Conveying mechanism applied to corrugated pipe machining

By designing a conveying mechanism with an electrically controlled translation frame and a tilting adjustment arm, the stability and efficiency issues in the corrugated pipe conveying process were solved, achieving multi-point support and adaptive conveying.

CN223737031UActive Publication Date: 2025-12-30江苏荣光五金科技有限公司
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Patent Information

Application Number
CN202520107691.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-12-30
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Corrugated pipes have limited stability and low conveying efficiency during transportation.

Method used

A material conveying mechanism for corrugated pipe processing is adopted, which uses an electrically controlled translation frame and a tilting adjustment arm to contact the outer wall of the corrugated pipe and guides the material through an electronic control method. Combined with a staggered drive head and an electric drive wheel, it achieves multi-point support and stable conveying.

Benefits of technology

It improves the stability and efficiency of corrugated pipe conveying and adapts to the conveying needs of corrugated pipes of various specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of corrugated pipe conveying, in particular to a conveying mechanism applied to corrugated pipe machining, which comprises a transverse mounting guide rail, a first electric control translation frame and a second electric control translation frame are movably assembled on the upper surface of the transverse mounting guide rail, and electric control type turnover adjusting arms are arranged on the inner sides of the first electric control translation frame and the second electric control translation frame. According to the material conveying mechanism applied to corrugated pipe machining, the electric control type overturning adjusting arms distributed in an annular array are in contact with the outer wall of a corrugated pipe, material guiding and conveying are conducted in an electric control mode, and the conveying efficiency is guaranteed; multi-point-position supporting conveying is adopted, and the conveying stability can be guaranteed; and an adjustable structural design is adopted, so that corrugated pipes of various specifications can be adapted.
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Description

TECHNICAL FIELD

[0001] The utility model relates to corrugated pipe conveying technical field especially a kind of material conveying mechanism applied to corrugated pipe processing. BACKGROUND

[0002] Corrugated pipe is a kind of pipe material with corrugated shape, because it has excellent flexibility, pressure resistance and corrosion resistance, application is very extensive. But because corrugated pipe is easy to bend, lead to its stability is limited in production conveying process, and conveying efficiency is not high. CONTENT

[0003] The utility model solves the technical problems that the stability of the corrugated pipe is limited in the conveying process, and the conveying efficiency is not high.

[0004] The utility model discloses a kind of material conveying mechanism applied to corrugated pipe processing, including transverse installation guide rail, the first electric control translation frame and the second electric control translation frame are movably assembled on the upper surface of transverse installation guide rail, electric control type turnover adjusting arm is set in the inside of first electric control translation frame and second electric control translation frame, side electric drive wheel is movably assembled in the end of electric control type turnover adjusting arm, the outer side driving head of misplacement is threadedly assembled on the outer side arc surface of side electric drive wheel.

[0005] The upper surface of the transverse installation guide rail is provided with two upper guide grooves for mounting the first electric control translation frame and the second electric control translation frame respectively.

[0006] The first electric control translation frame and the second electric control translation frame are each composed of an electric control screw rod movably mounted in the upper guide groove, an internal thread translation seat threadedly sleeved on the electric control screw rod and a ring frame body fixed to the upper end of the internal thread translation seat.

[0007] A plurality of arc adjusting openings are formed on the outer side surface of the ring frame body, and the outer side surface of the ring frame body has split guide rails bent outward on both sides of the arc adjusting openings.

[0008] The electric control type turnover adjusting arm includes an external adjusting ring movably inserted into the split guide rail, an adjusting motor fixed to the upper surface of the internal thread translation seat, an arc adjusting arm movably mounted in the arc adjusting opening, an assembly frame fixed to the end of the arc adjusting arm and an arc control arm connected between the external adjusting ring and the arc adjusting arm.

[0009] Two rows of misaligned internal thread assembly blind holes are formed on the outer side arc surface of the side electric drive wheel, and the outer side driving head is inserted into the internal thread assembly blind hole and fixedly assembled with the side electric drive wheel through the external thread assembly head of the integral structure.

