A cement foaming board production device

By designing molding components that automatically transport and fix mold frames, placement components that automatically place and cut plastic films, casting components that improve slurry uniformity through oscillation mechanisms, and quickly place and control the placement components of glass fiber webs, the problems of low molding efficiency of cement foam boards and slurry falling into the mold in the prior art are solved, and efficient production of cement foam boards is achieved.

CN119704378BActive Publication Date: 2025-06-27JIANGSU RISHENG ELECTRIC MASCH CO LTD
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Patent Information

Application Number
CN202510232404.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-06-27
Estimated Expiration
2045-02-28

AI Technical Summary

Technical Problem

The existing cement foamed plate molding device cannot effectively improve the forming efficiency of foamed cement plates, and it is impossible to prevent solidified slurry from falling into the mold.

Method used

A cement foam board production device is designed, including forming components, placement components 1, casting components and placement components 2. The molded components are automatically transported and fixed mold frames, and the placement components are placed automatically and cut plastic films. The casting components improve slurry uniformity through oscillation mechanisms and clean the solidified slurry. The placement components are placed quickly and control the glass fiber mesh.

Benefits of technology

The molding efficiency of foamed cement boards and the stability of the mold frame are improved, the slurry uniformity during the pouring process and the effective placement of the glass fiber web are ensured, and the slurry leakage and excessive mixing are avoided.

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Abstract

The present invention discloses a production device for cement foamed boards, which relates to the technical field of cement foamed board forming. It includes a forming component for transporting a mold frame. The forming component clamps the mold frame and drives the mold frame to different working positions. On the side of the forming component, there are a placing component one, a pouring component, and a placing component two. The placing component one automatically lays a plastic film on the forming component, improving the laying effect and efficiency of the plastic film. The pouring component automatically fills while improving the uniformity and flatness of the slurry in the mold frame. At the same time, the pouring component cleans the discharge ports of the first feed pipe and the second feed pipe. The placing component two automatically lays a fiberglass mesh on the mold frame and controls the pressure when placing the fiberglass mesh. The present invention realizes the full-automatic production of cement foamed boards, improves the production efficiency of cement foaming, and at the same time improves the filling efficiency of the slurry in the mold frame.
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Description

Technical Field

[0001] The present invention relates to the technical field of cement foamed board forming, and particularly relates to a cement foamed board production device. Background Art

[0002] Foamed cement board is a lightweight building material formed by adding a foaming agent to a cement-based material to form a uniform bubble structure. Due to its good heat insulation performance, sound insulation effect and fire resistance, foamed cement board is widely used in the construction field, especially for heat insulation, sound insulation and fire protection treatment of walls, ceilings, floors and other parts. In addition, it also has good compressive strength and durability, and is suitable for the decoration and insulation layer of interior and exterior walls, improving the energy-saving effect of buildings.

[0003] The Chinese utility model patent with the publication number CN205614813U discloses a foamed cement board core forming mold and a forming device. This device improves the heat dissipation efficiency of the foamed cement board by setting a partition board, and at the same time ensures that the temperature difference in the mold will not be too large, improving the forming qualification rate of the foamed cement board. However, this device cannot effectively improve the forming efficiency of the foamed cement board, and at the same time cannot avoid the solidified slurry from falling into the mold. Summary of the Invention

[0004] In view of the above technical problems, the present invention discloses a cement foamed board production device.

[0005] The technical solution adopted by the present invention to solve the above technical problems is: a cement foamed board production device, including a forming assembly. The forming assembly includes a base, a placement rack is arranged on the base, a mold frame is placed on the placement rack, a plastic film and a fiberglass mesh are laid at the lower end of the mold frame, and multiple groups of adsorption holes are arranged on the placement rack to fix the plastic film. A placement assembly one, a pouring assembly and a placement assembly two are arranged on the side of the base. The placement assembly one includes a support frame, an adjusting frame one is arranged on the support frame, a shearing mechanism and a film roll are arranged on the adjusting frame one, and the shearing mechanism cuts the film roll into plastic film and places it on the placement rack. The pouring assembly includes a mounting seat, an adjusting frame two is arranged on the mounting seat, a feed pipe one, a feed pipe two and a fixing frame are arranged on the adjusting frame two, an oscillation mechanism is arranged on the fixing frame, the feed pipe one and the feed pipe two fill the slurry into the mold frame, and a cleaning mechanism is slidably arranged on the mounting seat to clean the solidified slurry on the feed pipe one and the feed pipe two. The placement assembly two includes an adjusting frame three slidably mounted on the base, a picking and placing mechanism and a placement box are arranged on the adjusting frame three, multiple groups of fiberglass meshes are placed in the placement box, and the picking and placing mechanism places the fiberglass mesh on the mold frame.

