Finish machining device for outer surface of high-precision bright solid solution heat exchange tube for compression energy storage

By designing the coordination between the rotating assembly and the drive motor, the problem of incomplete processing of the outer surface of the heat exchange tube was solved, and an efficient and all-round processing effect was achieved.

CN120734818APending Publication Date: 2025-10-03ZHEJIANG HUATIAN SPECIAL MATERIAL CO LTD
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Patent Information

Application Number
CN202511258007.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-04
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

The outer surface of existing heat exchange tubes is difficult to be completely machined, especially due to the length of the tubes.

Method used

A high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage is used, including an outer surface finishing center, a processing tunnel, a bracket, a drive motor and a rotating component. The design and drive of the rotating component enable the heat exchange tube to rotate and move in the cylindrical groove to achieve all-round processing.

Benefits of technology

The outer surface of the heat exchange tube is completely processed, which improves the processing efficiency and quality.

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Abstract

According to the high-precision bright solid solution heat exchange tube outer surface finish machining device for compression energy storage, the machining position of an outer surface finish machining center is covered with a machining tunnel, a plurality of rotating assemblies are sequentially and obliquely arranged to penetrate through the machining tunnel and penetrate through an inlet and an outlet in the machining position of the outer surface finish machining center, and the rotating assemblies are arranged on a support; the driving motor drives the rotating assembly to rotate, the rotating assembly comprises rotating seats, a rotating shaft and a cylinder with a groove in the outer surface, the two rotating seats are installed at the upper end of the support to form included angles with an inlet and an outlet of a machining position, and one end of the rotating shaft penetrates through the two rotating seats and is connected with the driving motor through a transmission device in the rotating seats. And a cylinder with a groove on the outer surface is arranged at the other end of the rotating shaft. The device has the advantages that the heat exchange tube is placed in the groove of the cylinder, and the cylinder rotates, so that the heat exchange tube generates pushing force for moving forwards and pushing force for rotating, and the outer surface of the machined part is machined thoroughly.
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Description

Technical Field

[0001] The invention patent relates to the field of metal tube processing, and in particular to a high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage. Background Art

[0002] The heat exchange tube is one of the components of the heat exchanger. It is placed inside the cylinder and is used for heat exchange between two media. It has high thermal conductivity and good isothermal properties. When the heat exchange tube is on the outer surface, it is not easy to rotate during processing due to its length, resulting in incomplete processing of the outer surface. Summary of the Invention

[0003] The purpose of the present invention is to solve the existing technical problems and to propose a high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage.

[0004] In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme: a high-precision bright solid solution heat exchange tube outer surface finishing device for compression energy storage, including an outer surface finishing center, a processing tunnel, a bracket, a drive motor and a rotating component. The processing part of the outer surface finishing center is covered by the processing tunnel. Several rotating components are arranged in sequence at an angle and pass through the processing tunnel, passing through the inlet and outlet of the processing part of the outer surface finishing center. The rotating component is set on the bracket and driven by the drive motor to rotate. The rotating component includes a rotating seat, a rotating shaft and a cylinder with a groove on the outer surface. The two rotating seats are installed at the upper end of the bracket to form an angle with the inlet and outlet of the processing part. One end of the rotating shaft passes through the two rotating seats and is connected to the drive motor through the transmission device inside the rotating seat. The other end of the rotating shaft is provided with a cylinder with a groove on the outer surface.

[0005] Furthermore, the other end of the rotating shaft extends out of the side wall of the bracket and is provided with a cylinder with a groove on the outer surface.

[0006] Furthermore, the cylinder with grooves on the outer surface is composed of two identical frustums, and the smaller ends of the two identical frustums are connected into one body.

[0007] Furthermore, a horizontal line formed by the grooves of the cylinders of the plurality of rotating components is parallel to the inlet and outlet of the processing part and passes through the inlet and outlet of the processing part.

[0008] Furthermore, two mounting holes at one end of the rotating shaft are respectively provided on the two rotating seats of the rotating assembly, through which the rotating shafts of the front and rear adjacent rotating assemblies pass for installation.

[0009] Furthermore, a ventilation component is provided on the processing tunnel, and the ventilation component is connected to an air purifier.

[0010] Furthermore, soft covering curtains are provided at the inlet and outlet of the processing area.

[0011] The beneficial effect of the present invention is that by placing the heat exchange tube in the groove of the cylinder and rotating the cylinder, the heat exchange tube generates a forward thrust and a rotation thrust, so that the outer surface of the processed part is completely processed. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 For structural indication Figure 1 .

[0013] Figure 2 For structural indication Figure 2 .

[0014] Figure 3 This is a top view.

[0015] Figure 4 Schematic diagram of the rotating component structure.

