Thermal insulation wallboard silk screen cutting device

By designing an insulation wall panel wire mesh cutting device and utilizing the transverse and longitudinal movement mechanisms to achieve synchronous double-sided cutting of the steel wire mesh of the composite insulation wall panel, the problem of inconvenient cutting in the existing technology is solved and the processing efficiency and cutting accuracy are improved.

CN223431282UActive Publication Date: 2025-10-14HEBEI HUIYUAN BUILDING MATERIAL +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202422811086.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-10-14
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

The existing technology lacks special equipment to perform synchronous double-sided cutting of the steel wire mesh composited with the steel wire mesh perlite composite insulation wall panel, resulting in inconvenience in processing.

Method used

A wire mesh cutting device for thermal insulation wall panels was designed. The device used a transverse movement mechanism to drive the support rod to clamp and fix the thermal insulation wall panels, and a longitudinal movement mechanism to drive the cutting components to synchronously cut the wire mesh on both sides of the wall panels. The consistency of the cutting route was ensured by transverse and longitudinal guide rails.

Benefits of technology

The steel wire mesh of the composite insulation wall panel can be cut synchronously on both sides, which improves the processing efficiency, simplifies the operation process, and avoids the damage of the substrate caused by inaccurate cutting depth.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223431282U_ABST
    Figure CN223431282U_ABST
Patent Text Reader

Abstract

The utility model discloses a thermal insulation wallboard silk screen cutting device, which belongs to the technical field of building material cutting, and comprises a transverse guide rail and a longitudinal guide rail, the transverse guide rail is connected with a pair of supporting rods in a sliding manner, and a conveying channel for clamping a thermal insulation wallboard is formed between the supporting rods; the longitudinal guide rails are arranged on the supporting rods and located on the outer side of the conveying channel, cutting parts are connected to the longitudinal guide rails in a sliding mode, the cutting parts on the different supporting rods are oppositely arranged on the two sides of the conveying channel, and cutting heads of the cutting parts face the thermal insulation wallboard. And the cutting depth of the cutting head is between the silk screen of the thermal insulation wallboard and the base plate. The transverse moving mechanism is used for driving the supporting rod to clamp and fix the thermal insulation wallboard, the longitudinal moving mechanism is used for driving the cutting component to cut silk screens on the two faces of the thermal insulation wallboard, synchronous double-face cutting is achieved, and the consistency of double-face cutting routes can be guaranteed through cooperation of the transverse guide rail and the longitudinal guide rail.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to building material cutting technical field especially, it is a kind of insulation wallboard wire mesh cutting device. BACKGROUND

[0002] Steel wire mesh frame perlite composite insulation wallboard includes the heat preservation board of inner layer, one layer of perlite board is arranged at the two side surfaces of heat preservation board, the outer side of perlite board is provided with steel wire mesh respectively, X type webbing is obliquely penetrated in heat preservation board and two layers of perlite board. Steel wire mesh frame perlite composite insulation wallboard needs to be fixed in the outer layer of perlite board when making steel wire mesh, generally the existing practice is to cut steel wire mesh into certain size, then cover steel wire mesh to the outer layer of perlite board, which needs to make multiple sizes of steel wire mesh according to different sizes of steel wire mesh frame perlite composite insulation wallboard, otherwise cutting is needed after composite steel wire mesh, but there is lack of special equipment for this cutting method in the prior art, and manual cutting is usually used, which causes inconvenience in processing.

[0003] The Chinese patent with the authorization announcement number CN 214236545 U discloses a kind of cutting device of insulation wallboard metal mesh, including two band plates, the top of two band plates one side is respectively fixed with first cutting box and second cutting box, the bottom of first cutting box inside is fixed with cutting assembly, cutting assembly includes cutting plate, cutting knife, two first electric telescopic rod, second electric telescopic rod, placement plate and first drive motor, two first electric telescopic rod are respectively fixed in the bottom of first cutting box inside and the bottom of second cutting box inside. The scheme can realize the separate processing of metal mesh, but cannot cut the steel wire mesh that has been compounded in steel wire mesh frame perlite composite insulation wallboard.