[0006] Further, a plurality of sets of clamping frames I and clamping frames II are slidably arranged on the placing rack, and a plurality of sets of wire meshes and row frames are arranged in the mold frame.

[0007] Further, the shearing mechanism includes a material dragging rack slidably mounted on the adjusting frame I, a film roll rotatably arranged on the material dragging rack, a cutting frame slidably arranged on the material dragging rack, and a cutting knife slidably arranged in the cutting frame.

[0008] Further, the shearing mechanism further includes an adjusting block slidably mounted in the adjusting frame I, an adsorption frame rotatably arranged on the adjusting block, and a pressing frame I slidably arranged on the adsorption frame.

[0009] Further, feeding pipes III are slidably arranged at one ends of the feeding pipe I and the feeding pipe II close to the base, and flap plates are rotatably arranged inside the feeding pipe I and the feeding pipe II.

[0010] Further, the vibration mechanism includes a vibration rack slidably mounted inside the fixed rack, a plurality of sets of vibration columns slidably arranged on the vibration rack, springs arranged between the vibration columns and the vibration rack, a cam rotatably arranged inside the vibration rack, and the cam is in contact with the vibration columns.

[0011] Further, the cleaning mechanism includes support columns mounted on the support plate, and a plurality of sets of cleaning frames I and cleaning frames II are arranged on the support columns.

[0012] Further, the picking and placing mechanism includes a mounting column slidably mounted on the adjusting frame III, an adjusting plate rotatably arranged on the mounting column, a connecting column slidably arranged on the adjusting plate, an adsorption plate arranged on the connecting column, and a pressing frame II slidably arranged on the adsorption plate.

[0013] The beneficial effects of the present invention compared with the prior art are as follows: The forming assembly provided by the present invention automatically transports the mold frame, improves the forming efficiency of the foamed cement board, and at the same time fixes the mold frame to improve the stability during the pouring process of the mold frame. The placing assembly I provided by the present invention automatically places the plastic film on the placing rack and automatically cuts the film roll, improves the placing efficiency and flatness of the plastic film, and ensures the effective separation of the poured mold frame from the placing rack. The pouring assembly provided by the present invention pours the mold frame, improves the uniformity of the slurry in the mold frame by the movement of the pouring assembly, avoids the leakage or excessive mixing of the slurry caused by the shaking during the pouring process of the mold frame, and the pouring assembly cleans the discharge ports of the feeding pipe I and the feeding pipe II to prevent the solidified slurry from entering the mold frame. The placing assembly II provided by the present invention quickly places the fiberglass mesh in the mold frame and controls the penetration of the fiberglass mesh and the slurry to ensure the placing effect of the fiberglass mesh. Description of the Drawings

[0014] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0015] Figure 2 This is a right view of the overall structure of the present invention.

[0016] Figure 3 is Figure 2 a sectional view of the structure in the A-A direction in

[0017] Figure 4 This is a schematic diagram of the forming component structure of the present invention.

[0018] Figure 5 This is a schematic diagram of the partial structure of the forming component of the present invention.

[0019] Figure 6 This is a sectional view of the structure of the placement component 1 of the present invention.

[0020] Figure 7 is Figure 6 a sectional view of the structure in the B-B direction in

[0021] Figure 8 This is a schematic diagram of the partial structure of the placement component 1 of the present invention.

[0022] Figure 9 This is a front view of the structure of the pouring component of the present invention.

[0023] Figure 10 is Figure 9 a sectional view of the structure in the C-C direction in

[0024] Figure 11 This is a sectional view of the partial structure of the pouring component of the present invention.

[0025] Figure 12 This is a schematic diagram of the partial structure of the pouring component of the present invention.

[0026] Figure 13 This is a schematic diagram of the structure of the placement component 2 of the present invention.

