Integrated transportation tool of copper pipe coil drawing machine

CN223659138UActive Publication Date: 2025-12-12GOLDEN DRAGON PRECISE COPPER TUBE GROUP
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Patent Information

Application Number
CN202423292891.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-12
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

然而由于场地搬迁等原因,调试好的铜管盘拉机需要将各部件拆卸后才能进行运输,在到达目的地后再进行调试安装,非常耗费时间

Benefits of technology

[0019]具有上述结构的一体运输工装,包括用于在运输时对盘拉机本体进行支撑的支撑柱I、支撑柱I I、支撑柱I I I以及支撑柱IV;所述支撑柱II和支撑柱II I分别支撑于盘拉机本体两个直角角部;所述支撑柱I支撑于盘拉机本体梯形边角部;所述支撑柱IV支撑于盘拉机本体异形边角部;当支撑柱I、支撑柱I I、支撑柱II I以及支撑柱IV支撑于盘拉机本体底部后,盘拉机本体的离地间隙为40~60厘米,使得盘拉机本体在装配一体运输工装后,其高度不会太高导致中心不稳,也不会由于离地间隙过小导致容易托底。

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Abstract

The utility model discloses an integrated transportation tool for a copper pipe coil drawing machine. The integrated transportation tool comprises a supporting column I, a supporting column II, a supporting column III and a supporting column IV which are used for supporting a coil drawing machine body during transportation, the supporting column II and the supporting column III are supported at the two right-angle corners of the disc drawing machine body respectively. The supporting column I is supported at the trapezoidal corner part of the disc drawing machine body; the supporting column IV is supported at the special-shaped corner part of the disc drawing machine body; the supporting column I, the supporting column II, the supporting column III and the supporting column IV are equal in height. The supporting stand column replaces an original supporting stand column to support the plate drawing machine body during transportation, and the problem that the bottom of the plate drawing machine body is uneven and cannot be directly placed is solved. And therefore, the disc drawing machine body can be integrally transported without being disassembled and sub-packaged, and the transportation cost is reduced. In addition, after disassembly is not needed, reassembly is not needed after a destination is reached, so that the later installation precision is guaranteed, and the equipment debugging time is saved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to copper pipe manufacturing technical field especially relates to a copper pipe disc drawbench integrated transport frock. BACKGROUND

[0002] The precision copper pipe is often used in the refrigeration or heat supply pipeline, can be used in different environments, especially in the white household appliance field application is the most widely used, such as in the condenser of air conditioner, and it is one of the best connecting pipelines.

[0003] The function of copper pipe disc drawbench is through the process of drawing and reducing the diameter, and copper pipe is processed into the required size and shape. In the drawing process, the copper pipe is put into the die, fixed by the chuck of the drawbench, and then stretched by the power device of the drawbench. The power device of the drawbench is usually driven by the motor, and the power is transmitted to the main shaft of the drawbench through the speed reducer, and the main shaft drives the chuck and the die to rotate and stretch. In the stretching process, the copper pipe passes through a plurality of dies, and the hole diameter of each die gradually decreases, thereby realizing the effect of reducing the diameter. Finally, the copper pipe is stretched to the required size and shape.

[0004] As shown in Figure 1 The copper pipe disc drawbench needs to be precisely debugged to work normally during assembly. However, due to site relocation and other reasons, the copper pipe disc drawbench needs to be disassembled for transportation, and then debugged and installed after arriving at the destination, which is very time-consuming. The reason is that the copper pipe disc drawbench requires a high working space at the bottom, and is generally installed on a stand column. The bottom of the copper pipe disc drawbench body is not flat, and cannot be directly placed on the transport vehicle after removing the stand column. UTILITY MODEL CONTENTS

[0005] Therefore, the utility model provides a copper pipe disc drawbench integrated transport frock, which can be transported integrally without disassembling the copper pipe disc drawbench.

[0006] To solve the above technical problems, the technical scheme of the utility model is as follows: a copper pipe disc drawbench integrated transport frock, which comprises support columns I, II, III and IV for supporting the disc drawbench body during transportation.

[0007] The support columns II and III are respectively supported at two right-angle corners of the disc drawbench body, the support column I is supported at the trapezoidal corner of the disc drawbench body, and the support column IV is supported at the special-shaped corner of the disc drawbench body.

[0008] The support columns I, II, III and IV are equal in height.

[0009] As an improvement, the support column I includes a rectangular box structure I; the top of the box structure I is provided with a connecting flange, which is connected to the trapezoidal corner of the disc pulling machine body by bolts.

[0010] As an improvement, the box structure I has a rectangular cross-section, and a reinforcing upright plate I is provided inside the box structure I.

[0011] As a preferred embodiment, both the housing structure I and the connecting flange are provided with weight reduction holes.

[0012] As an improvement, both support column II and support column II I include a cuboid box structure II and a connecting flange disposed on the box structure; the connecting flange is connected to the right-angle corner of the pulverizing machine body.

