T-beam web reinforcement framework processing equipment
By designing automated T-beam web reinforcement cage processing equipment, automatic welding of continuous reinforcement bars was achieved, solving the problems of low efficiency and high labor intensity in existing technologies, and improving production efficiency and safety.
Patent Information
- Application Number
- CN202210919692.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-02
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2042-08-02
AI Technical Summary
The existing T-beam web reinforcement cage has low processing efficiency, high labor intensity, and is not conducive to safe production.
Design a T-beam web reinforcement cage processing equipment, including a cage frame, a continuous bar splicing rack, a clamping mechanism, a bar support mechanism, a welding mechanism, etc., to realize automated welding of continuous bars. Through the coordinated work of multiple stacking mechanisms, the degree of automation and processing efficiency are improved.
The automatic welding of continuous ribs has been achieved, which has improved processing efficiency, reduced labor intensity, and enhanced production safety.
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Figure CN115430791B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cap beam manufacturing, in particular to a T-beam web reinforcement cage processing equipment. BACKGROUND
[0002] As shown in Figure 1 and Figure 2 , the T-beam web reinforcement cage includes stirrup 100 and through-length bar 200, wherein the stirrup 100 is composed of bottom steel bar 1001, horseshoe bar 1002 and long stirrup 1003, multiple groups of horseshoe bars 1002 and long stirrups 1003 are respectively spaced and placed vertically, the bottom steel bars 1001 are sequentially laid at the bottom of the horseshoe bars 1002 and the long stirrups 1003, and the stirrup 100 is formed by welding, and the through-length bar 200 is provided with multiple and fixed on the side surface of the horseshoe bars 1002 and the long stirrups 1003.
[0003] The through-length bar 200 of the existing T-beam web reinforcement cage is usually manually processed separately, and then multiple people synchronously carry the above-mentioned through-length bar 200 to the work station, and then sequentially stack and bind them for subsequent processing. However, due to the dispersion of the working area, it leads to high labor intensity and low production efficiency, which is not conducive to safety production and construction. SUMMARY
[0004] The purpose of the present application is to provide a T-beam web reinforcement cage processing equipment, which can automatically weld the through-length bar, improve the degree of automation and processing efficiency, and reduce the labor intensity.
[0005] To achieve this purpose, the present application adopts the following technical solutions:
[0006] A T-beam web reinforcement cage processing equipment, comprising:
[0007] A cage rack for placing a stirrup;
[0008] A through-length bar receiving rack for receiving a through-length bar;
[0009] A first stacking mechanism, which is drivingly connected with a clamping mechanism, the first stacking mechanism can drive the clamping mechanism to move in the transverse and longitudinal directions, and the clamping mechanism is used for clamping the through-length bar;
[0010] A second stacking mechanism, which is drivingly connected with a supporting mechanism, the second stacking mechanism can drive the supporting mechanism to move in the transverse and longitudinal directions, and the supporting mechanism is used for supporting the through-length bar;
[0011] A third stacking mechanism, which is drivingly connected with a welding mechanism, the third stacking mechanism can drive the welding mechanism to move in the transverse and longitudinal directions, and the welding mechanism is used for welding the through-length bar to the stirrup.
[0012] Preferably, the first, second and third material feeding mechanisms each comprise a vertical column, a first driving member fixed to the vertical column, a support vertically moved along the vertical column driven by the first driving member, and a second driving member horizontally moved driven by the second driving member.
[0013] Preferably, the material feeding system further comprises a fourth material feeding mechanism, the fourth material feeding mechanism is connected with a penetrating roller mechanism, and the fourth material feeding mechanism is capable of driving the penetrating roller mechanism to move horizontally and vertically, and the penetrating roller mechanism is used for supporting the continuous rod.
[0014] Preferably, the fourth material feeding mechanism has the same structure as the first material feeding mechanism.
[0015] Preferably, the penetrating roller mechanism comprises a penetrating roller fixing base fixed to the fourth material feeding mechanism, a first penetrating roller rotatably arranged on the penetrating roller fixing base in a horizontal direction, and two second penetrating rollers rotatably arranged on the penetrating roller fixing base in a vertical direction, a gap is formed between the two second penetrating rollers for the continuous rod to pass through, and the continuous rod is supported by the first penetrating roller and limited by the two second penetrating rollers.