[0016] 1 is the outer surface finishing center; 2 is the processing tunnel; 21 is the exit of the processing tunnel; 3 is a bracket; 4 is a driving motor; 5 is a rotating assembly; 51 is a rotating seat; 52 is a rotating shaft; 53 is a cylinder; 54 is a groove; 511 is a mounting hole at one end of the rotating shaft; 6 is a ventilation component; 7 is an air purifier. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0018] Example 1 Combined with the attached Figure 1-4 , a high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage, including an outer surface finishing center 1, a processing tunnel 2, a bracket 3, a drive motor 4 and a rotating component 5. The processing part of the outer surface finishing center 1 is covered by the processing tunnel 2, and several rotating components are arranged in an inclined manner to pass through the inlet and outlet 21 of the processing tunnel, and pass through the inlet and outlet of the processing part of the outer surface finishing center. The rotating component 5 is set on the bracket 3 and is driven by the drive motor 4 to rotate. The rotating component 5 includes a rotating seat 51, a rotating shaft 52 and a cylinder 53 with a groove on the outer surface. The two rotating seats 51 are installed at the upper end of the bracket to form an angle with the inlet and outlet of the processing part. One end of the rotating shaft 52 passes through the two rotating seats 51 and is connected to the drive motor 4 through the transmission device in the rotating seat. The other end of the rotating shaft 52 is provided with a cylinder 53 with a groove on the outer surface.

[0019] A high-precision bright solid solution heat exchange tube outer surface finishing device for compression energy storage, the other end of the rotating shaft 52 extends out of the side wall of the bracket 3, and is provided with a cylinder 53 with a groove on the outer surface.

[0020] A high-precision bright solid solution heat exchange tube outer surface finishing device for compression energy storage, wherein the cylinder 53 with grooves on the outer surface is composed of two identical frustums, and the smaller ends of the two identical frustums are connected into one body.

[0021] A high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage, wherein the horizontal line formed by the grooves 54 of the cylinders of the plurality of rotating components is parallel to the inlet and outlet of the processing part and passes through the inlet and outlet of the processing part.

[0022] A high-precision bright solid solution heat exchange tube outer surface finishing device for compression energy storage, wherein two rotating seats of the rotating assembly are respectively provided with two mounting holes 511 at one end of the rotating shaft, through which the rotating shafts of the front and rear adjacent rotating assemblies pass for installation.

[0023] A high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage is provided with a ventilation component 6 on the processing tunnel, and the ventilation component is connected to an air purifier 7.

[0024] High-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage, with soft covering curtains at the inlet and outlet of the processing area.

[0025] The high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage places the heat exchange tube in the groove of the cylinder. The cylinder rotates, causing the heat exchange tube to generate forward thrust and rotational thrust, so that the outer surface of the processing area is thoroughly processed. It is easy to place and does not require alignment. The heat exchange tube placed on the cylinder falls into the groove by gravity.

[0026] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage, comprising an outer surface finishing center (1), a processing tunnel (2), a bracket (3), a drive motor (4) and a rotating assembly (5), characterized in that: The processing part of the outer surface finishing center (1) is covered by a processing tunnel (2). A plurality of rotating components are arranged in an inclined manner and pass through the processing tunnel, and pass through the inlet and outlet of the processing part of the outer surface finishing center. The rotating component (5) is arranged on a bracket (3) and driven by a driving motor (4) to rotate the rotating component (5). The rotating component (5) includes a rotating seat (51), a rotating shaft (52) and a cylinder (53) with a groove on the outer surface. The two rotating seats are installed at the upper end of the bracket to form an angle with the inlet and outlet of the processing part. One end of the rotating shaft passes through the two rotating seats and is connected to the driving motor through a transmission device in the rotating seat. The other end of the rotating shaft is provided with a cylinder with a groove on the outer surface.

2. The high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage according to claim 1 is characterized in that: The other end of the rotating shaft extends out of the side wall of the bracket and is provided with a cylinder with grooves on the outer surface.

3. The high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage according to claim 1 is characterized in that: The cylinder with grooves on the outer surface is composed of two identical frustums, and the smaller ends of the two identical frustums are connected into one body.

4. The high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage according to claim 3 is characterized in that: The horizontal line formed by the grooves (54) of the cylindrical bodies of the plurality of rotating components is parallel to the inlet and outlet of the processing part and passes through the inlet and outlet of the processing part.

5. The high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage according to claim 1 is characterized in that: Two rotating seats of the rotating assembly are respectively provided with two mounting holes (511) at one end of the rotating shaft, through which the rotating shafts of the front and rear adjacent rotating assemblies pass for installation.

6. The high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage according to claim 1 is characterized in that: A ventilation assembly (6) is provided on the processing tunnel, and the ventilation assembly is connected to an air purifier (7).

7. The high-precision bright solid solution heat exchange tube outer surface finishing device for compressed energy storage according to claim 1 is characterized in that: The entrance and exit of the processing area are equipped with soft curtains.

Citation Information

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