A pipe processing and blanking device
By designing a pipe processing and unloading device, the steel pipes are guided in an orderly manner to the storage mechanism using a push cylinder and a guiding mechanism, and then stacked layer by layer through a pressing mechanism. This solves the problem of scattered material falling after the steel pipes are cut, and reduces the difficulty of sorting and the burden on personnel.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-31
- Publication Date
- 2026-03-24
AI Technical Summary
The scattered material after cutting existing steel pipes makes subsequent processing difficult and increases the workload and physical exertion of processing personnel.
A pipe processing and feeding device is designed, including a feeding device body, a pushing cylinder, a driving mechanism, a guiding mechanism, a collecting mechanism, an adjusting mechanism, a storage mechanism, and a pressing mechanism. The pushing cylinder drives the driving mechanism, the guiding mechanism and the collecting mechanism guide the pipes into the storage mechanism in an orderly manner, and the pressing mechanism stacks the pipes layer by layer.
This enabled the orderly dropping and collection of pipes, reducing the difficulty of subsequent processing and lowering the workload and physical exertion of processing personnel.
Smart Images

Figure CN117163636B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of pipe cutting technology, and in particular to a pipe processing and cutting device. Background Technology
[0002] Pipes are the materials used to make pipe fittings. Different pipe fittings require different pipe materials, and the quality of the pipe material directly determines the quality of the pipe fittings. Construction projects, power plants, chemical plants, and other industries widely use this type of pipe. Steel pipes, with their hollow cross-section, are extensively used as pipelines for transporting fluids such as oil, natural gas, coal gas, water, and certain solid materials. Compared to solid steel materials like round steel bars, steel pipes are lighter in weight while maintaining the same bending and torsional strength, making them an economical cross-section steel material. They are widely used in manufacturing structural components and mechanical parts, such as oil drill pipes, automobile drive shafts, bicycle frames, and steel scaffolding used in construction.
[0003] When steel pipes are processed and used, they need to be cut to a suitable length before secondary processing. However, after being cut by a cutting machine, existing steel pipes generally fall directly below the feed inlet. Since the steel pipes are cylindrical, they roll after falling, causing them to be scattered and making subsequent sorting more difficult. This increases the workload and physical exertion of processing personnel. To address this issue, we propose a pipe processing feeder to solve the above problems. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a pipe processing and blanking device.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A pipe processing feeding device includes a feeding device body. A pushing cylinder is mounted on the surface of the feeding device body via a fixed support plate, and a driving mechanism is fixedly connected to the end of the pushing cylinder. A guiding mechanism is sleeved on the surface of the driving mechanism. A collecting mechanism is fixedly connected to the side of the guiding mechanism, and an adjusting mechanism is installed inside the collecting mechanism. A storage mechanism is placed below the end of the guiding mechanism, and a pressing mechanism is installed inside the storage mechanism.
[0007] Preferably, the driving mechanism includes a driving push block, a pushing rod is sleeved inside the bottom end of the driving push block, a first slider is fixedly connected to both sides of the driving push block, a connecting rod is fixedly connected to the bottom surface of the driving push block, and a driving slide rod is fixedly connected to the end side of the connecting rod. When the driving push block drives the connecting rod and the driving slide rod to move, the push plate can be easily moved up and down inside the guide inclined plate.
[0008] Preferably, the guiding mechanism includes a guide frame, the outer end of which is connected to a guide groove. The surface of the guide frame is connected to the surface of the main body of the feeding device through a first support rod. The first support rod can facilitate the positioning and installation of the guide frame and the guide groove.
[0009] Preferably, the collecting mechanism includes a guide plate, which is connected to the surface of the main body of the feeding device via a second support rod. Limiting baffles are fixedly connected to both sides of the upper part of the guide plate. A push plate is slidably connected to the end of the guide plate via a second slider. The surface of the push plate is hinged to one end of a hinged push rod, and the other end of the hinged push rod is hinged to the main body of the feeding device. By moving the push plate inside the guide plate, the tubes on the surface of the guide plate can be easily lifted.
[0010] Preferably, the adjusting mechanism includes an adjusting screw, which is installed inside the guide plate via a bearing, and a driving slider is threadedly connected to the surface of the adjusting screw. A fixed frame is fixedly connected to the upper end of the driving slider, and multiple sets of first rollers are installed at equal intervals inside the fixed frame. The fixed frame and the first rollers can conveniently limit and guide the pipe.
[0011] Preferably, a third slider is fixedly connected to both ends of the fixed frame. A strip groove adapted to the driving slider is opened at the center of the surface of the guide plate. Strip grooves adapted to the third slider are opened on both sides of the surface of the guide plate. The third slider can facilitate the limiting and guiding of the fixed frame.