[0004] The Chinese patent with the authorization announcement number CN 217752160 U discloses a kind of building insulation wallboard cutting device, including support plate, the bottom of support plate upper surface four corners is fixedly connected in the bottom of electric hydraulic rod, the top of electric hydraulic rod is fixedly connected in the bottom of mounting plate, the upper end of support plate one side is fixedly connected in the one side of workbench, the other side of workbench is fixedly connected in the lower end of support cross section, the middle end of support cross section is screw-threaded with bolt, the bottom of bolt is fixedly connected with rubber pad. The scheme is placed on workbench and is compressed and cut, and the position of insulation wallboard can be changed by moving workbench, to realize the stable cutting of insulation wallboard, but there is no record for the cutting of steel wire mesh, and the steel wire mesh compounded in steel wire mesh frame perlite composite insulation wallboard cannot be cut.

[0005] In summary, how to use the device to cut the steel wire mesh of the steel wire mesh and perlite composite insulation wallboard, especially the synchronous cutting of the steel wire mesh on both sides is the technical problem to be solved in the field to improve the processing efficiency and simplify the operation process. Utility model content

[0006] The utility model discloses a kind of insulation wallboard wire mesh cutting devices, to solve the problems existing in the prior art described above, utilize horizontal shift mechanism to drive support rod to clamp and fix insulation wallboard, utilize longitudinal shift mechanism to drive cutting component to cut the wire mesh on two sides of insulation wallboard, realize synchronous double-sided cutting, and utilize horizontal guide rail and longitudinal guide rail cooperation can guarantee the consistency of double-sided cutting route.

[0007] To achieve the above object, the utility model provides the following scheme:

[0008] The utility model provides a kind of insulation wallboard wire mesh cutting device, including horizontal guide rail and longitudinal guide rail, a pair of support rods are slidably connected on the horizontal guide rail, the support rod forms the conveying channel for clamping insulation wallboard between, the longitudinal guide rail is arranged on the outer side of the conveying channel on the support rod, cutting component is slidably connected on the longitudinal guide rail, the cutting component on different support rods is oppositely arranged on the two sides of the conveying channel, and the cutting head of the cutting component is towards the insulation wallboard, and the cutting depth of the cutting head is between the wire mesh and base plate of the insulation wallboard.

[0009] Preferably, longitudinal guide rail is slidably provided with longitudinal shift mechanism, the longitudinal shift mechanism includes longitudinal shift plate slidably connected with the longitudinal guide rail, the cutting component installed on the longitudinal shift plate and longitudinal shift drive mechanism driving the longitudinal shift plate to move, the longitudinal shift plate includes first support plate and second support plate slidably connected, and the first support plate and the second support plate are slidably connected on different longitudinal guide rails.

[0010] Preferably, the first support plate is provided with a fixing seat, the fixing seat is provided with a sliding seat, the cutting component is installed on the sliding seat, and the sliding seat and the fixing seat are driven and connected by telescopic cylinder.

[0011] Preferably, it includes main frame, the main frame adopts rectangular frame, the horizontal guide rail is arranged on the crossbeam of the rectangular frame, and the longitudinal guide rail is arranged on the stand column of the rectangular frame.

[0012] Preferably, the longitudinal shift drive mechanism includes winding drum installed on the top of the main frame, hanger connected on the second support plate and bogie installed on the main frame and located directly above the hanger, and the rope connected on the winding drum is connected on the hanger through the bogie.

[0013] Preferably, the bottom of the rectangular frame is provided with a sliding groove which is slidingly connected to a ground rail, and the extending direction of the ground rail is parallel to the extending direction of the conveying channel.

[0014] Preferably, the support rod is provided with a correcting mechanism, the correcting mechanism comprises a longitudinal fixed part fixed to the support rod, a longitudinal movable part connected to the longitudinal fixed part, a transverse fixed part connected to the longitudinal movable part, and a transverse movable part connected to the transverse fixed part, and the transverse movable part is provided with a groove for hanging the wire mesh.

[0015] Preferably, the transverse guide rail is slidingly provided with a transverse moving mechanism, the transverse moving mechanism comprises a transverse moving plate slidingly connected to the transverse guide rail, a support rod mounted on the transverse moving plate, and a transverse moving driving mechanism for driving the transverse moving plate to move, the transverse moving driving mechanism comprises a transverse moving driving cylinder, and the fixed end and the movable end of the transverse moving driving cylinder are connected to the connecting ends on different transverse moving plates.

