Cutting device for high-temperature-resistant foam board production

By designing a cutting device for high-temperature resistant foaming plate production, the coordinated work of load-bearing, fixing, telescoping, driving, transmission and cutting mechanisms is solved, and the problem of continuous cutting of foamed plates cannot be achieved in the prior art, improving work efficiency and cutting stability.

CN223029830UActive Publication Date: 2025-06-27XINZHENG HANKUN PLASTIC SHEET CO LTD
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Patent Information

Application Number
CN202421838468.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-06-27
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing foam plate cutting device cannot realize continuous cutting of the foam plate in batches, resulting in the need to load and cut one by one, which consumes a lot of manpower and time, resulting in low work efficiency.

Method used

A cutting device for the production of high-temperature resistant foam plates is designed, including a load bearing mechanism, a fixing mechanism, a telescopic mechanism, a driving mechanism, a transmission mechanism and a cutting mechanism. Through the coordinated work of these mechanisms, multiple layers of the foam plate can be simultaneously loaded, fixed and cut.

Benefits of technology

The stable and continuous cutting of the foamed plate is achieved, the work efficiency is improved, the labor and time consumption is reduced, and the damage and displacement during the cutting process is avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cutting device for high-temperature-resistant foam board production, and particularly relates to the technical field of foam board cutting, the cutting device comprises a bottom plate, the left wall and the right wall of the lower portion of an inner cavity of a U-shaped plate are symmetrically and fixedly connected with bearing mechanisms, and an inner cavity of a first sliding groove is slidably connected with a driving mechanism; inner cavities of the two mounting grooves are fixedly connected with transmission mechanisms, and inner cavities of the two second sliding grooves are slidably connected with cutting mechanisms. According to the cutting device for high-temperature-resistant foam board production, the bearing mechanism can bear a plurality of foam boards at the same time, the fixing mechanism can fix the foam boards to be cut, the fixing mechanism can be driven to move under the action of the telescopic mechanism, and the foam boards to be cut can be fixed through the telescopic mechanism. The function of driving the corresponding cutting mechanisms to move in the same direction at the same time can be achieved through the two transmission mechanisms, the foaming plate can be cut under the action of the two cutting mechanisms, and the practicability of the device is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of foamed board cutting, in particular to a cutting device for producing high-temperature resistant foamed boards. Background Art

[0002] As a new type of board sandwich material, the foamed board itself has the characteristics of being lightweight and easy to install, and its chemical properties also determine that it has extremely high heat insulation, sound insulation, and long service life. It is widely used in the current construction industry and daily life.

[0003] Chinese Patent Document CN219788637U discloses a cutting device for producing foamed boards, which relates to the technical field of foamed board cutting, including a device base, a sliding plate, and a pressing component. A sliding groove is opened inside the device base, a moving component is arranged inside the device base, a wiring groove is opened at the upper end of the device base, a cutting component is arranged inside the wiring groove, a fixed frame is fixedly connected to the upper end of the sliding plate, bearings are fixedly connected inside the device base and the fixed frame, a lead screw is rotatably connected inside the bearings, and a propulsion component is arranged at the right end of the device base. In the above-mentioned cutting device for producing foamed boards, the propulsion component and the pressing component can be used to uniformly push the foamed board forward and press it for alignment during cutting, avoiding the phenomena of skew and uneven cut surfaces of the cut products. The moving component and the cutting component can be used to automatically cut the foamed board. During this cutting process, except for loading and unloading, no excessive operation by personnel is required, avoiding damage to the body.

[0004] The above patent document can avoid the phenomena of skew and uneven cut surfaces of the cut products during implementation, but it cannot achieve the effect of batch continuous cutting of the foamed board, resulting in the need to load and cut the boards one by one, consuming a large amount of manpower and time, and causing low work efficiency. Content of the Utility Model

[0005] The main purpose of the utility model is to provide a cutting device for producing high-temperature resistant foamed boards, which can effectively solve the problem of inability to achieve the effect of batch continuous cutting of the foamed board.

