Pipe production equipment

By introducing a waste crushing and screening mechanism into the pipe production equipment, the waste is granulated and re-entered into the feeding hopper, solving the problem of improper waste disposal in pipe production and realizing the recycling of waste and environmental protection.

CN223604963UActive Publication Date: 2025-11-28ZHEJIANG WANHUA SPECIAL STAINLESS STEEL CO LTD
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Patent Information

Application Number
CN202422805162.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-11-28
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

In the pipe production process, directly cutting non-compliant pipes results in waste, causing production waste and potential environmental pollution. Improper waste disposal makes effective recycling difficult.

Method used

A pipe production equipment was designed, which includes a waste crushing mechanism and a screening mechanism. The waste is granulated by crushing and screening and then put back into the feeding hopper to realize the recycling of waste.

Benefits of technology

It reduces waste disposal and environmental pollution, lowers production waste, and achieves efficient recycling and reuse of waste.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223604963U_ABST
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Abstract

The utility model discloses pipe production equipment, and relates to the field of pipe production, the pipe production equipment comprises a production table, a heating extrusion device is mounted on the production table, a feeding hopper is mounted at one end of the heating extrusion device, a waste crushing mechanism is arranged on one side of the feeding hopper, and a screening mechanism is arranged on one side of the feeding hopper. Waste obtained after pipe cutting is adjusted and collected, then the waste is directly poured into the waste smashing mechanism, the waste smashing mechanism cuts and smashes the waste, blocky waste is smashed into the size similar to that of production materials, then the screening mechanism screens the smashed materials, and matched waste particles enter the feeding hopper. And heating extrusion is performed again, so that waste materials generated during pipe production can be conveniently treated, environmental pollution caused by waste material discarding is reduced, and production waste is reduced.
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Description

TECHNICAL FIELD

[0001] The application relates to the field of pipe production, in particular to a pipe production equipment. BACKGROUND

[0002] Pipe transportation is an efficient logistics mode, which utilizes a pipeline system to transport liquid, gas or solid particles, and when the pipe is produced, the pipe material is melted through heating, and then the pipe is extruded by using the production equipment, wherein the pipe material refers to the material used in the pipe system for transporting liquid, gas, solid and the like.

[0003] When the plastic pipe is produced, the material particles used for production are directly poured into the feeding hopper, and then the material particles directly enter the heating and extruding equipment, the particles are melted by heating, and then the pipe is extruded by the machine, and the extruded pipe is cooled by water to form the required pipe.

[0004] When the pipe is produced by using the heating and extruding equipment, the operator needs to observe the shape and thickness of the extruded pipe at the end of the heating and extruding equipment, and when the shape and thickness do not meet the requirements, the just-extruded pipe is directly cut off, and then the equipment is adjusted by using the tool, and then the pipe is observed, and in the adjustment process, the directly cut pipe becomes waste, which causes production waste, and the waste is not easy to handle, and improper handling can easily pollute the environment. CONTENT OF THE INVENTION

[0005] The application aims to solve the problems that the just-extruded pipe is directly cut off, the equipment is adjusted by using the tool, and then the pipe is observed, and in the adjustment process, the directly cut pipe becomes waste, which causes production waste, and the waste is not easy to handle, and improper handling can easily pollute the environment, and the application provides a pipe production equipment.

[0006] In order to achieve the above purpose, the application specifically adopts the following technical scheme:

[0007] A pipe production equipment, comprising a production table, a heating and extruding equipment is installed on the production table, an upper feeding hopper is installed at one end of the heating and extruding equipment, a waste crushing mechanism is arranged on one side of the upper feeding hopper, and a screening mechanism is arranged on one side of the upper feeding hopper.

