Anti-deviation steel pipe conveying mechanism
By introducing a limiting arc groove and a pusher plate structure into the steel pipe conveying mechanism, the problem of deviation during steel pipe transportation was solved, and stable transportation and efficient processing of steel pipes were achieved.
Patent Information
- Application Number
- CN202520271021.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Common steel pipe conveying mechanisms lack anti-deviation functions, which makes the steel pipes prone to positional deviation during transportation, causing collisions or requiring manual adjustment, thus affecting processing efficiency.
Design a steel pipe conveying mechanism to prevent deviation. The mechanism adopts a limiting arc groove and a pusher plate structure. The limiting arc groove limits the position of the steel pipe, and the pusher plate arranges the steel pipe in sequence and locks it into the limiting arc groove to prevent deviation.
It effectively prevents steel pipes from shifting during transportation, avoids collisions, improves processing efficiency, and reduces the need for manual handling.
Smart Images

Figure CN223721832U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of steel pipe conveying, especially to a steel pipe conveying mechanism of anti -migration. BACKGROUND
[0002] Steel pipe is steel material with hollow section, and its length is much larger than diameter or circumference. According to material, it is divided into carbon structural steel pipe, low alloy structural steel pipe, alloy steel pipe and composite steel pipe. In the working process of steel pipe, the steel pipe needs to be conveyed to the designated process, which needs to use conveying device to transport the steel pipe.
[0003] The common steel pipe conveying mechanism only contains conveying function, can transport the steel pipe, but lacks the function of preventing the steel pipe from deviating, cannot guarantee that the position of the steel pipe does not deviate during transportation, and the steel pipes are prone to collide with each other after falling on the conveying belt or deviate due to inertia. When the steel pipe is conveyed to the next process, personnel need to manually arrange it, which affects the processing efficiency.
[0004] Therefore, aiming at the problem that the above steel pipe conveying mechanism lacks the function of preventing the steel pipe from deviating, a steel pipe conveying mechanism can be designed, which limits the position of steel pipes of different sizes through limiting arc grooves. SUMMARY
[0005] In order to overcome the problem that the common steel pipe conveying mechanism lacks the function of preventing the steel pipe from deviating, cannot guarantee that the position of the steel pipe does not deviate during transportation, and the steel pipes are prone to collide with each other after falling on the conveying belt or deviate due to inertia. When the steel pipe is conveyed to the next process, personnel need to manually arrange it, which affects the processing efficiency.
[0006] The technical scheme of the utility model is as follows: a steel pipe conveying mechanism of anti -migration, including support chassis, support plate, first drive shaft, driven shaft, conveying belt, limiting frame, limiting inclined plate and limiting arc groove, the top of support chassis is symmetrically provided with two support plates on both sides, the side between the two support plates is provided with a first drive shaft, one end of the first drive shaft is rotatably connected with the right side support plate, the other side between the two support plates is provided with a driven shaft, the two ends of the driven shaft are rotatably connected with the two support plates, the first drive shaft and the driven shaft are sleeved with a conveying belt, the circumference of the conveying belt is provided with one hundred limiting frames at equal intervals, and the two ends of the limiting frame are symmetrically provided with two limiting inclined plates.
[0007] Preferably, the steel pipes stacked together are pushed away by the setting of the pushing plate, so that the steel pipes are arranged in sequence above the limiting frame, and the two ends of the steel pipes are clamped into the inside of the limiting arc groove, so that the position of the steel pipes is limited, and the position of the steel pipes is not deviated during transportation, to solve the common steel pipe conveying mechanism which only contains conveying function and can transport the steel pipes, but lacks the function of preventing the deviation of the steel pipes, cannot guarantee that the position of the steel pipes is not deviated during transportation, and is prone to problems such as collision of the steel pipes after falling on the conveying belt or deviation of the position due to inertia, and manual arrangement of the steel pipes by personnel when the steel pipes are conveyed to the next process, affecting the processing efficiency.
[0008] Preferably, the side surface of the left support plate is provided with a second motor corresponding to the position of the first driving shaft, the other end of the first driving shaft penetrates the second support plate and is connected with the output end of the second motor, the second motor is started, the second motor drives the first driving shaft to rotate, the first driving shaft drives the conveying belt to rotate, and the conveying belt drives the driven shaft to rotate.
