A silicon graphene insulation board laying detection device
By designing a multifunctional testing device, the problem of inconvenience in testing large-sized or multiple silicon graphene insulation boards by existing testing devices has been solved, achieving flexible testing adaptability and accuracy.
Patent Information
- Application Number
- CN202521782377.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-21
- Publication Date
- 2026-06-12
- Estimated Expiration
- 2035-08-21
AI Technical Summary
Existing silicon graphene insulation board testing devices are difficult to use effectively when testing large-sized or multiple silicon graphene insulation boards, especially due to the limited length of the testing rod, which makes testing inconvenient.
A silicon graphene insulation board laying detection device was designed, including a base, an adjustment groove, an adjustment cylinder, a lifting cylinder, and multiple detection rods. By cooperating with the adjustment cylinder and the lifting cylinder, the detection rods can be raised, lowered, and their positions adjusted. Combined with adjustable secondary detection rods, it can adapt to silicon graphene insulation boards of different sizes and positions.
This improves the diversity and accuracy of testing graphene insulation boards, enabling it to adapt to testing needs of different sizes and locations, and ensuring the accuracy and stability of test results.
Smart Images

Figure CN224353829U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of external wall insulation technology, specifically to a silicon graphene insulation board laying detection device. Background Technology
[0002] To enhance the thermal insulation effect of exterior walls, graphene insulation boards are generally chosen. After the graphene insulation boards are laid, their flatness needs to be checked to prevent misalignment during installation. Existing testing devices typically use vertically or horizontally positioned testing rods that are attached to the graphene insulation boards for inspection. However, the length of the testing rods is limited, making it inconvenient to inspect large graphene insulation boards or multiple boards laid side-by-side. Utility Model Content
[0003] To address the aforementioned technical shortcomings, the purpose of this utility model is to provide a silicon graphene insulation board laying and testing device, which has the advantages of improving the diversity of testing of the laid silicon graphene insulation board.
[0004] To solve the above technical problems, the present invention adopts the following technical solution: The present invention provides a silicon graphene insulation board laying detection device, including a base, an adjustment groove on the base, an adjustment cylinder in the adjustment groove, an adjustment seat on the piston rod of the adjustment cylinder, the adjustment seat being slidably disposed in the adjustment groove, a lifting cylinder embedded in the top surface of the adjustment seat, a vertical rod movably disposed on the top surface of the adjustment seat, a vertical groove in the vertical rod, the piston rod of the lifting cylinder penetrating through the bottom surface of the vertical rod into the vertical groove, a crossbar rotatably disposed on the piston rod of the lifting cylinder, a main horizontal detection rod horizontally disposed on the crossbar, the main horizontal detection rod being located outside the vertical groove, the end of the crossbar away from the main horizontal detection rod being located inside the vertical groove, a secondary horizontal detection rod slidably disposed on the side wall of the main horizontal detection rod, a main vertical detection rod vertically disposed on the bottom surface of the end of the main horizontal detection rod away from the secondary horizontal detection rod, a secondary vertical detection rod slidably disposed on the bottom surface of the main vertical detection rod, and a level instrument horizontally disposed on the crossbar.
[0005] Preferably, the piston rod of the lifting cylinder is provided with an external thread section, and the end of the crossbar away from the main horizontal detection rod is rotatably sleeved outside the external thread section of the piston rod of the lifting cylinder. The two opposite outer walls of the end of the crossbar away from the main horizontal detection rod respectively contact the two opposite inner walls of the vertical groove. On the one hand, it is convenient to adjust the height of the crossbar through the lifting cylinder; on the other hand, it is convenient for the crossbar to rotate synchronously when the upright is rotated.
[0006] Preferably, the secondary horizontal detection rod includes a horizontal slide rod that slides through the end of the main horizontal detection rod away from the main vertical detection rod. An extension horizontal detection rod is provided at the end of the horizontal slide rod away from the main horizontal detection rod. The distance between the extension horizontal detection rod and the main horizontal detection rod can be adjusted according to the detection needs, thereby facilitating the detection of silicon graphene insulation boards of different lengths.