[0016] Preferably, the support rod is provided with a protective plate, the protective plates of the support rods on the same transverse moving plate are oppositely arranged, and the oppositely arranged protective plates have a cutting gap through which the cutting head passes.

[0017] Preferably, the inlet side and the outlet side of the conveying channel are respectively provided with a rolling support, and the rolling support comprises a frame body and a roller rotatingly arranged on the frame body and used for supporting the thermal insulation wallboard.

[0018] The present application has the following technical effects compared with the prior art:

[0019] (1) The transverse moving mechanism drives the support rod to clamp and fix the thermal insulation wallboard, the longitudinal moving mechanism drives the cutting part to cut the wire mesh on both sides of the thermal insulation wallboard, synchronous double-sided cutting is realized, the consistency of the double-sided cutting route can be ensured by the cooperation of the transverse guide rail and the longitudinal guide rail, the processing efficiency can be improved and the operation process can be simplified compared with manual cutting.

[0020] (2) The first support plate and the second support plate are slidingly connected to each other and are slidingly connected to different longitudinal guide rails, so that the transverse moving mechanism can move transversely to clamp and loosen the thermal insulation wallboard, and the stability of the longitudinal moving mechanism can be improved by the guiding sliding of the multiple longitudinal guide rails.

[0021] (3) The cutting part is driven by the telescopic cylinder, and under the driving of the transverse moving mechanism, the cutting part on the longitudinal moving mechanism can be driven to the position of the thermal insulation wallboard, and then the telescopic cylinder drives the cutting part to cut the wire mesh by the cutting head, that is, the position of the cutting head is coarsely adjusted by the transverse moving mechanism and finely adjusted by the telescopic cylinder, so that the wire mesh can be accurately cut, and damage of the cutting head to the base plate of the thermal insulation wallboard caused by excessively deep cutting depth is avoided;

[0022] (4) The correction mechanism is arranged on the supporting rod, the transverse moving part of the correction mechanism can hang and take the wire mesh, so that the wire mesh with the edge bent can be pulled away from the base plate, and then the cutting head of the cutting part can cut the wire mesh at the edge, and the cutting of the wire mesh is successfully completed. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0024] Figure 1 It is a front structure schematic view of the present application.

[0025] Figure 2 It is a side structure schematic view of the present application.

[0026] Figure 3 It is a bottom structure schematic view of the present application.

[0027] Figure 4 It is a main frame structure schematic view of the present application.

[0028] Figure 5 It is a longitudinal moving mechanism structure schematic view of the present application.

[0029] Figure 6 It is a correction mechanism structure schematic view of the present application.

[0030] Figure 7 It is a rolling support structure schematic view of the present application.

[0031] Figure 8 It is a thermal insulation wallboard structure schematic view of the present application.

[0032] Among them, 1. transverse movement mechanism; 11. transverse movement plate; 12. support rod; 13. protective plate; 2. longitudinal movement mechanism; 21. first support plate; 22. second support plate; 23. fixed seat; 24. sliding seat; 25. telescopic cylinder; 26. cutting component; 261. cutting head; 3. main frame; 31. transverse guide rail; 32. longitudinal guide rail; 33. slide groove; 4. correction mechanism; 41. longitudinal fixed part; 42. longitudinal movable part; 43. transverse fixed part; 44. transverse movable part; 441. groove; 5. ground rail; 6. insulation wall panel; 61. base plate; 62. wire mesh; 7. longitudinal movement drive mechanism; 71. winding drum; 72. bogie; 73. hanger; 8. transverse movement drive mechanism; 81. transverse movement drive cylinder; 82. connecting end; 9. rolling bracket; 91. frame; 92. roller; 93. frame shaft. DETAILED DESCRIPTION

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0034] The purpose of the utility model is to provide a wire mesh cutting device for thermal insulation wall panels to solve the problems existing in the prior art. A transverse movement mechanism is used to drive a support rod to clamp and fix the thermal insulation wall panels, and a longitudinal movement mechanism is used to drive a cutting component to cut the wire mesh on both sides of the thermal insulation wall panels, thereby achieving synchronous double-sided cutting. The cooperation of a transverse guide rail and a longitudinal guide rail can ensure the consistency of the double-sided cutting route.