[0006] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0007] A cutting device for producing high-temperature resistant foaming boards, comprising a bottom plate. Four corners at the lower end of the outer surface of the bottom plate are fixedly connected with supporting legs. The left end and the right end of the outer surface of the bottom plate are jointly fixedly connected with a U-shaped plate. A first chute communicating with the outside is opened in the middle of the upper end of the outer surface of the U-shaped plate. An installation groove and a second chute communicating with the outside are symmetrically opened in sequence at the left and right parts of the upper end of the outer surface of the U-shaped plate. The left and right walls of the lower part of the inner cavity of the U-shaped plate are symmetrically fixedly connected with a bearing mechanism. Two fixing mechanisms are symmetrically fixedly connected to the left and right sides of the lower part of the U-shaped plate. The lower left and lower right parts of the outer surface of the U-shaped plate are symmetrically fixedly connected with a telescopic mechanism in the front and back. And a driving mechanism is slidably connected in the inner cavity of the first chute. A transmission mechanism is fixedly connected in each of the two installation grooves. A cutting mechanism is slidably connected in each of the two second chutes.

[0008] Preferably, the bearing mechanism includes a connecting plate. A plurality of vertical plates are fixedly connected at intervals on the right end of the outer surface of the connecting plate. A plurality of bearing plates are fixedly connected at intervals on the right end of the outer surface of the plurality of vertical plates.

[0009] Preferably, the fixing mechanism includes a fixing frame. A sliding block is slidably connected in the inner cavity of the fixing frame. A limiting block is fixedly connected to one end of the outer surface of the sliding block close to the middle of the inner cavity of the U-shaped plate. And the fixing frame is located between two adjacent vertical plates.

[0010] Preferably, the telescopic mechanism includes a first electric telescopic rod. The output end of the piston rod at the upper part of the first electric telescopic rod is fixedly connected with a telescopic column. A connecting block is fixedly connected to the upper part of the outer surface of the telescopic column. And one end of the outer surface of the connecting block close to the middle of the inner cavity of the U-shaped plate is fixedly connected with one end of the outer surface of the sliding block far from the middle of the inner cavity of the U-shaped plate.

[0011] Preferably, the driving mechanism includes a first guiding block. A coaxial double-shaft motor is fixedly connected to the upper end of the outer surface of the first guiding block. The output ends of the piston rods on the left and right sides of the coaxial double-shaft motor are both fixedly connected with a first rotating shaft. And the outer surface of the first guiding block is slidably connected with the inner surface of the first chute.

[0012] Preferably, the transmission mechanism includes a rectangular frame. A rack is fixedly connected to the bottom wall of the inner cavity of the rectangular frame. A gear is meshed with the upper part of the outer surface of the rack. A second rotating shaft is fixedly connected to the middle of the right end of the outer surface of the gear. And the middle of the left end of the outer surface of the gear is fixedly connected with the right end of the outer surface of the first rotating shaft.

[0013] Preferably, the cutting mechanism includes a movable sleeve. T-shaped blocks are fixedly connected to the left and right ends of the lower part of the outer surface of the movable sleeve. A second electric telescopic rod is fixedly connected to the lower end of the outer surface of the movable sleeve. The output end of the piston rod at the lower part of the second electric telescopic rod is fixedly connected with a cutting blade. And the upper inner cavity of the movable sleeve is rotatably connected with the right part of the outer surface of the second rotating shaft.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] 1. The utility model can carry multiple foaming boards simultaneously through the bearing mechanism, fix the foaming board to be cut through the fixing mechanism, and drive the fixing mechanism to move under the action of the telescopic mechanism, improving the practicability of the device. At the same time, through the driving mechanism, two transmission mechanisms can be driven to move, and through the two transmission mechanisms, the corresponding cutting mechanisms can be driven to move in the same direction simultaneously, and the foaming board can be cut under the action of the two cutting mechanisms, improving the practicability and universality of the device.

[0016] 2. By driving the coaxial double-shaft motor in the same direction, the corresponding gear can be rotated and meshed along the corresponding rack, so as to drive the coaxial double-shaft motor and two movable kits to move synchronously, thus achieving the purpose of stably cutting the foaming board, avoiding damage to the cut foaming board, and making the cutting of the foaming board by the device more stable. Description of the Drawings

[0017] Figure 1 is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 is a schematic diagram of the bearing mechanism, fixing mechanism and telescopic mechanism of the utility model;

[0019] Figure 3 is a schematic diagram of the driving mechanism structure of the utility model;

[0020] Figure 4 is a schematic diagram of the transmission mechanism and cutting mechanism of the utility model.