[0016] Preferably, the clamping mechanism comprises a clamping mounting base mounted on the first material feeding mechanism, a first telescopic cylinder rotatably connected to the clamping mounting base, a first movable clamping jaw having one end rotatably connected to an output end of the first telescopic cylinder, a first fixed clamping jaw fixedly mounted on the first material feeding mechanism, one end of the first fixed clamping jaw being rotatably connected to a middle portion of the first movable clamping jaw, and the first telescopic cylinder being capable of driving the first movable clamping jaw to rotate and clamp the continuous rod together with the first fixed clamping jaw.
[0017] Preferably, the reinforcing rod supporting mechanism comprises a reinforcing rod supporting mounting base mounted on the second material feeding mechanism, a second telescopic cylinder rotatably connected to the reinforcing rod supporting mounting base, a second movable clamping jaw having one end rotatably connected to an output end of the second telescopic cylinder, a second fixed clamping jaw fixedly mounted on the second material feeding mechanism, one end of the second fixed clamping jaw being rotatably connected to a middle portion of the second movable clamping jaw, and the second telescopic cylinder being capable of driving the second movable clamping jaw to rotate towards the second fixed clamping jaw so as to form a supporting hole for the continuous rod to pass through together with the second fixed clamping jaw, the supporting hole having a diameter greater than that of the continuous rod.
[0018] Preferably, the material feeding system further comprises a material feeding track arranged on one side of the continuous rod receiving frame, and the first, second, third and fourth material feeding mechanisms are arranged on the material feeding track and are capable of sliding along the material feeding track.
[0019] As preferred, the lengthwise reinforcing bar receiving rack, the first stacking mechanism, the second stacking mechanism, the third stacking mechanism, the fourth stacking mechanism and the cloth rail are provided with two groups and symmetrically arranged on both sides of the framework stand.
[0020] As preferred, a straightening and shearing mechanism is further included, which is arranged at one end of the lengthwise reinforcing bar receiving rack and used for straightening and shearing the reinforcing bar to form the lengthwise reinforcing bar.
[0021] The present application has the following advantages: the lengthwise reinforcing bar is clamped by the clamping mechanism and supported by the reinforcing bar supporting mechanism, then the clamping mechanism is driven by the first stacking mechanism and the reinforcing bar supporting mechanism is driven by the second stacking mechanism, so that the lengthwise reinforcing bar is moved to the corresponding position of the stirrup, then the welding mechanism is driven by the third stacking mechanism to weld the lengthwise reinforcing bar and the stirrup, thereby realizing automatic welding of the lengthwise reinforcing bar, improving the degree of automation and processing efficiency and reducing the labor intensity. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 is the front view of the T-beam web reinforcing bar framework provided by the present application;
[0023] Figure 2 is the side view of the T-beam web reinforcing bar framework provided by the present application;
[0024] Figure 3 is the front view of the T-beam web reinforcing bar framework processing equipment provided by the present application;
[0025] Figure 4 is the top view of the T-beam web reinforcing bar framework processing equipment provided by the present application;
[0026] Figure 5 is the enlarged view of A of the present application; Figure 3
[0027] Figure 6 is the structural schematic view of the clamping mechanism provided by the present application;
[0028] Figure 7 is the structural schematic view of the reinforcing bar supporting mechanism provided by the present application;
[0029] Figure 8 is the front view of the reinforcing bar penetrating wheel mechanism provided by the present application;
[0030] Figure 9 is the top view of the reinforcing bar penetrating wheel mechanism provided by the present application.
[0031] In the drawings:
[0032] 1, skeleton bench; 2, lengthwise rib material receiving frame; 3, first material stacking mechanism; 31, stand; 32, first driving member; 33, support; 34, second driving member; 35, moving frame; 36, base; 37, driving motor; 38, driving gear; 4, clamping mechanism; 41, clamping mounting seat; 42, first telescopic cylinder; 43, first movable clamping jaw; 44, first fixed clamping jaw; 5, second material stacking mechanism; 6, rib supporting mechanism; 61, rib supporting mounting seat; 62, second telescopic cylinder; 63, second movable clamping jaw; 64, second fixed clamping jaw; 7, third material stacking mechanism; 8, fourth material stacking mechanism; 9, rib penetrating wheel mechanism; 91, rib penetrating wheel fixing seat; 92, first rib penetrating wheel; 93, second rib penetrating wheel; 10, material track; 101, driving rack; 20, straightening and shearing mechanism;
[0033] 100, stirrup; 1001, bottom steel bar; 1002, horseshoe rib; 1003, long stirrup; 200, lengthwise rib. DETAILED DESCRIPTION
[0034] The application will be further described below in conjunction with the drawings and embodiments. It should be understood that the specific embodiments described herein are intended to be merely illustrative of the application and not in limitation thereof. It should also be noted that, for the purpose of clarity, only those structures related to the application are shown in the drawings and not all the structures.