[0007] Preferably, the secondary vertical detection rod includes a vertical slide rod that slides through the bottom surface of the main vertical detection rod. An extension vertical detection rod is provided at the end of the vertical slide rod away from the main vertical detection rod. The distance between the extension vertical detection rod and the main vertical detection rod can be adjusted according to the detection needs, thereby facilitating the detection of silicon graphene insulation boards of different heights and sizes.
[0008] Preferably, the shape and size of the main horizontal detection rod cross-section are the same as those of the extended horizontal detection rod cross-section, and the bottom surface of the main horizontal detection rod and the bottom surface of the extended horizontal detection rod are on the same horizontal plane, so that when testing the graphene insulation board, both the main horizontal detection rod and the extended horizontal detection rod can fit better with the graphene insulation board.
[0009] Preferably, the shape and size of the main vertical detection rod cross-section are the same as those of the extended vertical detection rod cross-section, and the side wall of the main vertical detection rod near the end of the main horizontal detection rod and the side wall of the extended vertical detection rod near the end of the main horizontal detection rod are on the same vertical plane, which facilitates better fit between the main vertical detection rod and the extended vertical detection rod and the graphene insulation board when testing the graphene insulation board.
[0010] Preferably, a locking bolt is threaded onto the main horizontal detection rod, and the locking bolt extends through the top surface of the main horizontal detection rod and abuts against the top surface of the horizontal slide rod away from the end of the extended horizontal detection rod. This allows the locking bolt to be used to lock and fix the rod in place after the distance between the extended horizontal detection rod and the main horizontal detection rod is adjusted by sliding.
[0011] Preferably, a locking bolt two is threaded onto the top surface of the main vertical detection rod, and the locking bolt two movably penetrates the top surface of the main vertical detection rod and is rotatably connected to the end of the vertical slide rod away from the extended vertical detection rod, so that when the distance between the extended vertical detection rod and the main vertical detection rod is slidably adjusted, it can be locked and fixed by the locking bolt two.
[0012] Preferably, the top surface of the adjusting seat has two slots spaced apart, and the upright is rotatably disposed between the two slots. Each slot contains an inverted L-shaped rod, the vertical end of which is movably inserted into the slot, and the bottom surface of the horizontal end of which abuts against the top surface of the adjusting seat. The upright has a rectangular cross-section, and the distance between the two opposing side walls of the upright matches the distance between the vertical ends of the two inverted L-shaped rods. The distance between the other two opposing side walls of the upright matches the distance between the horizontal ends of the two inverted L-shaped rods. This allows the vertical ends of the two inverted L-shaped rods to be inserted into the two slots after the direction of the adjusting upright is rotated, thereby fixing the adjusting upright.
[0013] Preferably, the horizontal end of the inverted L-shaped insert is threaded with a locking bolt three, and the top surface of the adjusting seat is provided with two internal threaded holes that are compatible with the locking bolt three. The slot is located between the two internal threaded holes, so that when the vertical end of the inverted L-shaped insert is inserted into the slot, the locking bolt three can be threaded through the horizontal end of the inverted L-shaped insert and connected to the corresponding locking bolt three, thereby fixing the inverted L-shaped insert.
[0014] The beneficial effects of this utility model are as follows: 1. This utility model can achieve vertical lifting by adjusting the cylinder to drive the main vertical detection rod and the main horizontal detection rod, thereby enabling the detection of silicon graphene insulation boards laid at different heights, thus improving the diversity of detection positions.
[0015] 2. When the size of the graphene insulation board is large (or when multiple graphene insulation boards are laid out in sequence), the position of the secondary horizontal detection rod can be adjusted by pulling on the side wall of the main horizontal detection rod to adjust the distance between the main horizontal detection rod and the secondary horizontal detection rod. The secondary vertical detection rod can be adjusted by pulling on the bottom surface of the vertical detection rod to adjust the distance between the vertical detection rod and the secondary vertical detection rod, thereby improving the diversity of the graphene insulation board testing. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of a silicon graphene insulation board laying detection device provided in an embodiment of the present utility model.
[0018] Figure 2 This is a schematic diagram of the position of the adjusting cylinder of a silicon graphene insulation board laying detection device provided in an embodiment of the present utility model.
[0019] Figure 3 A schematic diagram of the upright structure of a silicon graphene insulation board laying detection device provided in an embodiment of this utility model.
