-shaped plates (41) respectively; A first screw rod (44) is threaded through the platform plate (3) and is rotatably connected to the U-shaped connecting plate (43) at one end and is provided with a rotating rod (46) at the other end.
6. The continuous arc-shaped beam bar processing operation platform according to claim 5, characterized in that, Each of the two moving mechanisms (45) comprises: A sliding plate (451) is provided with a sleeve hole (458) on the side surface, which is sleeved on the connecting rod (42); A U-shaped fixed plate (453) is arranged on the bottom surface of the sliding plate (451), and a second stepping motor (452) is arranged in the U-shaped fixed plate (453), and the output shaft of the second stepping motor (452) is movably threaded through the sliding plate (451); An L-shaped plate (454) is arranged perpendicularly to the side plate of the U-shaped fixed plate (453), and a support plate (455) is sleeved on one side of the L-shaped plate (454), and the top of the support plate (455) is connected to one of the H-shaped plates (41); A second screw rod (457) is connected to the other side of the L-shaped plate (454) at one end and is rotatably connected to the sliding plate (451) at the other end, is threaded through the H-shaped plate (41) connected to the support plate (455), and is provided with a driving motor (456) at the end connected to the L-shaped plate (454), and the driving motor (456) is connected to the control mechanism (15).
7. A continuous arc-shaped beam bar processing operation platform according to any one of claims 1-6, characterized in that, A reinforcing bar clamping groove (52) is arranged on the circumferential side of the rotating disc (51) for placing reinforcing bars, the reinforcing bar clamping groove (52) extends along the circumference of the rotating disc (51), the clamping component (6) is arranged on the top surface of the rotating disc (51), the top surface of the rotating disc (51) is provided with a jack (53) arranged opposite to the clamping component (6), the inner wall of the jack (53) is a hexagonal structure, and the jack (53) is used for inserting the blocking component (7).
8. The continuous arc-shaped beam bar processing operation platform according to claim 7, characterized in that, The clamping component (6) comprises: A positioning plate (61) is vertically arranged on the top surface of the rotating disc (51); Two semicircular plates (62) are arranged in parallel on one side of the positioning plate (61); A third screw rod (66) is vertically arranged between the two semicircular plates (62), the two ends of the third screw rod (66) are rotatably connected to the two semicircular plates (62) respectively, and the top end of the third screw rod (66) is provided with a rotating wheel (68). Vertical rods (63) vertically arranged between the two semicircular plates (62), and the two ends of the vertical rods (63) are connected with the two semicircular plates (62) respectively, the number of the vertical rods (63) is multiple, and the multiple vertical rods (63) are distributed along the circumferential direction of the two semicircular plates (62); The moving plate is parallel arranged between the two semicircular plates (62), and the moving plate comprises a lifting plate (65), a clamping ring (67) and a clamping plate (64), the lifting plate (65) is arranged on the inner side of the multiple vertical rods (63) and is threaded on the third lead screw (66), the clamping ring (67) is arranged on the outer side of the multiple vertical rods (63), and the two ends of the clamping plate (64) are connected with the lifting plate (65) and the clamping ring (67) respectively, the number of the clamping plate (64) is multiple, and the multiple clamping plates (64) are arranged between the multiple vertical rods (63) respectively.
9. The continuous arc-shaped beam bar processing operation platform according to claim 7, characterized in that, The blocking component (7) comprises a plug rod (71) and a blocking wheel (72), the blocking wheel (72) is arranged on the top of the plug rod (71), and the cross section of the plug rod (71) is a hexagonal structure.
10. The continuous arc-shaped beam bar processing operation platform according to claim 9, characterized in that, The platform plate (3) is provided with a limiting component at both ends in the first direction, the limiting component comprises two rotating shafts (13) arranged side by side in the second direction, the two rotating shafts (13) are rotatably arranged on the platform plate (3), and the top of the two rotating shafts (13) is provided with two rotating wheels (14) correspondingly, and the height of the two rotating wheels (14) is consistent with the height of the blocking wheel (72).
Citation Information
Patent Citations
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