Building material reinforcing construction equipment

By designing building materials reinforcement construction equipment, including automated crushing, grinding and cleaning components, the problem of non-automation of building structure processing in the prior art is solved, and efficient pasting of carbon fiber cloth and reinforcement of building structures is achieved.

CN120042374APending Publication Date: 2025-05-27SHANDONG LONGTONGDAO BRIDGE ENG CO LTD
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Patent Information

Application Number
CN202311584309.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-25
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

The existing building structure reinforcement method cannot automatically handle the building structure, resulting in poor adhesion effect of carbon fiber cloth.

Method used

A construction equipment for reinforcement of building materials is designed, including support components, crushing components, grinding components and cleaning components. Through the automated operation of these components, automatic processing of building structures and efficient adhesion of carbon fiber cloth is achieved.

Benefits of technology

It improves the adhesion effect of carbon fiber cloth, enhances the reinforcement effect of building structure, and reduces the complexity and time of manual operation, and improves construction efficiency.

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Abstract

The invention discloses building material reinforcing construction equipment, and relates to the technical field of building material construction.The building material reinforcing construction equipment comprises a supporting assembly used for supporting the building material reinforcing construction equipment and driving all assemblies to ascend and descend, a first lifting frame is arranged on the supporting assembly, and a crushing assembly, a polishing assembly and a cleaning assembly are arranged on the first lifting frame; the crushing assembly crushes a painting layer on the surface of the wall and collects crushed waste, the grinding assembly grinds the crushed surface to be flat, the cleaning assembly removes dust on the surface of the wall, and it is guaranteed that the carbon fiber cloth is pasted more firmly. The bonding effect of the carbon fiber cloth is ensured while the treatment efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of construction material construction, and particularly relates to a construction material reinforcement construction device. Background Art

[0002] The reinforcement of building materials is a method of enhancing building structures by using different types of materials and techniques. The purpose of this practice is to improve the stability, seismic resistance, wind resistance, durability, and overall structural performance of buildings. Reinforcement materials usually have high strength and stiffness and can be used to enhance the load-bearing capacity of the original structure, enabling it to better withstand loads and external forces.

[0003] The Chinese invention patent with the publication number CN104695721B discloses a building structure reinforcement method that relies on self-generated reaction forces. This device reinforces the building structure by pasting carbon fiber cloth under the beams or slabs of the building. However, when pasting carbon fiber cloth on the building structure, multiple treatments need to be carried out on the building structure to ensure the pasting effect of the carbon fiber cloth. This device cannot automatically process the building structure. The present invention automatically processes the building structure that needs to paste carbon fiber cloth, improving the pasting effect of the carbon fiber cloth. Summary of the Invention

[0004] In view of the problems existing in the above technology, the present invention proposes a construction material reinforcement construction device.

[0005] For the above technical problems, the technical solution adopted by the present invention is: a construction material reinforcement construction device, including a support assembly. The support assembly includes a support frame, on which a lifting mechanism is provided. The lifting mechanism drives the first lifting frame to lift. An installation block and a crushing assembly are slidably arranged on the first lifting frame. An installation table is arranged on the side of the support frame, and an installation mechanism, a grinding assembly, and a cleaning assembly are arranged on the installation table. The crushing assembly and the grinding assembly are detachably installed on the installation block. The crushing assembly includes a second sliding block slidably installed on the first lifting frame. Multiple swing mechanisms and an electric cylinder are arranged on the second sliding block. The swing mechanism adjusts the angle of the electric cylinder. A crushing head is arranged on the electric cylinder, and the crushing head crushes the plaster layer of the wall. The grinding assembly includes a grinding frame, on which multiple rotating mechanisms and grinding discs are arranged. The grinding discs grind the wall. The cleaning assembly includes a cleaning frame, on which an adjusting mechanism and a hair dryer are arranged. The adjusting mechanism adjusts the angle of the hair dryer to expand the cleaning range of the hair dryer.

[0006] Furthermore, multiple universal wheels and hydraulic cylinders are arranged on the support frame. The movable end of the hydraulic cylinder is provided with a support disc, and the support disc supports the support frame.

[0007] Furthermore, the lifting mechanism includes a plurality of adjusting blocks slidably mounted on the support frame. The adjusting blocks are installed in pairs on both sides of the support frame. A first support rod is rotatably arranged on one pair of adjusting blocks, and a second support rod is rotatably arranged on the other pair of adjusting blocks. The first support rod is rotatably connected to the second support rod, and the first lifting frame is slidably connected to the first support rod and the second support rod.

