A continuous preparation and production device for flexible carbon-carbon composite materials
By designing the adjustment tensioning connection structure and heating combination structure in the continuous preparation production device of flexible carbon-carbon composite materials, the problem of integrated transmission-heating-regulation production is solved, and an efficient production process and flexible adjustment function are achieved.
Patent Information
- Application Number
- CN202211193940.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-28
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2042-09-28
AI Technical Summary
The existing continuous production equipment for flexible carbon-carbon composite materials cannot achieve integrated transmission-heating-regulation production work, and is not conducive to integrated production processing and spacing adjustment.
A production device including an adjustment tensioning connection structure and a heating combination structure is designed. The tension adjustment is realized by adjusting the structural setting of the tensioning connection structure, and the heating treatment is realized through the configuration of the heating combination structure. The two are installed in combination to achieve integrated transmission-heating-regulation production.
It realizes integrated transmission-heating-regulation production, improves production efficiency, is suitable for integrated production processing, and can flexibly perform spacing adjustment and tension adjustment.
Smart Images

Figure CN115535688B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of continuous preparation equipment for carbon-carbon composites, and particularly to a continuous preparation production device for flexible carbon-carbon composites. Background Art
[0002] The continuous preparation production device for flexible carbon-carbon composites, through the setting of its structure, facilitates the continuous production work of flexible carbon-carbon composites, realizes mechanized production and processing work, and improves the production connection performance of flexible carbon-carbon composites.
[0003] According to Chinese Patent Application No. CN202011547164.8, the present invention discloses a continuous preparation method and production device for flexible carbon-carbon composites, belonging to the field of carbon-carbon composites. The continuous preparation method for flexible carbon-carbon composites described in the present invention includes processes such as thermosetting resin film formation, carbon fiber cloth and thermosetting resin compounding, curing, carbonization, and graphitization. Each process forms a continuous production line through roller drive. The present invention realizes multiple steps of compounding, curing, carbonization, and graphitization in the preparation process of flexible carbon-carbon composites on a single continuous production line, and solves the problems of low production efficiency and inability to mass-produce of existing flexible carbon-carbon composites. However, this patent cannot achieve integrated production work of transmission-thermalization-regulation.
[0004] According to Chinese Patent Application No. CN03141798.1, a preparation method of carbon-carbon composites belongs to the field of composite materials. The present invention makes full use of the unique porous structure and porous characteristics of wood structure and its chemical components. First, the wood structure is pretreated to form a preformed template skeleton of carbon-carbon composites, and then through the impregnation of carbon precursor compounds and subsequent densification and graphitization treatments, the transformation of the macroscopic structure of wood into carbon-carbon composites is realized, thereby preparing carbon-carbon composites with high comprehensive performance. The novel carbon-carbon composites with high comprehensive performance prepared by the present invention have, on the one hand, the characteristics of high design freedom, and on the other hand, excellent properties such as light weight, ablation resistance, abrasion resistance, high temperature strength, and oxidation resistance. However, this patent is not conducive to overall production and processing work.
[0005] According to the Chinese patent application number CN202021592904.5, the present utility model discloses a clamping and conveying device for a carbon-carbon composite rotating body, which includes a base plate. A second motor and a guide rail are arranged on the base plate. A lead screw is horizontally rotatably arranged at the output shaft end of the second motor. The lead screw is matched with a lead screw nut at the center of the bottom of the movable table. Sliders are arranged at the bottom of the movable table. A support frame is arranged above the movable table. A first motor is arranged on the movable table below the support frame. The output shaft end of the first motor is connected to a rotating shaft through a coupling. A clamping mechanism for clamping the carbon-carbon composite rotating body is arranged at the end of the rotating shaft vertically passing upward through the support frame. A bearing is arranged between the rotating shaft and the support frame. The present utility model has a good clamping effect, can perform self-centering positioning operations, has high stability, meets the use requirements for grinding operations of carbon-carbon composite rotating bodies of different models, and the clamped carbon-carbon composite rotating body workpiece can be very conveniently and quickly conveyed to the grinding position for grinding operations. However, this patent is not conducive to the spacing adjustment work.