[0009] Preferably, the top side edges of the two support plates are symmetrically provided with two connecting vertical rods, the top ends of the two connecting vertical rods are provided with a feeding guide plate, the steel pipes fall downward from the upper side of the feeding guide plate and are guided by the feeding guide plate to fall onto the conveying belt.
[0010] Preferably, the middle of the top of the two support plates is symmetrically provided with two support rods, the middle of the two support rods is provided with a second driving shaft, the periphery of the second driving shaft is provided with six pushing plates at equal intervals, the side edges of the pushing plates are provided with pushing grooves, the second driving shaft drives the six pushing plates to rotate, and the pushing plates push the steel pipes stacked together apart while rotating, so that the steel pipes are arranged in sequence above the limiting frame.
[0011] Preferably, one end of the second driving shaft is rotationally connected with the right support rod, the side surface of the left support rod is provided with a first motor corresponding to the position of the second driving shaft, the other end of the second driving shaft penetrates the second support rod and is connected with the output end of the first motor, the conveying belt conveys the steel pipes stacked together to the pushing plate, the first motor is started when the steel pipes pass through the pushing plate, and the first motor drives the second driving shaft to rotate.
[0012] Preferably, the limiting inclined plate is integrally welded with the limiting frame, four limiting arc grooves are provided at equal intervals on the top of the limiting inclined plate, and the two ends of the steel pipes are clamped into the inside of the limiting arc groove, so that the position of the steel pipes is limited.
[0013] Preferably, the side surfaces of the support base are symmetrically provided with two connecting horizontal rods, one end of the two connecting horizontal rods is provided with a discharging guide plate, when the steel pipes are conveyed to the discharging guide plate by the conveying belt, the steel pipes will fall downward due to gravity, and are guided by the discharging guide plate to be conveyed to the next process.
[0014] The utility model discloses the beneficial effect of:
[0015] 1. By setting up the steel pipe that pushes away together with the accumulation and pushes the board, to make the steel pipe arrange in the top of the limiting frame according to the order, the both ends of steel pipe are inserted into the inside of the limiting arc groove at this moment, like this, the position of steel pipe is limited, guarantee the position of steel pipe to deviate in the process of transportation, to solve the common steel pipe conveying mechanism, only contain conveying function, can transport the steel pipe, but lack the function of preventing steel pipe deviation, can not guarantee the position of steel pipe to deviate in the process of transportation, easy to appear steel pipe falls to the transport belt after mutual collision or because inertia causes the position to deviate, when steel pipe is conveyed to the next process, then need personnel to manually make it code neat, influence processing efficiency problem;
[0016] 2, the steel pipe that the accumulation together is transported to the pushing board by the conveying belt, and the steel pipe is started first motor when passing through the pushing board, and the first motor drives the second drive shaft to rotate, and the rotating second drive shaft drives six pushing boards to rotate, and the pushing board is scattered together when rotating to push the steel pipe that accumulates, and make it arrange in the top of the limiting frame according to the order, the both ends of steel pipe will be inserted into the inside of the limiting arc groove at this moment, like this, the position of steel pipe is limited, realizes the function of preventing steel pipe deviation. DRAWINGS
[0017] Figure 1 The utility model discloses a kind of anti-deviation steel pipe conveying mechanisms three-dimensional structure schematic diagram of structure, as shown in the figure:
[0018] Figure 2 The utility model discloses a kind of anti-deviation steel pipe conveying mechanisms support subassembly three-dimensional structure schematic diagram of structure, as shown in the figure:
[0019] Figure 3 The utility model discloses a kind of anti-deviation steel pipe conveying mechanisms conveying subassembly three-dimensional structure schematic diagram of structure, as shown in the figure:
[0020] Figure 4 The utility model discloses a kind of anti-deviation steel pipe conveying mechanisms limiting inclined plate three-dimensional structure schematic diagram of structure, as shown in the figure:
[0021] Figure 5 The utility model discloses a kind of anti-deviation steel pipe conveying mechanisms pushing subassembly three-dimensional structure schematic diagram of structure, as shown in the figure.
[0022] Explanation of reference signs: 1, support chassis; 2, support plate; 3, first drive shaft; 4, driven shaft; 5, conveying belt; 6, limiting frame; 7, limiting inclined plate; 8, limiting arc groove; 9, support rod; 10, second drive shaft; 11, pushing plate; 12, pushing groove; 13, first motor; 14, second motor; 15, connecting vertical rod; 16, feeding guide plate; 17, connecting cross rod; 18, discharging guide plate. DETAILED DESCRIPTION
[0023] The utility model is further explained below in combination with the drawings and examples.