[0012] Preferably, the storage mechanism includes a storage frame, a guide port is installed at the top of the storage frame, a discharge door is installed on the outside of the storage frame, and a material collecting inclined plate is fixedly connected to the bottom inner wall of the storage frame. The pipe discharged from the guide channel can be easily guided through the guide port.
[0013] Preferably, the pressing mechanism includes a second roller, which is slidably connected to the inner wall of the storage frame, and the second roller is fixedly connected to the side of the pressing inclined plate. A driving inclined plate is fixedly connected to the bottom end of one side of the pressing inclined plate, and a guide post is fixedly connected to the top end of the other side of the pressing inclined plate. The pressing inclined plate can facilitate the pressing and limiting of the pipe material, making it easy for the pipe material to be stacked layer by layer.
[0014] Preferably, the surface of the collecting inclined plate is set as an inclined surface, the side of the driving inclined plate is set as an inclined surface, and the bottom end of the inclined surface of the collecting inclined plate is provided with a groove that matches the driving inclined plate. By setting the side of the driving inclined plate as an inclined surface, the discharge gate can drive the pressing inclined plate to move upward when the pipe is pressed on the inclined surface.
[0015] Preferably, the inner wall of the storage frame is provided with a slide track adapted to the second roller, and two sets of guide posts are symmetrically arranged on the surface of the pressing inclined plate, and both sets of guide posts are cylindrical. The top surface of the storage frame is provided with a circular hole adapted to the guide post. By setting the guide post to be cylindrical, the friction between it and the storage frame can be easily reduced.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0017] 1. This device can easily support the function of the push cylinder through the fixed support plate. The push cylinder can drive the mechanism to slide inside the guide mechanism. At the same time, during the sliding process of the drive mechanism, the push plate can extend and retract inside the guide inclined plate, which can push the tubes on the surface of the guide inclined plate into the guide mechanism. This makes it easy to push the tubes on the surface of the guide inclined plate out through the guide mechanism in sequence, so that the tubes can be dropped in sequence after processing. The collection mechanism can collect the tubes discharged by the guide mechanism.
[0018] 2. This device guides the pipes into the storage box through the feed inlet. The pipes are blocked by two sets of guide columns and fall onto one end of the collecting inclined plate. Since the collecting inclined plate is inclined, the pipes will roll and be placed in sequence. When the surface of the collecting inclined plate is full of pipes, the weight of the pipes can squeeze and drive the inclined plate, causing the pressing inclined plate to move upward. At this time, the falling pipes will be stacked in sequence and can be collected and processed in the storage box through the discharge door. Attached Figure Description
[0019] Figure 1 This is a three-dimensional schematic diagram of a pipe processing and blanking device proposed in this invention;
[0020] Figure 2 This is a three-dimensional rear view schematic diagram of a pipe processing and blanking device proposed in this invention;
[0021] Figure 3 for Figure 1 A three-dimensional cross-sectional view of the guide frame and guide groove structure in the diagram;
[0022] Figure 4 for Figure 1 A schematic diagram of the three-dimensional separation state of the guide plate and the push plate structure in the middle;
[0023] Figure 5 for Figure 1 A three-dimensional cross-sectional schematic diagram of the guide plate structure in the middle;
[0024] Figure 6 for Figure 1 A three-dimensional cross-sectional diagram of the storage frame and material collection inclined plate structure in the middle;
[0025] Figure 7 for Figure 1 A three-dimensional bottom view of the structure of the second roller and the pressing inclined plate.
[0026] In the diagram: 1. Main body of the feeding device; 2. Fixed support plate; 3. Push cylinder;
[0027] 4. Driving mechanism; 41. Driving push block; 42. Push rod; 43. First slider; 44. Connecting rod; 45. Driving slide bar;
[0028] 5. Guiding mechanism; 51. Guide frame; 52. Guide groove; 53. First support rod;
[0029] 6. Collection mechanism; 61. Guide sloping plate; 62. Limiting baffle; 63. Second slider; 64. Push plate; 65. Hinge push rod; 66. Second support rod;
[0030] 7. Adjustment mechanism; 71. Adjustment screw; 72. Drive slider; 73. Fixed frame; 74. First roller; 75. Third slider;
[0031] 8. Storage mechanism; 81. Storage frame; 82. Material guide port; 83. Discharge gate; 84. Material collection ramp;
[0032] 9. Pressing mechanism; 91. Second roller; 92. Pressing inclined plate; 93. Driving inclined plate; 94. Guide column. Detailed Implementation
[0033] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0034] Reference Figure 1-7 A pipe processing feeding device includes a feeding device body 1. A pushing cylinder 3 is installed on the surface of the feeding device body 1 through a fixed support plate 2. A driving mechanism 4 is fixedly connected to the end of the pushing cylinder 3. A guiding mechanism 5 is sleeved on the surface of the driving mechanism 4. A collecting mechanism 6 is fixedly connected to the side of the guiding mechanism 5. An adjusting mechanism 7 is installed inside the collecting mechanism 6. A storage mechanism 8 is placed below the end of the guiding mechanism 5. A pressing mechanism 9 is installed inside the storage mechanism 8.