[0006] However, the existing continuous preparation and production device for flexible carbon-carbon composite materials cannot achieve integrated production work of transmission-thermalization-adjustment during use, which is not conducive to the overall production and processing work. Moreover, the continuous preparation and production device for flexible carbon-carbon composite materials also has problems of being not conducive to spacing adjustment work and not conducive to the purpose of stretching and tension adjustment. Therefore, there is an urgent need for a device to solve the above problems. Summary of the Invention
[0007] The purpose of the present invention is to provide a continuous preparation and production device for flexible carbon-carbon composite materials to solve the problems raised in the above background technology.
[0008] To achieve the above purpose, the present invention provides the following technical solution: A continuous preparation and production device for flexible carbon-carbon composite materials includes an adjustment and tension connection structure and a heating combination structure. The heating combination structure is fixedly connected to the side end position of the adjustment and tension connection structure. Through the structural settings of the adjustment and tension connection structure and the heating combination structure, it is convenient to carry out combined installation work and realize the production connection work of carbon-carbon composite materials;
[0009] The adjustment and tension connection structure includes a first adjustment and tension component and a second adjustment and tension component. The first adjustment and tension component is arranged on one side of the inner end of the adjustment and tension connection structure. The second adjustment and tension component is fixedly connected to the side end of the first adjustment and tension component. The combined connection of the first adjustment and tension component and the second adjustment and tension component realizes the purpose of adjustment and tension;
[0010] The adjusting and tensioning connection structure further includes a top rod frame, a transmission connecting rod, and a supporting bottom rod. The tops of the first adjusting and tensioning component and the second adjusting and tensioning component are fixedly connected to the top rod frame. The bottoms of the first adjusting and tensioning component and the second adjusting and tensioning component are fixedly connected to the supporting bottom rod. The transmission connecting rod is inserted into the central positions of the first adjusting and tensioning component and the second adjusting and tensioning component. The connection settings of the top rod frame, the transmission connecting rod, and the supporting bottom rod facilitate the installation and combination work.
[0011] The heating combination structure includes a ventilation connecting pipe, a connecting air pump, a supporting bottom plate, and a positioning connecting seat. The upper end of the supporting bottom plate is fixedly connected to the positioning connecting seat. The connecting air pump is installed on the top of the positioning connecting seat. The upper end of the connecting air pump is connected to the ventilation connecting pipe. The structural settings of the ventilation connecting pipe, the connecting air pump, the supporting bottom plate, and the positioning connecting seat improve the overall combined heating capacity.
[0012] Preferably, the second adjusting and tensioning component includes a limiting combination plate, an adjusting cooperation rod, a supporting column frame, a stabilizing connecting rod frame, a platform supporting plate, a driven adjusting tooth plate, a driving adjusting tooth disc, a cooperation guide rod frame, and a matching displacement plate frame. The upper end of the stabilizing connecting rod frame is fixedly connected to the platform supporting plate. The driving adjusting tooth disc is rotatably connected to the center of the platform supporting plate. The side end of the driving adjusting tooth disc is meshed and connected to the driven adjusting tooth plate. The upper part of the driven adjusting tooth plate is fixedly connected to the cooperation guide rod frame. The upper end of the cooperation guide rod frame is fixedly connected to the matching displacement plate frame. The bottom end of the matching displacement plate frame is fixedly connected to the adjusting cooperation rod. The side end position of the matching displacement plate frame is slidably connected to the limiting combination plate. The rear end position of the limiting combination plate is fixedly connected to the supporting column frame. The settings of the limiting combination plate, the adjusting cooperation rod, the supporting column frame, the stabilizing connecting rod frame, the platform supporting plate, the driven adjusting tooth plate, the driving adjusting tooth disc, the cooperation guide rod frame, and the matching displacement plate frame realize the specific adjusting function.
[0013] Preferably, the heating combination structure further includes a heating mesh and a connecting exhaust pipe. The lower end position of the connecting air pump is connected to the heating mesh. The lower end position of the heating mesh is connected to the connecting exhaust pipe. The combined connection of the heating mesh and the connecting exhaust pipe realizes the heating connection work.
