Composite polystyrene foam insulation board preparation and processing system
Through the combined design of the centering mechanism and the buffer mechanism, the problem of position offset of the composite polystyrene foam insulation board during the cutting process is solved, the cutting accuracy and quality are improved, and the cutting requirements of different heights are adapted.
Patent Information
- Application Number
- CN202511063109.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-31
- Publication Date
- 2025-10-10
AI Technical Summary
In the existing composite polystyrene foam insulation board preparation and processing system, the conveyed insulation board cannot be effectively centered, resulting in positional offset during the cutting process, affecting cutting accuracy and product quality.
The combination design of centering mechanism and buffer mechanism is adopted. The centering adjustment of the insulation board is achieved through the cooperation of folding rod, clamping plate and inclined plate. The impact force is absorbed by buffer spring and guide column to ensure cutting accuracy and quality.
It effectively prevents the insulation board from shifting during the cutting process, improves cutting accuracy and quality, reduces the problem of uneven cutting surface, and meets the cutting needs of insulation boards of different heights.
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Figure CN120755936A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of foam insulation board preparation and processing, in particular to a composite polystyrene foam insulation board preparation and processing system. BACKGROUND
[0002] Composite polystyrene foam insulation board is a high-performance material widely used in the field of building insulation. It is favored by the market because of its good thermal insulation performance, fire resistance and light weight, high strength and other characteristics. In the production process of composite polystyrene foam insulation board, the cutting link is one of the key steps, which directly affects the size accuracy, appearance quality and production efficiency of the product.
[0003] Generally, a composite polystyrene foam insulation board preparation and processing system is composed of a conveying mechanism, a cutting mechanism and an adjusting mechanism. Therefore, when in use, the conveying mechanism drives the conveyor belt by the motor to stably convey the insulation board to the processing area, providing stable material transmission for subsequent processing. The cutting mechanism uses a cutting line to accurately cut the insulation board, and the adjusting mechanism controls the position and tension of the cutting line to ensure cutting accuracy and quality.
[0004] In the existing composite polystyrene foam insulation board preparation and processing system, especially when cutting the insulation board, there is a significant technical bottleneck: the conveyed insulation board cannot be effectively centered. This deficiency causes the insulation board to easily deviate during cutting, thereby affecting cutting accuracy and product quality. SUMMARY
[0005] To overcome the deficiencies of the prior art, the present application provides a composite polystyrene foam insulation board preparation and processing system, which solves the problem of not being able to center the conveyed insulation board.
[0006] To achieve the above purpose, the present application realizes the following technical scheme: a composite polystyrene foam insulation board preparation and processing system, comprising a base, a conveying mechanism is arranged on the top of the base, a support is fixedly connected to the top of the base, a buffer mechanism is arranged on the inner wall of the support, a connecting box is slidably connected to the inner wall of the buffer mechanism, a horizontal rod is fixedly connected to the outside of the buffer mechanism, an adjusting mechanism is arranged on the outside of the horizontal rod, a cutting line is fixedly connected to the outside of the adjusting mechanism, and a centering mechanism is arranged in the support.
[0007] The centering mechanism comprises a folding rod, the outer part of the folding rod is rotationally connected to the inner wall of the support, the outer part of the support is fixedly connected to a limiting assembly, the outer part of the folding rod is fixedly connected to a rotating assembly, the outer part of the rotating assembly is fixedly connected to a clamping plate, the outer part of the folding rod is fixedly connected to a sticking block, the outer part of the connecting box is fixedly connected to an inclined plate, and the outer part of the inclined plate is fixedly connected to a connecting plate.
[0008] Preferably, the limiting assembly comprises a supporting block, the outer part of the supporting block is fixedly connected to the outer part of the support, i.e. the side close to the connecting box, the inner part of the supporting block is rotationally connected to a limiting column, and the outer part of the folding rod is rotationally connected to the outer part of the limiting column.