[0008] Furthermore, the installation mechanism includes a first sliding block slidably mounted on the installation table. A second lifting frame is slidably arranged on the first sliding block. A clamping block is slidably arranged on the second lifting frame. The clamping block mounts the grinding assembly or the cleaning assembly on the installation block.

[0009] Furthermore, the swinging mechanism includes a third lifting frame slidably mounted on the second sliding block. An installation frame is slidably arranged on the third lifting frame. The electric cylinder is rotatably mounted on the installation frame. A first rotating rod is rotatably arranged on the third lifting frame. A third sliding block is slidably arranged on the electric cylinder. The third sliding block is rotatably connected to the first rotating rod. When the installation frame slides on the third lifting frame, it drives the electric cylinder to rotate on the installation frame.

[0010] Furthermore, the crushing assembly further includes a collection box. A first connecting block is arranged on the collection box. The first connecting block is mounted on the second sliding block.

[0011] Furthermore, the rotating mechanism includes a fourth lifting frame slidably mounted on the grinding frame. Teeth are arranged inside the fourth lifting frame. A connecting rod is rotatably arranged on the fourth lifting frame. A second gear is arranged at one end of the connecting rod. A first gear is rotatably arranged at the other end of the connecting rod. A grinding disc is rotatably arranged on the first gear.

[0012] Furthermore, the first gear meshes with the teeth on the fourth lifting frame. A plurality of racks are arranged on the grinding frame. The racks mesh with the second gear.

[0013] Furthermore, the adjusting mechanism includes a sliding frame slidably mounted on the cleaning frame. A second rotating rod and a lifting disc are arranged on the sliding frame. A swinging rod is rotatably arranged on the second rotating rod. A hair dryer is arranged at one end of the swinging rod. An adjusting ball is arranged at the other end of the swinging rod. The adjusting ball is slidably connected to the lifting disc.

[0014] The beneficial effects of the present invention compared with the prior art are as follows: (1) The support component provided in the present invention can be used for construction on walls of different heights and ensure stability during construction. The support component can automatically install a variety of different construction components, improving the applicability of the present invention; (2) The crushing component provided in the present invention crushes the coating layer on the wall surface and automatically collects the crushed coating layer while performing dust reduction treatment, reducing the impact caused by dust while improving the crushing efficiency; (3) The grinding component provided in the present invention grinds multiple treatment surfaces of the wall simultaneously, improving the grinding efficiency; (4) The cleaning component provided in the present invention automatically cleans the wall after grinding, cleaning the dust and impurities, avoiding the situation of insecure bonding when pasting carbon fiber cloth, and improving the cleaning range and effect of the cleaning component through a blower with adjustable angles. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a left view of the overall structure of the present invention.

[0016] Figure 2 It is a schematic diagram of the overall structure of the present invention.

[0017] Figure 3 It is a left view of the structure of the support component of the present invention.

[0018] Figure 4 It is a schematic diagram of a partial structure of the support component of the present invention.

[0019] Figure 5 It is a front view of the structure of the crushing component of the present invention.

[0020] Figure 6 It is a sectional view of the structure of the crushing component of the present invention.

[0021] Figure 7 It is a schematic diagram of the structure of the grinding component of the present invention.

[0022] Figure 8 It is a schematic diagram of a partial structure of the grinding component of the present invention.

[0023] Figure 9 It is a schematic diagram of the structure of the cleaning component of the present invention.

[0024] Figure 10 It is a schematic diagram of a partial structure of the cleaning component of the present invention.

[0025] Reference numerals: 1 - wall; 2 - support assembly; 3 - crushing assembly; 4 - grinding assembly; 5 - cleaning assembly; 201 - universal wheel; 202 - support plate; 203 - support frame; 204 - hydraulic cylinder; 205 - adjusting block; 206 - first support rod; 207 - second support rod; 208 - first lifting frame; 209 - mounting table; 210 - mounting block; 211 - first sliding block; 212 - second lifting frame; 213 - clamping block; 214 - placement groove; 301 - collection box; 302 - electric cylinder; 303 - crushing head; 304 - second sliding block; 305 - third lifting frame; 306 - mounting frame; 307 - first rotating rod; 308 - first connecting block; 309 - rotating frame; 310 - third sliding block; 401 - grinding frame; 402 - grinding disc; 403 - second connecting block; 404 - rack; 405 - fourth lifting frame; 406 - first gear; 407 - second gear; 408 - connecting rod; 501 - cleaning frame; 502 - lifting disc; 503 - third connecting block; 504 - sliding frame; 505 - hair dryer; 506 - second rotating rod; 507 - swinging rod; 508 - adjusting ball. Detailed implementation mode