[0027] Figure 14 This is a schematic diagram of the partial structure of the placement component 2 of the present invention.

[0028] Figure 15 This is a sectional view of the partial structure of the placement component 2 of the present invention.

[0029] Reference numerals: 1 - forming assembly; 2 - first placing assembly; 3 - pouring assembly; 4 - second placing assembly; 101 - base; 102 - placing rack; 103 - first clamping rack; 104 - second clamping rack; 105 - mold frame; 106 - gantry; 107 - wire mesh; 108 - plastic film; 109 - fiberglass mesh; 201 - support frame; 202 - first adjusting frame; 203 - material dragging rack; 204 - limiting rod; 205 - limiting roller; 206 - film roll; 207 - adjusting block; 208 - adsorption rack; 209 - first pressing rack; 210 - cutting rack; 211 - cutting knife; 301 - first feed pipe; 302 - second feed pipe; 303 - second adjusting frame; 304 - fixing frame; 305 - vibrating rack; 306 - mounting seat; 307 - support plate; 308 - support column; 309 - first cleaning rack; 310 - vibrating column; 311 - spring; 312 - cam; 313 - second cleaning rack; 314 - flap; 315 - third feed pipe; 401 - third adjusting frame; 402 - placing box; 403 - mounting column; 404 - adjusting plate; 405 - connecting column; 406 - adsorption plate; 407 - second pressing rack; 408 - lifting plate. Detailed implementation mode

[0030] Reference Figures 1 to 15 As shown in the figure, a production device for cement foam boards includes a forming assembly 1 for fixing and conveying a mold frame 105. A first placing assembly 2, a pouring assembly 3, and a second placing assembly 4 are arranged on the forming assembly 1. The first placing assembly 2 cuts a film roll 206 into a plastic film 108 and places the plastic film 108 on the forming assembly 1, improving the placing efficiency and effect of the plastic film 108. The pouring assembly 3 injects cement and foamed cement into the mold frame 105. While injecting, the pouring assembly 3 knocks on the mold frame 105 to improve the uniformity of the slurry filling in the mold frame 105, and the pouring assembly 3 clears the solidified slurry on the first feed pipe 301 and the second feed pipe 302. The second placing assembly 4 places a fiberglass mesh 109 on the mold frame 105 and controls the penetration effect of the fiberglass mesh 109 and the cement. The present invention automatically completes the production of cement foam boards, improves the placing effect of the plastic film 108 and the fiberglass mesh 109, and improves the production efficiency of cement foam boards.

[0031] The forming component 1 includes a base 101, on which a placement rack 102 is slidably arranged. On the placement rack 102, multiple groups of first clamping racks 103 and second clamping racks 104 are slidably arranged. Driving the first clamping racks 103 and the second clamping racks 104 to slide on the placement rack 102 realizes the clamping of the mold frame 105. The mold frame 105 is placed on the placement rack 102. A plastic film 108 and a fiberglass mesh 109 are placed between the mold frame 105 and the placement rack 102. The plastic film 108 is used to isolate the placement rack 102 from the mold frame 105, preventing the mold frame 105 from being difficult to detach from the placement rack 102 after molding. Multiple groups of wire meshes 107 are arranged inside the mold frame 105. Row frames 106 are arranged on both the upper and lower surfaces of the mold frame 105. Place the mold frame 105 on the placement rack 102, drive multiple groups of first clamping racks 103 and second clamping racks 104 to move to complete the fixation of the placement rack 102. Drive the placement rack 102 to slide on the base 101, and the placement rack 102 drives the mold frame 105 to move, and the placement rack 102 drives the mold frame 105 to reach different working positions.