[0035] Furthermore, refer to Figure 3 and Figure 4It can be seen that the driving mechanism 4 includes a driving push block 41, and a push rod 42 is sleeved inside the bottom end of the driving push block 41. The push rod 42 is cylindrical and the end of the push rod 42 is arc-shaped, which can facilitate the pushing of the pipe. First sliders 43 are fixedly connected to both sides of the driving push block 41. The surface of the guide frame 51 is provided with a strip-shaped through groove that matches the first slider 43. When the driving push block 41 moves, the first slider 43 can slide in the strip-shaped through groove, which can facilitate the limiting of the driving push block. The function of 41 is to drive the push block 41 to have a connecting rod 44 fixedly connected to its bottom surface. The cross-section of the connecting rod 44 is set to L-shape, which can facilitate the movement of the push block 41 and the sliding rod 45 through the connecting rod 44. The sliding rod 45 is fixedly connected to the side of the end of the connecting rod 44. The sliding rod 45 is set to cylindrical shape, and the surface of the push plate 64 has a slide that matches the sliding rod 45, which can facilitate the movement of the sliding rod 45 in the slide and make it easier to lift the push plate 64.
[0036] Furthermore, refer to Figure 2 and Figure 3 It can be seen that the guiding mechanism 5 includes a guide frame 51, and the outer end of the guide frame 51 is connected to a guide groove 52. The guide groove 52 is set in an inclined shape, which can facilitate the movement of the pipe. The surface of the guide frame 51 is connected to the surface of the feeding device body 1 through the first support rod 53. The first support rod 53 can facilitate the support of the guide frame 51.
[0037] Furthermore, refer to Figure 4 and Figure 5 It can be seen that the collecting mechanism 6 includes a guide ramp 61, which is connected to the surface of the feeding device body 1 via a second support rod 66. The second support rod 66 can conveniently limit and support the guide ramp 61. Limiting baffles 62 are fixedly connected to both sides of the upper part of the guide ramp 61. The two sets of limiting baffles 62 can block the pipe, preventing it from falling off the surface of the guide ramp 61. The end of the guide ramp 61 is slidably connected to a pushing mechanism via a second slider 63. The end of the guide plate 64 and the guide plate 61 are provided with a notch that matches the guide plate 61. The second slider 63 is fixedly connected to both sides of the notch. By moving the push plate 64, the second slider 63 can slide inside the push plate 64 on both sides, which can limit and guide the push plate 64. The surface of the push plate 64 is hinged to one end of the hinged push rod 65, and the other end of the hinged push rod 65 is hinged to the main body 1 of the feeding device. The hinged push rod 65 can conveniently limit the push plate 64.
[0038] Furthermore, refer to Figure 4 and Figure 5It can be seen that the adjusting mechanism 7 includes an adjusting screw 71. The adjusting screw 71 is installed inside the guide plate 61 through a bearing, and the surface of the adjusting screw 71 is threadedly connected to a driving slider 72. By rotating the adjusting screw 71, the two sets of driving sliders 72 can be easily moved relative to each other on its surface. The upper end of the driving slider 72 is fixedly connected to a fixed frame 73. The driving slider 72 can facilitate the movement of the fixed frame 73. The fixed frame 73 has multiple sets of first rollers 74 installed at equal intervals inside. The multiple sets of first rollers 74 installed at equal intervals inside the fixed frame 73 can facilitate the guidance of the pipe.
[0039] Furthermore, refer to Figure 4 and Figure 5 It can be seen that a third slider 75 is fixedly connected to both ends of the fixed frame 73. A strip groove adapted to the driving slider 72 is opened at the center of the surface of the guide plate 61. The strip groove opened at the center of the surface of the guide plate 61 allows the driving slider 72 to move easily in the strip groove. Strip grooves adapted to the third slider 75 are opened on both sides of the surface of the guide plate 61. The third slider 75 can move in the strip groove by moving the fixed frame 73, which serves to limit the fixed frame 73.
