Drying and cleaning assembly for carbon fiber square tube

By combining ultrasonic cleaning and hot air drying components, the problem of low production efficiency of existing equipment has been solved, realizing automated cleaning and drying of carbon fiber square tubes, and improving production efficiency and cleaning effect.

CN224143077UActive Publication Date: 2026-04-21JIDETE INTELLIGENT TECH (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIDETE INTELLIGENT TECH (SUZHOU) CO LTD
Filing Date
2025-03-18
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing carbon fiber square tube cleaning and drying equipment has low production efficiency on automated production lines. The cleaning brushes are easily worn out and need to be replaced regularly, which affects the cleaning effect.

Method used

The assembly equipment includes ultrasonic cleaning and drying components, which combine ultrasonic cleaning and hot air drying to achieve automated cleaning and drying, eliminating the need for cleaning brushes.

Benefits of technology

The system enables automated cleaning and drying of carbon fiber square tubes, improving production efficiency, avoiding wear and tear on cleaning brushes and the need for regular replacement, and enhancing cleaning effectiveness.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224143077U_ABST
Patent Text Reader

Abstract

The utility model relates to a drying and cleaning assembly for a carbon fiber square tube, which comprises a cleaning component, a first material conveying mechanism and a water conveying mechanism, the cleaning component comprises an accommodating box body with a built-in ultrasonic generator, the first material conveying mechanism is matched with the accommodating box body and can be lifted up and down, and the water conveying mechanism is communicated with the accommodating box body and is used for water circulation; a drying assembly, the drying assembly comprises a base arranged on one side of the containing box body, a carrying frame installed on the base, and a second conveying mechanism installed in the carrying frame and matched with the first conveying mechanism. The cover cap is arranged on the carrying frame; and the plurality of heating pipes are arranged in the carrying frame or the cover cap and are positioned above the second conveying mechanism. Automatic cleaning and drying of the carbon fiber square tube are achieved, a brush does not need to be used, and the production efficiency is high.
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Description

Technical Field

[0001] This utility model belongs to the field of cleaning equipment, and relates to a cleaning assembly, specifically a drying and cleaning assembly for carbon fiber square tubes. Background Technology

[0002] After processing, carbon fiber square tubes require cleaning and drying. To ensure production efficiency, spraying is typically used for cleaning, but this method generally yields limited cleaning results. Furthermore, Chinese utility model patent application number 202023008009.7 discloses a cleaning and drying device for pipe fittings capable of omnidirectional cleaning. This device includes a bracket, a support, and a support block. A motor is fixedly connected to the top inner side of the bracket, and a small gear is fixedly connected to the end of the motor's main shaft. A large gear meshes with the outside of the small gear, and a cleaning brush is fixedly connected to the rear end of the large gear via a rotating shaft. A drive wheel is fixedly connected to the front end of the small gear via a rotating shaft. This arrangement of the small gear, large gear, and cleaning brush, along with the meshing connection between the small gear and large gear and the fixed connection between the large gear and the cleaning brush, allows the pipe fittings to rotate, resulting in better cleaning and higher efficiency. However, such cleaning and drying equipment has poor production efficiency when used in automated production lines and still relies on the cleaning brush. The cleaning brush is prone to wear and tear and requires regular replacement, both of which affect the cleaning effect. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a drying and cleaning assembly for carbon fiber square tubes.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is: a drying and cleaning assembly for carbon fiber square tubes, comprising:

[0005] A cleaning assembly, comprising a housing with a built-in ultrasonic generator, a first conveying mechanism that cooperates with the housing and can be raised and lowered, and a water transmission mechanism connected to the housing for water circulation.

[0006] The drying assembly includes a base disposed on one side of the receiving box, a frame mounted on the base, a second conveying mechanism mounted in the frame and cooperating with the first conveying mechanism, a cover mounted on the frame, and multiple heating tubes mounted in the frame or the cover and located above the second conveying mechanism.

[0007] Optimally, the cleaning assembly further includes a support base plate with a plurality of first legs mounted on its bottom surface, and the receiving box is mounted on the upper surface of the support base plate.

