Screen cloth pipeline hot melting overlapping equipment

By combining guide components, traction components, and telescopic components, the problem of matching rubber strips with mesh fabric was solved, enabling rapid prototyping of mesh fabric pipes.

CN223803128UActive Publication Date: 2026-01-16JIANGXI MINGXIANG VENTILATION EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520437006.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-01-16
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Existing technologies make it difficult to achieve rapid integration of rubber strips and mesh fabric, resulting in difficulties in forming mesh fabric pipes.

Method used

It adopts a combination structure of guide, traction and telescopic components. The traction component pulls the net cloth to move, and the guide ring and telescopic component are used to wrap the rubber strip around the net cloth, and the ring fire ring is used for heating treatment.

Benefits of technology

It enables rapid winding and heat treatment of rubber strips and mesh fabric, ensuring rapid processing and forming of mesh fabric pipes and preventing mesh fabric detachment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses screen cloth pipeline hot melting overlapping equipment. The screen cloth pipeline hot melting overlapping equipment comprises a guide piece, a guide ring, a traction piece and a telescopic piece, a guide rod body is arranged on the guide piece, and a bearing section is arranged on the guide rod body. A through hole for containing the bearing section is formed in the middle of the guide ring, a through hole matched with the guide rod body is formed in the middle of the traction piece, the telescopic piece is composed of a first locking end, a second locking end and a telescopic section used for connecting the first locking end and the second locking end, and the telescopic section is stretched into a ring shape through the first locking end and the second locking end. And the first locking end and the second locking end are kept to form closed-loop locking and are sleeved on the traction piece. According to the screen cloth pipeline hot melting overlapping equipment, the traction piece is adopted to pull the screen cloth to move on the guide piece, and meanwhile, the rubber strip is wound on the screen cloth in cooperation with the guide ring. And the mesh cloth is limited on the traction piece through the telescopic piece, so that the mesh cloth is prevented from being separated, and rapid machining and forming of the mesh cloth pipeline are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a duct technology especially relates to a kind of mesh cloth pipeline hot melt overlapping equipment. BACKGROUND

[0002] Mesh cloth pipeline needs to be wrapped with rubber strip when forming, but mesh cloth is intangible substance, it is difficult to realize that rubber strip is wrapped on mesh cloth, so a kind of equipment that can quickly realize rubber strip and mesh cloth cooperation is needed. UTILITY MODEL CONTENTS

[0003] In order to solve the defects existing in the prior art, the utility model provides a kind of mesh cloth pipeline hot melt overlapping equipment.

[0004] The technical scheme of the utility model is realized as follows:

[0005] A kind of mesh cloth pipeline hot melt overlapping equipment, characterized by comprising:

[0006] A guide, the guide is equipped with guide rod body, the guide rod body is equipped with a bearing segment;

[0007] Guide ring wrapped on the bearing segment, the middle of the guide ring forms the through hole accommodating the bearing segment;

[0008] Traction member is arranged on the guide rod body, the middle of the traction member is equipped with the through hole matched with the guide rod body;

[0009] And the telescopic member for being wrapped on the traction member, the telescopic member is composed of first locking end, second locking end and the telescopic segment for connecting first locking end and second locking end, the first locking end and the second locking end are stretched into annular by telescopic segment, keep first locking end and second locking end form closed loop locking and be wrapped on the traction member.

[0010] In the mesh cloth pipeline hot melt overlapping equipment of the utility model, the guide is also equipped with a vertical segment, the vertical segment is connected with guide rod body by arc segment, the vertical segment is vertically arranged with guide rod body.

[0011] In the mesh cloth pipeline hot melt overlapping equipment of the utility model, the bearing segment is wrapped with annular fire ring.

[0012] In the mesh cloth pipeline hot melt overlapping equipment of the utility model, the guide ring is equipped with a guide pipe, the guide pipe forms guide passage, the inner wall of the guide ring is equipped with the spiral passage matched with guide passage.

[0013] In the mesh cloth pipeline hot melt overlapping equipment of the utility model, the traction member is composed of sliding sleeve and blocking ring, the blocking ring is in contact with the bearing segment, the sliding sleeve is equipped with symmetrical traction rod.

