Pipe cutting machine pipe blanking belt conveying line

CN224811503UActive Publication Date: 2026-09-29JIANGSU XUNLEI LASER TECH CO LTD
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Patent Information

Application Number
CN202522155165.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-11
Publication Date
2026-09-29
Estimated Expiration
2035-10-11

AI Technical Summary

Technical Problem

[0005]本实用新型提供的一种切管机用管材下料皮带输送线,有效的解决了管材输送装置结构复杂、管材切割后输送时碰撞噪音大、导致管材变形及划伤的问题

Benefits of technology

[0014]实用新型的有益效果:整个切管机用管材下料皮带输送线的结构简单紧凑,并且采用皮带输送线既能够实现对管材的输送,还能够利用皮带输送线的皮带实现对管材的缓冲消除噪音,同时能够利用收渣盒及时对废渣进行收集。

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Abstract

The utility model discloses a pipe blanking belt conveying line for pipe cutting machine, including the mounting frame, still include a plurality of settings in the mounting frame lower end's trundle, at least two parallel settings on the mounting frame's belt conveying line, set up on the mounting frame for driving a plurality of belt conveying line synchronous transmission's drive assembly, set up in the mounting frame front end and be located on the belt conveying line upper end's blanking slope board, set up in the mounting frame rear end and be located on the belt conveying line upper end's blanking baffle, set up in the mounting frame rear end's slag receiving box, the slag receiving box is located below the belt conveying line rear end. Advantage: the whole pipe blanking belt conveying line for pipe cutting machine simple and compact structure, and adopt the belt conveying line to be able to realize the conveying to pipe material, still can utilize the belt of belt conveying line to realize the buffer to pipe material and eliminate the noise, can utilize the slag receiving box and collect the waste slag in time simultaneously.
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Description

Technical Field

[0001] This utility model relates to the field of pipe conveying, specifically a pipe unloading belt conveyor for a pipe cutting machine. Background Technology

[0002] After the pipe is cut by the pipe cutter, a special feeder is needed to connect the pipes so that they can be unloaded from the pipe cutter. Existing feeders are complex in structure and inefficient, or too simple in structure, consisting of just a material frame. They cause loud noise when the pipes are unloaded and can also cause the pipes to deform and scratch.

[0003] For example, Chinese patent CN112757028A discloses a pipe unloading rack, belonging to the field of pipe processing equipment. It includes: a pipe receiving mechanism, comprising a receiving plate, a first driving device for driving the receiving plate to swing up and down, and a second driving device for driving the receiving plate and the first driving device to move back and forth; a pipe placement rack, disposed below the pipe receiving mechanism; the pipe placement rack is recessed downwards to form a recess for placing pipes, the recess being located on the front side of the receiving plate; a spring drum connected to the pipe placement rack, the spring drum being rotatable around a horizontal axis; and a receiving belt disposed within the recess, the two ends of the receiving belt being arranged front and back; one end of the receiving belt is connected to the pipe placement rack, and the other end of the receiving belt is connected to the spring drum. The aforementioned pipe feeding rack uses a receiving plate to support the pipes and a pipe placement rack to place them. Inevitably, collisions may occur when the receiving plate supports the pipes, which can even cause deformation of the pipes in severe cases.

[0004] Therefore, it is necessary to provide a pipe feeding belt conveyor for a pipe cutting machine. Utility Model Content

[0005] This utility model provides a pipe feeding belt conveyor for a pipe cutting machine, which effectively solves the problems of complex pipe conveying device structure, large collision noise during pipe cutting and conveying, and pipe deformation and scratches.

[0006] The technical solution adopted in this utility model is:

[0007] A pipe cutting machine pipe feeding belt conveyor line includes a mounting frame, a number of casters disposed at the lower end of the mounting frame, at least two belt conveyors disposed side by side on the mounting frame, a drive assembly disposed on the mounting frame for driving the multiple belt conveyors synchronously, a feeding ramp disposed at the front end of the mounting frame and located at the upper end of the belt conveyors, a feeding baffle disposed at the rear end of the mounting frame and located at the upper end of the belt conveyors, and a slag receiving box disposed at the rear end of the mounting frame, the slag receiving box being located below the rear end of the belt conveyors.

[0008] Furthermore, the material feeding ramp includes support plates on both sides of the mounting plate and a first inclined plate connected to the two support plates at both ends, the first inclined plate being inclined toward the rear end of the belt conveyor line.