[0026] Refer to Figures 1 to 10 As shown in a construction material reinforcement construction device, which includes a support assembly 2 for supporting the present invention and driving each component to lift. A crushing assembly 3, a grinding assembly 4 and a cleaning assembly 5 are arranged on the support assembly 2. The crushing assembly 3 crushes the plaster layer on the wall surface and collects the crushed waste. The grinding assembly 4 grinds the crushed surface flat. The cleaning assembly 5 clears the dust on the wall surface to ensure that the carbon fiber cloth is pasted more firmly.

[0027] The support assembly 2 includes a support frame 203, a plurality of universal wheels 201 are arranged at the lower end of the support frame 203, a hydraulic cylinder 204 and a mounting platform 209 are arranged on the support frame 203, a support plate 202 is arranged at the movable end of the hydraulic cylinder 204, and the support plate 202 supports the support frame 203 when it contacts the ground, and four adjustment blocks 205 are slidably arranged at the upper end of the support frame 203, and the adjustment blocks 205 are respectively installed on both sides of the support frame 203 in groups of two, and a group of adjustment blocks 205 is rotatably provided with a support The support rod 207, another set of adjustment blocks 205 is rotatably provided with a support rod 206, the support rod 206 is rotatably connected to the support rod 207, a lifting frame 208 is provided on the support rod 206 and the support rod 207, the support rod 206 is rotatably connected to the support rod 207, a mounting block 210 is slidably provided on the lifting frame 208, a grinding assembly 4 and a cleaning assembly 5 are detachably provided on the mounting block 210, a sliding block 211 is slidably provided on the mounting table 209, and a sliding block 212 is slidably provided on the mounting table 209. A lifting frame 212 is slidably provided on the block 1 211, a clamping block 213 is slidably provided on the lifting frame 212, two sets of placement slots 214 are provided on the mounting table 209, and the two sets of placement slots 214 are respectively detachably provided with a grinding component 4 and a cleaning component 5. When the two sets of adjustment blocks 205 are driven to move closer to or away from each other, the adjustment block 205 drives the support rod 1 206 and the support rod 207 to rotate, and the support rod 1 206 and the support rod 207 drive the lifting frame 1 208 to rise or fall, driving When the hydraulic cylinder 204 is moved, the hydraulic cylinder 204 drives the support plate 202 to contact the ground, the support plate 202 props up the support frame 203, drives the sliding block 1 211 to move, the sliding block 1 211 drives the lifting frame 212 and the clamping block 213 to move, drives the lifting frame 212 to move on the sliding block 1 211, the lifting frame 212 drives the clamping block 213 to move, drives the clamping block 213 to move on the lifting frame 212, and places the crushing assembly 3 or the grinding assembly 4 on the mounting block 210.

[0028] The crushing assembly 3 includes two groups of sliding blocks two 304 slidably mounted on the lifting frame one 208. A lifting frame three 305 is slidably arranged on the sliding block two 304. An installation frame 306 is slidably arranged on the lifting frame three 305. An electric cylinder 302 is rotatably arranged on the installation frame 306. A crushing head 303 is slidably arranged on the electric cylinder 302. The crushing head 303 crushes the coating layer on the wall 1. A rotating rod one 307 is rotatably arranged on the lifting frame three 305. A sliding block three 310 is slidably arranged on the electric cylinder 302. The sliding block three 310 is rotatably connected to the rotating rod one 307. The crushing assembly 3 further includes a collection box 301. A connecting block one 308 is arranged at the lower end of the collection box 301. The collection box 301 is connected to the sliding block two 304 through the connecting block one 308. A rotating frame 309 is rotatably arranged in the collection box 301. A water spray head is arranged on the rotating frame 309. When driving the sliding block two 304 to move on the lifting frame one 208, the sliding block two 304 drives the electric cylinder 302 and the crushing head 303 to move, adjusting the position of the electric cylinder 302. When driving the lifting frame three 305 to slide in the sliding block two 304, the lifting frame three 305 drives the electric cylinder 302 to rise synchronously, adjusting the position of the electric cylinder 302. When driving the installation frame 306 to move on the lifting frame three 305, the installation frame 306 drives the electric cylinder 302 to move. The electric cylinder 302 drives the sliding block three 310 to slide on the electric cylinder 302. Driving the sliding block three 310 to drive the rotating rod one 307 to rotate. At this time, the rotating rod one 307 drives the electric cylinder 302 to rotate on the installation frame 306, completing the adjustment of the angle of the electric cylinder 302 and improving the crushing effect of the crushing head 303 on the coating layer on the wall 1.