[0040] Furthermore, refer to Figure 6 and Figure 7 It can be seen that the storage mechanism 8 includes a storage frame 81. A guide port 82 is installed at the top of the storage frame 81, through which the pipe can be guided into the interior of the storage frame 81. A discharge gate 83 is installed on the outside of the storage frame 81, through which the pipe inside the storage frame 81 can be conveniently discharged. A collecting inclined plate 84 is fixedly connected to the inner wall of the bottom end of the storage frame 81, through which the collecting inclined plate 84 can conveniently guide the pipe.
[0041] Furthermore, refer to Figure 6 and Figure 7 It can be seen that the pressing mechanism 9 includes a second roller 91, the inner wall of the storage frame 81 is slidably connected to the second roller 91, and the second roller 91 is fixedly connected to the side of the pressing inclined plate 92. The pressing inclined plate 92 is set in an inclined shape, which can facilitate the pressing of the pipe. A driving inclined plate 93 is fixedly connected to the bottom end of one side of the pressing inclined plate 92, and a guide post 94 is fixedly connected to the top end of the other side of the pressing inclined plate 92. The guide post 94 can conveniently guide and limit the pressing inclined plate 92.
[0042] Furthermore, refer to Figure 6 and Figure 7It can be seen that the surface of the aggregate inclined plate 84 is set as an inclined surface. By setting the surface of the aggregate inclined plate 84 as an inclined surface, it is convenient to guide the action of the pipe. The side of the driving inclined plate 93 is set as an inclined surface. The bottom end of the inclined surface of the aggregate inclined plate 84 is provided with a groove that matches the driving inclined plate 93. Through the groove at the bottom end of the inclined surface of the aggregate inclined plate 84, the pressing inclined plate 92 can be conveniently inserted into the groove to drive the driving inclined plate 93.
[0043] Furthermore, refer to Figure 6 and Figure 7 It can be seen that the inner wall of the storage frame 81 is provided with a slide that matches the second roller 91. The second roller 91 can slide in the slide through the slide on the inner wall of the storage frame 81. Two sets of guide posts 94 are symmetrically arranged on the surface of the pressing inclined plate 92, and both sets of guide posts 94 are cylindrical. The top surface of the storage frame 81 is provided with a round hole that matches the guide post 94. The guide post 94 can move in the round hole through the round hole on the top surface of the storage frame 81.
[0044] Working principle: When the present invention is in use, the main body 1 of the feeding device is used according to the attached... Figure 1 Appendix Figure 2 Appendix Figure 3 Appendix Figure 4 Appendix Figure 5 Appendix Figure 6 and attached Figure 7By placing the guide ramp 61 at the material discharge port of the processing equipment and placing the receiving frame 81 below the guide groove 52, rotating the adjusting screw 71 causes the sliding block 72 to move relative to its surface. The movement of the sliding block 72 causes the fixed frame 73 to move the first roller 74, adjusting the two sets of first rollers 74 according to the processing length of the pipe. The processed pipe then falls onto the surface of the guide ramp 61. Using the ramp surface of the guide ramp 61 as a slope, the pipe is guided and placed on the surface by the first rollers 74. The pushing cylinder 3 then pushes the push block 41 and the push rod 42 to slide inside the guide frame 51. When the push block 41 moves, the connecting rod 44 drives the sliding rod 45 to slide inside the push plate 64, thus moving the push plate 64... 4. The push plate 64 lifts up the single tube on the surface of the guide plate 61. When the push plate 64 moves to be flush with the guide frame 51, the top of the push plate 64 is inclined, which can make the tube roll into the interior of the guide frame 51. At this time, the push block 41 drives the push rod 42 to push the tube inside the guide frame 51. Through the guidance of the guide groove 52, the tube can fall into the storage frame 81 through the guide port 82. Through the blocking of the two sets of guide columns 94, the tube can fall on one side of the collection plate 84. Through the limiting of the pressing plate 92, the tube can be placed on the surface of the collection plate 84 in sequence. When the tube is laid flat, the weight of the tube itself can squeeze and drive the plate 93, so that the plate 93 is squeezed and drives the pressing plate 92 to move upward, which makes it easier to stack the tube layer by layer in the storage frame 81.
[0045] The above describes the entire working principle of this invention.
[0046] In this invention, the installation, connection or setting methods of all the components mentioned above are common mechanical methods, and the specific structure, model and coefficient index of all the components are their own technologies. As long as they can achieve their beneficial effects, they can be implemented, so they will not be described in detail.