[0009] Furthermore, the slag receiving box includes a front wall fixedly connected to the rear end of the mounting frame, a bottom wall connected to the lower end of the front wall at its front end, a rear wall connected to the rear end of the bottom wall, a right side wall connecting the front wall and the rear wall and the right side of the bottom wall, a left side wall connecting the front wall and the rear wall and the left side of the bottom wall, and several upper guide plates disposed on the upper end of the front wall. The front wall, rear wall, bottom wall, left side wall, and right side wall form a receiving groove. The upper guide plates are inclined to the rear side and correspond one-to-one with the belt conveyor lines. The upper end of the upper guide plate extends into the area below the corresponding belt conveyor line.

[0010] Furthermore, the belt conveyor line includes a drive roller, a driven roller, and a conveyor belt that is driven and connected to the drive roller and the driven roller.

[0011] Furthermore, the drive assembly includes an active rotating shaft coaxially fixedly connected to the active rollers of several belt conveyors, a driven rotating shaft coaxially fixedly connected to the driven rollers of several belt conveyors, and a geared motor mounted on the mounting frame for driving the active rotating shaft to rotate.

[0012] Furthermore, the mounting frame includes a frame and a support plate disposed on the frame. The support plate is located between the upper parallel section and the lower parallel section of the conveyor belt and is used to support the upper parallel section of the conveyor belt.

[0013] Furthermore, the mounting bracket is also equipped with a photoelectric sensor switch, which is used to sense whether the pipe is stopped by the discharge baffle.

[0014] The beneficial effects of the utility model: The entire pipe cutting machine uses a simple and compact pipe feeding belt conveyor line. The belt conveyor line can not only transport the pipe, but also buffer the pipe and eliminate noise. At the same time, the slag collection box can collect the waste residue in time. Attached Figure Description

[0015] Figure 1 This is an overall schematic diagram of a pipe cutting machine pipe unloading belt conveyor provided for an embodiment of this application.

[0016] Figure 2 This is a schematic diagram of the unloading ramp of the pipe cutting machine's pipe unloading belt conveyor provided in an embodiment of this application.

[0017] Figure 3 This is a schematic diagram of the belt conveyor and drive assembly of a pipe cutting machine pipe unloading belt conveyor provided in an embodiment of this application.

[0018] Figure 4 This is a schematic diagram of the slag collection box of the pipe cutting machine's pipe unloading belt conveyor provided in an embodiment of this application.

[0019] Figure 5 An exploded view of a pipe cutting machine pipe feeding belt conveyor provided in an embodiment of this application.

[0020] Figure 6 This is a schematic diagram of the pipe cutting machine's pipe feeding belt conveyor line and its cooperation with an external pipe cutting machine for feeding.

[0021] The markings in the diagram are as follows: 1. Mounting frame; 2. Casters; 3. Belt conveyor; 4. Discharge ramp; 5. Discharge baffle; 6. Slag collection box; 7. Drive assembly; 8. Photoelectric sensor switch; 41. Support plate; 42. No. 1 ramp; 61. Front wall; 62. Bottom wall; 63. Rear wall; 64. Left side wall; 65. Right side wall; 66. Upper guide plate; 31. Driven roller; 32. Driven roller; 33. Conveyor belt; 71. Driven shaft; 72. Driven shaft; 73. Gear motor; 11. Support plate; 12. Frame; 330. Upper parallel section; 331. Lower parallel section; 9. Pipe cutter; 100. Pipe. Detailed Implementation

[0022] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0023] like Figure 1 As shown in the embodiment of this application, a pipe cutting machine pipe 1 unloading belt conveyor line is provided, including a mounting frame 1, a plurality of casters 2 disposed at the lower end of the mounting frame 1, at least two belt conveyors 3 disposed in parallel on the mounting frame 1, a drive assembly 7 disposed on the mounting frame 1 for driving the plurality of belt conveyors 3 synchronously, an unloading ramp 4 disposed at the front end of the mounting frame 1 and located at the upper end of the belt conveyors 3, an unloading baffle 5 disposed at the rear end of the mounting frame 1 and located at the upper end of the belt conveyors 3, and a slag receiving box 6 disposed at the rear end of the mounting frame 1, the slag receiving box 6 being located below the rear end of the belt conveyors 3.

[0024] It should be noted that this application uses a PLC control system to automatically control the belt conveyor line 3. The front and rear orientations are as follows: the discharge ramp 4 is located at the front end of the discharge baffle 5, and the discharge baffle 5 is located at the rear end of the discharge ramp 4.

