A silicon carbide coated equipment insulation system mobile cutting device

CN224630929UActive Publication Date: 2026-08-14SHANXI ZHONGDIAN NEW ENERGY TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0004]本实用新型为了解决现有石墨软毡切割工装切割精度低、切割效率低的技术问题,提出了一种碳化硅涂层装备保温系统移动切割装置,目的是通过对石墨软毡切割装置的硬件结构进行改进从而提高切割精度

Benefits of technology

1、本实用新型通过在软毡切割框的边框上设置第一坐标测量部件,在第一移动架上设置第一坐标测量部件,可辅助确定第一移动架和第二移动架的移动位置,进而精准确定连接于第一移动架上的切割件与待切割软毡的相对位置,提高切割软毡的精度。

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Abstract

This utility model relates to a mobile cutting device for a silicon carbide coating equipment insulation system, belonging to the field of carbon-based material production equipment. It solves the problems of low cutting accuracy and low cutting efficiency of existing graphite soft felt cutting fixtures. The technical solution adopted to solve this problem includes a soft felt cutting frame, on which a first coordinate measuring component and multiple first track sections are provided. A first movable frame is also slidably connected to the soft felt cutting frame. Multiple first guide heads are integrally formed on the first movable frame. First guide grooves are provided on the first track sections. A second movable frame is slidably connected to the first movable frame. Multiple second guide heads are integrally formed on the second movable frame. A second coordinate measuring component is fixedly connected to the first movable frame along its length direction. The second coordinate measuring component corresponds to a second through hole passing through the first movable frame. A cutting component is detachably connected to the second movable frame via a third fixing component. This utility model is applied to cutting insulation felt.
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Description

Technical Field

[0001] This utility model provides a mobile cutting device for a silicon carbide coating equipment insulation system, belonging to the technical field of carbon-based material production equipment. Background Technology

[0002] In the field of silicon carbide coated equipment, the insulation system is a core component, and its stable operation is crucial to the overall performance of the equipment. The internal operating temperature of the insulation system often reaches over 1300℃. To ensure equipment stability, graphite soft felt with excellent insulation properties must be selected as the insulation material during the design phase. However, graphite soft felt has limitations in processing characteristics and cannot be directly machined, necessitating on-site cutting operations during the installation of the insulation system.

[0003] In existing technologies, cutting fixtures are designed with different specifications based on the dimensions of graphite felt and are made of thin steel plates. During actual cutting operations, the thin steel plates are too light to effectively compress the graphite felt; furthermore, the thin steel plates are prone to deformation during manual cutting, leading to inaccurate cutting dimensions of the graphite felt and affecting the subsequent installation of the insulation system and the overall performance of the equipment. Therefore, a more reliable cutting fixture and method are urgently needed to solve these problems. Utility Model Content

[0004] To address the technical problems of low cutting accuracy and low cutting efficiency in existing graphite soft felt cutting fixtures, this utility model proposes a mobile cutting device with a silicon carbide coating equipment insulation system. The aim is to improve the cutting accuracy by improving the hardware structure of the graphite soft felt cutting device.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a mobile cutting device for a silicon carbide coating equipment insulation system, including a soft felt cutting frame, a first coordinate measuring component and a plurality of first track parts are provided on the soft felt cutting frame, the first coordinate measuring component corresponds to the first track parts, and the first coordinate measuring component is arranged along the length direction of the first track parts. The soft felt cutting frame is also slidably connected to a first movable frame. Multiple first guide heads are integrally formed on the first movable frame. The first guide heads correspond one-to-one with the first track and cooperate with each other. The first track is provided with a first inlet groove. The first inlet groove, the first track and the first guide head cooperate with each other. A second movable frame is slidably connected to the first movable frame. Multiple second guide heads are integrally formed on the second movable frame. The second guide heads cooperate with the second track part set on the first movable frame. The second track part, the second guide heads and the second guide heads cooperate with the second guide groove set on the first movable frame. A second coordinate measuring component is fixedly connected to the first movable frame along its length, and the second coordinate measuring component corresponds to the second through hole that passes through the first movable frame. The second movable frame is also detachably connected to a cutting component via a third fastener.

[0006] Furthermore, two first track sections are fixedly connected to the soft felt cutting frame. The two first track sections are a first longitudinal moving guide rail and a second longitudinal moving guide rail. The first longitudinal moving guide rail is fixedly connected to the first side frame of the soft felt cutting frame, and the second longitudinal moving guide rail is fixedly connected to the second side frame of the soft felt cutting frame. The second side frame is arranged opposite to the first side frame and is parallel to each other.