[0008] By adopting the above technical scheme, the waste material cut off by the pipe cutting is collected and then directly poured into the waste material crushing mechanism, the waste material crushing mechanism cuts and crushes the waste material, the waste material in block is broken into a size similar to the production material, and then the screening mechanism screens the broken material, the waste material particles meeting the requirements are put into the feeding hopper to be heated and extruded again, so that the waste material generated in the production of the pipe can be conveniently treated, the waste material discarded to pollute the environment is reduced, and the production waste is reduced.

[0009] Further, the waste material crushing mechanism comprises a support frame one fixed on the production table, a crushing hopper fixed on the support frame one, a connecting pipe fixed at the bottom of the crushing hopper, and a rotating shaft provided in the crushing hopper.

[0010] By adopting the above technical scheme, the waste material is directly put into the crushing hopper, and then the waste material is crushed by the twisting assembly, so that the waste material after crushing is re-entered into the feeding hopper through the connecting pipe, so that the waste material generated in the production of the pipe can be conveniently treated, the waste material discarded to pollute the environment is reduced, and the production waste is reduced.

[0011] Further, the twisting assembly comprises a rotating shaft provided in the crushing hopper, and a plurality of uniformly distributed cutters fixed on the rotating shaft.

[0012] By adopting the above technical scheme, the rotating shaft is rotated to drive the plurality of cutters, and the plurality of cutters cut and crush the waste material, so that the large waste material can be conveniently changed into particles with a size similar to that of the production material.

[0013] Further, a support plate is fixed on the crushing hopper, a drive motor is fixed on the support plate, and an output end of the drive motor penetrates through the support plate and is fixedly connected with the rotating shaft.

[0014] By adopting the above technical scheme, the support plate blocks most of the openings on the crushing hopper, the drive motor is started to drive the rotating shaft to rotate, so that the material can be prevented from splashing out of the crushing hopper when cutting the material, and the rotating shaft can be conveniently driven to rotate.

[0015] Further, a plurality of uniformly distributed pressing plates are fixed on the rotating shaft.

[0016] By adopting the above technical scheme, the rotating shaft drives the pressing plates to rotate when the rotating shaft rotates, the inclined surface of the pressing plate pushes the waste material to the bottom of the crushing hopper, so that the waste material can be conveniently contacted with the cutters and the splashing of the waste material can be reduced.

[0017] Further, the screening mechanism comprises a support frame arranged on the crushing hopper, the support frame penetrates the crushing hopper and is in sliding connection with the crushing hopper, a screening net is fixed in the middle of the support frame, a support frame two is fixed on the support frame one, and a shaking assembly is arranged between the support frame two and the support frame.

[0018] By adopting the above technical scheme, the waste material particles directly fall into the screening net on the support frame, the particles meeting the size directly pass through the screening net, and the particles not meeting the size continue to be crushed, so that only the waste material particles meeting the size can enter the feeding hopper, and the possibility of blocking the connecting pipe and the feeding hopper by large waste material is reduced.

[0019] Further, the shaking assembly comprises a shaking motor fixed on the support frame two, an output end of the shaking motor is fixed with a rotating disc, the rotating disc is eccentrically connected with a shaking rod one, and one end of the shaking rod one away from the rotating disc is rotatably connected with a shaking rod two.

[0020] By adopting the above technical scheme, the shaking motor drives the rotating disc, the rotating disc drives the shaking rod one, the shaking rod one drives the shaking rod two, the shaking rod two drives the support frame, and the support frame moves back and forth, so that the waste material particles can pass through the screening net more quickly, and the possibility of blocking the screening net is reduced.

[0021] Further, the shaking rod two is slidably connected with a limiting frame, and the limiting frame is fixedly connected with the crushing hopper.

[0022] By adopting the above technical scheme, the limiting frame limits the shaking rod two, and the shaking rod two reciprocally moves, so that the support frame can reciprocally move stably.

[0023] In summary, the present application has at least one of the following beneficial effects.