[0008] Further, the first material conveying mechanism includes a material-bearing base frame, multiple inverted L-shaped brackets connected to the material-bearing base frame at their lower ends and disposed on both sides thereon, multiple side lifting frames mounted on the support base plate and located on both sides of the receiving box, a lifting cylinder mounted on each side lifting frame and connected to the free end of the inverted L-shaped bracket, two material conveying mounting side plates disposed on the material-bearing base frame and located inside the inverted L-shaped bracket, multiple first transmission shafts mounted between the two material conveying mounting side plates and having first transmission gears mounted at both ends, a first material conveying belt mounted on the multiple first transmission shafts via the first transmission gears, a support vertical plate mounted on the inner wall of any of the material conveying mounting side plates, and a first material conveying motor mounted on the support vertical plate and connected to any of the first transmission shafts via the first material conveying belt.

[0009] Furthermore, the water transmission mechanism includes a water storage tank connected to the upper part of the receiving tank, a water supply pipe connected at one end to the lower part of the water storage tank and at the other end to the upper part of the receiving tank, a water supply pump installed on the water supply pipe, a filter installed on the water supply pipe and located downstream of the water supply pump, a first on / off valve installed on the water supply pipe and located downstream of the filter, and a second on / off valve installed at the connection between the receiving tank and the water storage tank.

[0010] Optimally, the drying assembly also includes a plurality of blowers disposed on the cover and corresponding to the heating tube.

[0011] Furthermore, the second conveying mechanism includes multiple second drive shafts installed within the frame and having second drive gears mounted at both ends, a second conveying belt mounted on the multiple second drive shafts via the second drive gears, and a reduction motor connected to the end of any of the second drive shafts.

[0012] Optimally, the drying assembly also includes a plurality of second legs disposed at the bottom of the base.

[0013] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art: The carbon fiber square tube drying and cleaning assembly of this utility model, by adopting a cleaning component and a drying component with a specific structure, can enable the first conveying mechanism to descend to immerse the product in water for ultrasonic cleaning, and then rise to cooperate with the second conveying mechanism. After drying, the product is output, thereby realizing the automatic cleaning and drying of carbon fiber square tubes. It does not require the use of brushes and has high production efficiency. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of the drying and cleaning assembly for carbon fiber square tubes of this utility model;

[0015] Figure 2This is a structural schematic diagram from another perspective of the drying and cleaning assembly of the carbon fiber square tube of this utility model. Detailed Implementation

[0016] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.

[0017] like Figure 1 and Figure 2 The carbon fiber square tube drying and cleaning assembly 8 shown mainly includes a cleaning component 81 and a drying component 82.

[0018] The cleaning assembly 81 includes a housing 811 with a built-in ultrasonic generator (i.e., a conventional ultrasonic generator is installed at the bottom of the inner wall of the housing 811; when the housing 811 is filled with cleaning fluid (such as water), the carbon fiber square tube is immersed in the cleaning fluid to clean it using ultrasonic waves generated by the ultrasonic generator), a first conveying mechanism 812 that cooperates with the housing 811 and can be raised and lowered, and a water transmission mechanism 813 that is connected to the housing 811 for water circulation. The first conveying mechanism 812 has a first state and a second state. When the first conveying mechanism 812 is in the first state, part of its structure is located inside the housing 811; when the first conveying mechanism 812 is in the second state, the entire first conveying mechanism 812 is located outside the housing 811 (e.g., ...). Figure 1 and Figure 2 (As shown).