[0021] In the figure: 1. bottom plate; 2. support leg; 3. U-shaped plate; 31. first chute; 32. installation groove; 33. second chute; 4. bearing mechanism; 41. connecting plate; 42. vertical plate; 43. bearing plate; 5. fixing mechanism; 51. fixing frame; 52. sliding block; 53. limiting block; 6. telescopic mechanism; 61. first electric telescopic rod; 62. telescopic column; 63. connecting block; 7. driving mechanism; 71. first guide block; 72. coaxial double-shaft motor in the same direction; 73. first rotating shaft; 8. transmission mechanism; 81. rectangular frame; 82. rack; 83. gear; 84. second rotating shaft; 9. cutting mechanism; 91. movable kit; 92. T-shaped block; 93. second electric telescopic rod; 94. cutting blade. Detailed Embodiment

[0022] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0023] As Figure 1 shown, a cutting device for producing high-temperature foam boards includes a bottom plate 1. Four corners at the lower end of the outer surface of the bottom plate 1 are fixedly connected with support legs 2. The left end and the right end of the outer surface of the bottom plate 1 are jointly fixedly connected with a U-shaped plate 3. A first chute 31 communicating with the outside is opened in the middle of the upper end of the outer surface of the U-shaped plate 3. An installation groove 32 and a second chute 33 communicating with the outside are symmetrically opened in the left and right parts of the upper end of the outer surface of the U-shaped plate 3 in sequence. A bearing mechanism 4 is symmetrically fixedly connected to the lower left and right walls of the inner cavity of the U-shaped plate 3, which can realize the function of bearing multiple foam boards at the same time. Two fixing mechanisms 5 are symmetrically fixedly connected to the left and right sides of the lower part of the U-shaped plate 3, which can realize the function of pressing and fixing the foam board to be cut. Telescopic mechanisms 6 are symmetrically fixedly connected to the lower front and rear parts of the left and right ends of the outer surface of the U-shaped plate 3, which can realize the function of driving the limit block 53 to move up and down. And a driving mechanism 7 is slidably connected to the inner cavity of the first chute 31, which can realize the function of driving two gears 83 to move synchronously. Transmission mechanisms 8 are fixedly connected to the inner cavities of the two installation grooves 32, which can realize the function of driving the corresponding cutting mechanisms 9 to move in the same direction at the same time. Cutting mechanisms 9 are slidably connected to the inner cavities of the two second chutes 33, which can realize the function of cutting both sides of the foam board.

[0024] In order to achieve the purpose of bearing multiple foam boards at the same time, refer to Figure 2 , the bearing mechanism 4 includes a connecting plate 41. A number of vertical plates 42 are fixedly connected to the right end of the outer surface of the connecting plate 41 at intervals. A number of bearing plates 43 are fixedly connected to the right end of the outer surface of the number of vertical plates 42 at intervals, which can realize the function of placing multiple foam boards in the inner cavity of the bearing plates 43 to support and bear them.

[0025] In order to achieve the purpose of pressing and fixing the foam board to be cut, refer to Figure 2 , the fixing mechanism 5 includes a fixing frame 51. A sliding block 52 is slidably connected to the inner cavity of the fixing frame 51. A limit block 53 is fixedly connected to one end of the outer surface of the sliding block 52 close to the middle of the inner cavity of the U-shaped plate 3, which can realize the function of pressing and fixing the foam board before cutting it, and the fixing frame 51 is located between two adjacent vertical plates 42.

[0026] In order to achieve the purpose of driving the limit block 53 to move up and down, refer to Figure 2, the telescopic mechanism 6 includes an electric telescopic rod 61. A telescopic column 62 is fixedly connected to the output end of the piston rod at the upper part of the electric telescopic rod 61. A connecting block 63 is fixedly connected to the upper part of the outer surface of the telescopic column 62. One end of the outer surface of the connecting block 63 close to the middle of the inner cavity of the U-shaped plate 3 is fixedly connected to one end of the outer surface of the sliding block 52 far from the middle of the inner cavity of the U-shaped plate 3.

[0027] Driving the electric telescopic rod 61 can drive the sliding block 52 to slide up and down synchronously in the inner cavity of the fixed frame 51 through the connecting block 63, so as to drive the limiting block 53 to move downward to stably fix the foaming board, so that the foaming board will not shift when it is cut.