[0025] In actual use, such as Figure 6As shown, the movement of caster 2 enables the unloading ramp of the pipe cutting machine's unloading belt conveyor line to connect with one side of the pipe cutting machine 9. The drive assembly 7 drives the belt conveyor line 3 for transmission. The pipe 100 cut by the pipe cutting machine 9 is pushed by the flipping mechanism of the pipe cutting machine 9 and slides down the unloading ramp onto the belt conveyor line 3. Then, the pipe 100 is conveyed by the belt conveyor line 3 to the side of the unloading baffle 5. When the pipe 100 is conveyed along the belt conveyor line 3 until it is stopped by the unloading baffle 5, the pipe 100 is manually removed from the belt conveyor line 3. Cutting debris adhering to the belt conveyor line 3 due to friction of the pipe 100 falls into the slag collection box 6 when it is conveyed to the rear end of the mounting frame 1. When the length of the pipe 100 is too long, several pipe cutting machine unloading belt conveyors of this application can be arranged side by side along the axial direction of the pipe 100 to connect the pipe 100.

[0026] In the above design, the entire pipe cutting machine uses a simple and compact pipe feeding belt conveyor line. The belt conveyor line 3 can not only transport the pipe 100, but also use the belt of the belt conveyor line 3 to buffer the pipe 100 and eliminate noise. At the same time, the waste slag can be collected in time using the slag collection box.

[0027] Specifically: such as Figure 1 and Figure 2 As shown, the material feeding ramp 4 includes support plates 41 arranged on both sides of the mounting plate and a first ramp 42 connected to the two support plates 41 at both ends respectively. The first ramp 42 is inclined towards the rear end of the belt conveyor line 3.

[0028] In actual use, the pipe 100 cut by the pipe cutter 9 is conveyed along the first inclined plate 42 to the belt conveyor line 3, and the first inclined plate 42 is supported by the support plate 41.

[0029] In the above design, the structural design and specific implementation of the unloading ramp plate 4 can realize the ramp guidance of the pipe 100, so that the pipe 100 can slide down onto the belt conveyor line 3.

[0030] Specifically: such as Figure 4 As shown, the slag receiving box 6 includes a front wall 61 fixedly connected to the rear end of the mounting frame 1, a bottom wall 62 connected to the lower end of the front wall 61 at its front end, a rear wall 63 connected to the rear end of the bottom wall 62, a right side wall 65 connecting the front wall 61, the rear wall 63, and the right side of the bottom wall 62, a left side wall 64 connecting the front wall 61, the rear wall 63, and the left side of the bottom wall 62, and a plurality of upper guide plates 66 disposed on the upper end of the front wall 61. The front wall 61, the rear wall 63, the bottom wall 62, the left side wall 64, and the right side wall 65 form a receiving groove. The upper guide plates 66 are inclined to the rear side. The upper guide plates 66 correspond one-to-one with the belt conveyor lines 3. The upper end of the upper guide plate 66 extends into the area below the corresponding belt conveyor line 3.

[0031] In actual use, the waste residue on the belt conveyor line 3 is transported along the belt conveyor line 3 and falls into the waste receiving box 6. During the waste receiving process, the waste residue slides down the upper guide plate 66 into the collection trough.

[0032] In the above design, the structural design and specific implementation of the slag receiving box 6 can achieve effective collection of waste slag.

[0033] Specifically: such as Figure 3 As shown, the belt conveyor line 3 includes a drive roller 31, a driven roller 32, and a conveyor belt 33 that is connected to the drive roller 31 and the driven roller 32.

[0034] In actual use, the conveyor belt 33 is driven by the rotation of the driving roller 31 and the driven roller 32 to convey the pipe 100.

[0035] In the above design, the structural design and specific implementation of the belt conveyor line 3 enable the conveying of the pipe 100.

[0036] Specifically: such as Figure 3 As shown, the drive assembly 7 includes an active rotating shaft 71 coaxially and fixedly connected to the active rollers 31 of several belt conveyors 3, a driven rotating shaft 72 coaxially and fixedly connected to the driven rollers 32 of several belt conveyors 3, and a reduction motor 73 mounted on the mounting frame 1 for driving the active rotating shaft 71 to rotate.

[0037] In actual use, the drive shaft 71 is driven to rotate by the geared motor 73, which causes the drive roller 31, which is coaxially fixedly connected to the drive shaft, to rotate. With the cooperation of the conveyor belt 33, the driven roller 32 and the driven shaft 72 are rotated.

[0038] In the above design, the structural design and specific implementation of the drive component 7 can realize the synchronous drive of multiple belt conveyor lines 3, ensuring the stable conveying of the pipe 100.

[0039] Specifically: such as Figure 5 As shown, the mounting frame 1 includes a frame 12 and a support plate 11 disposed on the frame 12. The support plate 11 is located between the upper parallel section 330 and the lower parallel section 331 of the conveyor belt 33 and is used to support the upper parallel section 330 of the conveyor belt 33.

[0040] In actual use, the upper parallel section 330 of the conveyor belt 33 is supported by the support plate 11 to prevent the pressure of the pipe 100 on the conveyor belt 33 from causing stress concentration and avoid cracking of the conveyor belt 33 due to stress concentration.