[0024] Please refer to Figures 1-5 The utility model provides an embodiment: a kind of anti-deviation steel pipe conveying mechanism, including support chassis 1;Still including support plate 2, first drive shaft 3, driven shaft 4, conveying belt 5, limiting frame 6, limiting inclined plate 7 and limiting arc groove 8, the top left and right side edges of support chassis 1 are symmetrically provided with two support plates 2, the side edge of the middle of two support plates 2 is provided with first drive shaft 3, and one end of first drive shaft 3 is rotatably connected with right side support plate 2, the other side edge of the middle of two support plates 2 is provided with driven shaft 4, and the two ends of driven shaft 4 are rotatably connected with two support plates 2, and conveying belt 5 is sleeved on first drive shaft 3 and driven shaft 4, and the circumference of conveying belt 5 is provided with one hundred limiting frames 6 at equal intervals, the two ends of limiting frame 6 are symmetrically provided with two limiting inclined plates 7, by setting pushing plate 11, the steel pipes accumulated together are pushed away, so that the steel pipes are arranged in sequence above limiting frame 6, at this time, the two ends of the steel pipe are then clamped into the inside of limiting arc groove 8, so that the position of the steel pipe is limited, to ensure that the position of the steel pipe does not deviate during transportation, to solve the common steel pipe conveying mechanism, only containing conveying function, can transport steel pipe, but lack the function of preventing steel pipe deviation, unable to ensure that the position of the steel pipe does not deviate during transportation, prone to the problem that steel pipe falls on conveying belt and collides with each other or deviates due to inertia, when steel pipe is conveyed to the next process, personnel need to manually align it, affect processing efficiency.
[0025] Please refer to Figures 2-5 In the embodiment, the top side edges of two support plates 2 are symmetrically provided with two connecting vertical rods 15, the top ends of two connecting vertical rods 15 are provided with feeding guide plate 16, the side edges of support chassis 1 are symmetrically provided with two connecting cross rods 17, one end of two connecting cross rods 17 is provided with discharging guide plate 18, steel pipe falls from the top of feeding guide plate 16, is guided by feeding guide plate 16 and falls on conveying belt 5, when steel pipe is conveyed to discharging guide plate 18 by conveying belt 5, it will fall down due to gravity, is guided by discharging guide plate 18 and conveyed to the next process, completes the conveying work of steel pipe.
[0026] Please refer toFigures 1-5 In the embodiment, the second motor 14 is arranged on the side of the left support plate 2 corresponding to the position of the first driving shaft 3, the other end of the first driving shaft 3 penetrates the second support plate 2 and is connected with the output end of the second motor 14, two support rods 9 are symmetrically arranged in the middle of the top of the two support plates 2, the second driving shaft 10 is arranged in the middle of the two support rods 9, six pushing plates 11 are equidistantly arranged on the circumference of the second driving shaft 10, pushing grooves 12 are formed in the side edges of the pushing plates 11, one end of the second driving shaft 10 is rotationally connected with the right support rod 9, the first motor 13 is arranged on the side of the left support rod 9 corresponding to the position of the second driving shaft 10, the other end of the second driving shaft 10 penetrates the second support rod 9 and is connected with the output end of the first motor 13, the limiting inclined plate 7 is integrally welded with the limiting frame 6, four limiting arc grooves 8 are equidistantly formed in the top of the limiting inclined plate 7, the two ends of the steel pipe are clamped into the inside of the limiting arc grooves, so that the position of the steel pipe is limited, the steel pipes accumulated together are conveyed to the pushing plates 11 by the conveying belt 5, the first motor 13 is started when the steel pipes pass the pushing plates 11, the second driving shaft 10 is driven to rotate by the first motor 13, the six pushing plates 11 are driven to rotate by the rotating second driving shaft 10, the pushing plates 11 push the steel pipes accumulated together apart at the same time of rotating, so that the steel pipes are arranged in sequence above the limiting frame 6, at this time, the two ends of the steel pipes are clamped into the inside of the limiting arc grooves 8, so that the position of the steel pipes is limited, the function of preventing the steel pipes from deviating is realized, and the problem that the steel pipes fall on the conveying belt and collide with each other or deviate due to inertia is prevented, the steel pipes need to be manually arranged in sequence by personnel after being conveyed to the next process, and the machining efficiency is affected.