[0028] To achieve the purpose of driving the two gears 83 to move synchronously, refer to Figure 3 , the driving mechanism 7 includes a guide block 71, which can drive the coaxial double-shaft motor 72 to slide in the inner cavity of the chute 31. A coaxial double-shaft motor 72 is fixedly connected to the upper end of the outer surface of the guide block 71. The piston rod output ends on the left and right sides of the coaxial double-shaft motor 72 are both fixedly connected to a rotating shaft 73. The outer surface of the guide block 71 is slidably connected to the inner surface of the chute 31.

[0029] To achieve the purpose of driving the corresponding cutting mechanism 9 to move in the same direction at the same time, refer to Figure 4 , the transmission mechanism 8 includes a rectangular frame 81. A rack 82 is fixedly connected to the bottom wall of the inner cavity of the rectangular frame 81. A gear 83 is meshed with the upper part of the outer surface of the rack 82. A rotating shaft 84 is fixedly connected to the middle of the right end of the outer surface of the gear 83. The middle of the left end of the outer surface of the gear 83 is fixedly connected to the right end of the outer surface of the rotating shaft 73.

[0030] When the coaxial double-shaft motor 72 starts to drive, the coaxial double-shaft motor 72 will drive the two gears 83 to rotate in the same direction, so that the two gears 83 are respectively engaged with the corresponding racks 82, and then drive the coaxial double-shaft motor 72 and the guide block 71 to slide back and forth in the inner cavity of the chute 31 through the two rotating shafts 73.

[0031] To achieve the purpose of cutting both sides of the foaming board, refer to Figure 4 , the cutting mechanism 9 includes a movable kit 91. T-shaped blocks 92 are fixedly connected to the left and right ends of the lower part of the outer surface of the movable kit 91. An electric telescopic rod 93 is fixedly connected to the lower end of the outer surface of the movable kit 91. A cutting blade 94 is fixedly connected to the output end of the piston rod at the lower part of the electric telescopic rod 93. The upper inner cavity of the movable kit 91 is rotatably connected to the right part of the outer surface of the rotating shaft 84.

[0032] When the two gears 83 are engaged in motion, the two gears 83 will drive the second rotating shaft 84 connected thereto to rotate and move back and forth at the same time. At this time, the two second rotating shafts 84 will drive the corresponding movable kits 91 to slide back and forth in the inner cavity of the second chute 33. At the same time, the height of the cutting blade 94 can be adjusted up and down to the required height by the second electric telescopic rod 93, so as to drive the corresponding cutting blade 94 to cut the foaming board through the motion of the second rotating shaft 84.

[0033] It should be noted that the specific installation methods, connection methods of the circuit, and control methods of the first electric telescopic rod 61, the coaxial double-shaft motor 72, and the second electric telescopic rod 93 in the present utility model are all conventional designs, and the present utility model will not elaborate in detail.

[0034] The working principle of the present utility model: First, place multiple foaming boards to be cut in layers on the upper part of the inner cavity of the corresponding bearing plate 43. Then drive the multiple first electric telescopic rods 61 to drive the corresponding limit blocks 53 to move downward through the sliding blocks 52, so as to press and fix the upper-layer foaming board. Then drive the coaxial double-shaft motor 72 to drive the two gears 83 and the corresponding racks 82 engaged in motion through the two first rotating shafts 73. Thus, the first guide block 71 will be driven to slide back and forth in the inner cavity of the first chute 31 under the connection of the two first rotating shafts 73. At the same time, the second rotating shafts 84 connected to the two gears 83 will synchronously drive the corresponding T-shaped blocks 92 to slide in the inner cavity of the second chute 33. After adjusting the two cutting blades 94 to the required positions, drive the two second electric telescopic rods 93 to drive the corresponding cutting blades 94 to adjust up and down. When adjusted to the appropriate cutting position, drive the coaxial double-shaft motor 72 again to make the two cutting blades 94 start to cut the fixed foaming board. When it is necessary to cut the next layer of foaming board, remove the cut foaming board of the upper layer, drive the several first electric telescopic rods 61 again to drive the limit blocks 53 to fix the next layer of foaming board and cut it with the two cutting blades 94.