[0010] The utility model has the advantages that:

[0011] (1) The utility model relates to a kind of material conveying mechanism applied to corrugated pipe processing, and it is contacted with corrugated pipe outer wall by the electrically-controlled turnover adjusting arm of annular array arrangement, and it is guided and transported using electric control mode, to ensure conveying efficiency.

[0012] (2) It can ensure the stability of conveying by adopting multi-point support conveying.

[0013] (3) It can adapt to corrugated pipes of various specifications by adopting adjustable structure design. BRIEF DESCRIPTION OF DRAWINGS

[0014] The utility model will be further described below in conjunction with the drawings and examples.

[0015] Figure 1 It is the structural schematic diagram of the utility model.

[0016] Figure 2 It is the internal partial schematic diagram of the utility model.

[0017] Figure 3 It is the internal partial schematic diagram of the first electrically-controlled translation frame in the utility model. DETAILED DESCRIPTION

[0018] The utility model will be further described below in conjunction with the drawings and examples.

[0019] In the description of the utility model, it is necessary to explain that, unless there is explicit provision and limitation, the term "connected", "connection" should be broad understanding, for example, it can be fixed connection, or detachable connection, or integrally connected;It can be mechanical connection, or electrical connection;It can be directly connected, or indirectly connected through intermediate medium.

[0020] Figure 1 、 Figure 2 And Figure 3 The material conveying mechanism applied to corrugated pipe processing shown in the drawings comprises horizontally mounted guide rail 1, first electrically-controlled translation frame 2 and second electrically-controlled translation frame 3 are movably assembled on the upper surface of horizontally mounted guide rail 1, electrically-controlled turnover adjusting arm 4 is arranged in the inner side of first electrically-controlled translation frame 2 and second electrically-controlled translation frame 3, side-mounted electric drive wheel 5 is movably assembled at the end of electrically-controlled turnover adjusting arm 4, and outer side drive head 6 is screw-assembled on the outer side arc surface of side-mounted electric drive wheel 5.

[0021] First electrically-controlled translation frame 2 and second electrically-controlled translation frame 3 are the same in size.

[0022] Working principle: people will cross the corrugated tube transversely through the first electric control translation frame 2 and the second electric control translation frame 3, and then the electric control type overturning adjusting arm 4 is controlled by the electric control type to make the side electric drive wheel 5 contact the surface of the corrugated pipe, and then the outer side drive head 6 is inserted into the outer side groove of the corrugated pipe. The first electric control translation frame 2 and the second electric control translation frame 3 are reversely translated to straighten the corrugated pipe, and then the side electric drive wheel 5 is rotated to drive the corrugated pipe to translate by the outer side drive head 6.

[0023] In order to match the top assembly and adjust the translation, the upper surface of the transverse installation guide rail 1 is provided with two upper guide grooves 7 for installing the first electric control translation frame 2 and the second electric control translation frame 3 respectively.

[0024] In order to match the electric control translation adjustment, the first electric control translation frame 2 and the second electric control translation frame 3 are both composed of an electric control screw 231 movably installed in the upper guide groove 7, a threaded nut 232 screwed on the electric control screw 231, and a ring frame 233 fixed on the upper end of the threaded nut 232.

[0025] The electric control screw 231 drives the threaded nut 232 to translate in the upper guide groove 7 by rotating.

[0026] In order to match the lateral assembly, three arc-shaped adjusting ports 8 are opened on the outer side of the ring frame 233, and the outer side of the ring frame 233 has outwardly bent split guide rails 9 on both sides of the arc-shaped adjusting port 8.

[0027] The arc-shaped adjusting port 8 and the split guide rail 9 are used to assemble the electric control type overturning adjusting arm 4.

[0028] In order to match the synchronous overturning adjustment, the electric control type overturning adjusting arm 4 includes an external adjusting ring 41 movably inserted into the split guide rail 9, an adjusting motor 42 fixed on the upper surface of the threaded nut 232, an arc-shaped adjusting arm 43 movably installed in the arc-shaped adjusting port 8, an assembly frame 44 fixed on the end of the arc-shaped adjusting arm 43, and an arc-shaped control arm 45 connected between the external adjusting ring 41 and the arc-shaped adjusting arm 43.