[0007] Furthermore, the first movable frame has two integrally formed first guide heads, which are arranged opposite to each other and are respectively adapted to the first longitudinal moving guide rail and the second longitudinal moving guide rail.

[0008] Furthermore, a first groove is provided on the first guide head, and a first guide member is fixedly connected to the inner wall of the first groove. The first guide member cooperates with the first track part.

[0009] Furthermore, the second movable frame has two integrally formed second guide heads, which are arranged opposite to each other and fit into the second track section.

[0010] Furthermore, the second track section includes a first transverse moving guide rail and a second transverse moving guide rail, which are arranged along the length direction of the first moving frame and are parallel to each other.

[0011] Furthermore, a first fixing member is provided on the first guide head, and the first fixing member cooperates with the soft felt cutting frame.

[0012] Furthermore, a second fixing member is provided on the second guide head, and the second fixing member cooperates with the first movable frame.

[0013] Furthermore, the third fastener is sequentially disposed through the guide hole on the first movable frame and the first through hole on the second movable frame; the guide hole is disposed along the length direction of the first movable frame.

[0014] Furthermore, the first guide, the second guide, and the third guide are all movable wheels.

[0015] The advantages of this utility model over the prior art are as follows: 1. This utility model provides a first coordinate measuring component on the frame of the soft felt cutting frame and a first coordinate measuring component on the first moving frame. This helps to determine the moving positions of the first moving frame and the second moving frame, thereby accurately determining the relative position of the cutting piece connected to the first moving frame and the soft felt to be cut, and improving the accuracy of cutting the soft felt.

[0016] 2. This utility model uses the first guide head, the first fixing member and the soft felt cutting frame to cooperate with each other to fix the first moving frame on the soft felt cutting frame, and uses the second guide head and the second fixing member to cooperate with the first moving frame to fix the second moving frame on the first moving frame, so as to avoid the cutting part from shifting during the cutting process.

[0017] 3. The cutting component of this utility model is detachably connected to the first movable frame via the third fixing component, which facilitates the maintenance and replacement of the cutting component. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings: Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 ; Figure 2 This is a schematic diagram of the structure of the present invention. Figure 2 ; Figure 3 for Figure 2 An enlarged schematic diagram of part A in the middle; Figure 4 for Figure 2 Enlarged schematic diagram of part B in the middle; Figure 5 This is the front view of the present invention; Figure 6 For along Figure 5 A cross-sectional view of the CC line; Figure 7 for Figure 5 An enlarged schematic diagram of section D in the middle; Figure 8 for Figure 5 An enlarged schematic diagram of section E in the middle; Figure 9 This is a bottom view of the present invention; Figure 10 This is a side view of the present invention; In the figure: 1 is the soft felt cutting frame, 2 is the first coordinate measuring component, 3 is the first indicator needle, 4 is the second indicator needle, 5 is the first moving frame, 6 is the first guide head, 7 is the first guide groove, 8 is the second moving frame, 9 is the second guide head, 10 is the first transverse moving guide rail, 11 is the second transverse moving guide rail, 12 is the second guide groove, 13 is the second coordinate measuring component, 14 is the first frame, 15 is the second frame, 16 is the first groove, 17 is the first fixing component, 18 is the first guide groove, 19 is the second guide groove, 20 is the third guide groove, 21 is the fourth guide groove, 22 is the second fixing component, 23 is the third fixing component, 24 is the cutting component, 25 is the cutting tooth, 26 is the first guide component, 27 is the second guide component, 28 is the third guide component, 29 is the guide hole, and 30 is the second through hole. Detailed Implementation

[0019] In this utility model, unless otherwise stated, directional terms such as "upper," "lower," "top," and "bottom" are generally used in relation to the direction shown in the accompanying drawings, or in relation to the vertical, perpendicular, or gravitational direction of the component itself; similarly, for ease of understanding and description, "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not used to limit this utility model.