[0020] Figure 4 for Figure 3 Enlarged schematic diagram of the structure at point A in the middle.
[0021] Figure 5 A schematic diagram of the adjustment groove structure of a silicon graphene insulation board laying detection device provided in an embodiment of this utility model.
[0022] Figure 6 For the sake of Figure 5 Enlarged schematic diagram of the structure at point B.
[0023] Figure 7 is a schematic diagram of the inverted L-shaped insert structure of a silicon graphene insulation board laying detection device provided in an embodiment of this utility model.
[0024] Explanation of reference numerals in the attached drawings: 1. Base; 11. Adjustment groove; 12. Adjustment cylinder; 13. Adjustment seat; 14. Upright rod; 2. Lifting cylinder; 21. Vertical groove; 3. Horizontal bar; 31. Level; 4. Main horizontal detection rod; 41. Secondary horizontal detection rod; 411. Horizontal slide rod; 412. Extended horizontal detection rod; 413. Locking bolt one; 5. Main vertical detection rod; 51. Secondary vertical detection rod; 511. Vertical slide rod; 512. Extended vertical detection rod; 513. Locking bolt two; 6. Slot; 61. Inverted L-shaped insert; 611. Locking bolt three; 612. Internal threaded hole. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0026] like Figures 1 to 3As shown, this utility model provides a silicon graphene insulation board laying detection device, including a base 1, an adjustment groove 11 on the base 1, an adjustment cylinder 12 inside the adjustment groove 11, an adjustment seat 13 on the piston rod of the adjustment cylinder 12, the adjustment seat 13 being slidably disposed within the adjustment groove 11, a lifting cylinder 2 embedded in the top surface of the adjustment seat 13, a vertical rod 14 movably disposed on the top surface of the adjustment seat 13, a vertical groove 21 inside the vertical rod 14, and the piston rod of the lifting cylinder 2 penetrating through the bottom surface of the vertical rod 14 into the vertical groove 21. A crossbar 3 is rotatably mounted on the piston rod of the lifting cylinder 2. A main horizontal detection rod 4 is horizontally mounted on the crossbar 3. The main horizontal detection rod 4 is located outside the vertical groove 21. The end of the crossbar 3 away from the main horizontal detection rod 4 is located inside the vertical groove 21. A secondary horizontal detection rod 41 is slidably mounted on the side wall of the main horizontal detection rod 4. A main vertical detection rod 5 is vertically mounted on the bottom surface of the end of the main horizontal detection rod 4 away from the secondary horizontal detection rod 41. A secondary vertical detection rod 51 is slidably mounted on the bottom surface of the main vertical detection rod 5. A level 31 is also horizontally mounted on the crossbar 3.
[0027] After the graphene insulation board is laid on the wall (either a single rectangular graphene insulation board or multiple rectangular graphene insulation boards laid side by side), the adjusting cylinder 12 is activated to move the adjusting seat 13 within the adjusting groove 11 to adjust its position, based on the position of the graphene insulation board. This adjusts the position of the upright 14, and simultaneously activates the lifting cylinder 2, allowing the horizontal bar 3 to adjust vertically on the upright 14. This adjusts the main horizontal detection rod 4 and the main vertical detection rod 5 to positions compatible with the graphene insulation board, ensuring that the main horizontal detection rod 4 is positioned on top of one of the graphene insulation boards. The main vertical detection rod 5 is positioned on the side wall of the graphene insulation board (this also allows for the detection of graphene insulation boards laid at different heights, increasing the diversity of detection positions): When the main horizontal detection rod 4 and the main vertical detection rod 5 can simultaneously contact the graphene insulation board (i.e., the main horizontal detection rod 4 and the main vertical detection rod 5 can simultaneously contact the two adjacent sides of the graphene insulation board), it indicates that the graphene insulation board is laid correctly; when the main horizontal detection rod 4 and the main vertical detection rod 5 do not contact the graphene insulation board, it indicates that the graphene insulation board is laid crookedly.