[0013] As a preferred embodiment, a crossbeam is provided between the box structure II of the support column II and the support column II I.

[0014] As an improvement, the support column IV includes a box structure IV and a connecting flange disposed on the top of the box structure IV; the connecting flange IV is connected to the irregular corner of the main body of the coiling machine by bolts.

[0015] As an improvement, the box structure IV includes a trapezoidal column with a right-angled trapezoidal cross-section, and a large square column and a small square column respectively connected to the long base and short base of the trapezoidal column; the bottom of the box structure IV is provided with a base plate.

[0016] As an improvement, a reinforcing upright plate IV is provided inside the box structure IV, which passes through the trapezoidal column and the large square column.

[0017] As an improvement, when support column I, support column II, support column I II, and support column IV are supported at the bottom of the coiling machine body, the ground clearance of the coiling machine body is 40-60 cm.

[0018] The advantages of this utility model are:

[0019] The integrated transport fixture with the above structure includes support columns I, II, III, and IV for supporting the body of the coil puller during transport. Support columns II and III are respectively supported at two right-angled corners of the coil puller body; support column I is supported at a trapezoidal corner of the coil puller body; and support column IV is supported at an irregularly shaped corner of the coil puller body. When support columns I, II, III, and IV are supported at the bottom of the coil puller body, the ground clearance of the coil puller body is 40-60 cm, ensuring that the height of the coil puller body after assembling the integrated transport fixture is not too high, which would cause instability, nor would it easily bottom out due to insufficient ground clearance.

[0020] This invention replaces the original support column for supporting the coiling machine body during transportation, solving the problem of uneven bottoms preventing direct placement of the machine body. This allows the coiling machine body to be transported as a single unit, eliminating the need for disassembly and reassembly. Upon arrival at the destination, the machine body can simply be installed directly onto the pre-set support column, without requiring further installation and adjustment.

[0021] This invention can be applied to the transportation of new equipment at the factory and the relocation of equipment. For new equipment, the manufacturer can debug and install the equipment before transporting it to the destination as a whole, thus saving debugging time and improving the accuracy of debugging and installation. For equipment relocation, since there is no need to disassemble and debug, it also saves the time, labor, and money costs of secondary installation and debugging. Attached Figure Description

[0022] Figure 1 A schematic diagram of the structure of the coil pulling machine body.

[0023] Figure 2 This is a schematic diagram showing the main body of the tractor installed on the integrated transport fixture provided by this utility model.

[0024] Figure 3 This is a structural schematic diagram of support column I.

[0025] Figure 4 This is a structural schematic diagram of the supporting column IV.

[0026] Marked in the image:

[0027] 101 Right-angled corner, 102 Trapezoidal corner, 103 Irregular corner.

[0028] 1. Support column I; 2. Support column II; 3. Support column I and II; 4. Support column IV; 5. Crossbeam;

[0029] 11 Box structure I, 12 Connecting flange, 13 Reinforcing upright plate;

[0030] 41 Box structure IV, 42 Connecting flange, 43 Base plate, 411 Large square column, 412 Trapezoidal column, 413 Small square column. Detailed Implementation

[0031] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to specific embodiments.

[0032] like Figure 2 As shown, this utility model provides an integrated transport fixture for a copper tube coiling machine, including support columns I1, II2, I3, and IV4 for supporting the coiling machine body during transport.

[0033] The support column II2 and support column II13 are respectively supported on the two right-angle corners 101 of the coiling machine body; the support column I1 is supported on the trapezoidal corner 102 of the coiling machine body; the support column IV4 is supported on the irregular corner 103 of the coiling machine body.

[0034] The support columns I1, II2, II3, and IV4 are of equal height.

[0035] The principle of this invention lies in replacing the original support column to support the coiling machine body during transportation, solving the problem of uneven bottom of the coiling machine body preventing direct placement. This allows the coiling machine body to be transported as a single unit without disassembly. After arrival at the destination, the coiling machine body simply needs to be installed directly on the pre-set support column, eliminating the need for reinstallation and adjustment.

[0036] Specifically, such as Figure 3 As shown, the support column I1 includes a rectangular box structure I11; a connecting flange 12 is provided on the top of the box structure I11, and the connecting flange 12 is connected to the trapezoidal corner portion 102 of the coil pulling machine body by bolts. The box structure has good supporting force and the hollow interior is conducive to weight reduction.

[0037] In this embodiment, the box structure I11 has a rectangular cross-section, and a reinforcing upright plate I13 is provided inside the box structure I11. It is foreseeable that, in order to provide better support, the cross-sectional dimensions of the box structure I11 should be adapted to the body of the coiling machine. The size of the connecting flange 12 can be slightly larger than the box structure, which is more conducive to stable support.