[0020] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0021] like Figures 1 to 10 As shown, this utility model provides a mobile cutting device for a silicon carbide coated equipment insulation system, including a soft felt cutting frame 1. The soft felt cutting frame 1 is a square, hollowed-out metal frame. Multiple first track sections and at least one first coordinate measuring component 2 are fixedly connected to the soft felt cutting frame 1. The first coordinate measuring component 2 corresponds to the first track section and is arranged along the length direction of the first track section. In this embodiment, two first track sections and one first coordinate measuring component 2 are provided, with one first track section corresponding to the first coordinate measuring component 2. The two first track sections are a first longitudinal moving guide rail and a second longitudinal moving guide rail. The first longitudinal moving guide rail is fixedly connected to the first frame 14 of the soft felt cutting frame 1, and the second longitudinal moving guide rail is fixedly connected to the second frame 15 of the soft felt cutting frame 1. The second frame 15 is arranged opposite to and parallel to the first frame 14. Further, the first coordinate measuring component 2 is arranged adjacent to the first track section and is fixedly connected to the first frame 14. The first coordinate measuring component 2 is a scale. The first coordinate measuring component 2 can also be etched onto the first frame 14.

[0022] A first movable frame 5 is slidably connected to the soft felt cutting frame 1. A second coordinate measuring component 13 is fixedly connected to the first movable frame 5 along its length. The second coordinate measuring component 13 can also be etched onto the first movable frame 5. A second movable frame 8 is slidably connected to the first movable frame 5. A first indicator needle 3 and multiple first guide heads 6 are integrally formed on the first movable frame 5. The first indicator needle 3 corresponds to the first coordinate measuring component 2 to observe the relative positional relationship between the first movable frame 5 and the soft felt cutting frame 1. The first guide heads 6 correspond one-to-one with the first track section and cooperate with each other. In this embodiment, two first guide heads 6 are integrally formed on the first movable frame 5. The two first guide heads 6 are respectively disposed at the two ends of the first movable frame 5, that is, the two first guide heads 6 are disposed opposite each other. The two first guide heads 6 are respectively adapted to the first longitudinal moving guide rail and the second longitudinal moving guide rail. The first guide head 6, the first track section and the first guide groove 7 opened at the end of the first track section cooperate with each other, so that the first guide head 6 can slide along the first track section. Specifically, each first guide head 6 has a first groove 16, and a first guide member 26 is fixedly connected to the inner wall of the first groove 16. Two first guide members 26 respectively engage with the first longitudinal moving guide rail and the second longitudinal moving guide rail. The two first guide members 26, the first longitudinal moving guide rail, and the second longitudinal moving guide rail cooperate with each other to allow the first moving frame 5 to slide along the first track section. A first guide groove 7 is formed at the end of the first longitudinal moving guide rail and the end of the second longitudinal moving guide rail along their respective length directions. The two first guide grooves 7 are arranged opposite to each other. The two first guide grooves 7 communicate with the first longitudinal moving guide rail and the second longitudinal moving guide rail respectively.

[0023] A first fixing member 17 is fixedly connected to the first guide head 6. The first guide head 6, the first fixing member 17, the first frame 14, and the second frame 15 cooperate with each other to fix the position of the first movable frame 5 on the soft felt cutting frame 1.

[0024] In this embodiment, the first longitudinal moving guide rail consists of a first guide groove 18 and a second guide groove 19 respectively opened on two adjacent end faces of the first frame 14. The first guide groove 18 and the second guide groove 19 are both opened along the length direction of the first frame 14 and are parallel to each other. The first guide groove 18 cooperates with one of the first guide members 26, and the first guide member 26 can slide along the first guide groove 18. The second guide groove 19 cooperates with a third guide member 28 fixedly connected to the first guide head 6 corresponding to the first guide member 26, and the third guide member 28 can slide along the second guide groove 19. The second longitudinal moving guide rail consists of a third guide groove 20 and a fourth guide groove 21 respectively opened on two adjacent end faces of the second frame 15. The third guide groove 20 and the fourth guide groove 21 are both opened along the length direction of the second frame 15 and are parallel to each other. The third guide groove 20 cooperates with another first guide member 26, which can slide along the third guide groove 20. The fourth guide groove 21 cooperates with the third guide member 28 fixedly connected to the first guide head 6 corresponding to the first guide member 26, which can slide along the fourth guide groove 21.