[0014] Preferably, the heating combination structure further includes a first driving rotating rod and a second driving rotating rod. The first driving rotating rod and the second driving rotating rod are rotatably connected to the central position of the positioning connecting seat. The connection combination of the first driving rotating rod and the second driving rotating rod realizes the matching installation work.
[0015] Preferably, the ventilation connecting pipe, the connecting air pump, the heating mesh, and the connecting exhaust pipe are integrally connected. And the heating mesh is electrically connected to the outside. The overall connection is convenient for control work.
[0016] Preferably, the side end of the adjustment cooperation rod is rotatably connected to the transmission connecting rod, and the transmission connecting rod and the adjustment cooperation rod are slidably connected through a matching displacement plate frame. Through the combined connection, the cooperation ability is improved.
[0017] Preferably, a second shielding plate frame is fixedly connected to the side end of the heating combined structure, and a first shielding plate frame is fixedly connected to the lower end of the second shielding plate frame. The settings of the first shielding plate frame and the second shielding plate frame realize the shielding installation work.
[0018] Preparation method of a continuous preparation and production device for flexible carbon-carbon composite materials:
[0019] S1. The user combines and connects the adjustment tension connection structure and the heating combined structure, transports the material through the transmission connecting rod, drives the rotation of the active adjustment gear disc, drives the driven adjustment tooth plate to displace, so that the driven adjustment tooth plate drives the cooperation guide rod frame and the matching displacement plate frame to slide on the limit combined plate, thereby changing the position of the adjustment cooperation rod;
[0020] S2. The adjustment cooperation rod is rotatably connected to the transmission connecting rod, and the position of the transmission connecting rod can be changed to realize the stretching treatment of the material and help with the tension adjustment work;
[0021] S3. Then the material is conducted to the positions of the first driving rotating rod and the second driving rotating rod, the air pump is started after being connected, so that the outside gas is introduced through the ventilation connecting pipe, reaches the heating mesh sheet for heating treatment, and is discharged through the connecting exhaust pipe to help with the heat treatment work.
[0022] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0023] First, by installing the adjustment tension connection structure, the structure of the adjustment tension connection structure is set to facilitate the tension adjustment work. Through the change of position, the stretching deformation function is realized, which helps to achieve the tension control purpose, better assist in the production work, and the combined setting of the adjustment tension connection structure and the heating combined structure can realize the integrated production work of transmission - heat treatment - adjustment, which is conducive to the overall production process. At the same time, the installation and connection of the adjustment tension connection structure and the heating combined structure are conducive to the spacing adjustment work and the stretching tension adjustment purpose.
[0024] Second, by installing the heating combined structure, the setting of the heating combined structure is convenient for heat treatment work. The ventilation connecting pipe, connecting air pump, heating mesh sheet, and connecting exhaust pipe inside the heating combined structure are connected and set, and the gas can be discharged. With the heating treatment of the heating mesh sheet, the heat treatment purpose is realized, which better carries out the production work of carbon-carbon composite materials. The settings of the first driving rotating rod and the second driving rotating rod are convenient for the conduction connection work.
[0025] III. By installing the first baffle frame and the second baffle frame, the first baffle frame and the second baffle frame are fixedly connected to each other and fixedly installed with the heating combination structure, so as to realize the side protection work of the heating combination structure, better carry out the dust-free production work. Through the structural settings of the first baffle frame and the second baffle frame, it is convenient to protect the heating combination structure and carry out the internal and external blocking work. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0027] Figure 1 is a schematic structural diagram of the main body of the present invention;
[0028] Figure 2 is a side view of the main body of the present invention;
[0029] Figure 3 is a perspective view of the main body of the present invention;
[0030] Figure 4 is a schematic structural diagram of the tension adjustment connection structure of the present invention;
[0031] Figure 5 is a side view of the tension adjustment connection structure of the present invention;
[0032] Figure 6 is a schematic structural diagram of the second tension adjustment component of the present invention;
[0033] Figure 7 is a schematic structural diagram of the heating combination structure of the present invention;
[0034] Figure 8 is a side view of the heating combination structure of the present invention;
[0035] Figure 9 is a perspective view of the heating combination structure of the present invention;
[0036] Figure 10 is a schematic structural diagram of the second embodiment of the main body of the present invention.