[0028] When the size of the graphene insulation board is large (or when multiple graphene insulation boards are laid in sequence), the position of the secondary horizontal detection rod 41 can be adjusted by pulling on the side wall of the main horizontal detection rod 4 (thereby adjusting the distance between the main horizontal detection rod 4 and the secondary horizontal detection rod 41). At the same time, the secondary vertical detection rod 51 can be pulled on the bottom surface of the vertical detection rod 5 (thereby adjusting the distance between the vertical detection rod 5 and the secondary vertical detection rod 51).
[0029] The level 31 can detect whether the horizontal bar 3 is horizontal, thereby detecting the position of the main horizontal detection bar 4, which in turn can ensure the position of the main horizontal detection bar 4 and the main vertical detection bar 5, and improve the accuracy of the detection results. Example
[0030] Based on Example 1, such as Figures 1 to 2 As shown, the piston rod of the lifting cylinder 2 is provided with an external thread section. The end of the crossbar 3 away from the main horizontal detection rod 4 is rotatably sleeved outside the external thread section of the piston rod of the lifting cylinder 2. The two opposite outer walls of the end of the crossbar 3 away from the main horizontal detection rod 4 respectively contact the two opposite inner walls of the vertical groove 21. On the one hand, it is convenient to adjust the position of the crossbar 3 in the height direction by driving the lifting cylinder 2 according to the position of the graphene insulation board attached to the wall, so as to facilitate the detection of the graphene insulation board at different positions by the main horizontal detection rod 4 and the main vertical detection rod 5. On the other hand, it is convenient to rotate the crossbar 3 synchronously with the vertical rod 14 when the position of the vertical rod 14 is adjusted as needed (that is, the end of the crossbar 3 away from the main horizontal detection rod 4 can rotate on the piston rod of the lifting cylinder 2) without interference. Example
[0031] Based on Example 1, such as Figures 1 to 3 As shown, the secondary horizontal detection rod 41 includes a horizontal slide rod 411 that slides through the end of the main horizontal detection rod 4 away from the main vertical detection rod 5. An extension horizontal detection rod 412 is provided at the end of the horizontal slide rod 411 away from the main horizontal detection rod 4. The shape and size of the cross-section of the main horizontal detection rod 4 are the same as those of the extension horizontal detection rod 412, and the bottom surface of the main horizontal detection rod 4 and the bottom surface of the extension horizontal detection rod 412 are on the same horizontal plane. A locking bolt 413 is threaded onto the main horizontal detection rod 4, and the locking bolt 413 moves through the top surface of the main horizontal detection rod 4 and abuts against the top surface of the end of the horizontal slide rod 411 away from the extension horizontal detection rod 412.
[0032] When the graphene insulation board is large in the horizontal direction (or when multiple graphene insulation boards are laid out horizontally in sequence), the length of the horizontal slide bar 411 can be adjusted by pulling it inside the main horizontal detection rod 4. This allows for adjustment of the distance between the main horizontal detection rod 4 and the secondary horizontal detection rod 41, facilitating better contact between the main horizontal detection rod 4 and the extended horizontal detection rod 412 and the graphene insulation board during testing. After adjusting the length of the horizontal slide bar 411, tightening the locking bolt 413 allows it to penetrate the top surface of the main horizontal detection rod 4 and abut against the horizontal slide bar 411, thus helping to maintain the stability between the main horizontal detection rod 4 and the secondary horizontal detection rod 41. Example
[0033] Based on Example 1, such as Figures 1 to 3 As shown, the auxiliary vertical detection rod 51 includes a vertical slide rod 511 that slides through the bottom surface of the main vertical detection rod 5. An extension vertical detection rod 512 is provided at the end of the vertical slide rod 511 away from the main vertical detection rod 5. The shape and size of the cross-section of the main vertical detection rod 5 are the same as those of the extension vertical detection rod 512. The side wall of the main vertical detection rod 5 near the end of the main horizontal detection rod 4 and the side wall of the extension vertical detection rod 512 near the end of the main horizontal detection rod 4 are on the same vertical plane. A locking bolt 513 is threaded on the top surface of the main vertical detection rod 5. The locking bolt 513 rotatably passes through the top surface of the main vertical detection rod 5 and is rotatably connected to the end of the vertical slide rod 511 away from the extension vertical detection rod 512. This allows the extension vertical detection rod 512 to be locked and fixed by the locking bolt 513 after the distance between the extension vertical detection rod 512 and the main vertical detection rod 5 is adjusted by sliding.