[0009] Preferably, the rotating assembly comprises a connecting plate, the outer part of the connecting plate is fixedly connected to the outer part of the folding rod, i.e. the side close to the clamping plate, the inner part of the connecting plate is rotationally connected to a rotating column, the outer part of the clamping plate, i.e. the side close to the folding rod, is fixedly connected to a butt joint block, and the outer part of the butt joint block is fixedly connected to the outer part of the rotating column.
[0010] Preferably, the transportation mechanism comprises two supporting plates, the bottom parts of the two supporting plates are fixedly connected to the top part of the base, the outer parts of the two supporting plates are provided with a transportation belt at the adjacent sides, the outer part of the base is fixedly connected to a motor, and the output end of the motor is fixedly connected to the inner part of the transportation belt.
[0011] Preferably, the buffering mechanism comprises two connecting boxes, the outer parts of the two connecting boxes are slidingly connected to the inner part of the support, the outer part of the connecting box is slidingly connected to the inner wall of the connecting box, the top part and the bottom part of the connecting box are fixedly connected to a fixing block, the outer part of the fixing block is fixedly connected to a guide column, and the outer part of the guide column is sleeved with a buffer spring.
[0012] Preferably, the outer part of the two buffer springs is fixedly connected to a connecting block, the inner part of the connecting box is fixedly connected to a supporting block, and the top part of the supporting block is fixedly connected to the bottom part of the connecting block.
[0013] Preferably, the adjusting mechanism comprises two connecting frames, the outer parts of the two connecting frames are fixedly connected to the outer part of the horizontal rod, the outer parts of the two connecting frames are slidingly connected to a sliding block, and the outer part of the sliding block, i.e. the side close to the horizontal rod, is threadedly connected to a bolt.
[0014] Preferably, the outer part of the bolt, i.e. the side close to the connecting frame, is sleeved with a gasket, the outer part of the bolt is fixedly connected to an inclined block, and the bottom part of the gasket is fixedly connected to a sliding block.
[0015] Preferably, the interior of the sliding block is slidably connected to a sliding rod, the top of the sliding rod is fixedly connected to a top block, and the interior of the sliding rod is slidably connected to a clamping block.
[0016] Preferably, the outer portion of the tangent line is fixedly connected to adjacent sides of the two sliders, and the outer portions of the two sliders are located at the top and bottom of the crossbar.
[0017] The present invention provides a system for preparing and processing composite polystyrene foam insulation boards. It has the following beneficial effects:
[0018] 1. When the present invention moves through the connecting box, its external inclined plate will contact the block at one end of the folding rod and apply pressure, causing the folding rod to rotate around the rotating connection point on the inner wall of the bracket. The other end of the folding rod rotates in the opposite direction under the action of the limiting column of the limiting assembly, causing the clamping plate to rotate, thereby adjusting the center of the insulation board to ensure that the insulation board will not deviate during cutting, ensuring cutting accuracy and improving work quality.
[0019] 2. This invention utilizes a buffer spring and guide post to effectively absorb the impact of the insulation board contacting the tangent line, significantly reducing uneven cut surfaces caused by hard collisions and improving cutting quality. During the cutting process, the sliding of the connecting box drives the inclined plate, and the block and folding rod push the clamping plate to adjust the insulation board's centering, ensuring that the insulation board always maintains the correct position on the conveyor belt, preventing deviation during cutting and further improving cutting accuracy.
[0020] 3. The present invention rotates the bolt, and the slider drives the tangent to move, thereby adjusting the cutting position and tension to meet the cutting requirements of insulation boards of different heights. The oblique block is fixed around the bolt and cooperates with the sliding block and the sliding rod to prevent the bolt from loosening, thereby preventing the bolt from loosening during long-term use and ensuring stability after adjustment. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 A perspective view of the present invention;
[0022] Figure 2 is a schematic diagram of a connection box of the present invention;
[0023] Figure 3 Schematic diagram of the limiting column of the present invention;
[0024] Figure 4 is a schematic diagram of a connecting frame of the present invention;
[0025] Figure 5 Schematic diagram of the connecting plate of the present invention;
[0026] Figure 6 Schematic diagram of the card board of the present invention;
[0027] Figure 7A schematic view of the bolt of the present application;
[0028] Figure 8 A schematic view of the inclined block of the present application;
[0029] Figure 9 A schematic view of the sliding block of the present application;
[0030] Figure 10 A schematic view of the clamping block of the present application.