[0029] An annular gear slot is opened on the outer arc surface of the external adjusting ring 41.

[0030] A gear fixed on the output shaft of the adjusting motor 42 is engaged with the outer annular gear slot of the external adjusting ring 41. The adjusting motor 42 drives the external adjusting ring 41 to rotate by the gear, controls the arc-shaped control arm 45 to overturn by the rotation of the external adjusting ring 41, controls the arc-shaped adjusting arm 43 to overturn and adjust, and controls the side electric drive wheel 5 to be close to the surface of the corrugated pipe.

[0031] In order to adjust according to the external pitch of the corrugated pipe, ensure its conveying stability, two rows of inner thread assembly blind holes 10 are arranged on the outer arc surface of the side electric drive wheel 5, and the outer drive head 6 is inserted into the inner thread assembly blind hole 10 and fixedly assembled with the side electric drive wheel 5 through an integral structure of the outer thread assembly head.

[0032] The above ideal embodiments according to the utility model are used as inspiration, and through the above description, relevant staff can make various changes and modifications without deviating from the technical idea of the utility model. The technical scope of the utility model is not limited to the content in the specification, and the technical scope must be determined according to the scope of claims.

Claims

1. A feeding mechanism for corrugated pipe processing, comprising a transversely mounted guide rail (1), characterized in that: The upper surface of the transversely installed guide rail (1) is movably provided with a first electrically controlled translation frame (2) and a second electrically controlled translation frame (3), the inner side of the first electrically controlled translation frame (2) and the second electrically controlled translation frame (3) is provided with an electrically controlled overturning adjusting arm (4), the end of the electrically controlled overturning adjusting arm (4) is movably provided with a laterally arranged electric drive wheel (5), the outer side arc surface of the laterally arranged electric drive wheel (5) is screwedly provided with an outer side drive head (6) arranged in a staggered manner.

2. The material conveying mechanism for bellows processing according to claim 1, characterized in that: The upper surface of the transversely installed guide rail (1) is movably provided with a first electrically controlled translation frame (2) and a second electrically controlled translation frame (3), the inner side of the first electrically controlled translation frame (2) and the second electrically controlled translation frame (3) is provided with an electrically controlled overturning adjusting arm (4), the end of the electrically controlled overturning adjusting arm (4) is movably provided with a laterally arranged electric drive wheel (5), the outer side arc surface of the laterally arranged electric drive wheel (5) is screwedly provided with an outer side drive head (6) arranged in a staggered manner.

3. The material conveying mechanism for bellows processing according to claim 2, characterized in that: The first electrically controlled translation frame (2) and the second electrically controlled translation frame (3) are each composed of an electrically controlled screw rod (231) movably installed in the upper guide groove (7), an internally threaded translation seat (232) screwedly sleeved on the electrically controlled screw rod (231), and an annular frame body (233) fixed to the upper end of the internally threaded translation seat (232).

4. The material conveying mechanism for bellows processing according to claim 3, characterized in that: The outer side surface of the annular frame body (233) is provided with a plurality of arc-shaped adjusting openings (8), and the outer side surface of the annular frame body (233) has outwardly bent split guide rails (9) on both sides of the arc-shaped adjusting openings (8).

5. The material conveying mechanism for bellows processing according to claim 4, characterized in that: The electrically controlled overturning adjusting arm (4) includes an external adjusting ring (41) movably inserted into the split guide rail (9), an adjusting motor (42) fixed to the upper surface of the internally threaded translation seat (232), an arc-shaped adjusting arm (43) movably installed in the arc-shaped adjusting opening (8), an assembly frame (44) fixed to the end of the arc-shaped adjusting arm (43), and an arc-shaped control arm (45) connected between the external adjusting ring (41) and the arc-shaped adjusting arm (43).

6. The material conveying mechanism for bellows processing according to claim 1, characterized in that: The outer side arc surface of the laterally arranged electric drive wheel (5) is provided with two rows of internally threaded assembly blind holes (10) arranged in a staggered manner, and the outer side drive head (6) is fixedly assembled with the laterally arranged electric drive wheel (5) by means of an integrally structured externally threaded assembly head inserted into the internally threaded assembly blind hole (10).