[0034] When the graphene insulation board is large in the vertical direction (or when multiple graphene insulation boards are laid out vertically in sequence), the locking bolt 513 can be rotated inside the main vertical detection rod 5, thereby enabling the extension vertical detection rod 512 to move vertically. This allows adjustment of the distance between the extension vertical detection rod 512 and the main vertical detection rod 5, facilitating better fit between the extension vertical detection rod 512 and the main vertical detection rod 5 when testing the graphene insulation board. Example
[0035] Based on Example 1, such as Figure 1 , Figures 4 to 7 As shown, two slots 6 are spaced apart on the top surface of the adjusting seat 13. The upright rod 14 is rotatably disposed between the two slots 6. An inverted L-shaped rod 61 is movably inserted into each slot 6. The vertical end of the inverted L-shaped rod 61 is movably inserted into the slot 6, and the bottom surface of the horizontal end of the inverted L-shaped rod 61 abuts against the top surface of the adjusting seat 13. The cross-section of the upright rod 14 is rectangular, and the distance between the two opposing side walls of the upright rod 14 is adapted to the distance between the vertical ends of the two inverted L-shaped rods 61. The distance between the other two opposing side walls of the upright rod 14 is adapted to the distance between the horizontal ends of the two inverted L-shaped rods 61. A locking bolt 611 is threadedly connected to the horizontal end of the inverted L-shaped rod 61. Two internal threaded holes 612 adapted to the locking bolts 611 are provided on the top surface of the adjusting seat 13, and the slot 6 is located between the two internal threaded holes 612.
[0036] After placing the main horizontal detection rod 4 and main vertical detection rod 5 in the appropriate positions before testing, the positions may need to be adjusted depending on the location of the graphene insulation board. First, remove the locking bolt 611 and take out the inverted L-shaped insert 61 from the slot 6. Then, rotate the upright rod 14 90 degrees outside the piston rod of the lifting cylinder 2 (since the cross-section of the upright rod 14 is rectangular, both sides of the length or width of the upright rod 14 can be rotated to positions close to the slot 6). Next, insert the vertical end of the inverted L-shaped insert 61 into the slot 6 (so that the side wall of the vertical end or the horizontal end of the inverted L-shaped insert 61 abuts against the side wall of the upright rod 14). Finally, pass the locking bolt 611 through the horizontal end of the inverted L-shaped insert 61 and screw it into the corresponding locking bolt 611. The inverted L-shaped plug 61 can be fixed by connecting the threads (i.e., when the two sides of the cross-section of the upright 14 are close to the slot 6, the upright 14 is relatively close to the slot 6. When the vertical end of the inverted L-shaped plug 61 is inserted into the slot 6, the horizontal end of the inverted L-shaped plug 61 is located away from the upright 14, and the side wall of the vertical end of the inverted L-shaped plug 61 can abut against the two sides of the cross-section of the upright 14 in the length direction; when the two sides of the cross-section of the upright 14 are close to the slot 6, the upright 14 is relatively far from the slot 6. When the vertical end of the inverted L-shaped plug 61 is inserted into the slot 6, the horizontal end of the inverted L-shaped plug 61 is located close to the upright 14, and the side wall of the horizontal end of the inverted L-shaped plug 61 can abut against the two sides of the cross-section of the upright 14 in the width direction).
[0037] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A device for detecting the laying of silicon graphene insulation boards, characterized in that, Includes a base (1), on which an adjustment groove (11) is provided, and an adjustment cylinder (12) is provided in the adjustment groove (11). An adjustment seat (13) is provided on the piston rod of the adjustment cylinder (12). The adjustment seat (13) is slidably disposed in the adjustment groove (11). A lifting cylinder (2) is embedded in the top surface of the adjustment seat (13). A vertical rod (14) is movably disposed on the top surface of the adjustment seat (13). A vertical groove (21) is provided in the vertical rod (14). The piston rod of the lifting cylinder (2) passes through the bottom surface of the vertical rod (14) to the vertical groove (21). The piston rod of the lifting cylinder (2) rotates upward. A horizontal bar (3) is provided, and a main horizontal detection rod (4) is horizontally provided on the horizontal bar (3). The main horizontal detection rod (4) is located outside the vertical groove (21). The end of the horizontal bar (3) away from the main horizontal detection rod (4) is located inside the vertical groove (21). A secondary horizontal detection rod (41) is slidably provided on the side wall of the main horizontal detection rod (4). A main vertical detection rod (5) is vertically provided on the bottom surface of the end of the main horizontal detection rod (4) away from the secondary horizontal detection rod (41). A secondary vertical detection rod (51) is slidably provided on the bottom surface of the main vertical detection rod (5). A level (31) is also horizontally provided on the horizontal bar (3).