[0035] In the description of the application, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, it can be the internal communication of two elements or the interaction relationship of two elements. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.
[0036] In the present application, unless otherwise explicitly specified and limited, the "upper" or "lower" of the first feature to the second feature can include the direct contact of the first and second features, or the indirect contact of the first and second features through another feature between them. Moreover, the "upper", "upper" and "upper" of the first feature to the second feature include the vertical direction of the first feature above and oblique above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The "lower", "lower" and "lower" of the first feature to the second feature include the vertical direction of the first feature below and oblique below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0037] In the description of the present embodiment, the terms "upper", "lower", "right", "left", and the like, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of description and simplification of operation, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first" and "second" are only used to distinguish in the description, and have no special meaning.
[0038] The present application provides a T-beam web reinforcement cage processing equipment, which can realize automatic welding of the continuous bar 200, improve the degree of automation and processing efficiency, and reduce labor intensity. Figure 3 and Figure 4 As shown, the T-beam web reinforcement cage processing equipment includes a cage rack 1, a continuous bar receiving rack 2, a first material feeding mechanism 3, a clamping mechanism 4, a second material feeding mechanism 5, a furring mechanism 6, a third material feeding mechanism 7, and a welding mechanism. The cage rack 1 is arranged in the middle and is used to place the stirrup forming the T-beam web reinforcement cage. The continuous bar receiving rack 2 is arranged on one side of the cage rack 1 and is used to receive the continuous bar 200 of the T-beam web reinforcement cage. The first material feeding mechanism 3 is arranged on one side of the continuous bar receiving rack 2 and is used to drive the clamping mechanism 4 to move to the continuous bar 200 to clamp the continuous bar 200. The second material feeding mechanism 5 is arranged on one side of the continuous bar receiving rack 2 and is used to drive the furring mechanism 6 to move to the continuous bar 200 to support the continuous bar 200. The third material feeding mechanism 7 is arranged on one side of the continuous bar receiving rack 2 and is used to drive the welding mechanism to move to the continuous bar 200 to weld the continuous bar 200 to the stirrup.
[0039] In the present embodiment, the upper end of the continuous bar receiving rack 2 is provided with a plurality of rotatable rollers, which are used to support the continuous bar 200, so that the conveying of the continuous bar 200 is more smooth.
[0040] In the present embodiment, as shown in Figure 5 The first material feeding mechanism 3, the second material feeding mechanism 5, and the third material feeding mechanism 7 are the same structure, each including a vertical column 31, a first driving member 32, a support 33, a second driving member 34, and a moving frame 35. The vertical column 31 is arranged in the longitudinal direction, and the top end is provided with the first driving member 32, which can drive the support 33 to move longitudinally along the vertical column 31. The second driving member 34 is installed on the support 33, and the second driving member 34 can drive the moving frame 35 to move transversely. The clamping mechanism 4, the furring mechanism 6, and the welding mechanism are respectively fixed on the corresponding moving frame 35.
[0041] Optionally, the first driving member 32 can be an electric motor, which drives the chain to move the support 33 longitudinally. In order to better realize the movement of the support 33, a slide rail can be arranged on the stand 31, and a slide block is arranged on the support 33, so that the longitudinal movement of the support 33 is more stable. The second driving member 34 can also be an electric motor, and a gear is fixed to the output end of the electric motor, and a transversely arranged rack is fixed to the moving frame 35, and the transverse movement of the moving frame 35 is realized through the meshing of the gear and the rack.
