Copper pipe packaging and winding machine

By combining an inverted U-shaped bracket and a T-shaped bracket in the support structure, along with the design of a bevel gear transmission device and a limiting plate, the problem of uneven copper tube winding was solved, thus improving the stability and precision of copper tube encapsulation.

CN223847858UActive Publication Date: 2026-01-30淄博市临淄银河高技术开发有限公司
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520511388.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-01-30
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing copper tube winding equipment suffers from unstable fixing, cumbersome operation, complex structure, and lack of limiting and guiding devices, resulting in uneven winding, loosening, and affecting the packaging quality and aesthetics.

Method used

The support mechanism employs a combination of inverted U-shaped and T-shaped brackets, along with a bevel gear transmission and driven wheel in the drive mechanism, and is equipped with a limiting plate and transition rollers to ensure stable winding and uniform distribution of the copper tubes.

Benefits of technology

It improves the stability and precision of copper tube winding, reduces vibration and friction damage, ensures the tightness and aesthetics of the encapsulation, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223847858U_ABST
    Figure CN223847858U_ABST
Patent Text Reader

Abstract

The utility model relates to a copper pipe packaging and winding machine, which belongs to the technical field of copper pipe packaging and comprises a supporting mechanism, a driving mechanism and a winding mechanism, the supporting mechanism comprises symmetrical supporting frames, and an upper fixing plate is arranged above the supporting frames; the winding mechanism comprises a sleeve I and a sleeve II which are clamped and fixed between the tops of the supporting frames on the two sides and the upper fixing plate respectively, and further comprises a bearing I and a bearing II, and a driven wheel II is fixedly connected with the bearing I; the driving mechanism is arranged in the supporting mechanism and comprises a driving motor, a bevel gear transmission device, a driven wheel I and a transmission belt, the rotating end of the driving motor is connected with the bevel gear transmission device through a transmission shaft, the power output end of the bevel gear transmission device is connected with the driven wheel I. The driven wheel I and the driven wheel II are each provided with a transmission belt groove, and the transmission belt is arranged in the grooves. The winding mechanism further comprises a protection plate I, a protection plate II, a supporting cross rod, a mounting frame I, a transition roller, a mounting frame II, a limiting plate I, a limiting plate II and a fixing shaft.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to copper pipe packaging technical field, concretely relates to a copper pipe packaging winding machine. BACKGROUND

[0002] In copper pipe packaging or other processes, often need to wind copper pipe and package operation. The existing copper pipe winding equipment is unstable in the winding process, leading to uneven winding, and further affecting the packaging quality. Moreover, the equipment structure is complex, and the operation is cumbersome, which not only increases the labor intensity of the operator, but also reduces the production efficiency. In addition, the lack of effective limiting and guiding device makes the packaging material easy to deviate and loosen in the winding process, which will further affect the tightness and aesthetics of the package.

[0003] The prior art with the publication number CN208648284U is an automatic winding machine with sleeve support device, which comprises a sleeve rotating device and a sleeve support device. The rotating device is composed of a motor, a speed reducer and a three-jaw chuck connected coaxially in sequence. The support device is composed of a sleeve bracket, a support and a track. The bracket is concave with a rectangular slot in the middle. The pulley rotates in the slot. The support is equipped with wheels at the bottom, which can slide on the track. The bracket is fixed above the middle of the support with the notch facing the center of the three-jaw chuck. However, the sleeve support device supports the sleeve through the sleeve bracket and the pulley. For longer or heavier sleeves, it may not provide enough stability, which can easily cause the sleeve to shake during winding, affecting the uniformity and precision of winding. UTILITY MODEL CONTENTS

[0004] The utility model solves the technical problem of overcoming the defects in the prior art and providing a copper pipe packaging winding machine.

[0005] The utility model adopts the technical scheme as follows:

[0006] The copper pipe packaging winding machine comprises a support mechanism and a driving mechanism, and further comprises a winding mechanism. The winding mechanism is arranged above the support mechanism, and the driving mechanism is arranged in the interior of the support mechanism. The support mechanism comprises two symmetrical support frames, which are arranged on both sides of the winding mechanism. The winding mechanism comprises a sleeve I and a sleeve II. An upper fixed plate is arranged above the support frame by bolts. The sleeve I and the sleeve II are clamped between the top of the two support frames and the upper fixed plate. The winding mechanism further comprises a bearing I and a bearing II. The driving mechanism comprises a driven wheel II, which is fixedly connected with the bearing I.