2. The silicon graphene insulation board laying detection device as described in claim 1, characterized in that, The piston rod of the lifting cylinder (2) is provided with an external thread section. The end of the cross rod (3) away from the main horizontal detection rod (4) is rotated and sleeved outside the external thread section of the piston rod of the lifting cylinder (2). The two opposite outer walls of the end of the cross rod (3) away from the main horizontal detection rod (4) respectively contact the two opposite inner walls of the vertical groove (21).
3. The silicon graphene insulation board laying detection device as described in claim 1, characterized in that, The secondary horizontal detection rod (41) includes a horizontal slide rod (411) that slides through the end of the main horizontal detection rod (4) away from the main vertical detection rod (5), and an extension horizontal detection rod (412) is provided at the end of the horizontal slide rod (411) away from the main horizontal detection rod (4).
4. The silicon graphene insulation board laying detection device as described in claim 1, characterized in that, The secondary vertical detection rod (51) includes a vertical slide rod (511) that slides through the bottom surface of the main vertical detection rod (5), and an extension vertical detection rod (512) is provided at the end of the vertical slide rod (511) away from the main vertical detection rod (5).
5. The silicon graphene insulation board laying detection device as described in claim 3, characterized in that, The shape and size of the cross section of the main horizontal detection rod (4) are the same as those of the cross section of the extended horizontal detection rod (412), and the bottom surface of the main horizontal detection rod (4) and the bottom surface of the extended horizontal detection rod (412) are on the same horizontal plane.
6. The silicon graphene insulation board laying detection device as described in claim 4, characterized in that, The shape and size of the cross section of the main vertical detection rod (5) are the same as those of the cross section of the extended vertical detection rod (512), and the side wall of the main vertical detection rod (5) near the end of the main horizontal detection rod (4) and the side wall of the extended vertical detection rod (512) near the end of the main horizontal detection rod (4) are on the same vertical plane.
7. The silicon graphene insulation board laying detection device as described in claim 5, characterized in that, The main horizontal detection rod (4) is threaded with a locking bolt (413), and the locking bolt (413) moves through the top surface of the main horizontal detection rod (4) and abuts against the top surface of the horizontal slide rod (411) away from the end of the extended horizontal detection rod (412).
8. The silicon graphene insulation board laying detection device as described in claim 6, characterized in that, The top surface of the main vertical detection rod (5) is threaded with a locking bolt two (513), and the locking bolt two (513) moves through the top surface of the main vertical detection rod (5) and is rotatably connected to the end of the vertical slide rod (511) away from the extended vertical detection rod (512).
9. The silicon graphene insulation board laying detection device as described in claim 1, characterized in that, Two slots (6) are spaced apart on the top surface of the adjusting seat (13). The upright (14) is rotatably set between the two slots (6). An inverted L-shaped plug (61) is movably inserted into each slot (6). The vertical end of the inverted L-shaped plug (61) is movably inserted into the slot (6). The bottom surface of the horizontal end of the inverted L-shaped plug (61) abuts against the top surface of the adjusting seat (13). The cross-section of the upright (14) is rectangular. The distance between the two opposing side walls of the upright (14) is matched with the distance between the vertical ends of the two inverted L-shaped plugs (61). The distance between the other two opposing side walls of the upright (14) is matched with the distance between the horizontal ends of the two inverted L-shaped plugs (61).
10. The silicon graphene insulation board laying detection device as described in claim 9, characterized in that, The horizontal end of the inverted L-shaped insert (61) is threaded with a locking bolt three (611). The top surface of the adjusting seat (13) is provided with two internal threaded holes (612) that are compatible with the locking bolt three (611), and the slot (6) is located between the two internal threaded holes (612).