[0031] Wherein, 1, base; 2, transport mechanism; 21, transport belt; 22, motor; 23, support plate; 3, support; 4, buffer mechanism; 41, connecting box; 42, fixed block; 43, guide column; 44, buffer spring; 45, connecting block; 46, support block; 5, connecting box; 6, centering mechanism; 61, inclined plate; 62, connecting plate; 63, sticking block; 64, folding rod; 65, limiting assembly; 651, support block; 652, limiting column; 66, rotating assembly; 661, butt joint block; 662, rotating column; 663, connecting plate; 67, clamping plate; 7, cross rod; 8, adjusting mechanism; 81, connecting frame; 82, sliding block; 83, bolt; 84, clamping block; 85, gasket; 86, inclined block; 87, sliding block; 88, sliding rod; 89, top block; 9, tangent line. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the specification of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work are within the protection scope of the present application.
[0033] Please refer to the drawings in the specification of the present application Figure 1 , the drawings in the specification of the present application Figure 3 , the drawings in the specification of the present application Figure 4 and the drawings in the specification of the present application Figure 5The embodiment of the present application provides a kind of composite polystyrene foam insulation board preparation processing system, including base 1, the top of base 1 is provided with transport mechanism 2, transport mechanism 2 includes two support plates 23, its design can provide support ability, so that good support can be carried out on the top of base 1, the bottom of two support plates 23 is fixedly connected at the top of base 1, the outside adjacent side of two support plates 23 is provided with conveying belt 21, its design can be for transmission belt and rotating roller composition, here is prior art, so no more elaboration, the outside one side of base 1 is fixedly connected with motor 22, its design can provide good rotating ability, so that electric energy can be converted into rotary energy by motor 22, and the output end of motor 22 is fixedly connected in the inside of conveying belt 21, so that motor 22 can drive conveying belt 21 to transport insulation board after electrification, the top of base 1 is fixedly connected with support 3, its design can provide good support ability, while the design of support 3 is located at the top of conveying belt 21, the inner wall of support 3 is provided with buffer mechanism 4, the inner wall of buffer mechanism 4 is slidably connected with connecting box 5, its design can provide good sliding ability, the outside of buffer mechanism 4 is fixedly connected with cross bar 7, its design can provide good support ability, so that cross bar 7 can be followed by sliding by the sliding of connecting box 5, the outside of cross bar 7 is provided with adjusting mechanism 8, the outside of adjusting mechanism 8 is fixedly connected with tangent 9, its design can cut insulation board, the inside of support 3 is provided with centering mechanism 6;
[0034] Centering mechanism 6 includes folding rod 64, its design can provide good support ability, while being designed as two, respectively located at the outside of support 3, the outer rotating connection of folding rod 64 is in the inner wall of support 3, the outside opposite side of support 3 is fixedly connected with limiting component 65, limiting component 65 includes support block 651, its design can provide good support ability, the outside of support block 651 is fixedly connected in the outside of support 3, i.e. the side close to connecting box 5, the inside of support block 651 is rotatably connected with limiting column 652, its design can provide good limiting ability, can prevent folding rod 64 from being displaced downward, and when one end of folding rod 64 is angularly rotated, the other end of its folding rod 64 is limited by the limiting ability of limiting column 652, so that the other end of folding rod 64 is rotated in the opposite direction, the outer rotating connection of folding rod 64 is in the outside of limiting column 652, the outside one side of folding rod 64 is fixedly connected with rotating component 66, rotating component 66 includes connecting plate 663, its design can provide connection ability, so that folding rod 64 can drive connecting plate 663 to be close to each other when one end of folding rod 64 is rotated, the outside of connecting plate 663 is fixedly connected in the outside of folding rod 64, i.e. the side close to clamping plate 67, the inside of connecting plate 663 is rotatably connected with rotating column 662, its design can provide rotating ability;