[0025] The second movable frame 8 has a second indicator needle 4 and multiple second guide heads 9 integrally formed on it. The second indicator needle 4 corresponds to the second coordinate measuring component 13 to observe the relative positional relationship between the second movable frame 8 and the first movable frame 5. In this embodiment, the second movable frame 8 has two second guide heads 9 integrally formed on it. The two second guide heads 9 are respectively fixedly connected to the two ends of the second movable frame 8, that is, the two second guide heads 9 are arranged opposite each other. The second guide heads 9 cooperate with the second track portion fixedly connected to the first movable frame 5. The second track portion is arranged adjacent to the second coordinate measuring component 13 fixedly connected to the first movable frame 5. The second track portion and the second coordinate measuring component 13 are parallel to each other. The end of the second track portion has a second guide groove 12. The second guide groove 12, the second track portion and the second guide head 9 cooperate with each other. The second track portion includes a first transverse moving guide rail 10 and a second transverse moving guide rail 11. The first transverse moving guide rail 10 and the second transverse moving guide rail 11 are arranged along the length direction of the first movable frame 5 and are parallel to each other. Specifically, a second guide groove 12 is formed at the end of the first transverse moving guide rail 10 and the second transverse moving guide rail 11 along their length direction. The two second guide grooves 12 are arranged opposite to each other, and the two second guide heads 9 are respectively adapted to the first transverse moving guide rail 10 and the second transverse moving guide rail 11. The two second guide grooves 12 are respectively connected to the first transverse moving guide rail 10 and the second transverse moving guide rail 11.

[0026] A second fixing member 22 is fixedly connected to the second guide head 9. The second guide head 9, the second fixing member 22, and the first movable frame 5 cooperate to fix the position of the second movable frame 8 on the first movable frame 5. In this embodiment, a second guide member 27 is fixedly connected to each second guide head 9. The two second guide members 27 are respectively engaged with the first transverse moving guide rail 10 and the second transverse moving guide rail 11. The two second guide members 27, the first transverse moving guide rail 10, and the second transverse moving guide rail 11 cooperate to allow the second movable frame 8 to slide along the first movable frame 5.

[0027] The first guide 26, the second guide 27, and the third guide 28 are all movable wheels.

[0028] Both the first fastener 17 and the second fastener 22 are set screws.

[0029] A cutting component 24 is detachably connected to the second movable frame 8 via a third fixing member 23. The third fixing member 23 passes through a guide hole 29 on the first movable frame 5 and a first through hole on the second movable frame 8; the guide hole 29 is positioned along the length of the first movable frame 5, meaning its extension direction is consistent with the movement direction of the second movable frame 8. In this embodiment, the third fixing member 23 is a square-headed screw. One end of the third fixing member 23 passes through the guide hole 29 on the first movable frame 5 and is threadedly connected to the first through hole on the second movable frame 8. The other end of the third fixing member 23 is threadedly connected to the cutting component 24, which cooperates with the soft felt to be cut. The cutting component 24 is a hollow columnar structure, facilitating the storage of the cut soft felt. Multiple cutting teeth 25 are integrally formed on the edge of the cutting component 24 for cutting the soft felt.

[0030] The second moving frame 8 is also provided with a second through hole 30, which corresponds to the second coordinate measuring component 13. The first moving frame 5, the second moving frame 8, the first coordinate measuring component 2, and the second coordinate measuring component 13 work together to move the cutting part 24 precisely to the required position, meeting the cutting accuracy requirements in engineering.

[0031] The working principle of this utility model is as follows: In use, the movable cutting device of this invention is placed on the soft felt to prevent deformation of the soft felt during cutting. The cutting piece 24 is threaded onto the first movable frame 5. The first guide head 6 of the first movable frame 5 is slid into the first track section along the first guide groove 7, allowing the first movable frame 5 to slide longitudinally along the first track section. The first movable frame 5 cooperates with the first coordinate measuring component 2 to move the first movable frame 5 to the designated position. The first fixing component 17 cooperates with the soft felt cutting frame 1 to fix the first movable frame 5 onto the soft felt cutting frame 1. The second guide head 9 of the second movable frame 8 is slid into the second track section along the second guide groove 12, allowing the second movable frame 8 to slide laterally along the second track section. The first movable frame 5 cooperates with the first coordinate measuring component 2 to move the second movable frame 8 to the designated position. The second fixing component 22 cooperates with the first movable frame 5 to fix the second movable frame 8 onto the first movable frame 5, allowing for precise positioning of the cutting position. When it is necessary to replace the cutting piece 24, simply remove the cutting piece 24 from the third fixing component 23 and replace it with a cutting piece 24 of the required specifications.