[0035] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0036] like Figures 1-8As shown, the present invention provides a device for cutting screens for thermal insulation wall panels. The thermal insulation wall panel 6 comprises an inner substrate 61 and an outer screen 62. The substrate 61 comprises an inner insulation board and perlite boards disposed on both sides of the insulation board. The screen 62 is disposed on the outermost layer. The cutting device is used to cut the screen 62. The substrate 61 is a cut or pre-made board. The screen 62 is cut at positions corresponding to the joints between adjacent substrates 61. After the screen 62 is cut, a thermal insulation wall panel 6 with a screen composite meeting the required dimensions is obtained. The cutting device includes a main frame 3 and transverse guide rails 31 and longitudinal guide rails 32 arranged on the main frame 3, wherein the main frame 3 is the main structure of the cutting device and can fix or support various components. The transverse guide rails 31 and longitudinal guide rails 32 are fixedly connected to the main frame 3, and the extension directions of the two are perpendicular to each other. It should be noted that the directions of the transverse guide rails 31 and longitudinal guide rails 32 can be horizontal and vertical, or vertical and horizontal, respectively, and are set accordingly according to whether the cutting direction of the insulation wall panel 6 is vertical or horizontal. A transverse mechanism 1 is slidably arranged on the transverse guide rail 31. In order to ensure the stability of the operation of the transverse mechanism 1, transverse guide rails 31 parallel to each other can be set at both ends of the transverse mechanism 1. The transverse mechanism 1 includes a transverse plate 11 that is slidably connected to the transverse guide rail 31, a support rod 12 mounted on the transverse plate 11, and a transverse drive mechanism 8 that drives the transverse plate 11 to move. The transverse plate 11 can be provided with a T-slot or dovetail groove structure that matches the transverse guide rail 31. The transverse drive mechanism 8 can be driven by a drive cylinder mounted on the main frame 3 or by the same transverse drive cylinder 81 mounted on two transverse drive mechanisms 8. A conveying channel for clamping the insulation wall panels 6 is formed between the support rods 12 of different transverse mechanisms 1. When the production line is running, insulation wall panels 6 are continuously moved from the inlet side to the outlet side of the conveying channel. When cutting, the insulation wall panels 6 are clamped by the relative movement of the transverse mechanism 1. A longitudinal movement mechanism 2 is slidingly provided on the longitudinal guide rail 32. The longitudinal movement mechanism 2 can be slidably supported by the longitudinal guide rail 32 provided on the main frame 3, or the longitudinal guide rail 32 can be provided on the transverse movement mechanism 1 (support rod 12) at the same time to achieve reliable support for the longitudinal movement mechanism 2. At this time, it should be noted that in order to ensure that the longitudinal movement mechanism 2 can move both laterally and longitudinally, the longitudinal movement mechanism 2 itself needs to include at least two parts that can slide relative to each other. The longitudinal movement mechanism 2 includes a longitudinal movement plate slidably connected to the longitudinal guide rail 32, a cutting component 26 installed on the longitudinal movement plate, and a longitudinal movement drive mechanism 7 that drives the longitudinal movement plate to move. The longitudinal movement plate can adopt a non-telescopic structure when it is only slidably connected to the longitudinal guide rail 32 provided on the main frame 3, and a telescopic structure when it is simultaneously slidably connected to the longitudinal guide rail 32 provided on the support rod 12. For details, please refer to the following description. The longitudinal movement drive mechanism 7 can adopt a screw nut structure, a belt structure, or a winch structure.After the support rod 12 of the transverse moving mechanism 1 clamps the thermal insulation wallboard 6, the cutting head 261 of the cutting part 26 is towards the thermal insulation wallboard 6, and the cutting depth of the cutting head 261 is between the wire mesh 62 and the base plate 61 of the thermal insulation wallboard 6, that is, under the driving action of the longitudinal moving driving mechanism 7, the cutting head 261 only cuts the surface wire mesh 62 and does not cut the internal base plate 61. The cutting head 261 can adopt saw blade type, grinding wheel type or laser type cutting form. In summary, the utility model utilizes the transverse moving mechanism 1 to drive the support rod 12 to clamp and fix the thermal insulation wallboard 6, utilizes the longitudinal moving mechanism 2 to drive the cutting part 26 to cut the wire mesh 62 of the thermal insulation wallboard 6, realizes the cutting of the wire mesh 62 compounded on the thermal insulation wallboard 6, can carry out synchronous double-sided cutting, and utilizes the horizontal guide rail 31 and the vertical guide rail 32 to cooperate and can guarantee the consistency of the double-sided cutting route, compared with manual cutting, can improve the processing efficiency and simplify the operation process.