[0019] In this embodiment, the cleaning assembly 81 further includes a support base plate 810 with a plurality of first legs 8101 mounted on its bottom surface (the first legs 8101 are typically four, located at the four corners of the bottom surface of the support base plate 810), and a housing 811 is mounted on the upper surface of the support base plate 810. The first material conveying mechanism 812 includes a material-bearing base frame 8120, multiple inverted L-shaped brackets 8121 (four inverted L-shaped brackets 8121 extending outwards so that two are spaced apart on one side of the material-bearing base frame 8120) connected to the lower end of the material-bearing base frame 8120 and disposed on both sides of it, multiple side lifting frames 8122 mounted on the support base plate 810 and located on both sides of the receiving box 811, lifting cylinders 8123 mounted on each side lifting frame 8122 and connected to the free end of the corresponding inverted L-shaped bracket 8121 (the number of lifting cylinders 8123 is the same as the number of inverted L-shaped brackets 8121, and they are matched one-to-one), two material conveying mounting side plates 8124 disposed on the material-bearing base frame 8120 and located inside the inverted L-shaped brackets 8121, and multiple first transmission shafts 8125 (at least two, which can be installed between the two material conveying mounting side plates 8124 and with first transmission gears 8126 mounted at both ends) mounted on both ends. (As needed, an appropriate number of) first conveyor belts 8129 are installed on multiple first drive shafts 8125 via a first drive gear 8126 (at this time, a first conveyor chain that cooperates with the first drive gear 8126 is installed on both sides of the first conveyor belt 8129, and when the first drive shaft 8125 rotates, it can drive the first conveyor belt 8129 to rotate synchronously), a support vertical plate 8127 is installed on the inner wall of any conveyor mounting side plate 8124, and a first conveyor motor 8128 is installed on the support vertical plate 8127 and connected to any first drive shaft 8125 (the side of the first drive shaft 8125 has a drive wheel that cooperates with the first conveyor belt) via a first conveyor belt. In this way, when the first conveyor motor 8128 is working, it drives the first drive shaft 8125 through the first conveyor belt and the drive wheel, and then drives the first conveyor belt 8129, thereby realizing the conveying of materials on the first conveyor belt 8129.

[0020] In this embodiment, the water transfer mechanism 813 includes a water storage tank 8131 connected to the upper part of the receiving tank 811 (a second on / off valve is installed at the connection between the receiving tank 811 and the water storage tank 8131), a water delivery pipe 8132 connected at one end to the lower part of the water storage tank 8131 and at the other end to the upper part of the receiving tank 811, a water delivery pump 8133 installed on the water delivery pipe 8132, a filter 8134 installed on the water delivery pipe 8132 and located downstream of the water delivery pump 8133, and a first on / off valve 8135 installed on the water delivery pipe 8132 and located downstream of the filter 8134. Thus, when the water delivery pump 8133 is working, the water stored in the water storage tank 8131 can be filtered by the filter 8134 and then input into the receiving tank 811 (the water in the water storage tank 8131 can be artificially replenished or can flow out of the receiving tank 811).

[0021] The drying assembly 82 includes a base 821 disposed on one side of the housing 811, a frame 822 mounted on the base 821, a second conveying mechanism mounted in the frame 822 and cooperating with the first conveying mechanism 812, a cover 824 mounted on the frame 822, and multiple heating tubes mounted in the frame 822 or the cover 824 and located above the second conveying mechanism.

[0022] In this embodiment, the drying assembly 82 further includes multiple blowers 825 disposed on the cover 824 and corresponding to the heating tube. These blowers 825 blow air onto the heating tube, allowing the heat generated by the heating tube to be evenly distributed to the material on the second conveying mechanism. The second conveying mechanism includes multiple second drive shafts mounted within the frame 822 and equipped with second drive gears at both ends; a second conveyor belt 827 mounted on the multiple second drive shafts via the second drive gears (i.e., a second conveyor chain cooperating with the second drive gears is mounted on both sides of the second conveyor belt 827, which can drive the second conveyor belt 827 to rotate synchronously when the second drive shaft rotates); and a reduction motor 826 connected to the end of any of the second drive shafts. When the reduction motor 826 operates, it drives the rotation of the second drive shaft connected to it, thereby causing the second conveyor belt 827 to rotate synchronously and move the material. The drying assembly 82 also includes multiple second support legs 8210 disposed at the bottom of the base 821.