[0032] Regarding the specific structure of this utility model, it should be noted that the connection relationships between the various component modules adopted in this utility model are definite and achievable. Except as specifically described in the embodiments, their specific connection relationships can bring about corresponding technical effects and solve the technical problems proposed by this utility model without relying on the execution of corresponding software programs. The models of the components, modules, and specific components appearing in this utility model, the connection methods between them, and the conventional usage methods and expected technical effects brought about by the above-mentioned technical features, unless specifically described, are all publicly disclosed content in patents, journal articles, technical manuals, technical dictionaries, and textbooks that can be obtained by those skilled in the art before the application date, or belong to conventional technology, common knowledge, and other existing technologies in this field. There is no need to elaborate, which makes the technical solution provided in this case clear, complete, and achievable, and can reproduce or obtain corresponding physical products based on this technical means.

[0033] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.

Claims

1. A silicon carbide coated equipment heat preservation system mobile cutting device, characterized in that, The utility model provides a soft felt cutting frame, which comprises a soft felt cutting frame (1), a first coordinate measuring component (2) and a plurality of first track parts are arranged on the soft felt cutting frame (1), the first coordinate measuring component (2) corresponds to the first track part, and the first coordinate measuring component (2) is arranged along the length direction of the first track part; The first moving frame (5) is slidably connected to the soft felt cutting frame (1), a plurality of first guide heads (6) are integrally formed on the first moving frame (5), the first guide heads (6) correspond to the first track parts one by one and are matched with each other, a first guide groove (7) is arranged on the first track part, and the first guide groove (7), the first track part and the first guide head (6) are matched with each other. The second moving frame (8) is slidably connected to the first moving frame (5), a plurality of second guide heads (9) are integrally formed on the second moving frame (8), the second guide heads (9) are matched with second track parts arranged on the first moving frame (5), the second track parts, the second guide heads (9) and second guide grooves (12) arranged on the first moving frame (5) are matched with each other. The second coordinate measuring component (13) is fixedly connected to the first moving frame (5) along the length direction of the first moving frame (5), and the second coordinate measuring component (13) corresponds to a second through hole (30) penetrating through the first moving frame (5). The cutting member (24) is detachably connected to the second moving frame (8) through a third fixing member (23).

2. The silicon carbide coated, heat-insulated system, mobile cutting device according to claim 1, characterized in that The soft felt cutting frame (1) is fixedly connected with two first track parts, the two first track parts are a first longitudinal moving guide rail and a second longitudinal moving guide rail respectively, the first longitudinal moving guide rail is fixedly connected to a first frame (14) of the soft felt cutting frame (1), the second longitudinal moving guide rail is fixedly connected to a second frame (15) of the soft felt cutting frame (1), and the second frame (15) is oppositely arranged with the first frame (14) and parallel to the first frame (14).

3. The silicon carbide coated, heat-insulated system, mobile cutting device according to claim 2, characterized in that The first moving frame (5) is integrally formed with two first guide heads (6), the two first guide heads (6) are oppositely arranged, and the two first guide heads (6) are matched with the first longitudinal moving guide rail and the second longitudinal moving guide rail respectively.

4. The silicon carbide coated, heat-insulated system, mobile cutting device according to claim 1, characterized in that A first recess (16) is formed in the first guide head (6), a first guide member (26) is fixedly connected to the inner side wall of the first recess (16), and the first guide member (26) is matched with the first track part.

5. The silicon carbide coated refractory lined mobile cutting apparatus of claim 1, wherein, The second moving frame (8) is integrally formed with two second guide heads (9), the two second guide heads (9) are oppositely arranged, and the second guide head (9) is matched with the second track part.

6. The silicon carbide coated refractory lined mobile cutting apparatus of claim 1, wherein, The second track part comprises a first transverse moving guide rail (10) and a second transverse moving guide rail (11), the first transverse moving guide rail (10) and the second transverse moving guide rail (11) are arranged along the length direction of the first moving frame (5) and are parallel to each other.

7. The silicon carbide coated refractory lined mobile cutting apparatus of claim 1, wherein, The first guide head (6) is provided with a first fixing member (17), and the first fixing member (17) is matched with the soft felt cutting frame (1).

8. The silicon carbide coated refractory lined mobile cutting apparatus of claim 1, wherein, The second guide head (9) is provided with a second fixing member (22), and the second fixing member (22) is matched with the first moving frame (5).

9. The silicon carbide coated refractory lined mobile cutting apparatus of claim 1, wherein, The third fixing member (23) is sequentially arranged in the guide hole (29) on the first moving frame (5) and the first through hole on the second moving frame (8); the guide hole (29) is arranged along the length direction of the first moving frame (5).

10. The silicon carbide coated inductive heating system mobile cutting device of claim 4, wherein, The first guide member (26), the second guide member (27) and the third guide member (28) are all moving wheels.