[0007] An equipment support is arranged between the support frames. An upper portion of the equipment support is provided with a base, a fixed rod and an equipment mounting plate. The support frame comprises an inverted U-shaped support and a T-shaped support. The T-shaped support is connected above the inverted U-shaped support. The fixed rod is welded on the equipment support. The base and the equipment mounting plate are arranged on both sides of the fixed rod.

[0008] The driving mechanism further comprises a driving motor and a bevel gear transmission device, the rotating end of the driving motor is connected to the power input end of the bevel gear transmission device through a transmission shaft, and the power output end of the bevel gear transmission device is connected to the driven wheel I; the driven wheel I and the driven wheel II are both provided with a transmission belt groove, and the transmission belt groove is provided with a transmission belt.

[0009] The winding mechanism further comprises a guard plate I and a guard plate II, a plurality of support cross bars are connected between the guard plate I and the guard plate II, the bearing I is fixedly connected to the guard plate I, the bearing II is fixedly connected to the guard plate II, the sleeve I penetrates the inside of the driven wheel II and the bearing I, and the sleeve II penetrates the inside of the bearing II.

[0010] The winding mechanism further comprises a mounting frame I, one end of the mounting frame I is connected to the guard plate II, the other end of the mounting frame I is connected to the support cross bar, a transition roller is fixedly installed on the mounting frame I through bolts, and the mounting frame I and the transition roller are both arranged in an inclined mode.

[0011] The winding mechanism further comprises a mounting frame II, the mounting frame II is fixedly installed between the two support cross bars, a limiting plate I is fixedly installed on the mounting frame II, a limiting plate II is fixedly installed above the guard plate II, the limiting plate I is parallel to the limiting plate II, and the limiting plate I and the limiting plate II are connected through a fixing shaft.

[0012] The winding mechanism has the following beneficial effects:

[0013] 1. The symmetrical support frames in the support mechanism adopt a combination of inverted U-shaped supports and T-shaped supports, the overall stability is enhanced, the inverted U-shaped supports and the T-shaped supports can provide multidirectional support, vibration is reduced, and the winding process is ensured to be stable.

[0014] 2. The combination of the bevel gear transmission device, the driven wheel I, the transmission belt and the driven wheel II in the driving mechanism improves the power transmission efficiency, the transmission belt and the belt groove are matched to reduce slipping, and the service life of the equipment is prolonged.

[0015] 3. The limiting plate I, the limiting plate II and the fixing shaft in the winding mechanism fix the polytetrafluoroethylene belt shaft center by arranging the limiting plate I and the limiting plate II in parallel, deviation in the winding process is prevented, and the uniform distribution of the packaging belt is ensured.

[0016] 4. The transition roller tightens and straightens the packaging belt, eliminates slack, and avoids wrinkles or overlaps during winding.

[0017] 5. The sleeve I and the sleeve II are clamped between the support frame and the upper fixed plate, the copper pipe is accurately guided, friction damage is reduced, and the packaging precision is improved.

[0018] 6. The guard plate I and the support cross bar are connected to form a rigid frame, the torsional resistance of the winding mechanism is enhanced, and deformation is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is the whole structure schematic diagram of the utility model;

[0020] Figure 2 It is the support mechanism schematic diagram;

[0021] Figure 3 It is the drive mechanism schematic diagram;

[0022] Figure 4 It is winding mechanism view angle one schematic diagram;

[0023] Figure 5 It is winding mechanism view angle two schematic diagram.