[0024] 1. The present application collects the waste material generated by adjusting the extrusion production equipment, and then puts the waste material into the crushing hopper, starts the driving motor on the support plate, drives the rotating shaft to rotate by the driving motor, cuts and breaks the waste material by the cutter driven by the rotating shaft, pushes the material to the direction of the connecting pipe by the lower pressing plate driven by the rotating shaft, and directly enters the feeding hopper from the connecting pipe, and then mixes with the material in the feeding hopper, enters the heating extrusion equipment to heat and extrude the pipe material, so as to conveniently process the waste material generated by producing the pipe material, reduce the pollution of the environment by discarding the waste material, and reduce the production waste.

[0025] 2、The application, by letting the waste fall into the crushing hopper, the waste directly falls on the screening net on the supporting frame, when the cutter crushes the powder, the qualified waste particles pass through the screening net into the connecting pipe, at the same time, the shaking motor drives the rotating disc, the rotating disc drives the shaking rod one, the shaking rod one drives the shaking rod two, the shaking rod two reciprocatingly moves under the limitation of the limiting frame, the shaking rod two drives the supporting frame to reciprocate, the waste shakes back and forth on the screening net, so that the waste passes through the screening net faster, which achieves the purpose of only allowing the qualified waste particles to enter the feeding hopper, reducing the possibility of blocking the connecting pipe and the feeding hopper by large waste. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is the first three-dimensional structure schematic diagram of the pipe production equipment in the application;

[0027] Figure 2 is the second three-dimensional structure schematic diagram of the pipe production equipment in the application;

[0028] Figure 3 is the application Figure 2 A enlarged schematic diagram;

[0029] Figure 4 is the application Figure 2 B enlarged schematic diagram.

[0030] BRIEF DESCRIPTION OF DRAWINGS:

[0031] 1, production platform; 2, heating and extruding equipment; 3, feeding hopper; 4, waste crushing mechanism; 41, crushing hopper; 42, supporting frame one; 43, connecting pipe; 44, mincing assembly; 441, rotating shaft; 442, cutter; 443, supporting plate; 444, driving motor; 445, lower pressing plate; 5, screening mechanism; 51, supporting frame; 52, screening net; 53, shaking assembly; 531, shaking motor; 532, rotating disc; 533, shaking rod one; 534, shaking rod two; 535, limiting frame; 54, supporting frame two. DETAILED DESCRIPTION

[0032] The application will be further described in detail below in combination with the drawings. Figure 1 -3.

[0033] The embodiment of the application discloses a pipe production equipment.

[0034] Referring to Figure 1 , Figure 2 and Figure 3 , a pipe production equipment, comprising a production platform 1, a heating and extruding equipment 2 is installed on the production platform 1, a feeding hopper 3 is installed at one end of the heating and extruding equipment 2, a waste crushing mechanism 4 is arranged on one side of the feeding hopper 3, and a screening mechanism 5 is arranged on one side of the feeding hopper 3.

[0035] In use of the pipe production equipment, firstly, the production material particles are put into the upper hopper 3, the material particles enter the heating and extruding equipment 2 from the upper hopper 3, the heating and extruding equipment 2 melts the material particles, then extrudes the material particles from one end to form the shape of the pipe, when the pipe is just extruded, the operator continuously cuts the just extruded pipe, and continuously adjusts the end hopper of the heating and extruding equipment 2 by using the tool, until the shape of the pipe meets the requirements, then the just extruded pipe is cooled in time by water, and finally is stored, the waste material cut from the pipe is collected, then is directly poured into the waste material crushing mechanism 4, the waste material crushing mechanism 4 cuts and crushes the waste material into the size similar to the production material, then the screening mechanism 5 screens the crushed material, so that the qualified waste material particles enter the upper hopper 3 to be heated and extruded again, by directly adding the powder generated by adjusting the pipe into the waste material crushing mechanism 4 to be crushed, the waste material is changed into particles, and after screening by the screening mechanism 5, the waste material reenters the upper hopper 3, so that the waste material generated in the production of the pipe can be conveniently treated, the waste material pollution to the environment is reduced, and the production waste is reduced.