[0047] The above embodiments are preferred embodiments of the present invention, but the embodiments of the present invention are not limited to the above embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of the present invention shall be considered equivalent substitutions and shall be included within the protection scope of the present invention.
[0048] In this invention, unless otherwise stated, directional terms such as "up, down, left, right, front, back, inside, outside, and vertical and horizontal" in the terminology only represent the orientation of the term in its conventional use or are common terms understood by those skilled in the art, and should not be regarded as limitations on the term. At the same time, numerals such as "first," "second," and "third" do not represent specific quantities or orders, but are merely used to distinguish names. Moreover, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
Claims
1. A pipe processing blanking device comprising a blanking device main body (1), characterized in that, The surface of the blanking device body (1) is provided with a push cylinder (3) through a fixed support plate (2), and the end of the push cylinder (3) is fixedly connected with a driving mechanism (4), the surface of the driving mechanism (4) is sleeved with a guide mechanism (5), the side of the guide mechanism (5) is fixedly connected with a collecting mechanism (6), and the inside of the collecting mechanism (6) is provided with an adjusting mechanism (7), the collecting mechanism (6) comprises a guide inclined plate (61), the guide inclined plate (61) is connected with the surface of the blanking device body (1) through a second supporting rod (66), and the upper sides of the guide inclined plate (61) are fixedly connected with limit baffle plates (62), the end of the guide inclined plate (61) is slidably connected with a push plate (64) through a second sliding block (63), and the surface of the push plate (64) is hingedly connected with one end of a hinged push rod (65), the other end of the hinged push rod (65) is hinged with the blanking device body (1), the adjusting mechanism (7) comprises an adjusting screw (71), the inside of the guide inclined plate (61) is provided with the adjusting screw (71) through a bearing, and the surface of the adjusting screw (71) is threadedly connected with a driving sliding block (72), the upper end of the driving sliding block (72) is fixedly connected with a fixed frame (73), and a plurality of first rollers (74) are installed at equal distances in the inside of the fixed frame (73), the end of the guide mechanism (5) is placed with a receiving mechanism (8), and the inside of the receiving mechanism (8) is provided with a pressing mechanism (9), the receiving mechanism (8) comprises a receiving frame (81), the top end of the receiving frame (81) is provided with a material guiding port (82), the outside of the receiving frame (81) is provided with a material discharging door (83), the bottom end inner wall of the receiving frame (81) is fixedly connected with a material collecting inclined plate (84), the pressing mechanism (9) comprises a second roller (91), the inner wall of the receiving frame (81) is slidably connected with the second roller (91), and the second roller (91) is fixedly connected with the side of a pressing inclined plate (92), one side bottom end of the pressing inclined plate (92) is fixedly connected with a driving inclined plate (93), and the other side top end of the pressing inclined plate (92) is fixedly connected with a guide column (94).
2. A pipe material processing blanking device according to claim 1, wherein The driving mechanism (4) comprises a driving push block (41), the bottom end inside of the driving push block (41) is sleeved with a push rod (42), the two sides of the driving push block (41) are fixedly connected with first sliding blocks (43), and the bottom end surface of the driving push block (41) is fixedly connected with a connecting rod (44), and the end side of the connecting rod (44) is fixedly connected with a driving sliding rod (45).
3. The pipe processing blanking device according to claim 1, wherein The guide mechanism (5) comprises a guide frame (51), the outer end of the guide frame (51) is connected with a guide groove (52), and the surface of the guide frame (51) is connected with the surface of the blanking device body (1) through a first supporting rod (53).
4. The apparatus of claim 1, wherein, The fixed frame (73) is fixedly connected to the bottom of both ends of the third slider (75). The center of the surface of the guide plate (61) is provided with a strip groove that matches the driving slider (72). The two sides of the surface of the guide plate (61) are provided with strip grooves that match the third slider (75).
5. The apparatus of claim 1, wherein, The surface of the collecting inclined plate (84) is set as an inclined surface, the side of the driving inclined plate (93) is set as an inclined surface, and the bottom end of the inclined surface of the collecting inclined plate (84) is provided with a groove that matches the driving inclined plate (93).
6. A pipe material processing blanking device according to claim 1, wherein The inner wall of the storage frame (81) is provided with a slide that is compatible with the second roller (91). Two sets of guide posts (94) are symmetrically arranged on the surface of the pressing inclined plate (92), and both sets of guide posts (94) are cylindrical. The top surface of the storage frame (81) is provided with a round hole that is compatible with the guide posts (94).
Citation Information
Patent Citations
Automatic thread rod feeding device
CN113636304A