[0032] The placing component 1-2 includes a support frame 201 installed on the base 101 and multiple groups of adsorption holes. The adsorption holes fix the plastic film 108 to prevent the plastic film 108 from shifting during the pouring of the mold frame 105. A first adjusting frame 202 is slidably arranged on the support frame 201. A first adjusting block 207 and a material dragging frame 203 are slidably arranged at the lower end of the first adjusting frame 202. An adsorption frame 208 is rotatably arranged on the first adjusting block 207. Pressing frames 1-209 are slidably arranged on both sides of the adsorption frame 208. The adsorption frame 208 adsorbs the film roll 206, and the pressing frames 1-209 press the film roll 206. A film roll 206 is rotatably arranged at the lower end of the material dragging frame 203. A limiting rod 204 is rotatably arranged on one side of the material dragging frame 203. A limiting roller 205 is rotatably arranged on the limiting rod 204. The limiting rod 204 is driven to rotate on the material dragging frame 203, and the material dragging frame 203 drives the limiting roller 205 to fit with the film roll 206. When the film roll 206 rotates, the limiting roller 205 rotates synchronously. The limiting roller 205 limits the film roll 206 to prevent the film roll 206 from spreading. A cutting frame 210 is slidably arranged on the other side of the material dragging frame 203. A cutting knife 211 is slidably arranged in the cutting frame 210. The cutting knife 211 cuts the film roll 206. When cutting the film roll 206, the first adjusting frame 202 is driven to slide on the support frame 201. The first adjusting frame 202 drives the film roll 206 to fit with the placing frame 102. The first adjusting block 207 is driven to slide in the first adjusting frame 202. The first adjusting block 207 drives the adsorption frame 208 to move. The adsorption frame 208 is driven to rotate on the first adjusting block 207 so that the adsorption frame 208 is aligned with the film roll 206. The adsorption frame 208 is driven to work, and the adsorption frame 208 adsorbs the film roll 206. The adsorption frame 208 is driven to reset. Then the material dragging frame 203 is driven to slide on the first adjusting frame 202. The material dragging frame 203 drives the film roll 206 to move away from the first adjusting block 207. At this time, the film roll 206 is pulled open. When the length of the unfolded film roll 206 is greater than the length of the mold frame 105, the driving of the material dragging frame 203 is stopped. At this time, the pressing frames 1-209 are driven to slide on the adsorption frame 208. The pressing frames 1-209 press the film roll 206 on the placing frame 102. The cutting knife 211 is driven to slide in the cutting frame 210. The cutting knife 211 extends out of the cutting frame 210. The cutting frame 210 is driven to slide on the material dragging frame 203. The cutting frame 210 drives the cutting knife 211 to move. The cutting knife 211 cuts the film roll 206. At this time, the film roll 206 is cut into the plastic film 108 and placed on the base 101. The first adjusting frame 202 is driven to reset, and the placement of the plastic film 108 is completed.

[0033] The pouring assembly 3 includes a mounting base 306 slidably mounted on the base 101. An adjusting frame II 303 is provided on the mounting base 306. A fixing frame 304 is slidably provided on the adjusting frame II 303. A first feed pipe 301 and a second feed pipe 302 are respectively provided on both sides of the fixing frame 304. The first feed pipe 301 pours cement into the mold frame 105, and the second feed pipe 302 pours foamed cement into the mold frame 105. A group of flap plates 314 are rotatably provided in both the first feed pipe 301 and the second feed pipe 302. The flap plates 314 close the first feed pipe 301 and the second feed pipe 302. Discharge ports are provided at the lower ends of the first feed pipe 301 and the second feed pipe 302. Third feed pipes 315 are slidably provided on the discharge ports. The third feed pipes 315 are driven to slide in the first feed pipe 301 or the second feed pipe 302, so that the third feed pipes 315 are close to the mold frame 105, avoiding splashing when pouring the slurry. A support plate 307 is slidably provided on the mounting base 306. Two groups of support columns 308 are provided on the support plate 307. A first cleaning frame 309 and a second cleaning frame 313 are rotatably provided on both groups of support columns 308. The support plate 307 is driven to slide on the mounting base 306. The support plate 307 drives the two groups of support columns 308 to align with the first feed pipe 301 and the second feed pipe 302. Subsequently, the fixing frame 304 is driven to slide on the adjusting frame II 303. The fixing frame 304 drives the first feed pipe 301 and the second feed pipe 302 to descend. The first feed pipe 301 and the second feed pipe 302 drive the third feed pipes 315 to be inserted on the support columns 308. The first cleaning frame 309 and the second cleaning frame 313 are driven to rotate. The first cleaning frame 309 and the second cleaning frame 313 remove the solidified slurry on the first feed pipe 301, the second feed pipe 302 and the third feed pipes 315, avoiding the solidified slurry entering the mold frame 105 when pouring the mold frame 105, resulting in quality problems of the foamed cement board. An oscillation frame 305 is slidably provided in the fixing frame 304. Two groups of oscillation columns 310 are slidably provided in the oscillation frame 305. Springs 311 are provided between the oscillation columns 310 and the oscillation frame 305. A cam 312 is rotatably provided in the oscillation frame 305. The cam 312 is in contact with the oscillation columns 310. The oscillation frame 305 is driven to slide in the fixing frame 304. The oscillation frame 305 drives the oscillation columns 310 to approach the mold frame 105. The cam 312 is driven to rotate. The cam 312 pushes the oscillation columns 310 to reciprocate in the oscillation frame 305. The oscillation columns 310 knock on the mold frame 105, improving the flow rate of the slurry in the mold frame 105.