[0027] In the embodiment, the steel pipes fall from the top of the feeding guide plate 16, are guided by the feeding guide plate 16 and fall on the conveying belt 5, the steel pipes accumulated together are conveyed to the pushing plates 11 by the conveying belt 5, the first motor 13 is started when the steel pipes pass the pushing plates 11, the second driving shaft 10 is driven to rotate by the first motor 13, the six pushing plates 11 are driven to rotate by the rotating second driving shaft 10, the pushing plates 11 push the steel pipes accumulated together apart at the same time of rotating, so that the steel pipes are arranged in sequence above the limiting frame 6, at this time, the two ends of the steel pipes are clamped into the inside of the limiting arc grooves 8, so that the position of the steel pipes is limited, the steel pipes are conveyed to the next process by the guidance of the discharging guide plate 18 when the steel pipes are conveyed to the discharging guide plate 18 by the conveying belt 5, and the function of preventing the steel pipes from deviating is realized.
[0028] Through the above steps, the steel pipes stacked together are pushed away by setting the pushing plate 11, so that the steel pipes are arranged in sequence above the limiting frame 6, and the two ends of the steel pipes are clamped into the inside of the limiting arc groove 8, so that the position of the steel pipes is limited, and the position of the steel pipes is ensured not to deviate during transportation, so as to solve the problem that the common steel pipe conveying mechanism only contains conveying function and can convey the steel pipes, but lacks the function of preventing the deviation of the steel pipes, cannot ensure that the position of the steel pipes does not deviate during transportation, and is prone to the problems that the steel pipes fall on the conveying belt and collide with each other or deviate due to inertia, and personnel need to manually arrange the steel pipes when the steel pipes are conveyed to the next process, thereby affecting the processing efficiency.
Claims
1. A deviation-proof steel pipe conveying mechanism comprising a supporting chassis (1); characterized in that: It also includes support plate (2), first drive shaft (3), driven shaft (4), conveying belt (5), limit frame (6), limit inclined plate (7) and limit arc groove (8), the top of support chassis (1) left and right two sides of the edge symmetry is provided with two support plates (2), the side of the middle of the two support plates (2) is provided with a first drive shaft (3), one end of the first drive shaft (3) is rotatably connected with the right support plate (2), the other side of the middle of the two support plates (2) is provided with a driven shaft (4), both ends of the driven shaft (4) are rotatably connected with the two support plates (2), the first drive shaft (3) and the driven shaft (4) are sleeved with a conveying belt (5), the circumference of the conveying belt (5) is provided with one hundred limit frames (6) at equal intervals, both ends of the limit frame (6) are symmetrically provided with two limit inclined plates (7).
2. A deflection resistant pipe handling mechanism according to claim 1, wherein: The side of the left support plate (2) corresponds to the position of the first drive shaft (3) and is provided with a second motor (14), the other end of the first drive shaft (3) penetrates the second support plate (2) and is connected with the output end of the second motor (14).
3. A deflection resistant pipe handling mechanism according to claim 1, wherein: The top side of the two support plates (2) is symmetrically provided with two connecting vertical rods (15), and the top ends of the two connecting vertical rods (15) are provided with an inlet guide plate (16).
4. A deflection resistant pipe handling mechanism according to claim 1, wherein: The top of the two support plates (2) is symmetrically provided with two support rods (9), and the middle of the two support rods (9) is provided with a second drive shaft (10), the circumference of the second drive shaft (10) is provided with six pusher plates (11) at equal intervals, and the side of the pusher plate (11) is provided with a pusher groove (12).
5. A deflection resistant pipe handling mechanism according to claim 4, wherein: One end of the second drive shaft (10) is rotatably connected with the right support rod (9), and the side of the left support rod (9) corresponds to the position of the second drive shaft (10) and is provided with a first motor (13), the other end of the second drive shaft (10) penetrates the second support rod (9) and is connected with the output end of the first motor (13).
6. A deflection resistant pipe handling mechanism according to claim 1, wherein: The limit inclined plate (7) is welded with the limit frame (6) as a whole, and the top of the limit inclined plate (7) is provided with four limit arc grooves (8) at equal intervals.
7. A deflection resistant pipe handling mechanism according to claim 1 wherein: The side of the support chassis (1) is symmetrically provided with two connecting horizontal rods (17), and one end of the two connecting horizontal rods (17) is provided with a discharge guide plate (18).