[0023] This utility model, a drying and cleaning assembly 8 for carbon fiber square tubes, uses a cleaning component 81 and a drying component 82 with a specific structure to cooperate. This allows the first conveying mechanism 812 to descend and immerse the product in water for ultrasonic cleaning, and then rise to cooperate with the second conveying mechanism. After drying, the product is output, thus realizing automatic cleaning and drying of carbon fiber square tubes. It eliminates the need for brushes and has high production efficiency.

[0024] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent changes or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.

Claims

1. A drying and cleaning assembly for carbon fiber square tubes, characterized by, It includes: The cleaning assembly (81) includes a housing (811) with a built-in ultrasonic generator, a first conveying mechanism (812) that cooperates with the housing (811) and can be raised and lowered, and a water transmission mechanism (813) that is connected to the housing (811) for water circulation. The drying assembly (82) includes a base (821) disposed on one side of the housing (811), a frame (822) mounted on the base (821), a second conveying mechanism mounted in the frame (822) and cooperating with the first conveying mechanism (812), a cover (824) mounted on the frame (822), and multiple heating tubes mounted in the frame (822) or the cover (824) and located above the second conveying mechanism.

2. The drying and cleaning assembly for carbon fiber square tubes according to claim 1, characterized in that: The cleaning assembly (81) also includes a support base plate (810) with a plurality of first legs (8101) mounted on its bottom surface, and the housing (811) is mounted on the upper surface of the support base plate (810).

3. The drying and cleaning assembly for carbon fiber square tubes according to claim 2, characterized in that: The first material conveying mechanism (812) includes a material-bearing base frame (8120), multiple inverted L-shaped brackets (8121) connected to the material-bearing base frame (8120) at their lower ends and disposed on both sides thereon, multiple side lifting frames (8122) mounted on the support base plate (810) and located on both sides of the receiving box (811), lifting cylinders (8123) mounted on each side lifting frame (8122) and connected to the free end of the inverted L-shaped brackets (8121), and two material conveying mounting blocks disposed on the material-bearing base frame (8120) and located inside the inverted L-shaped brackets (8121). Side plate (8124), multiple first drive shafts (8125) installed between two of the conveying installation side plates (8124) and with first drive gears (8126) installed at both ends, a first conveying belt (8129) installed on the multiple first drive shafts (8125) via the first drive gears (8126), a support vertical plate (8127) installed on the inner wall of any of the conveying installation side plates (8124), and a first conveying motor (8128) installed on the support vertical plate (8127) and connected to any of the first drive shafts (8125) via the first conveying belt.

4. The drying and cleaning assembly for carbon fiber square tubes according to claim 1 or 3, characterized in that: The water transmission mechanism (813) includes a water storage tank (8131) connected to the upper part of the receiving box (811), a water delivery pipe (8132) connected at one end to the lower part of the water storage tank (8131) and at the other end to the upper part of the receiving box (811), a water delivery pump (8133) installed on the water delivery pipe (8132), a filter (8134) installed on the water delivery pipe (8132) and located downstream of the water delivery pump (8133), a first on / off valve (8135) installed on the water delivery pipe (8132) and located downstream of the filter (8134), and a second on / off valve installed at the connection between the receiving box (811) and the water storage tank (8131).

5. The drying and cleaning assembly for carbon fiber square tubes according to claim 1, characterized in that: The drying assembly (82) also includes a plurality of blowers (825) disposed on the cover (824) and corresponding to the heating tube.

6. The drying and cleaning assembly for carbon fiber square tubes according to claim 5, characterized in that: The second conveying mechanism includes multiple second drive shafts installed in the frame (822) and equipped with second drive gears at both ends, a second conveying belt (827) mounted on the multiple second drive shafts via the second drive gears, and a geared motor (826) connected to the end of any of the second drive shafts.

7. The drying and cleaning assembly for carbon fiber square tubes according to claim 1, characterized in that: The drying assembly (82) also includes a plurality of second legs (8210) disposed at the bottom of the base (821).

Citation Information

Patent Citations

  • Pipe fitting cleaning and drying equipment capable of achieving all-dimensional treatment

    CN213968112U