[0037] In the figure: 1 - Adjusting and tensioning connection structure, 2 - Heating combination structure, 3 - First adjusting and tensioning component, 4 - Second adjusting and tensioning component, 5 - Top rod frame, 6 - Transmission connecting rod, 7 - Support bottom rod, 8 - Limit combination plate, 9 - Adjusting cooperation rod, 10 - Support column frame, 11 - Stable connecting rod frame, 12 - Platform support plate, 13 - Driven adjusting tooth plate, 14 - Active adjusting tooth disc, 15 - Cooperation guide rod frame, 16 - Matching displacement plate frame, 17 - Ventilation connecting pipe, 18 - Connecting air pump, 19 - Support bottom plate piece, 20 - Positioning connection seat, 21 - Heating mesh piece, 22 - Connecting drainage pipe, 23 - First driving rotating rod, 24 - Second driving rotating rod, 25 - First baffle plate frame, 26 - Second baffle plate frame. Detailed implementation manner
[0038] In order to enable those skilled in the art of this technology to better understand the solution of this application, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of this application.
[0039] It should be noted that the terms "first", "second", etc. in the description and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily need to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so as to implement the embodiments of this application described here. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units does not necessarily have to be limited to those clearly listed steps or units, but may include other steps or units that are not clearly listed or are inherent to these processes, methods, products or devices.
[0040] The present invention will be further described below in conjunction with the accompanying drawings.
[0041] Embodiment 1
[0042] Please refer to Figure 1 , Figure 2 , Figure 3 A kind of embodiment provided by the present invention: A continuous preparation and production device for flexible carbon-carbon composite materials, including an adjusting and tensioning connection structure 1 and a heating combination structure 2, and a heating combination structure 2 is fixedly connected to the side end position of the adjusting and tensioning connection structure 1;
[0043] Please refer to Figure 4, the adjusting and tensioning connection structure 1 includes a first adjusting and tensioning component 3 and a second adjusting and tensioning component 4. The first adjusting and tensioning component 3 is arranged on one side of the inner end of the adjusting and tensioning connection structure 1. The side end of the first adjusting and tensioning component 3 is fixedly connected with the second adjusting and tensioning component 4. The settings of the first adjusting and tensioning component 3 and the second adjusting and tensioning component 4 achieve the purpose of symmetric treatment, facilitate symmetric adjustment work, and realize tensioning and stretching work;
[0044] Please refer to Figure 5 , the adjusting and tensioning connection structure 1 further includes a top rod frame 5, a transmission connecting rod 6 and a supporting bottom rod 7. The tops of the first adjusting and tensioning component 3 and the second adjusting and tensioning component 4 are fixedly connected with the top rod frame 5. The bottoms of the first adjusting and tensioning component 3 and the second adjusting and tensioning component 4 are fixedly connected with the supporting bottom rod 7. The transmission connecting rod 6 is inserted at the central positions of the first adjusting and tensioning component 3 and the second adjusting and tensioning component 4. The top rod frame 5, the transmission connecting rod 6 and the supporting bottom rod 7 realize the installation and connection of the first adjusting and tensioning component 3 and the second adjusting and tensioning component 4, help to achieve the overall fixation purpose of the adjusting and tensioning connection structure 1, and realize collaborative production work;
[0045] Please refer to Figure 7 , the heating combination structure 2 includes a ventilation connecting pipe 17, a connecting air pump 18, a supporting bottom plate piece 19 and a positioning connecting seat 20. The upper end of the supporting bottom plate piece 19 is fixedly connected with the positioning connecting seat 20. The connecting air pump 18 is installed on the top of the positioning connecting seat 20. The upper end of the connecting air pump 18 is communicated with the ventilation connecting pipe 17. The supporting bottom plate piece 19 and the positioning connecting seat 20 achieve the purpose of supporting connection. The ventilation connecting pipe 17 and the connecting air pump 18 are communicated. The connecting air pump 18 can conduct gas, so that the outside gas enters through the ventilation connecting pipe 17 and is discharged through the connecting air pump 18.