[0037] In combination Figure 5 As shown, the longitudinal moving plate can include a first support plate 21 and a second support plate 22 connected in a horizontal sliding manner, and the sliding connection manner of the first support plate 21 and the second support plate 22 can adopt a drawer type structure, which can constrain the sliding direction of each other, keep the stability during longitudinal movement, and avoid the relative bending condition. The support rod 12 is provided with another vertical guide rail 32, the first support plate 21 is slidingly connected to the vertical guide rail 32, and the second support plate 22 is slidingly connected to the vertical guide rail 32 arranged on the main frame 3. Through the arrangement of the above structure, the transverse moving mechanism 1 can be conveniently transversely moved to clamp and loosen the thermal insulation wallboard 6, and meanwhile, the multiple vertical guide rails 32 are slidingly guided to improve the stability of the longitudinal moving mechanism 2.

[0038] In combination again Figure 5As shown, a fixed seat 23 is provided on the first support plate 21, and a sliding seat 24 is provided on the fixed seat 23. The sliding seat 24 can slide relatively on the fixed seat 23, that is, it can move toward the thermal insulation wall panel 6 and away from the thermal insulation wall panel 6. A cutting member 26 is mounted on the sliding seat 24. The cutting member 26 can adopt a saw blade structure driven by a motor. The sliding seat 24 and the fixed seat 23 are connected by a telescopic cylinder 25. When the telescopic cylinder 25 is extended, the cutting member 26 can be pushed toward the thermal insulation wall panel 6. When the telescopic cylinder 25 is retracted, the cutting member 26 can be moved away from the thermal insulation wall panel 6. The feeding direction of the cutting member 26 can be changed by using the telescopic cylinder 25 to achieve more accurate cutting of the wire mesh 62. From the above content, it can be seen that under the drive of the transverse movement mechanism 1, the cutting component 26 on the longitudinal movement mechanism 2 can be driven to the position of the insulation wall panel 6, and then the cutting component 26 is driven by the telescopic cylinder 25 to make the cutting head 261 cut the wire mesh 62, that is, the position of the cutting head 261 is subject to the coarse adjustment of the transverse movement mechanism 1 and the fine adjustment of the telescopic cylinder 25, and the wire mesh 62 can be accurately cut to avoid the cutting head 261 causing damage to the substrate 61 of the insulation wall panel 6 due to excessive cutting depth.

[0039] Combine Figure 4 and Figure 5 As shown, the longitudinal driving mechanism 7 includes a winding drum 71 installed on the top of the main frame 3, a hanger 73 connected to the second support plate 22, and a bogie 72 installed on the main frame 3 and located directly above the hanger 73. The winding drum 71 can be rotated by a motor, and the rope connected to the winding drum 71 (not shown in the figure) is connected to the hanger 73 through the bogie 72. By changing the forward and reverse rotation of the winding drum 71, the rope can be retracted and released, and then the hanger 73 can drive the longitudinal moving mechanism 2 to move along the longitudinal guide rail 32 through the second support plate 22, thereby realizing the cutting component 26 to cut the wire mesh 62 of the insulation wall panel 6.

[0040] Combine Figure 4 As shown, the transverse driving mechanism 8 may include a transverse driving cylinder 81, and a connecting end 82 is provided on the transverse plate 11. The fixed end and the movable end of the transverse driving cylinder 81 are respectively connected to the connecting ends 82 on different transverse plates 11. When the transverse driving cylinder 81 contracts, the transverse plate 11 is driven to move closer through the connecting end 82, that is, the support rod 12 is driven to move closer, thereby clamping the insulation wall panel 6. After clamping the insulation wall panel 6, the cutting component 26 is used to cut the insulation wall panel 6. When the transverse driving cylinder 81 is extended, the transverse plate 11 is driven to move away through the connecting end 82, that is, the support rod 12 is driven to move away to relax the insulation wall panel 6. At this time, the insulation wall panel 6 continues to be pushed through the conveying channel.