[0042] In the embodiment, the first code mechanism 3 can be a first code mechanism 3, and the second code mechanism 5 can be a second code mechanism 5. Figure 6 The clamping mechanism 4 comprises a clamping mounting seat 41 arranged on the moving frame 35 of the first code mechanism 3, a first telescopic cylinder 42 rotatably connected to the clamping mounting seat 41, a first movable clamp jaw 43 rotatably connected to one end of the output end of the first telescopic cylinder 42, and a first fixed clamp jaw 44 fixedly arranged on the moving frame 35. One end of the first fixed clamp jaw 44 is rotatably connected to the middle part of the first movable clamp jaw 43. The first telescopic cylinder 42 can drive the first movable clamp jaw 43 to rotate to open or close relative to the first fixed clamp jaw 44, and then clamp the continuous rib 200 when the first fixed clamp jaw 44 is closed. The clamping mechanism 4 of the embodiment has better clamping effect through the driving of the first telescopic cylinder 42.
[0043] As shown in Figure 7 The support rib mechanism 6 comprises a support rib mounting seat 61 arranged on the moving frame 35 of the second code mechanism 5, a second telescopic cylinder 62 rotatably connected to the support rib mounting seat 61, a second movable clamp jaw 63 rotatably connected to one end of the output end of the second telescopic cylinder 62, and a second fixed clamp jaw 64 fixedly arranged on the moving frame 35. One end of the second fixed clamp jaw 64 is rotatably connected to the middle part of the second movable clamp jaw 63. The second telescopic cylinder 62 can drive the second movable clamp jaw 63 to rotate towards the second fixed clamp jaw 64, so that the second movable clamp jaw 63 cooperates with the second fixed clamp jaw 64 to form a support hole for the continuous rib 200 to pass through. The diameter of the support hole is greater than the diameter of the continuous rib 200, which can better support the continuous rib 200.
[0044] In the embodiment, preferably, the third code mechanism 7 is arranged between the first code mechanism 3 and the second code mechanism 5, so that the welding mechanism is arranged between the clamping mechanism 4 and the support rib mechanism 6, and the continuous rib 200 is first clamped by the clamping mechanism 4, and then the second movable clamp jaw 63 of the support rib mechanism 6 cooperates with the second fixed clamp jaw 64 to form a support hole to support the continuous rib 200.
[0045] In the embodiment, the first code mechanism 3 can be a first code mechanism 3, and the second code mechanism 5 can be a second code mechanism 5. Figure 3 and Figure 4The T-beam web steel reinforcement framework processing equipment of the embodiment further comprises a material conveying track 10 arranged on one side of the longitudinal rib receiving rack 2, specifically, the side away from the framework rack 1. The first material conveying mechanism 3, the second material conveying mechanism 5 and the third material conveying mechanism 7 are all arranged on the material conveying track 10 and can slide along the material conveying track 10. It can be understood that the sliding of the first material conveying mechanism 3, the second material conveying mechanism 5 and the third material conveying mechanism 7 on the material conveying track 10 can be in the form of a motor and a gear rack, or other driving forms, which are not limited in the embodiment. Alternatively, in the embodiment, a base 36 is arranged at the bottom of the first material conveying mechanism 3, the second material conveying mechanism 5 and the third material conveying mechanism 7, and a driving motor 37 is arranged on the base 36, the driving motor 37 is fixedly connected with a driving gear 38, the driving gear 38 is engaged with a driving rack 101 fixed on the material conveying track 10, and a sliding rail is arranged on the base 36 and a sliding block is arranged on the material conveying track 10 and slides in the sliding rail. Through the structure, the sliding of the first material conveying mechanism 3, the second material conveying mechanism 5 and the third material conveying mechanism 7 on the material conveying track 10 can be realized.
[0046] In the embodiment, preferably, as shown in Figure 4 , a fourth material conveying mechanism 8 is further arranged on the material conveying track 10 and slides on the material conveying track 10, the structure of the fourth material conveying mechanism 8 is the same as that of the first material conveying mechanism 3, and the fourth material conveying mechanism 8 is arranged on the side of the second material conveying mechanism 5 away from the third material conveying mechanism 7.