[0046] Please refer to Figure 6, the second adjusting and tensioning component 4 includes a limit combination plate 8, an adjusting cooperation rod 9, a support column frame 10, a stable connecting rod frame 11, a platform support plate 12, a driven adjusting tooth plate 13, a driving adjusting tooth disc 14, a cooperation guide rod frame 15 and a matching displacement plate frame 16. The setting of the platform support plate 12 facilitates the installation and connection of the driving adjusting tooth disc 14, and the driving adjusting tooth disc 14 can be driven to drive the driven adjusting tooth plate 13 to displace, so that the cooperation guide rod frame 15 and the matching displacement plate frame 16 are slidably connected on the limit combination plate 8, thereby changing the relative position of the adjusting cooperation rod 9. The settings of the support column frame 10 and the stable connecting rod frame 11 realize the bottom support work, and the adjusting cooperation rod 9 is connected to the transmission connecting rod 6. The transmission connecting rod 6 can rotate around the center of the adjusting cooperation rod 9 to realize the matching transmission task. At the same time, the positions of the transmission connecting rod 6 can be changed through the first adjusting and tensioning component 3 and the second adjusting and tensioning component 4 to help achieve the stretching adjustment purpose. The upper end of the stable connecting rod frame 11 is fixedly connected to the platform support plate 12. The center of the platform support plate 12 is rotatably connected to the driving adjusting tooth disc 14. The side end of the driving adjusting tooth disc 14 is meshed and connected to the driven adjusting tooth plate 13. The upper part of the driven adjusting tooth plate 13 is fixedly connected to the cooperation guide rod frame 15. The upper end of the cooperation guide rod frame 15 is fixedly connected to the matching displacement plate frame 16. The side end of the adjusting cooperation rod 9 is rotatably connected to the transmission connecting rod 6, and the transmission connecting rod 6 and the adjusting cooperation rod 9 are slidably connected through the matching displacement plate frame 16. The bottom end of the matching displacement plate frame 16 is fixedly connected to the adjusting cooperation rod 9. The side end of the matching displacement plate frame 16 is slidably connected to the limit combination plate 8. The rear end of the limit combination plate 8 is fixedly connected to the support column frame 10.
[0047] Please refer to Figure 7 , the heating combination structure 2 further includes a heating mesh 21 and a communicating exhaust pipe 22. The lower end of the communicating air pump 18 is communicated with the heating mesh 21. The ventilation communicating pipe 17, the communicating air pump 18, the heating mesh 21 and the communicating exhaust pipe 22 are integrally arranged in communication, and the heating mesh 21 is electrically connected to the outside. The lower end of the heating mesh 21 is communicated with the communicating exhaust pipe 22.
[0048] Please refer to Figure 8 , the heating combination structure 2 further includes a first driving rotating rod 23 and a second driving rotating rod 24. The first driving rotating rod 23 and the second driving rotating rod 24 are rotatably connected at the central position of the positioning connection seat 20.
[0049] A preparation method of a continuous preparation production device for a flexible carbon-carbon composite material:
[0050] S1. The user combines and connects the adjustment tension connection structure 1 and the heating combination structure 2, transmits the material through the transmission connecting rod 6, and drives the active adjustment toothed disc 14 to rotate, so that the driven adjustment toothed plate 13 is displaced, so that the driven adjustment toothed plate 13 drives the coordinated guide rod frame 15 and the coordinated displacement plate frame 16 to slide and connect on the limit combination plate 8, thereby changing the position of the adjustment coordination rod 9;
[0051] S2, adjusting the coordinated rod 9 and the transmission link 6 to rotate and connect, which can change the position of the transmission link 6, realize the stretching treatment of the material, and help the tension adjustment work;
[0052] S3, the material is then transferred to the first driving rotating rod 23 and the second driving rotating rod 24, the connecting air pump 18 is started, so that the external gas is introduced through the ventilation connecting pipe 17, reaches the position of the heating mesh 21 for heating treatment, and is discharged through the connecting drain pipe 22 to help the thermal treatment work.