[0029] The grinding assembly 4 includes a grinding frame 401. A connecting block two 403 is arranged on the side of the grinding frame 401. A plurality of lifting frames four 405 are slidably arranged inside the grinding frame 401. Teeth are arranged inside the lifting frame four 405. A connecting rod 408 is rotatably arranged on the lifting frame four 405. A gear two 407 is arranged at one end of the connecting rod 408. A gear one 406 is rotatably arranged at the other end of the connecting rod 408. A grinding disc 402 is coaxially arranged on the gear one 406. A plurality of racks 404 are arranged inside the grinding frame 401. The racks 404 are meshed with the gear two 407. The gear one 406 is meshed with the teeth on the lifting frame four 405. When driving the lifting frame four 405 to slide on the grinding frame 401, the lifting frame four 405 drives the connecting rod 408 and the gear two 407 to move. The gear two 407 is meshed with the rack 404. At this time, the gear two 407 drives the connecting rod 408 to rotate along the axis of the gear two 407. At this time, the connecting rod 408 drives the gear one 406 to rotate inside the lifting frame four 405. Since the lifting frame four 405 is meshed with the gear one 406, at this time the gear one 406 rotates. The gear one 406 drives the grinding disc 402 to rotate. The grinding disc 402 grinds the wall 1.

[0030] The cleaning component 5 includes a cleaning frame 501. A third connecting block 503 is arranged on the side of the cleaning frame 501. A sliding frame 504 is slidably arranged inside the cleaning frame 501. A lifting disc 502 is slidably arranged on the sliding frame 504. A second rotating rod 506 is rotatably arranged on the sliding frame 504. A swinging rod 507 is rotatably arranged on the second rotating rod 506. A hair dryer 505 is arranged at one end of the swinging rod 507. An adjusting ball 508 is arranged at the other end of the swinging rod 507. The adjusting ball 508 is slidably connected with the lifting disc 502. When driving the lifting disc 502 to slide on the sliding frame 504, the lifting disc 502 drives the adjusting ball 508 to move. The adjusting ball 508 drives the swinging rod 507 to rotate along the axis of the swinging rod 507. The swinging rod 507 drives the hair dryer 505 to rotate to realize the adjustment of the angle of the hair dryer 505. Driving the first support rod 206 to rotate, the second rotating rod 506 drives the swinging rod 507 to rotate. The swinging rod 507 drives the hair dryer 505 to rotate along the axis of the second rotating rod 506 to realize the adjustment of the position of the hair dryer 505.

[0031] Working principle: During work, move the support frame 203 under the wall 1 to be strengthened, drive the hydraulic cylinder 204. The hydraulic cylinder 204 drives the support disc 202 to contact the ground and support the support frame 203. Subsequently, drive a plurality of adjusting blocks 205 to approach each other. At this time, the adjusting blocks 205 drive the first support rod 206 and the second support rod 207 to rotate. The first support rod 206 and the second support rod 207 drive the first lifting frame 208 to rise on the support frame 203. The first lifting frame 208 drives the crushing component 3 to rise.

[0032] When it is necessary to crush the coating layer on the wall 1, drive the mounting frame 306 to rotate on the third lifting frame 305. The mounting frame 306 drives the electric cylinder 302 to move. The third sliding block 310 slides on the electric cylinder 302 through the rotation of the first rotating rod 307. The first rotating rod 307 pushes the electric cylinder 302 to rotate. The electric cylinder 302 rotates on the mounting frame 306. At this time, the adjustment of the angle of the electric cylinder 302 is completed to ensure the crushing of coating layers with various thicknesses. After the angle of the electric cylinder 302 is adjusted, drive the third lifting frame 305 to slide on the second sliding block 304. The third lifting frame 305 drives the mounting frame 306 and the electric cylinder 302 to rise. The electric cylinder 302 drives the crushing head 303 to contact the wall 1. Subsequently, drive the electric cylinder 302. The electric cylinder 302 drives the crushing head 303 to crush the coating layer on the wall 1. The crushed coating layer falls into the collection box 301. At the same time, drive the water spray head on the rotating frame 309. The water spray head moistens the dust generated during crushing. Drive the second sliding block 304 to move on the first lifting frame 208 to realize the crushing of the coating layer on the wall 1.