[0036] With reference to Figure 1 , Figure 2 and Figure 3 , the waste material crushing mechanism 4 comprises a support frame one 42 fixed on the production table 1, a crushing hopper 41 fixed on the support frame one 42, a connecting pipe 43 fixed at the bottom of the crushing hopper 41, one end of the connecting pipe 43 away from the crushing hopper 41 is fixedly connected with the upper hopper 3 and communicates with each other, and a crushing assembly 44 arranged in the crushing hopper 41.

[0037] In addition, the crushing assembly 44 comprises a rotating shaft 441 arranged in the crushing hopper 41, and a plurality of uniformly distributed cutters 442 fixed on the rotating shaft 441.

[0038] Further, a support plate 443 is fixed on the crushing hopper 41, a drive motor 444 is fixed on the support plate 443, an output end of the drive motor 444 penetrates through the support plate 443 and is fixedly connected with the rotating shaft 441.

[0039] Further, a plurality of uniformly distributed pressing plates 445 are fixed on the rotating shaft 441.

[0040] Firstly, the waste produced by the extrusion production equipment is collected and then put into the crushing hopper 41. The driving motor 444 on the support plate 443 is started to drive the rotating shaft 441 to rotate, and the rotating shaft 441 drives the cutter 442 to cut and crush the waste. At the same time, the rotating shaft 441 drives the lower pressing plate 445 to push the material to the direction of the connecting pipe 43. The crushed waste directly enters the feeding hopper 3 from the connecting pipe 43, and then is mixed with the material in the feeding hopper 3 and enters the heating and extrusion equipment 2 for heating and extrusion of the pipe. The waste produced by cutting the pipe is put into the waste hopper, and then the cutter 442 is used to crush the waste, and then the connecting pipe 43 is used to re-enter the feeding hopper 3, so that the waste produced during pipe production can be conveniently treated, the environment is not polluted by waste, and the production waste is reduced.

[0041] With reference to Figure 1 , Figure 2 and Figure 4 , the screening mechanism 5 comprises a support frame 51 arranged on the crushing hopper 41. The support frame 51 penetrates through the crushing hopper 41 and is in sliding connection with the crushing hopper 41. A screening mesh 52 is fixed in the middle of the support frame 51. A support frame two 54 is fixed on the support frame one 42. A shaking assembly 53 is arranged between the support frame two 54 and the support frame 51.

[0042] In addition, the shaking assembly 53 comprises a shaking motor 531 fixed on the support frame two 54. A rotating disc 532 is fixed at the output end of the shaking motor 531. A shaking rod one 533 is eccentrically connected to the rotating disc 532. A shaking rod two 534 is rotatably connected to the end of the shaking rod one 533 away from the rotating disc 532.

[0043] Furthermore, a limiting frame 535 is slidably connected to the shaking rod two 534. The limiting frame 535 is fixedly connected to the crushing hopper 41.

[0044] When the waste is poured into the crushing hopper 41, the waste directly falls on the screening mesh 52 on the support frame 51. When the cutter 442 crushes the waste, the qualified waste particles pass through the screening mesh 52 and enter the connecting pipe 43. At the same time, the rotating disc 532 is driven by the shaking motor 531, the shaking rod one 533 is driven by the rotating disc 532, and the shaking rod two 534 is driven by the shaking rod one 533. The shaking rod two 534 reciprocatingly moves under the limitation of the limiting frame 535, and the support frame 51 reciprocatingly moves with the shaking rod two 534. The waste on the screening mesh 52 shakes back and forth, so that the waste passes through the screening mesh 52 faster. By using the screening mesh 52 to block the waste particles and shaking the screening mesh 52, only the qualified waste particles can enter the feeding hopper 3, and the possibility of blocking the connecting pipe 43 and the feeding hopper 3 by large waste is reduced.