[0035] The outer side of the clamping plate 67, i.e., the side close to the folding rod 64, is fixedly connected with a butt block 661 which is designed to provide connecting capacity. The outer side of the butt block 661 is fixedly connected with a rotating column 662. The outer side of the clamping plate 67 is fixedly connected with the folding rod 64. The clamping plate 67 can rotate by rotating the butt block 661 outside the rotating column 662, so that the clamping plate 67 can be prevented from deviating during cutting of the insulation board. The outer side of the folding rod 64 is fixedly connected with a sticking block 63 which is designed to provide sticking capacity. The folding rod 64 can rotate by the force applied to the sticking block 63. The outer side of the connecting box 5 is fixedly connected with an inclined plate 61 which is designed to have a right triangle capacity. When not in use, the smaller side of the inclined plate 61 is stuck to one side of the sticking block 63. The inclined plate 61 can be moved by sliding the connecting box 5. Then, the sticking block 63 is gradually pressed by the inclined surface of the inclined plate 61, so that the folding rod 64 rotates and the clamping plate 67 can move the insulation board to the center. The outer side of the inclined plate 61 is fixedly connected with a connecting plate 62 which is designed to push the sticking block 63 when the inclined plate 61 is reset by the connecting box 5, so that the sticking block 63 can be reset.
[0036] Referring to the accompanying Figure 2 and the accompanying Figure 5 The buffer mechanism 4 includes two connecting boxes 41 which are designed to provide supporting capacity so as to support the inside of the support 3. The outer sides of the two connecting boxes 41 are slidingly connected to the inside of the support 3. The outer side of the connecting box 5 is slidingly connected to the inner wall of the connecting box 41. The top and bottom of the connecting box 41 are fixedly connected with fixed blocks 42 which are designed to provide supporting capacity so as to well support the top of the connecting box 41. The outer side of the fixed block 42 is fixedly connected with a guide column 43 which is designed to provide good guiding capacity. The outer side of the guide column 43 is sleeved with a buffer spring 44 which is designed to provide good buffering capacity so as to be compressed by force and reset when released. The outer side of the two buffer springs 44 is fixedly connected with a connecting block 45 which is designed to provide connecting capacity so as to provide good supporting capacity and slide on the top and bottom of the connecting box 41. The connecting block 45 can compress the buffer spring 44 by being pressed;
[0037] The inside of the connecting box 5 is fixedly connected with a support block 46, which is designed to provide support capability, so that the connecting block 45 can be moved, and the top of the support block 46 is fixedly connected to the bottom of the connecting block 45, so that the support block 46 penetrates through the top of the connecting box 5, so that the support block 46 and the connecting block 45 are connected to each other. In use, the heat preservation plate is placed on the top of the conveying belt 21, so that the heat preservation plate can be transported to the tangent line 9, and then the heat preservation plate can contact and press the tangent line 9 by its own gravity. When pressing, the connecting block 45 drives the support block 46 to move by connecting the horizontal rod 7 with the support block 46, so that the connecting block 45 drives the support block 46 to compress the buffer spring 44. The design can prevent hard impact when the heat preservation plate contacts and cuts the tangent line 9, causing unevenness when first contacting and cutting. The design of the buffer spring 44 provides good buffering and resetting capabilities. At the same time, during cutting, the connecting box 5 follows the sliding, so that the connecting box 5 can drive the inclined plate 61 to move, so that the contact block 63 can be contacted, and the contact block 63 drives the folding rod 64 to rotate, so that the clamping plate 67 can be close to each other, so that the heat preservation plate can be centered on the top of the conveying belt 21, preventing deviation during cutting.