[0041] Combine Figure 4As shown, the support rod 12 is provided with a protective plate 13, the protective plates 13 of the support rods 12 on the same transverse moving plate 11 are oppositely arranged, and the oppositely arranged protective plates 13 have a cutting gap through which the cutting head 261 passes. The setting height of the protective plate 13 can be higher than the cutting height of the thermal insulation wallboard 6, that is, the cutting range of the cutting member 26 can be protected in real time. The protective plate 13 can block the debris and sparks generated during cutting, thereby protecting the operator and the surrounding equipment.

[0042] In combination Figure 8 As shown, the inlet side and the outlet side of the conveying channel are respectively provided with a rolling support 9, and the rolling support 9 includes a frame body 91 and a roller 92 rotatably arranged on the frame body 91 and used for supporting the thermal insulation wallboard 6. The frame body 91 can adopt two support structures arranged in parallel, and a frame shaft 93 is rotatably arranged on the support structure, and the roller 92 is sleeved on the frame shaft 93 to realize rotation. When the thermal insulation wallboard 6 is arranged on the roller 92, the roller 92 can reduce the resistance to the thermal insulation wallboard 6 through rolling as the thermal insulation wallboard 6 moves, so that the thermal insulation wallboard 6 can be smoothly conveyed in the conveying channel.

[0043] In combination Figure 5 As shown, the main frame 3 can adopt a rectangular frame, the cross beams (including the upper cross beam and the lower cross beam) of the rectangular frame are provided with transverse guide rails 31, and the two end portions of the support rod 12 are slidably connected to the transverse guide rails 31 through the transverse moving plate 11. The upright columns (including the left upright column and the right upright column) of the rectangular frame are provided with longitudinal guide rails 32, and the two ends (the first support plate 21 and the second support plate 22) of the longitudinal moving mechanism 2 are slidably connected to the longitudinal guide rails 32.

[0044] In combination again Figure 4 As shown, the bottom of the rectangular frame is provided with a sliding groove 33 slidably connected to the ground rail 5, and the extension direction of the ground rail 5 is parallel to the extension direction of the conveying channel, that is, the moving direction of the thermal insulation wallboard 6 is the same as the extension direction of the ground rail 5. After the transverse moving mechanism 1 clamps the thermal insulation wallboard 6, the cutting device as a whole can move along the direction of the ground rail 5. In this way, the thermal insulation wallboard 6 can be pushed while being cut, and after cutting is completed, the rectangular frame returns to the original position to continue clamping and cutting, thereby avoiding the stagnation of the thermal insulation wallboard 6 during cutting, which affects the work of the previous process, so that the work efficiency can be improved.

[0045] In combination Figure 6As shown, the support rod 12 is provided with a correction mechanism 4, the correction mechanism 4 includes a longitudinal fixed part 41 fixed on the support rod 12 and a longitudinal movable part 42 connected to the longitudinal fixed part 41, the longitudinal fixed part 41 can drive the longitudinal movable part 42 to reciprocatingly slide, and can be driven in the form of a gas cylinder or an oil cylinder. The longitudinal movable part 42 is connected with a transverse fixed part 43, the transverse fixed part 43 is connected with a transverse movable part 44, the transverse fixed part 43 can drive the transverse movable part 44 to reciprocatingly slide, and can be driven in the form of a gas cylinder or an oil cylinder. The transverse movable part 44 is provided with a groove 441 for hanging the screen 62. By using the groove 441 of the transverse movable part 44 to hang the screen 62, the screen 62 with the edge bent can be pulled away from the substrate 61, and then the screen 62 with the edge can be cut by the cutting head 261 of the cutting member 26, and the cutting of the screen 62 is successfully completed.

[0046] The principle and implementation mode of the specific examples are described in the utility model, and the above embodiment is only used for helping to understand the method and core idea of the utility model; meanwhile, for the general skilled in the art, according to the idea of the utility model, the specific implementation mode and application range will be changed. In conclusion, the content of the specification should not be understood as the limitation of the utility model.