[0045] Working principle: when using the pipe production equipment, first put the production material particles into the hopper 3, the material particles from the hopper 3 into the heating and extrusion equipment 2, heating and extrusion equipment 2 will melt the material particles, and then from one end of the extrusion forming pipe shape, when the pipe is just extruded, the operator continuously cut the just extruded pipe, and continuously adjust the heating and extrusion equipment 2 end bucket with tools, until the shape of the pipe meets the requirements, then the just extruded pipe is cooled in time, and finally it is stored.

[0046] Adjust the waste produced by the extrusion production equipment for collection, and then put it into the crushing hopper 41. The waste directly falls on the screening net 52 on the supporting frame 51. Start the drive motor 444 on the supporting plate 443 to drive the rotating shaft 441 to rotate. The rotating shaft 441 drives the cutter 442 to cut and crush the waste. At the same time, the rotating shaft 441 drives the lower pressing plate 445 to push the material towards the connecting pipe 43. When the cutter 442 crushes the powder, the qualified waste particles pass through the screening net 52 into the connecting pipe 43. At the same time, the shaking motor 531 drives the rotating disc 532, which drives the shaking rod one 533, which drives the shaking rod two 534, so that the shaking rod two 534 moves back and forth under the limitation of the limiting frame 535. The shaking rod two 534 drives the supporting frame 51 to move back and forth, so that the waste shakes on the screening net 52, so that the waste passes through the screening net 52 more quickly. The waste particles pass through the connecting pipe 43 and then enter the hopper 3, mix with the production material and produce the pipe again.

Claims

1. A pipe production plant comprising a production station (1), characterized in that: The production platform (1) is provided with a heating extrusion device (2), one end of the heating extrusion device (2) is provided with an upper hopper (3), one side of the upper hopper (3) is provided with a waste crushing mechanism (4), and one side of the upper hopper (3) is provided with a screening mechanism (5). The waste crushing mechanism (4) comprises a support frame one (42) fixed on the production platform (1), and a crushing hopper (41) is fixed on the support frame one (42). The screening mechanism (5) comprises a support frame (51) arranged on the crushing hopper (41), the support frame (51) penetrates the crushing hopper (41) and is in sliding connection with the crushing hopper (41), a screening net (52) is fixed in the middle of the support frame (51), a support frame two (54) is fixed on the support frame one (42), and a shaking assembly (53) is arranged between the support frame two (54) and the support frame (51).

2. The pipe production apparatus according to claim 1, characterized by: The bottom of the crushing hopper (41) is fixedly provided with a connecting pipe (43), one end of the connecting pipe (43) away from the crushing hopper (41) is fixedly connected with the upper hopper (3) and communicates with each other, and the crushing hopper (41) is provided with a crushing assembly (44).

3. The pipe production apparatus according to claim 2, characterized by: The crushing assembly (44) comprises a rotating shaft (441) arranged in the crushing hopper (41), and a plurality of uniformly distributed cutters (442) are fixed on the rotating shaft (441).

4. The pipe production apparatus according to claim 3, characterized by: The crushing hopper (41) is fixedly provided with a support plate (443), the support plate (443) is fixedly provided with a driving motor (444), and the output end of the driving motor (444) penetrates the support plate (443) and is fixedly connected with the rotating shaft (441).

5. A pipe production apparatus according to claim 4, characterized in that: The rotating shaft (441) is fixedly provided with a plurality of uniformly distributed pressing plates (445).

6. The pipe production apparatus according to claim 1, characterized by: The shaking assembly (53) comprises a shaking motor (531) fixed on the support frame two (54), the output end of the shaking motor (531) is fixedly provided with a rotating disc (532), the rotating disc (532) is eccentrically connected with a shaking rod one (533), and one end of the shaking rod one (533) away from the rotating disc (532) is rotatably connected with a shaking rod two (534).

7. A pipe production apparatus according to claim 6, characterized in that: The shaking rod two (534) is slidably connected with a limiting frame (535), and the limiting frame (535) is fixedly connected with the crushing hopper (41).