[0035] The above shows and describes the basic principle, main features, and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A cutting device for producing high temperature resistant foamed boards, comprising a bottom plate (1), characterized in that: The four corners of the lower end of the outer surface of the bottom plate (1) are fixedly connected to support legs (2), the left and right ends of the outer surface of the bottom plate (1) are fixedly connected to a U-shaped plate (3), the middle part of the upper end of the outer surface of the U-shaped plate (3) is provided with a first slide groove (31) communicating with the outside world, the left and right parts of the upper end of the outer surface of the U-shaped plate (3) are symmetrically provided with a mounting groove (32) and a second slide groove (33) communicating with the outside world, and the left and right walls of the lower part of the inner cavity of the U-shaped plate (3) are symmetrically fixedly connected. There is a bearing mechanism (4), two fixing mechanisms (5) are symmetrically fixedly connected to the left and right sides of the lower part of the U-shaped plate (3), and telescopic mechanisms (6) are symmetrically fixedly connected to the lower left and right ends of the outer surface of the U-shaped plate (3), and the inner cavity of the first slide groove (31) is slidably connected to a driving mechanism (7), the inner cavities of the two installation grooves (32) are fixedly connected to a transmission mechanism (8), and the inner cavities of the two second slide grooves (33) are slidably connected to a cutting mechanism (9).

2. A cutting device for producing high temperature resistant foamed boards according to claim 1, characterized in that: The bearing mechanism (4) comprises a connecting plate (41), a plurality of vertical plates (42) are fixedly connected to the right end of the outer surface of the connecting plate (41) at intervals, and a plurality of bearing plates (43) are fixedly connected to the right ends of the outer surfaces of the plurality of vertical plates (42) at intervals.

3. A cutting device for producing high temperature resistant foamed boards according to claim 2, characterized in that: The fixing mechanism (5) comprises a fixing frame (51), the inner cavity of the fixing frame (51) is slidably connected to a sliding block (52), the outer surface of the sliding block (52) is fixedly connected to a limiting block (53) at one end close to the middle of the inner cavity of the U-shaped plate (3), and the fixing frame (51) is located between two adjacent vertical plates (42).

4. A cutting device for producing high temperature resistant foamed boards according to claim 3, characterized in that: The telescopic mechanism (6) comprises an electric telescopic rod (61), the upper piston rod output end of the electric telescopic rod (61) being fixedly connected to a telescopic column (62), the upper portion of the outer surface of the telescopic column (62) being fixedly connected to a connecting block (63), and an end of the outer surface of the connecting block (63) close to the middle of the inner cavity of the U-shaped plate (3) is fixedly connected to an end of the outer surface of the sliding block (52) away from the middle of the inner cavity of the U-shaped plate (3).

5. The cutting device for producing high temperature resistant foamed board according to claim 1, characterized in that: The driving mechanism (7) comprises a guide block (71), the upper end of the outer surface of the guide block (71) being fixedly connected to a co-directional dual-axis motor (72), the piston rod output ends on the left and right sides of the co-directional dual-axis motor (72) being fixedly connected to a rotating shaft (73), and the outer surface of the guide block (71) being slidably connected to the inner surface of a slide groove (31).

6. A cutting device for producing high temperature resistant foamed boards according to claim 5, characterized in that: The transmission mechanism (8) comprises a rectangular frame (81), the bottom wall of the inner cavity of the rectangular frame (81) is fixedly connected with a rack (82), the upper portion of the outer surface of the rack (82) is meshingly connected with a gear (83), the middle portion of the right end of the outer surface of the gear (83) is fixedly connected with a second rotating shaft (84), and the middle portion of the left end of the outer surface of the gear (83) is fixedly connected to the right end of the outer surface of the first rotating shaft (73).

7. A cutting device for producing high temperature resistant foamed boards according to claim 6, characterized in that: The cutting mechanism (9) comprises a movable kit (91), the left and right ends of the lower outer surface of the movable kit (91) are fixedly connected to T-shaped blocks (92), the lower end of the outer surface of the movable kit (91) is fixedly connected to an electric telescopic rod 2 (93), the lower piston rod output end of the electric telescopic rod 2 (93) is fixedly connected to a cutting blade (94), and the upper inner cavity of the movable kit (91) is rotatably connected to the right outer surface of the second rotating shaft (84).

Citation Information

Patent Citations

  • Cutting device for foam board production

    CN219788637U