[0041] In the above design, by setting the support plate 11, the upper parallel section 330 of the conveyor belt 33 can be supported without affecting the normal transmission of the conveyor belt 33. Under the premise of meeting the requirements for conveying the pipe 100, the conveyor belt 33 can be lifted, thus extending the service life of the conveyor belt 33.

[0042] Specifically: such as Figure 1 As shown, the mounting bracket is also equipped with a photoelectric sensor switch 8, which is used to sense whether the pipe 100 is stopped by the feeding baffle 5.

[0043] In actual use, when the pipe 100 is stopped by the feeding baffle 5, the photoelectric sensor switch 8 senses the presence of the stopped pipe 100. After the PLC control system detects the sensing signal of the photoelectric switch to the pipe 100, the PLC control system controls the belt conveyor 3 to stop, and then the pipe 100 is manually fed.

[0044] In the above design, by setting a photoelectric sensor switch, the operation of the belt conveyor 3 can be automatically stopped after the pipe 100 is stopped by the feeding baffle 5, so as to prevent the pipe 100 from being inconvenient to pick up due to the transmission of the belt conveyor 3 during the manual handling of the pipe 100.

[0045] In further detail, it should be understood that the above description is only a specific embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A pipe cutting machine pipe feeding belt conveyor, comprising a mounting frame (1), characterized in that: It also includes several casters (2) set at the lower end of the mounting frame (1), at least two belt conveyor lines (3) set in parallel on the mounting frame (1), a drive assembly (7) set on the mounting frame (1) for driving the several belt conveyor lines (3) synchronously, a discharge ramp (4) set at the front end of the mounting frame (1) and located at the upper end of the belt conveyor line (3), a discharge baffle (5) set at the rear end of the mounting frame (1) and located at the upper end of the belt conveyor line (3), and a slag receiving box (6) set at the rear end of the mounting frame (1), the slag receiving box (6) being located below the rear end of the belt conveyor line (3).

2. The pipe cutting machine pipe feeding belt conveyor line according to claim 1, characterized in that: The material feeding ramp (4) includes support plates (41) set on both sides of the mounting plate and a first ramp (42) connected to the two support plates (41) at both ends respectively. The first ramp (42) is inclined towards the rear end of the belt conveyor line (3).

3. The pipe cutting machine pipe feeding belt conveyor line according to claim 1, characterized in that: The slag receiving box (6) includes a front wall (61) fixedly connected to the rear end of the mounting frame (1), a bottom wall (62) connected to the lower end of the front wall (61) at its front end, a rear wall (63) connected to the rear end of the bottom wall (62), a right side wall (65) connecting the front wall (61), the rear wall (63) and the right side of the bottom wall (62), a left side wall (64) connecting the front wall (61), the rear wall (63) and the left side of the bottom wall (62), and several upper guide plates (66) disposed on the upper end of the front wall (61). The front wall (61), the rear wall (63), the bottom wall (62), the left side wall (64) and the right side wall (65) form a receiving groove. The upper guide plates (66) are inclined to the rear side. The upper guide plates (66) correspond one-to-one with the belt conveyor line (3). The upper end of the upper guide plate (66) extends into the lower part of the corresponding belt conveyor line (3).

4. The pipe cutting machine pipe feeding belt conveyor line according to claim 1, characterized in that: The belt conveyor line (3) includes a drive roller (31), a driven roller (32), and a conveyor belt (33) that is connected to the drive roller (31) and the driven roller (32) for transmission.

5. The pipe cutting machine pipe unloading belt conveyor line according to claim 1, characterized in that: The drive assembly (7) includes an active rotating shaft (71) coaxially fixedly connected to the active rollers (31) of a plurality of belt conveyors (3), a driven rotating shaft (72) coaxially fixedly connected to the driven rollers (32) of a plurality of belt conveyors (3), and a geared motor (73) mounted on the mounting frame (1) for driving the active rotating shaft (71) to rotate.

6. The pipe cutting machine pipe unloading belt conveyor line according to claim 1, characterized in that: The mounting frame (1) includes a frame (12) and a support plate (11) set on the frame (12). The support plate (11) is located between the upper parallel section (330) and the lower parallel section (331) of the conveyor belt (33) to support the upper parallel section (330) of the conveyor belt (33).

7. The pipe cutting machine pipe unloading belt conveyor line according to claim 1, characterized in that: The mounting bracket is also equipped with a photoelectric sensor switch (8), which is used to sense whether the pipe (100) is stopped by the feeding baffle (5).

Citation Information

Patent Citations

  • Pipe unloading frame

    CN112757028A