[0014] In this utility model of a mesh pipe hot-melt overlapping device, a first locking part is provided on the first locking end, a first locking arm is provided on the first locking part, an unlocking rod is provided on the first locking arm, and an elastic area is formed between the first locking arm and the first locking arm.

[0015] In this utility model of a mesh pipe hot-melt overlapping device, a second locking part is provided on the second locking end, and a second locking arm is provided on the second locking part. An installation area is formed between the second locking arm and the second locking arm. The first locking arm is set in the installation area, and the second locking arm is provided with a locking groove that cooperates with the unlocking rod.

[0016] The mesh pipe hot-melt overlapping device of this utility model has the following beneficial effects: The device uses a traction component to pull the mesh fabric along a guide component, while a guide ring simultaneously wraps a rubber strip around the mesh fabric. Furthermore, a telescopic component restricts the mesh fabric to the traction component, preventing detachment and enabling rapid processing and forming of the mesh pipe. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the mesh pipe hot-melt overlapping device of this utility model;

[0018] Figure 2 for Figure 1 Exploded view;

[0019] Figure 3 for Figure 2 A schematic diagram of the guide component structure in the diagram;

[0020] Figure 4 for Figure 2 Perspective view of the guide ring structure in the middle;

[0021] Figure 5 for Figure 2 A schematic diagram of the telescopic component structure in the middle;

[0022] Figure 6 for Figure 2 A schematic diagram of the traction component structure. Detailed Implementation

[0023] 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.

[0024] like Figures 1 to 6As shown, the net cloth pipeline hot melting overlapping equipment of the utility model, including guide 1, guide ring 2, traction 3 and telescopic part 4.Guide 1 is used for the movement of traction 3, so that traction 3 can drive the net cloth 5 of circular closed loop, makes it move along the direction of guide 1, guide ring 2 is used to guide the rubber strip 6 with steel wire in the middle, so that it is spiral, winding and dipping to the surface of net cloth 5.Telescopic part 4 is used to limit one end of net cloth 5 on traction 3, so that net cloth 5 moves with traction 3.

[0025] Guide 1 is provided with guide rod body 7, guide rod body 7 is provided with a bearing segment 8, the diameter of bearing segment 8 is greater than the diameter of guide rod body 7, but slightly smaller than the diameter of net cloth 5, so that net cloth 5 can be sleeved on bearing segment 8 and can move thereon.

[0026] Guide ring 2 is sleeved on bearing segment 8, and a support rod (not shown in the figure) can be provided at the lower end to support guide ring 2.A through hole 9 for accommodating bearing segment 8 is formed in the middle of guide ring 2, and a guide pipe 10 is provided on guide ring 2, a guide channel 11 is formed in the guide pipe 10, and a spiral channel 12 is provided on the inner wall of guide ring 2 and cooperates with the guide channel 11.The guide channel 11 and the spiral channel 12 are used to guide the rubber strip 6.

[0027] Traction 3 is arranged on guide rod body 7, and a through hole 13 is arranged in the middle of traction 3 and cooperates with guide rod body 7.Traction 3 is composed of a sliding sleeve 14 and a blocking ring 15, the blocking ring 15 is in contact with the bearing segment 8, and the sliding sleeve 14 is provided with symmetrical traction rods 16.The traction rods 16 can be pulled by a traction rope to move on the guide rod body 7.The blocking ring 15 is used to block the telescopic part 4, so that the telescopic part 4 is sleeved on the sliding sleeve 14, and the position of the blocking ring 15 blocks the telescopic part 4, so that the telescopic part 4 can limit the net cloth 5 sleeved on the sliding sleeve 14 on the traction 3.

[0028] Telescopic part 4 is sleeved on traction 3, and telescopic part 4 is composed of a first locking end 17, a second locking end 18 and a telescopic segment 19 for connecting the first locking end 17 and the second locking end 18.The telescopic segment 19 is in a wavy shape and can be elongated under stress, and can be reset under its own elastic force when not stressed.The first locking end 17 and the second locking end 18 stretch the telescopic segment 19 into a ring shape, and keep the first locking end 17 and the second locking end 18 in a closed loop locking and sleeved on the traction 3.