[0034] The placing component two 4 includes an adjusting frame three 401 slidably mounted on the base 101. An installation column 403 is slidably arranged on the adjusting frame three 401. An adjusting plate 404 is rotatably arranged on the installation column 403. A connecting column 405 is slidably arranged on the adjusting plate 404. An adsorption plate 406 is arranged on the connecting column 405. The adsorption plate 406 adsorbs the fiberglass mesh 109. A plurality of pressing frames two 407 are slidably arranged on the adsorption plate 406. The pressing frames two 407 press the fiberglass mesh 109. A placing box 402 is arranged on the side of the adjusting frame three 401. A plurality of fiberglass meshes 109 are placed in the placing box 402. A lifting plate 408 is slidably arranged in the placing box 402. When the lifting plate 408 moves in the placing box 402, it drives the fiberglass mesh 109 to move. When placing the fiberglass mesh 109, drive the installation column 403 to slide on the adjusting frame three 401. The installation column 403 drives the adjusting plate 404 to move. Drive the adjusting plate 404 to rotate on the installation column 403. The adjusting plate 404 drives the connecting column 405 and the adsorption plate 406 to rotate. After the adsorption plate 406 is aligned with the fiberglass mesh 109 in the placing box 402, drive the connecting column 405 to slide in the adjusting plate 404. The connecting column 405 drives the adsorption plate 406 to fit with the fiberglass mesh 109. Drive the adsorption plate 406 to work. The adsorption plate 406 adsorbs the fiberglass mesh 109. Drive the adjusting plate 404 to reset. Drive the installation column 403 to slide on the adjusting frame three 401. The adjusting plate 404 drives the fiberglass mesh 109 to move and place the fiberglass mesh 109 in the mold frame 105. After putting down the fiberglass mesh 109, drive the pressing frames two 407 to slide on the adsorption plate 406. The pressing frames two 407 press the fiberglass mesh 109 to ensure that the slurry penetrates the fiberglass mesh 109.

[0035] Working principle: During operation, the driving mechanism moves the placement rack 102 to slide on the base 101. After the placement rack 102 reaches below the first adjustment rack 202, it drives the first adjustment rack 202 to slide on the support frame 201. Subsequently, it drives the first adjustment rack 202 to slide on the support frame 201 again. The first adjustment rack 202 drives the film roll 206 to fit with the placement rack 102. Then, it drives the adjustment block 207 to slide within the first adjustment rack 202. The adjustment block 207 drives the adsorption rack 208 to move. It drives the adsorption rack 208 to rotate on the adjustment block 207 so that the adsorption rack 208 aligns with the film roll 206. Then, it drives the adsorption rack 208 to work, and the adsorption rack 208 adsorbs the film roll 206. It drives the adsorption rack 208 to drive the film roll 206 to fit with the placement rack 102. It drives the material dragging rack 203 to slide on the first adjustment rack 202. The material dragging rack 203 drives the film roll 206 to move away from the adjustment block 207. After the film roll 206 is unrolled, it drives the first pressing rack 209 to slide on the adsorption rack 208. The first pressing rack 209 presses the film roll 206 onto the placement rack 102. It drives the cutting knife 211 to slide within the cutting rack 210, and the cutting knife 211 extends out of the cutting rack 210. It drives the cutting rack 210 to slide on the material dragging rack 203. The cutting rack 210 drives the cutting knife 211 to move, and the cutting knife 211 cuts the film roll 206. At this time, the film roll 206 is cut into plastic film 108 and placed on the base 101. Then, it drives the first adjustment rack 202 to reset, completing the placement of the plastic film 108.