[0047] The fourth material conveying mechanism 8 is drivingly connected with a rib penetrating wheel mechanism 9, the fourth material conveying mechanism 8 can drive the rib penetrating wheel mechanism 9 to move in the transverse direction and the longitudinal direction, and the rib penetrating wheel mechanism 9 is used for further supporting the longitudinal rib 200. Alternatively, as shown in Figure 8 and Figure 9 , the rib penetrating wheel mechanism 9 comprises a rib penetrating wheel fixing seat 91 fixed on a moving frame 35 of the fourth material conveying mechanism 8, a first rib penetrating wheel 92 arranged on the rib penetrating wheel fixing seat 91 and rotating in the transverse direction, and two second rib penetrating wheels 93 arranged on the rib penetrating wheel fixing seat 91 and rotating in the longitudinal direction, a gap for the longitudinal rib 200 to pass through is formed between the two second rib penetrating wheels 93, the longitudinal rib 200 is supported by the first rib penetrating wheel 92 and is limited by the two second rib penetrating wheels 93. Moreover, through the structure that the first rib penetrating wheel 92 and the second rib penetrating wheels 93 are arranged to rotate, the movement of the longitudinal rib 200 can be smoother, and the left and right movement of the longitudinal rib 200 during the movement can be avoided.
[0048] In the embodiment, the T-beam web steel reinforcement framework processing equipment further comprises a straightening and shearing mechanism 20 arranged at one end of the longitudinal rib receiving rack 2, which is used for straightening and shearing the steel bars to form the longitudinal rib 200.
[0049] In use, the T-beam web reinforcement skeleton processing equipment of the embodiment first straightens the steel bars by the straightening and shearing mechanism 20, and shears the straightened steel bars according to the preset length to form the through-length bars 200. At this time, the through-length bars 200 are conveyed to the roller of the through-length bar receiving rack 2. Then, the first material feeding mechanism 3 drives the clamping mechanism 4 to move to the through-length bars 200 and clamps one end of the through-length bars 200. Then, the third material feeding mechanism 7 moves to the rear end position of the through-length bars 200, the fourth material feeding mechanism 8 moves to the middle or rear half position of the through-length bars 200, and the second material feeding mechanism 5 drives the reinforcement supporting mechanism 6 to cover and support the through-length bars 200, and the fourth material feeding mechanism 8 drives the through-length bar supporting wheel mechanism 9 to support the through-length bars 200. Then, the first material feeding mechanism 3 drives the clamping mechanism 4 to move the end of the through-length bars 200 to the corresponding welding position of the stirrup, the second material feeding mechanism 5 drives the reinforcement supporting mechanism 6 to move, and the fourth material feeding mechanism 8 and the through-length bar supporting wheel mechanism 9 move to gradually straighten the through-length bars 200. In this process, the third material feeding mechanism 7 drives the welding mechanism to weld and fix the through-length bars 200 and each stirrup. Then, the above process is repeated to weld multiple through-length bars 200 to the stirrup.
[0050] In the embodiment, preferably, the through-length bar receiving rack 2, the first material feeding mechanism 3, the second material feeding mechanism 5, the third material feeding mechanism 7, the fourth material feeding mechanism 8, and the material feeding track 10 are provided with two groups and symmetrically arranged on both sides of the skeleton rack 1. This can realize the synchronous installation of the through-length steel bars on both sides and improve the processing efficiency of the T-beam web reinforcement skeleton.
[0051] Obviously, the above-mentioned embodiments of the present application are only examples for the purpose of clear illustration, and are not intended to limit the embodiments of the present application. For those skilled in the art, various obvious changes, re-adjustments and substitutions can be made without departing from the scope of the present application. It is unnecessary and impossible to enumerate all the embodiments. Any modification, equivalent substitution and improvement within the spirit and principle of the present application shall be included in the protection scope of the claims of the present application.