[0038] In addition, to further reduce weight, weight-reduction holes are provided on both the housing structure I and the connecting flange. In some embodiments, to ensure strength, no weight-reduction holes are provided on the shorter side plates at the front and rear ends of the housing structure I.

[0039] The support columns I, I2 and II, I3 each include a rectangular box structure II and a connecting flange disposed on the box structure; the connecting flange is connected by the right-angle corner 101 of the pan puller body.

[0040] Support column II2 and support column I II3 have the same structure, and a crossbeam 5 is provided between their box structure II. Since the two right-angle corners 101 are the large ends of the coiling machine body, they bear a greater weight. Therefore, the crossbeam 5 is provided to ensure the stability of support column II and support column II I.

[0041] like Figure 4 As shown, the support column IV4 includes a box structure IV41 and a connecting flange 42 disposed on the top of the box structure IV41; the connecting flange IV42 is connected to the irregular corner of the main body of the pan puller by bolts 103.

[0042] More specifically, to better accommodate the irregularly shaped corners 103 of the coil puller body, the box structure IV41 includes a trapezoidal column 412 with a right-angled trapezoidal cross-section, and a large square column 411 and a small square column 413 respectively connected to the long and short bases of the trapezoidal column 412. For greater stability, a base plate 43 is provided at the bottom of the box structure IV41, and it is foreseeable that the area of ​​the base plate 43 is larger than the cross-sectional area of ​​the box structure IV41.

[0043] To improve strength, a reinforcing plate IV is provided inside the box structure IV41, which passes through the trapezoidal column 412 and the large square column 411.

[0044] In this embodiment, after the support columns I1, I2, I3, and IV4 are supported on the bottom of the coiling machine body, the ground clearance of the coiling machine body is 40-60 cm. This ensures that after the coiling machine body is assembled with the integrated transport tooling, its height will not be too high, causing instability, nor will it easily bottom out due to insufficient ground clearance.

[0045] When the coiling machine needs to be transported, the machine body is lifted from its original support columns, and then support columns I to IV are installed at its bottom before it is hoisted onto the transport vehicle. Upon arrival at the destination, the coiling machine is lifted, support columns I to IV are removed, and the machine body is then installed on the support columns set on the ground.

[0046] The above are merely preferred embodiments of this utility model. It should be noted that the above preferred embodiments should not be considered as limitations on this utility model, and the scope of protection of this utility model should be determined by the scope defined in the claims. For those skilled in the art, several improvements and modifications can be made without departing from the spirit and scope of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model.

Claims

1. An integrated transport fixture for a copper tube coil drawing machine, characterized in that: This includes support columns I, II, III, and IV, which are used to support the main body of the tractor during transportation. Support column II and support column III are respectively supported at two right-angled corners of the coiling machine body; support column I is supported at a trapezoidal corner of the coiling machine body; support column IV is supported at an irregularly shaped corner of the coiling machine body. The support columns I, II, III, and IV are of the same height.

2. The integrated transport fixture for a copper tube coil drawing machine according to claim 1, characterized in that: The support column I includes a rectangular box structure I; the top of the box structure I is provided with a connecting flange, which is connected to the trapezoidal corner of the disc pulling machine body by bolts.

3. The integrated transport fixture for a copper tube coil drawing machine according to claim 2, characterized in that: The box structure I has a rectangular cross-section, and a reinforcing upright plate I is provided inside the box structure I.

4. The integrated transport fixture for a copper tube coil drawing machine according to claim 2, characterized in that: Weight reduction holes are provided on both the box structure I and the connecting flange.

5. The integrated transport fixture for a copper tube coil drawing machine according to claim 1, characterized in that: Both support column II and support column III include a rectangular box structure II and a connecting flange disposed on the box structure II; the connecting flange is connected to the right-angle corner of the panning machine body.

6. The integrated transport fixture for a copper tube coil drawing machine according to claim 5, characterized in that: A crossbeam is provided between the box structure II of the support column II and the support column III.

7. The integrated transport fixture for a copper tube coil drawing machine according to claim 1, characterized in that: The support column IV includes a box structure IV and a connecting flange disposed on the top of the box structure IV; the connecting flange IV is connected to the irregular corner of the main body of the disc pulling machine by bolts.

8. The integrated transport fixture for a copper tube coil drawing machine according to claim 7, characterized in that: The box structure IV includes a trapezoidal column with a right-angled trapezoidal cross-section, and a large square column and a small square column respectively connected to the long base and short base of the trapezoidal column.

9. The integrated transport fixture for a copper tube coil drawing machine according to claim 8, characterized in that: The box structure IV is equipped with a reinforcing upright plate IV, which runs through the trapezoidal column and the large square column.

10. The integrated transport fixture for a copper tube coil drawing machine according to claim 1, characterized in that: When support columns I, II, III, and IV are placed at the bottom of the coiling machine body, the ground clearance of the coiling machine body is 40-60 cm.