[0036] After the placement of the plastic film 108 is completed, the first layer of fiberglass mesh 109 is placed. It drives the mounting post 403 to slide on the third adjustment rack 401. The mounting post 403 drives the adjustment plate 404 to move. It drives the adjustment plate 404 to rotate on the mounting post 403. The adjustment plate 404 drives the connecting post 405 and the adsorption plate 406 to rotate. After the adsorption plate 406 aligns with the fiberglass mesh 109 in the placement box 402, it drives the connecting post 405 to slide within the adjustment plate 404. The connecting post 405 drives the adsorption plate 406 to fit with the fiberglass mesh 109. It drives the adsorption plate 406 to work, and the adsorption plate 406 adsorbs the fiberglass mesh 109. Then, it drives the adjustment plate 404 to reset. It drives the mounting post 403 to slide on the third adjustment rack 401, and the adjustment plate 404 drives the fiberglass mesh 109 to move and place the fiberglass mesh 109 into the mold frame 105.

[0037] Place the mold frame 105 on the placement rack 102, drive multiple groups of the first clamping racks 103 and the second clamping racks 104 to approach each other, and the first clamping racks 103 and the second clamping racks 104 clamp the mold frame 105. At this time, the fixation of the mold frame 105 is completed. Drive the placement rack 102 to slide on the base 101, and the placement rack 102 drives the mold frame 105 to reach below the first feed pipe 301 and the second feed pipe 302. Drive the fixing frame 304 to slide in the second adjusting frame 303, and the fixing frame 304 drives the first feed pipe 301 and the second feed pipe 302 to approach the mold frame 105. At the same time, drive the two groups of the third feed pipes 315 to move, and the third feed pipes 315 approach the mold frame 105. First, drive the flap 314 in the first feed pipe 301 to rotate, and the flap 314 releases the closure of the first feed pipe 301. The first feed pipe 301 pours cement into the mold frame 105. During the pouring, drive the mounting seat 306 to slide on the base 101 to improve the uniformity of the cement in the mold frame 105. After the pouring is completed, drive the flap 314 in the first feed pipe 301 to rotate to complete the closure of the first feed pipe 301. Subsequently, drive the flap 314 in the second feed pipe 302 to rotate, and the flap 314 releases the closure of the second feed pipe 302. The second feed pipe 302 pours foamed cement into the mold frame 105. After the pouring of the foamed cement is completed, drive the flap 314 to rotate, and the flap 314 completes the closure of the second feed pipe 302. Drive the flap 314 in the first feed pipe 301 to rotate again, and the first feed pipe 301 pours cement into the mold frame 105. At this time, the pouring of the mold frame 105 is completed. While pouring the mold frame 105, drive the vibrating frame 305 to slide in the fixing frame 304. After the vibrating frame 305 approaches the mold frame 105, drive the cam 312 to rotate, and the cam 312 drives the vibrating column 310 to reciprocate in the vibrating frame 305. The vibrating column 310 knocks on the mold frame 105 to improve the diffusion speed and uniformity of the slurry in the mold frame 105.

[0038] After the pouring is completed, cover a fiberglass mesh 109 on the upper end of the mold frame 105. Drive the third adjusting frame 401 and the connecting column 405 to place the fiberglass mesh 109 above the mold frame 105. Drive the second pressing frame 407 to move, and the second pressing frame 407 presses the fiberglass mesh 109 on the mold frame 105 to ensure that the slurry penetrates the fiberglass mesh 109. At this time, the formation of the foamed cement board is completed, and it can be used after solidification and curing.

[0039] After the discharge ports of the first feed pipe 301 and the second feed pipe 302 have been working for a long time, solidified slurry will accumulate at the discharge ports. To prevent the solidified slurry from entering the mold frame 105 and affecting the quality of the foamed cement board, the discharge ports of the second feed pipe 302 and the first feed pipe 301 are cleaned regularly. The support plate 307 is driven to slide on the mounting seat 306. The support plate 307 drives the two groups of support columns 308 to align with the first feed pipe 301 and the second feed pipe 302. Subsequently, the fixing frame 304 is driven to slide on the second adjusting frame 303. The fixing frame 304 drives the first feed pipe 301 and the second feed pipe 302 to descend. The first feed pipe 301 and the second feed pipe 302 drive the third feed pipe 315 to be inserted onto the support columns 308. The first cleaning frame 309 and the second cleaning frame 313 are driven to rotate, and the first cleaning frame 309 and the second cleaning frame 313 remove the solidified slurry on the first feed pipe 301, the second feed pipe 302, and the third feed pipe 315.