[0038] Referring to the accompanying Figure 6 -attached Figure 10 The adjusting mechanism 8 includes two connecting frames 81, which are designed to provide connection and sliding space. The outside of the two connecting frames 81 is fixedly connected to the outside of one side of the horizontal rod 7. The outside of the two connecting frames 81 is slidingly connected with a sliding block 82, which is designed to provide support and sliding capability. The sliding block 82 drives the tangent line 9 to slide on the inner wall of the connecting frame 81. The outside of the sliding block 82, i.e. the side close to the horizontal rod 7, is threadedly connected with a bolt 83, which is designed to provide good locking capability. The outside of the bolt 83, i.e. the side close to the connecting frame 81, is sleeved with a gasket 85, which is designed to provide protection capability. When the bolt 83 is threadedly rotated in the inside of the sliding block 82, it can contact the gasket 85, so that the sliding block 82 can be clamped in the inside of the connecting frame 81 by the gasket 85, so that different height adjustments can be provided to cut different height heat preservation plates. The outside of the bolt 83 is fixedly connected with an inclined block 86, which is designed to provide support and clamping capability, and is designed to be placed at an inclined angle. The bottom of the gasket 85 is fixedly connected with a sliding block 87, which is designed to provide support capability and is designed to be located at the bottom of the bolt 83. The inside of the sliding block 87 is slidingly connected with a sliding rod 88, which is designed to provide sliding capability, so that it can slide in the inside of the sliding block 87.
[0039] The top of the sliding rod 88 is fixedly connected with a top block 89, which is designed to provide a clamping function, and is placed at an angle opposite to the angle of the inclined block 86, so that the sliding block 82 can be clamped by the bolt 83 after adjustment, and then the sliding rod 88 is slid into the inside of the sliding block 87, so that the top block 89 is attached to the inclined block 86, which can prevent the bolt 83 from loosening after long-term use. The inside of the sliding rod 88 is slidably connected with a clamping block 84, which is designed to provide an opening and closing function, so that after the sliding rod 88 is slid into the inside of the sliding block 87, the sliding clamping block 84 is slid and clamped in the inside of the sliding block 87, realizing the fixation of the sliding rod 88 and preventing sliding. The outside of the tangent 9 is fixedly connected to the adjacent side of the two sliding blocks 82, and the outside of the two sliding blocks 82 is located at the top and bottom of the horizontal rod 7.
[0040] Working principle: when the composite polystyrene foam insulation board needs to be prepared and processed, first of all, the motor 22 in the conveying mechanism 2 is electrified to work, and the electric energy is converted into rotary energy. The output end of the motor 22 drives the rotating roller inside the conveying belt 21 to rotate, so that the conveying belt 21 starts to run and conveys the insulation board along the conveying direction. The insulation board is moved to the lower side of the support 3 under the drive of the conveying belt 21. At this time, the buffer mechanism 4 in the support 3 begins to play a role. The inner wall of the buffer mechanism 4 is slidingly connected with the connecting box 5. When the insulation board contacts the connecting box 5, the connecting box 5 can slide under the action of the buffer mechanism 4. The buffer mechanism 4 provides good sliding ability for the sliding of the connecting box 5, so that the cross rod 7 can move correspondingly with the sliding of the connecting box 5, thereby playing a certain buffering and adaptive adjustment role for the insulation board, avoiding damage to the insulation board due to direct impact. At the same time, by adjusting the adjusting mechanism 8, the position and tension of the tangent line 9 can be changed, so that it is in a suitable cutting state. When the insulation board is conveyed to the cutting position of the tangent line 9, the tangent line 9 cuts the insulation board, and cuts the insulation board into the required part according to the preset size. In the cutting process, the centering mechanism 6 in the support 3 also adjusts the centering of the insulation board. The folding rod 64 in the centering mechanism 6 is rotatably connected to the inner wall of the support 3. When one end of the folding rod 64 is pressed by the inclined surface of the inclined plate 61 of the connecting box 5, the block 63 is stressed and the folding rod 64 is rotated. The other end of the folding rod 64 is limited by the limiting column 652 in the limiting assembly 65, so that the other end of the folding rod 64 can rotate in the opposite direction. The connecting plate 663 in the rotating assembly 66 on one side of the folding rod 64 is connected with the folding rod 64, and the rotation of one end of the folding rod 64 drives the connecting plate 663 to move close to each other. The rotating column 662 in the connecting plate 663 is fixedly connected with the butt block 661 outside the clamping plate 67, and the rotation of the rotating column 662 drives the clamping plate 67 to rotate, thereby adjusting the centering of the insulation board, preventing the insulation board from deviating during cutting, and ensuring the cutting precision. When the insulation board is cut, the connecting box 5 drives the inclined plate 61 to move back to the original position, and the inclined plate 61 pushes the block 63 through the connecting plate 62, so that the folding rod 64 can be reset, and the next insulation board can be centered and processed;