Claims

1. A thermal insulation wall panel wire mesh cutting device, characterized by: It includes a transverse guide rail and a longitudinal guide rail, a pair of support rods are slidably connected to the transverse guide rail, a conveying channel for clamping the insulation wall panel is formed between the support rods, the longitudinal guide rail is provided on the support rod at the outside of the conveying channel, a cutting component is slidably connected to the longitudinal guide rail, the cutting components on different support rods are relatively arranged on both sides of the conveying channel, the cutting head of the cutting component is facing the insulation wall panel, and the cutting depth of the cutting head is between the wire mesh and the base plate of the insulation wall panel.

2. The thermal insulation wall panel wire mesh cutting device according to claim 1, characterized in that: A longitudinal movement mechanism is slidingly arranged on the longitudinal guide rail, and the longitudinal movement mechanism includes a longitudinal movement plate slidably connected to the longitudinal guide rail, the cutting component installed on the longitudinal movement plate, and a longitudinal movement drive mechanism for driving the longitudinal movement plate to move. The longitudinal movement plate includes a first support plate and a second support plate connected in a transverse sliding manner, and the first support plate and the second support plate are slidably connected to different longitudinal guide rails.

3. The thermal insulation wall panel wire mesh cutting device according to claim 2, characterized in that: A fixed seat is provided on the first supporting plate, a sliding seat is provided on the fixed seat, the cutting component is mounted on the sliding seat, and the sliding seat and the fixed seat are driven and connected by a telescopic cylinder.

4. The thermal insulation wall panel wire mesh cutting device according to any one of claims 2 or 3, characterized in that: The utility model comprises a main frame, wherein the main frame adopts a rectangular frame, the transverse guide rails are arranged on the cross beams of the rectangular frame, and the longitudinal guide rails are arranged on the columns of the rectangular frame.

5. The thermal insulation wall panel wire mesh cutting device according to claim 4, characterized in that: The longitudinal driving mechanism includes a winding drum installed on the top of the main frame, a hanger connected to the second support plate, and a bogie installed on the main frame and located directly above the hanger. The rope connected to the winding drum is connected to the hanger through the bogie.

6. The thermal insulation wall panel wire mesh cutting device according to claim 4, characterized in that: A slide groove is provided at the bottom of the rectangular frame. The slide groove is slidably connected to a ground rail. The extending direction of the ground rail is parallel to the extending direction of the conveying channel.

7. The thermal insulation wall panel wire mesh cutting device according to claim 4, characterized in that: A correction mechanism is provided on the support rod, and the correction mechanism includes a longitudinal fixing part fixed on the support rod and a longitudinal movable part connected to the longitudinal fixing part, the longitudinal movable part is connected to a transverse fixing part, the transverse fixing part is connected to a transverse movable part, and the transverse movable part is provided with a groove for hanging the wire mesh.

8. The thermal insulation wall panel wire mesh cutting device according to claim 1, characterized in that: A transverse mechanism is slidingly arranged on the transverse guide rail, and the transverse mechanism includes a transverse plate slidably connected to the transverse guide rail, a support rod installed on the transverse plate, and a transverse drive mechanism for driving the transverse plate to move. The transverse drive mechanism includes a transverse drive cylinder, and a connecting end is provided on the transverse plate. The fixed end and the movable end of the transverse drive cylinder are respectively connected to the connecting ends on different transverse plates.

9. The thermal insulation wall panel wire mesh cutting device according to claim 8, characterized in that: The support rods are provided with protective plates, and the protective plates of the support rods on the same transverse plate are arranged opposite to each other, and a cutting slot for the cutting head to pass through is provided between the oppositely arranged protective plates.

10. The thermal insulation wall panel wire mesh cutting device according to claim 1, characterized in that: The inlet side and the outlet side of the conveying channel are respectively provided with rolling brackets, and the rolling brackets include a frame body and a roller rotatably provided on the frame body for supporting the thermal insulation wall panel.

Citation Information

Patent Citations

  • Cutting device for thermal insulation wallboard metal mesh

    CN214236545U

  • Building thermal insulation wallboard cutting device

    CN217752160U