[0053] When implementing this embodiment, the setting of the first adjusting tensioning component 3 and the second adjusting tensioning component 4 achieves the purpose of symmetrical processing, facilitates symmetrical adjustment work, and realizes tensioning and stretching work. The top rod frame 5, the transmission connecting rod 6, and the supporting bottom rod 7 realize the installation and connection of the first adjusting tensioning component 3 and the second adjusting tensioning component 4, and help to adjust the tensioning connection structure 1 for the purpose of overall fixation, and realize collaborative production work. The setting of the platform support plate 12 facilitates the installation and connection of the active adjustment toothed disc 14, and the active adjustment toothed disc 14 can be driven to drive the driven adjustment toothed plate 13 to move, so that the collaborative guide rod frame 15 and the matching displacement plate frame 16 are slidably connected on the limiting combination plate 8, thereby changing the relative position of the adjustment collaborative rod 9, and the setting of the supporting column frame 10 and the stable connecting rod frame 11 realizes the bottom support work, and The adjustment coordination rod 9 is connected to the transmission connecting rod 6, and the transmission connecting rod 6 can be rotated at the center of the adjustment coordination rod 9 to achieve the coordinated transmission task. At the same time, the position of the transmission connecting rod 6 can be changed by the first adjustment tensioning component 3 and the second adjustment tensioning component 4 to help the stretching adjustment purpose. The support bottom plate 19 and the positioning connecting seat 20 achieve the support connection purpose. The ventilation connecting pipe 17 and the connecting air pump 18 are connected. The connecting air pump 18 can perform gas conduction work, so that the external gas enters through the ventilation connecting pipe 17, and the connecting air pump 18 performs the drainage treatment work. The heating mesh 21 helps to perform heating treatment, so that the hot air is discharged through the connecting drainage pipe 22, so as to achieve the thermal production purpose of the carbon composite material and help to carry out the integrated production work. The first driving rotating rod 23 and the second driving rotating rod 24 can be rotated to achieve the material transmission purpose.
[0054] Example 2
[0055] On the basis of Example 1, Figure 10As shown, a second baffle frame 26 is fixedly connected to the side end of the heating combination structure 2, and a first baffle frame 25 is fixedly connected to the lower end of the second baffle frame 26.
[0056] When implementing this embodiment, by installing the first baffle frame 25 and the second baffle frame 26, the first baffle frame 25 and the second baffle frame 26 are fixedly connected to each other and fixedly installed on the heating combination structure 2, so as to achieve the side-end protection of the heating combination structure 2 and better carry out the dust-free production work. Through the structural settings of the first baffle frame 25 and the second baffle frame 26, it is convenient to protect the heating combination structure 2 and facilitate the internal and external blocking work.
[0057] Working principle: First, install and connect the adjustment and tension connection structure 1 and the heating combination structure 2. The adjustment and tension connection structure 1 is combined through the first adjustment and tension component 3 and the second adjustment and tension component 4. The settings of the first adjustment and tension component 3 and the second adjustment and tension component 4 achieve the purpose of symmetric treatment, facilitating symmetric adjustment work and realizing tension stretching work. The adjustment and tension connection structure 1 is also combined and connected through the top rod frame 5, the transmission connecting rod 6, and the supporting bottom rod 7. The top rod frame 5, the transmission connecting rod 6, and the supporting bottom rod 7 realize the installation and connection of the first adjustment and tension component 3 and the second adjustment and tension component 4, helping to achieve the overall fixation of the adjustment and tension connection structure 1 and realizing collaborative production work. The second adjustment and tension component 4 is combined and set through the limit combination plate 8, the adjustment and cooperation rod 9, the supporting column frame 10, the stable connecting rod frame 11, the platform support plate 12, the driven adjustment tooth plate 13, the active adjustment tooth disc 14, the cooperation guide rod frame 15, and the matching displacement plate frame 16. The setting of the platform support plate 12 facilitates the installation and connection of the active adjustment tooth disc 14, and the active adjustment tooth disc 14 can be driven to drive the driven adjustment tooth plate 13 to displace, so that the cooperation guide rod frame 15 and the matching displacement plate frame 16 are slidably connected