Claims

1. A cement foam board production device, comprising a molding assembly (1), wherein the molding assembly (1) comprises a base (101), characterized in that: The base (101) is provided with a placement rack (102), a mold frame (105) is placed on the placement rack (102), a plastic film (108) and a glass fiber mesh (109) are laid on the lower end of the mold frame (105), a plurality of adsorption holes are provided on the placement rack (102), and the adsorption holes are used to fix the plastic film (108), a placement component 1 (2), a casting component (3), and a placement component 2 (4) are provided on the side of the base (101), the placement component 1 (2) comprises a support rack (201), an adjustment rack 1 (202) is provided on the support rack (201), a shearing mechanism and a film roll (206) are provided on the adjustment rack 1 (202), the shearing mechanism shears the film roll (206) into plastic film (108) and places it on the placement rack (102), the casting component (3) comprises a mounting seat (306), the mounting seat (306) The mounting seat (306) is provided with an adjusting frame 2 (303), the adjusting frame 2 (303) is provided with a feeding pipe 1 (301), a feeding pipe 2 (302) and a fixing frame (304), the fixing frame (304) is provided with an oscillating mechanism, the feeding pipe 1 (301) and the feeding pipe 2 (302) fill slurry into the mold frame (105), the mounting seat (306) is slidably provided with a cleaning mechanism, the cleaning mechanism cleans the solidified slurry on the feeding pipe 1 (301) and the feeding pipe 2 (302), the placing component 2 (4) comprises an adjusting frame 3 (401) slidably mounted on the base (101), the adjusting frame 3 (401) is provided with a taking-and-placing mechanism and a placing box (402), a plurality of groups of glass fiber meshes (109) are placed in the placing box (402), and the taking-and-placing mechanism places the glass fiber meshes (109) on the mold frame (105); The shearing mechanism comprises a material dragging frame (203) slidably mounted on an adjusting frame (202), a film roll (206) being rotatably mounted on the material dragging frame (203), a cutting frame (210) being slidably mounted on the material dragging frame (203), and a cutting knife (211) being slidably mounted in the cutting frame (210); The shearing mechanism further comprises an adjusting block (207) slidably mounted in the adjusting frame 1 (202); an adsorption frame (208) is rotatably mounted on the adjusting block (207); and a pressing frame 1 (209) is slidably mounted on the adsorption frame (208); Feed pipe 3 (315) is slidably provided at one end of the feed pipe 1 (301) and the feed pipe 2 (302) close to the base (101), and a flap (314) is rotatably provided inside the feed pipe 1 (301) and the feed pipe 2 (302); The oscillation mechanism comprises an oscillation frame (305) slidably mounted inside a fixed frame (304); a plurality of oscillation columns (310) are slidably arranged on the oscillation frame (305); a spring (311) is arranged between the oscillation columns (310) and the oscillation frame (305); a cam (312) is rotatably arranged inside the oscillation frame (305); and the cam (312) is in contact with the oscillation columns (310).

2. A cement foam board production device according to claim 1, characterized in that: A plurality of groups of clamping frames 1 (103) and clamping frames 2 (104) are slidably arranged on the placement frame (102), and a plurality of groups of steel wire meshes (107) and rows of frames (106) are arranged in the mold frame (105).

3. A cement foam board production device according to claim 1, characterized in that: The cleaning mechanism comprises a support column (308) mounted on a support plate (307), and a plurality of cleaning racks (309) and (313) are arranged on the support column (308).

4. A cement foam board production device according to claim 1, characterized in that: The pick-and-place mechanism comprises a mounting column (403) slidably mounted on an adjustment frame three (401); an adjustment plate (404) is rotatably mounted on the mounting column (403); a connecting column (405) is slidably mounted on the adjustment plate (404); an adsorption plate (406) is mounted on the connecting column (405); and a pressing frame two (407) is slidably mounted on the adsorption plate (406).

Citation Information

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