[0041] The buffering mechanism 4 can slide in the support 3 and provide support. The connecting box 5 can slide in the connecting box 41 and is connected with the connecting block 45 through the support block 46. The connecting block 45 is fixed on the buffering spring 44, the buffering spring 44 is sleeved on the guide column 43, and the guide column 43 is fixed on the fixed block 42 of the connecting box 41. When the heat preservation plate is conveyed to the tangent line 9 by the conveying belt 21, the gravity of the heat preservation plate makes the tangent line 9 be pressed. The cross rod 7 is connected with the support block 46, so that the connecting block 45 drives the support block 46 to move and compresses the buffering spring 44. This step buffers the impact force when the heat preservation plate contacts the tangent line 9, and avoids that the cutting surface is uneven. During the cutting process, the connecting box 5 slides to drive the inclined plate 61 to move, the inclined plate 61 contacts the block 63 and drives the folding rod 64 to rotate, so that the clamping plates 67 are close to each other, the heat preservation plate is centered on the conveying belt 21, and deviation during cutting is prevented. In this way, the buffering mechanism 4 cooperates with the centering mechanism 6 to provide buffering and centering functions during cutting, and the cutting quality is ensured.
[0042] The adjusting mechanism 8 comprises two connecting frames 81 fixed on the cross rod 7, which provide connection and sliding space. The sliding block 82 is installed on the connecting frame 81 and can slide to drive the tangent line 9 to move, so as to realize horizontal adjustment of the cutting position. The bolt 83 is threadedly connected with the sliding block 82, and by rotating the bolt 83, the position of the sliding block 82 can be accurately adjusted, so as to adjust the cutting position of the tangent line 9. The gasket 85 is sleeved on the bolt 83, which provides protection and ensures that the bolt 83 stably locks the sliding block 82 during adjustment. The inclined block 86 is fixed around the bolt 83 and cooperates with the sliding block 87 and the sliding rod 88 to prevent the bolt 83 from loosening. The top block 89 at the top of the sliding rod 88 abuts against the inclined block 86, so as to ensure that the sliding block 82 remains stable after adjustment. The clamping block 84 is used for locking the sliding rod 88 to prevent it from sliding, so as to ensure that the tension of the tangent line 9 is stable. By rotating the bolt 83, the sliding block 82 drives the tangent line 9 to move, adjusts the cutting position and tension, and meets the cutting requirements of heat preservation plates of different heights. After adjustment is completed, the sliding rod 88 slides into the sliding block 87 and is fixed by the clamping block 84, so as to ensure the stability during cutting.
[0043] Although the embodiments of the present application have been shown and described, it should be understood by those ordinary skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A composite polystyrene foam insulation board preparation and processing system, comprising a base (1), characterized in that: The top of the base (1) is provided with a transport mechanism (2), the top of the base (1) is fixedly connected to a bracket (3), the inner wall of the bracket (3) is provided with a buffer mechanism (4), the inner wall of the buffer mechanism (4) is slidably connected to a connecting box (5), the outside of the buffer mechanism (4) is fixedly connected to a cross bar (7), the outside of the cross bar (7) is provided with an adjustment mechanism (8), the outside of the adjustment mechanism (8) is fixedly connected to a tangent (9), and the inside of the bracket (3) is provided with a centering mechanism (6); The centering mechanism (6) comprises a folding rod (64), the outer side of the folding rod (64) is rotatably connected to the inner wall of the bracket (3), the outer side of the bracket (3) is fixedly connected to a limiting assembly (65), the outer side of the folding rod (64) is fixedly connected to a rotating assembly (66), the outer side of the rotating assembly (66) is fixedly connected to a clamping plate (67), the outer side of the folding rod (64) is fixedly connected to a sticking block (63), the outer side of the connecting box (5) is fixedly connected to an inclined plate (61), and the outer side of the inclined plate (61) is fixedly connected to a connecting plate (62).