on the limit combination plate 8, thereby changing the relative position of the adjustment and cooperation rod 9. The settings of the supporting column frame 10 and the stable connecting rod frame 11 achieve the bottom support work, and the adjustment and cooperation rod 9 is connected to the transmission connecting rod 6. The transmission connecting rod 6 can rotate around the center of the adjustment and cooperation rod 9 to achieve the matching transmission task. At the same time, the position of the transmission connecting rod 6 can be changed through the first adjustment and tension component 3 and the second adjustment and tension component 4 to help achieve the stretching adjustment purpose. The heating combination structure 2 is combined and set through the ventilation connecting pipe 17, the connecting air pump 18, the supporting bottom plate piece 19, and the positioning connection seat 20. The supporting bottom plate piece 19 and the positioning connection seat 20 achieve the purpose of supporting connection. The ventilation connecting pipe 17 and the connecting air pump 18 are connected. The connecting air pump 18 can conduct gas, so that the outside gas enters through the ventilation connecting pipe 17 and is discharged through the connecting air pump 18. The heating combination structure 2 is also combined and connected through the heating mesh sheet 21 and the connecting exhaust pipe 22. The heating mesh sheet 21 helps with the heating process, so that the hot air is discharged through the connecting exhaust pipe 22 to achieve the purpose of thermal production of carbon composite materials and help with the overall production work. The inner end of the heating combination structure 2 is also combined and connected through the first driving rotating rod 23 and the second driving rotating rod 24. The first driving rotating rod 23 and the second driving rotating rod 24 can rotate to achieve the purpose of material conveyance. When the user needs to carry out processing and production, the user combines and connects the adjustment and tension connection structure 1 and the heating combination structure 2, conveys the material through the transmission connecting rod 6, drives the rotation of the active adjustment tooth disc 14, drives the driven adjustment tooth plate 13 to displace, so that the driven adjustment tooth plate 13 drives the cooperation guide rod frame 15 and the matching displacement plate frame 16 to be slidably connected on the limit combination plate 8, thereby changing the position of the adjustment and cooperation rod 9.The adjusting cooperation rod 9 is rotationally connected to the transmission connecting rod 6, and the position of the transmission connecting rod 6 can be changed to realize the stretching treatment of the material and help with the tension adjustment work. Then the material is conducted to the positions of the first driving rotating rod 23 and the second driving rotating rod 24, and the air pump 18 is started to connect. The outside air is introduced through the ventilation connecting pipe 17 and reaches the heating mesh 21 for heating treatment, and is discharged through the connecting exhaust pipe 22 to help with the heat treatment work and complete the work.
[0058] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A continuous preparation and production device for flexible carbon-carbon composite materials, comprising an adjustment and tension connection structure (1) and a heating combination structure (2), characterized in that: The side end of the adjusting and tensioning connection structure (1) is fixedly connected with a heating combination structure (2); The adjusting and tensioning connection structure (1) includes a first adjusting and tensioning component (3) and a second adjusting and tensioning component (4). The first adjusting and tensioning component (3) is arranged on one side of the inner end of the adjusting and tensioning connection structure (1), and the side end of the first adjusting and tensioning component (3) is fixedly connected with the second adjusting and tensioning component (4); The adjusting and tensioning connection structure (1) further includes a top rod frame (5), a transmission connecting rod (6) and a supporting bottom rod (7). The tops of the first adjusting and tensioning component (3) and the second adjusting and tensioning component (4) are fixedly connected with the top rod frame (5). The bottoms of the first adjusting and tensioning component (3) and the second adjusting and tensioning component (4) are fixedly connected with the supporting bottom rod (7). The transmission connecting rod (6) is inserted into the central positions of the first adjusting and tensioning component (3) and the second adjusting and tensioning component (4); The heating combination structure (2) includes a ventilation connecting pipe (17), a connecting air pump (18), a supporting bottom plate piece (19) and a positioning connecting seat (20). The upper end of the supporting bottom plate piece (19) is fixedly connected with the positioning connecting seat (20). The top of the positioning connecting seat (20) is provided with the connecting