Claims
1. A T-beam web reinforcement cage processing apparatus, characterized by, The utility model relates to a kind of automatic bar arrangement device, including: Skeleton rack (1) for placing stirrup (100); Longitudinal rib receiving rack (2) for receiving longitudinal rib (200); First code mechanism (3) is drivenly connected with clamping mechanism (4), the first code mechanism (3) can drive the clamping mechanism (4) moves along transverse and longitudinal direction, and the clamping mechanism (4) is used to clamp the longitudinal rib (200); Second code mechanism (5) is drivenly connected with supporting rib mechanism (6), the second code mechanism (5) can drive the supporting rib mechanism (6) moves along transverse and longitudinal direction, and the supporting rib mechanism (6) is used to support the longitudinal rib (200); Third code mechanism (7) is drivenly connected with welding mechanism, the third code mechanism (7) can drive the welding mechanism moves along transverse and longitudinal direction, and the welding mechanism is used to weld the longitudinal rib (200) on the stirrup (100); Fourth code mechanism (8), the fourth code mechanism (8) is drivenly connected with bar wheel mechanism (9), the fourth code mechanism (8) can drive the bar wheel mechanism (9) moves along transverse and longitudinal direction, and the bar wheel mechanism (9) is used to support the longitudinal rib (200); It further includes cloth track (10), the cloth track (10) is arranged in one side of the longitudinal rib receiving rack (2), and the first code mechanism (3), the second code mechanism (5), the third code mechanism (7) and the fourth code mechanism (8) are placed on the cloth track (10) and can slide along the cloth track (10); The first code mechanism (3), the second code mechanism (5) and the third code mechanism (7) all include stand (31), first driving part (32) fixed on the stand (31), support (33) driven by the first driving part (32) and moved longitudinally along the stand (31), second driving part (34) installed on the support (33), moving frame (35) driven by the second driving part (34) and moved transversely; The structure of the fourth code mechanism (8) is same as the structure of the first code mechanism (3); The bar wheel mechanism (9) includes bar wheel fixing base (91) fixed on the fourth code mechanism (8), first bar wheel (92) rotatably arranged on the bar wheel fixing base (91) along transverse direction, and two second bar wheels (93) rotatably arranged on the bar wheel fixing base (91) along longitudinal direction, clearance is formed between the two second bar wheels (93) for the longitudinal rib (200) to pass through, and the longitudinal rib (200) is supported by the first bar wheel (92) and limited by the two second bar wheels (93).
2. The T-beam web reinforcement cage fabrication apparatus of claim 1, wherein, The clamping mechanism (4) comprises a clamping mounting base (41) mounted on the first material stacking mechanism (3), a first telescopic cylinder (42) rotationally connected to the clamping mounting base (41), a first movable clamping jaw (43) rotationally connected to one end of an output end of the first telescopic cylinder (42), a first fixed clamping jaw (44) fixedly mounted on the first material stacking mechanism (3), one end of the first fixed clamping jaw (44) rotationally connected to a middle part of the first movable clamping jaw (43), and the first telescopic cylinder (42) can drive the first movable clamping jaw (43) to rotate and clamp the through-length rib (200) in cooperation with the first fixed clamping jaw (44).
3. The T-beam web reinforcement cage fabrication apparatus of claim 1, wherein, The fenceline mechanism (6) comprises a fenceline mounting base (61) mounted on the second material stacking mechanism (5), a second telescopic cylinder (62) rotationally connected to the fenceline mounting base (61), a second movable clamping jaw (63) rotationally connected to one end of an output end of the second telescopic cylinder (62), a second fixed clamping jaw (64) fixedly mounted on the second material stacking mechanism (5), one end of the second fixed clamping jaw (64) rotationally connected to a middle part of the second movable clamping jaw (63), and the second telescopic cylinder (62) can drive the second movable clamping jaw (63) to rotate towards the second fixed clamping jaw (64) so as to form a support hole for the through-length rib (200) to pass through in cooperation with the second fixed clamping jaw (64), and the support hole has a diameter greater than that of the through-length rib (200).
4. The T-beam web reinforcement cage fabrication apparatus of claim 1, wherein, The through-length rib material receiving rack (2), the first material stacking mechanism (3), the second material stacking mechanism (5), the third material stacking mechanism (7), the fourth material stacking mechanism (8) and the material track (10) are provided with two groups and symmetrically arranged on both sides of the framework rack (1).
5. The T-beam web reinforcement cage fabrication apparatus of claim 1, wherein, The straightening and shearing mechanism (20) is arranged at one end of the through-length rib material receiving rack (2) and used for straightening and shearing the steel bar to form the through-length rib (200).
Citation Information
Patent Citations
Automatic clamping and feeding-in equipment for main reinforcements of reinforcement cage
CN106181178A
T-beam web steel reinforcement framework forming device and machining method
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T-beam web steel reinforcement framework forming equipment
CN218395749U