[0029] The first locking end 17 is provided with a first locking portion 20, the first locking portion 20 is provided with a first locking arm 21 arranged symmetrically, the first locking arm 21 is provided with an unlocking rod 22, and the first locking arm 21 and the first locking arm 21 form an elastic region 23.

[0030] The second locking end 18 is provided with a second locking part 24, the second locking part 24 is provided with symmetrically arranged second locking arms 25, the second locking arms 25 and the second locking arms 25 form an installation area 26, the first locking arms 21 are arranged in the installation area 26, and the second locking arms 25 are provided with locking grooves 27 matched with the unlocking rods 22.

[0031] The unlocking rods 22 are pressed, the unlocking rods 22 drive the two first locking arms 21 to deform into the elastic areas 23, the first locking end 17 and the second locking end 18 are separated.

[0032] The thickness of the first locking part 20 is less than the thickness of the second locking part 24, and the thickness of the first locking arms 21 is less than the thickness of the second locking arms 25, so that the first locking arms 21 are not separated from the installation area 26 even in the inclined state.

[0033] In use, the first locking end 17 and the second locking end 18 are stretched to the two ends, so that the telescopic segments 19 are deformed and elongated under stress, are sleeved on the sliding sleeve 14, and place the mesh cloth 5 in the middle, limit the position of the mesh cloth 5, and are blocked by the blocking ring 15, so that the mesh cloth 5 is prevented from being separated from the traction member 3.

[0034] The guide 1 is also provided with a vertical segment 28, the vertical segment 28 is connected with the guide rod body 7 through an arc-shaped segment 30, and the vertical segment 28 is arranged perpendicularly to the guide rod body 7. The vertical segment 28 can support the mesh cloth 5 compressed together, and then gradually pull out through the traction member 3.

[0035] Meanwhile, the bearing segment 8 is sleeved with an annular fire ring 29, the annular fire ring 29 can spray fire, so that the flame heats the mesh cloth 5, facilitates the rubber strip 6 to be dipped and adhered to the mesh cloth 5, and also can heat the rubber strip 6. Or the annular fire ring 29 is replaced by a heating coil.

[0036] The above only describes preferred embodiments of the utility model, and does not limit the utility model, and any modification, equivalent replacement and improvement made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A mesh pipe heat melting and overlapping apparatus, characterized by comprising: The utility model relates to a kind of guiding device, including: A guide, the guide is equipped with guide rod body, the guide rod body is equipped with a bearing segment; Guide ring is sleeved on bearing segment, the middle of the guide ring forms the through hole of accommodating bearing segment; Traction member is arranged on guide rod body, the middle of the traction member is equipped with the through hole matched with guide rod body;And for the telescopic member that is sleeved on traction member, the telescopic member is made of first locking end, second locking end and the telescopic segment for connecting first locking end and second locking end, the first locking end and second locking end are stretched into annular by telescopic segment, keep first locking end and second locking end form closed loop locking and be sleeved on traction member.

2. The scrim pipe fusion overlay apparatus of claim 1, wherein, The guide is also equipped with a vertical segment, the vertical segment is connected with guide rod body by arc segment, the vertical segment is vertically arranged with guide rod body.

3. The scrim pipe fusion overlay apparatus of claim 1, wherein, The bearing segment is sleeved with a ring-shaped fire ring.

4. The scrim pipe fusion overlay apparatus of claim 1, wherein, The guide ring is equipped with a guide pipe, the guide pipe forms guide channel, the inner wall of the guide ring is equipped with spiral channel matched with guide channel.

5. The scrim pipe fusion overlay apparatus of claim 1, wherein, The traction member is made of sliding sleeve and blocking ring, the blocking ring is in contact with bearing segment, the sliding sleeve is equipped with symmetrical traction rod.

6. The scrim pipe fusion overlay apparatus of claim 1, wherein, The first locking end is equipped with first locking part, the first locking part is equipped with symmetrically arranged first locking arm, the first locking arm is equipped with unlocking rod, and the first locking arm and the first locking arm form elastic region.

7. The scrim pipe fusion overlay apparatus of claim 6, wherein, The second locking end is equipped with second locking part, the second locking part is equipped with symmetrically arranged second locking arm, the second locking arm and the second locking arm form mounting area, the first locking arm is arranged in mounting area, and the second locking arm is equipped with locking groove matched with unlocking rod.