air pump (18). The upper end of the connecting air pump (18) is communicated with the ventilation connecting pipe (17); The second adjusting and tensioning component (4) includes a limiting combination plate (8), an adjusting cooperation rod (9), a supporting column frame (10), a stabilizing connecting rod frame (11), a platform supporting plate (12), a driven adjusting tooth plate (13), a driving adjusting tooth disc (14), a cooperation guide rod frame (15) and a matching displacement plate frame (16). The upper end of the stabilizing connecting rod frame (11) is fixedly connected with the platform supporting plate (12). The center of the platform supporting plate (12) is rotatably connected with the driving adjusting tooth disc (14). The side end of the driving adjusting tooth disc (14) is meshed and connected with the driven adjusting tooth plate (13). The upper part of the driven adjusting tooth plate (13) is fixedly connected with the cooperation guide rod frame (15). The upper end of the cooperation guide rod frame (15) is fixedly connected with the matching displacement plate frame (16). The bottom end of the matching displacement plate frame (16) is fixedly connected with the adjusting cooperation rod (9). The side end position of the matching displacement plate frame (16) is slidably connected with the limiting combination plate (8). The rear end position of the limiting combination plate (8) is fixedly connected with the supporting column frame (10).
2. The continuous preparation and production device for flexible carbon-carbon composite materials according to claim 1, characterized in that: The heating combination structure (2) further includes a heating mesh sheet (21) and a connecting guide discharge pipe (22). The lower end position of the connecting air pump (18) is communicated with the heating mesh sheet (21). The lower end position of the heating mesh sheet (21) is communicated with the connecting guide discharge pipe (22).
3. The continuous preparation and production device for flexible carbon-carbon composite materials according to claim 2, characterized in that: The heating combination structure (2) further includes a first driving rotating rod (23) and a second driving rotating rod (24). The first driving rotating rod (23) and the second driving rotating rod (24) are rotatably connected at the central position of the positioning connecting seat (20).
4. The continuous preparation and production device for flexible carbon-carbon composite materials according to claim 3, characterized in that: The ventilation connecting pipe (17), the connecting air pump (18), the heating mesh sheet (21), and the connecting exhaust pipe (22) are integrally connected in a connected manner, and the heating mesh sheet (21) is electrically connected to the outside.
5. The continuous preparation and production device for flexible carbon-carbon composite materials according to claim 4, characterized in that: The side end of the adjustment cooperation rod (9) is rotatably connected to the transmission connecting rod (6), and the transmission connecting rod (6) and the adjustment cooperation rod (9) are slidably connected through the cooperation displacement plate frame (16).
6. The continuous preparation and production device for flexible carbon-carbon composite materials according to claim 5, characterized in that: A second baffle frame (26) is fixedly connected to the side end of the heating combination structure (2), and a first baffle frame (25) is fixedly connected to the lower end of the second baffle frame (26).
7. The preparation method of the continuous preparation and production device for flexible carbon-carbon composite materials according to claim 6, characterized in that: S1. The user combines and connects the adjustment tension connection structure (1) and the heating combination structure (2), transports the material through the transmission connecting rod (6), drives the rotation of the active adjustment gear disk (14), drives the driven adjustment gear plate (13) to displace, so that the driven adjustment gear plate (13) drives the cooperation guide rod frame (15) and the cooperation displacement plate frame (16) to be slidably connected on the limit combination plate (8), thereby changing the position of the adjustment cooperation rod (9); S2. The adjustment cooperation rod (9) is rotatably connected to the transmission connecting rod (6), and the position of the transmission connecting rod (6) can be changed to realize the stretching process of the material and help with the tension adjustment work; S3. Then the material is conducted to the positions of the first driving rotating rod (23) and the second driving rotating rod (24), the connecting air pump (18) is started, so that the outside air is introduced through the ventilation connecting pipe (17), reaches the heating mesh sheet (21) for heating treatment, and is exhausted through the connecting exhaust pipe (22) to help with the heat treatment work.
Citation Information
Patent Citations
Continuous preparation method of flexible carbon-carbon composite material and production device thereof
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