[0024] Wherein: 1, support mechanism;2, drive mechanism;3, winding mechanism;4, sleeve I;5, sleeve II;6, upper fixed plate;7, bearing I;8, bearing II;9, driven wheel II;10, equipment support;11, base;12, fixed rod;13, equipment mounting plate;14, inverted U-shaped support;15, T-shaped support;16, drive motor;17, transmission shaft;18, bevel gear transmission device;19, driven wheel I;20, transmission belt;21, guard plate I;22, guard plate II;23, support cross bar;24, mounting bracket I;25, transition roller;26, mounting bracket II;27, limit plate I;28, limit plate II;29, fixed shaft. DETAILED DESCRIPTION

[0025] As Figures 1 to 5 Indicated, the copper pipe packaging winding machine of the utility model, including support mechanism 1 and drive mechanism 2, still include winding mechanism 3, winding mechanism 3 is set in the upside of support mechanism 1, drive mechanism 2 is set in the inside of support mechanism 1;Support mechanism 1 includes the support frame of relative symmetry, and support frame is set in the both sides of winding mechanism 3;Winding mechanism 3 includes sleeve I 4 and sleeve II 5, and the upside of support frame is equipped with upper fixed plate 6 by bolt, and sleeve I 4 and sleeve II 5 are clamped between the top of both sides support frame and upper fixed plate 6 respectively;Winding mechanism 3 still includes bearing I 7 and bearing II 8, and drive mechanism 2 includes driven wheel II 9, and driven wheel II 9 is fixedly connected with bearing I 7.

[0026] Support frame is equipped with equipment support 10, and the upside of equipment support 10 is equipped with base 11, fixed rod 12 and equipment mounting plate 13, and support frame includes inverted U-shaped support 14 and T-shaped support 15, and T-shaped support 15 is connected in the upside of inverted U-shaped support 14, and fixed rod 12 is welded on equipment support 10, and base 11 and equipment mounting plate 13 are respectively arranged in the both sides of fixed rod 12.

[0027] The driving mechanism 2 further comprises a driving motor 16 and a bevel gear transmission device 18, the rotating end of the driving motor 16 is connected to the power input end of the bevel gear transmission device 18 through a transmission shaft 17, and the power output end of the bevel gear transmission device 18 is connected to a driven wheel I 19 and a driven wheel II 9, both of which are provided with a transmission belt groove, and a transmission belt 20 is arranged in the transmission belt groove.

[0028] The winding mechanism 3 further comprises a guard plate I 21 and a guard plate II 22, a plurality of support cross bars 23 are connected between the guard plate I 21 and the guard plate II 22, the bearing I 7 is fixedly connected to the guard plate I 21, the bearing II 8 is fixedly connected to the guard plate II 22, the sleeve I 4 penetrates the inside of the driven wheel II 9 and the bearing I 7, and the sleeve II 5 penetrates the inside of the bearing II 8.

[0029] The winding mechanism 3 further comprises a mounting frame I 24, one end of the mounting frame I 24 is connected to the guard plate II 22, the other end is connected to the support cross bar 23, the mounting frame I 24 is fixedly installed with a transition roller 25 through bolts, and the mounting frame I 24 and the transition roller 25 are both arranged obliquely.

[0030] The winding mechanism 3 further comprises a mounting frame II 26, the mounting frame II 26 is fixedly installed between the two support cross bars 23, a limiting plate I 27 is fixedly installed on the mounting frame II 26, a limiting plate II 28 is fixedly installed above the guard plate II 22, the limiting plate I 27 is parallel to the limiting plate II 28, and the limiting plate I 27 and the limiting plate II 28 are connected through a fixed shaft 29.

[0031] Specifically, when the copper pipe is wound and packaged, the copper pipe can be penetrated by the sleeve I 4 and penetrated out of the sleeve II 5, the fixed shaft 29 between the limiting plate I 27 and the limiting plate II 28 is placed with a polytetrafluoroethylene tape, the polytetrafluoroethylene tape is fixed at the shaft center of the fixed shaft, and the polytetrafluoroethylene tape can rotate around the fixed shaft 29, and the limiting plate I 27 and the limiting plate II 28 limit and fix the polytetrafluoroethylene tape.

[0032] Specifically, the polytetrafluoroethylene is wound on the copper pipe between the mounting frame I 24 and the transition roller 25, and the transition roller 25 tightens and straightens the polytetrafluoroethylene tape, so that the polytetrafluoroethylene tape on the copper pipe is uniformly wound in the subsequent winding and packaging process.