2. A composite polystyrene foam insulation board preparation and processing system according to claim 1, characterized in that: The limiting assembly (65) comprises a support block (651), the exterior of the support block (651) being fixedly connected to the exterior of the bracket (3), i.e., a side close to the connecting box (5), the interior of the support block (651) being rotatably connected to a limiting column (652), and the exterior of the folding rod (64) being rotatably connected to the exterior of the limiting column (652).
3. A composite polystyrene foam insulation board preparation and processing system according to claim 1, characterized in that: The rotating assembly (66) includes a connecting plate (663), the exterior of the connecting plate (663) is fixedly connected to the exterior of the folding rod (64), i.e., a side close to the clamping plate (67), the interior of the connecting plate (663) is rotatably connected to a rotating column (662), the exterior of the clamping plate (67), i.e., a side close to the folding rod (64), is fixedly connected to a docking block (661), and the exterior of the docking block (661) is fixedly connected to the exterior of the rotating column (662).
4. A composite polystyrene foam insulation board preparation and processing system according to claim 1, characterized in that: The transport mechanism (2) comprises two support plates (23), the bottoms of the two support plates (23) are fixedly connected to the top of the base (1), a transport belt (21) is provided on the adjacent outer sides of the two support plates (23), a motor (22) is fixedly connected to the outer side of the base (1), and the output end of the motor (22) is fixedly connected to the inside of the transport belt (21).
5. The composite polystyrene foam insulation board preparation and processing system according to claim 1, characterized in that: The buffer mechanism (4) comprises two connecting boxes (41), the exteriors of the two connecting boxes (41) are slidably connected to the interior of the bracket (3), the exterior of the connecting box (5) is slidably connected to the inner wall of the connecting box (41), the top and bottom of the connecting box (41) are fixedly connected to fixed blocks (42), the exterior side of the fixed block (42) is fixedly connected to a guide column (43), and the exterior of each guide column (43) is sleeved with a buffer spring (44).
6. A composite polystyrene foam insulation board preparation and processing system according to claim 5, characterized in that: A connecting block (45) is fixedly connected to one side of the exterior of the two buffer springs (44), a supporting block (46) is fixedly connected to the interior of the connecting box (5), and the top of the supporting block (46) is fixedly connected to the bottom of the connecting block (45).
7. The composite polystyrene foam insulation board preparation and processing system according to claim 1, characterized in that: The adjustment mechanism (8) comprises two connecting frames (81), the exteriors of the two connecting frames (81) are fixedly connected to the exterior side of the cross bar (7), the exterior side of the two connecting frames (81) is slidably connected to a slider (82), and the exterior of the slider (82), i.e., the side close to the cross bar (7), is threadedly connected to a bolt (83).
8. A composite polystyrene foam insulation board preparation and processing system according to claim 7, characterized in that: A gasket (85) is sleeved on the outside of the bolt (83), i.e., on the side close to the connecting frame (81). The outside of the bolt (83) is fixedly connected with an inclined block (86) around the periphery. The bottom of the gasket (85) is fixedly connected with a sliding block (87).
9. A composite polystyrene foam insulation board preparation and processing system according to claim 8, characterized in that: The interior of the sliding block (87) is slidably connected to a sliding rod (88), the top of the sliding rod (88) is fixedly connected to a top block (89), and the interior of the sliding rod (88) is slidably connected to a clamping block (84).
10. A composite polystyrene foam insulation board preparation and processing system according to claim 9, characterized in that: The outer portion of the tangent line (9) is fixedly connected to adjacent sides of the two sliders (82), and the outer portions of the two sliders (82) are located at the top and bottom of the crossbar (7).
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