[0033] Specifically, after the polytetrafluoroethylene tape is wound and connected on the copper pipe, the driving motor 16 is powered on and starts to operate, the driven wheel II 9 is driven to rotate through the transmission shaft 17, the bevel gear transmission device 18, the driven wheel I 19 and the transmission belt 20, the driven wheel II 9 is fixedly connected to the bearing I 7, the bearing I 7 is fixedly connected to the guard plate I 21, therefore the driving motor 16 drives all the components of the whole winding mechanism 3 to rotate through the transmission belt.

[0034] In particular, one end of the polytetrafluoroethylene tape has been connected to the copper tube, and when the winding mechanism 3 is rotated, the polytetrafluoroethylene tape reel also rotates around the fixed shaft 29, at which time the copper tube is uniformly moved so that the polytetrafluoroethylene tape is uniformly packed on the outside of the copper tube.

Claims

1. A copper tube packaging coiling machine comprising a support mechanism (1) and a drive mechanism (2), characterized in that, Also include winding mechanism (3), the winding mechanism (3) is arranged above the support mechanism (1), the drive mechanism (2) is arranged inside the support mechanism (1);The support mechanism (1) includes relatively symmetrical support frame, the support frame is arranged on both sides of winding mechanism (3);The winding mechanism (3) includes sleeve I (4) and sleeve II (5), the top of the support frame is provided with upper fixed plate (6) by bolt, sleeve I (4) and sleeve II (5) are respectively clamped between the top of both sides support frame and upper fixed plate (6);The winding mechanism (3) further includes bearing I (7) and bearing II (8), the drive mechanism includes driven wheel II (9), the driven wheel II (9) is fixedly connected with bearing I (7).

2. The copper tube package coiling machine according to claim 1, characterized by, The equipment support (10) is arranged between the support frame, the top of the equipment support (10) is provided with base (11), fixed rod (12) and equipment mounting plate (13), the support frame includes inverted U-shaped support (14) and T-shaped support (15), the T-shaped support (15) is connected above the inverted U-shaped support (14), the fixed rod (12) is welded on the equipment support (10), the base (11) and the equipment mounting plate (13) are respectively arranged on both sides of the fixed rod (12).

3. The copper tube package coiling machine according to claim 1, characterized by, The drive mechanism (2) further includes driving motor (16) and bevel gear transmission device (18), the rotating end of the driving motor (16) is connected with the power input end of the bevel gear transmission device (18) through the transmission shaft (17), the power output end of the bevel gear transmission device (18) is connected with the driven wheel I (19), the driven wheel I (19) and the driven wheel II (9) are both provided with transmission belt groove, the transmission belt groove is provided with transmission belt (20).

4. The copper tube packaging coiling machine according to claim 1, characterized by, The winding mechanism (3) further includes guard plate I (21) and guard plate II (22), a plurality of support cross bars (23) are connected between the guard plate I (21) and the guard plate II (22), the bearing I (7) is fixedly connected with the guard plate I (21), the bearing II (8) is fixedly connected with the guard plate II (22), the sleeve I (4) penetrates the inside of the driven wheel II (9) and the bearing I (7), the sleeve II (5) penetrates the inside of the bearing II (8).

5. The copper tube packaging coiling machine according to claim 4, characterized in that, The winding mechanism (3) further includes mounting bracket I (24), one end of the mounting bracket I (24) is connected with the guard plate II (22), the other end is connected with the support cross bar (23), the mounting bracket I (24) is fixedly provided with transition roller (25) through bolt, the mounting bracket I (24) and the transition roller (25) are both arranged obliquely.

6. The copper tube packaging coiling machine according to claim 4, wherein The winding mechanism (3) further includes mounting bracket II (26), the mounting bracket II (26) is fixedly installed between the two support cross bars (23), the mounting bracket II (26) is fixedly installed with limit plate I (27), the limit plate II (28) is fixedly installed above the guard plate II (22), the limit plate I (27) is parallel with the limit plate II (28), the limit plate I (27) and the limit plate II (28) are connected through fixed shaft (29).

Citation Information

Patent Citations

  • Have sleeve pipe strutting arrangement automatic coiling of tape machine

    CN208648284U