[0033] In the initial state, both the grinding frame 401 and the collection box 301 are installed in the placement groove 214. When it is necessary to grind the surface of the wall 1, drive the first sliding block 211 to slide on the installation table 209, drive the second lifting frame 212 to slide on the first sliding block 211, and the second lifting frame 212 drives the clamping block 213 to align with the second connecting block 403. Subsequently, drive the clamping block 213 to slide on the second lifting frame 212, and the clamping block 213 is inserted into the second connecting block 403. Then, drive the first sliding block 211, the second lifting frame 212, and the clamping block 213 to move, and the clamping block 213 inserts the grinding frame 401 onto the installation block 210. At this time, the installation of the grinding assembly 4 is completed. Adjust the height of the first lifting frame 208 so that multiple grinding discs 402 are simultaneously in contact with the wall 1. Subsequently, when driving the fourth lifting frame 405 to slide on the grinding frame 401, the fourth lifting frame 405 drives the connecting rod 408 and the second gear 407 to move. The second gear 407 meshes with the rack 404. At this time, the second gear 407 drives the connecting rod 408 to rotate along the axis of the second gear 407. At this time, the connecting rod 408 drives the first gear 406 to rotate within the fourth lifting frame 405. Since the fourth lifting frame 405 meshes with the first gear 406, the first gear 406 rotates at this time. The first gear 406 drives the grinding disc 402 to rotate, and the grinding disc 402 grinds the wall 1. After grinding, install the grinding frame 401 back into the placement groove 214.

[0034] After grinding, clean the surface of the wall 1. Drive the clamping block 213 to be inserted into the third connecting block 503, and then insert the cleaning frame 501 into the installation block 210. Drive the hair dryer 505 to work, and the hair dryer 505 cleans the surface of the wall 1. Drive the sliding frame 504 to move on the cleaning frame 501, and the sliding frame 504 drives the hair dryer 505 to move to adjust the position of the hair dryer 505. When it is necessary to adjust the cleaning angle of the hair dryer 505, drive the lifting disc 502 to slide on the sliding frame 504. The lifting disc 502 drives the adjusting ball 508 to move, and the adjusting ball 508 drives the swing rod 507 to rotate along the axis of the swing rod 507. The swing rod 507 drives the hair dryer 505 to rotate to adjust the angle of the hair dryer 505. Drive the first support rod 206 to rotate, and the second rotating rod 506 drives the swing rod 507 to rotate. The swing rod 507 drives the hair dryer 505 to rotate along the axis of the second rotating rod 506 to adjust the position of the hair dryer 505, improving the blowing range and cleaning efficiency of the hair dryer 505.

[0035] The present invention is not limited to the above specific embodiments. Those skilled in the art in the relevant technical field, starting from the above concepts and without creative labor, can make various transformations, all of which fall within the protection scope of the present invention.

Claims

1. A construction equipment for reinforcing building materials, comprising a support assembly (2), Features: The support assembly (2) comprises a support frame (203), a lifting mechanism is arranged on the support frame (203), the lifting mechanism drives the lifting frame 1 (208) to rise and fall, a mounting block (210) and a crushing assembly (3) are slidably arranged on the lifting frame 1 (208), a mounting platform (209) is arranged on the side of the support frame (203), a mounting mechanism and a grinding assembly (4) and a cleaning assembly (5) are arranged on the mounting platform (209), the crushing assembly (3) and the grinding assembly (4) are detachably mounted on the mounting block (210), the crushing assembly (3) comprises a sliding block 2 (304) slidably mounted on the lifting frame 1 (208), a plurality of groups of The invention relates to a swing mechanism and an electric cylinder (302), wherein the swing mechanism is used to adjust the angle of the electric cylinder (302), wherein the electric cylinder (302) is provided with a crushing head (303), wherein the crushing head (303) crushes the plaster layer of the wall (1), wherein the grinding component (4) comprises a grinding frame (401), wherein the grinding frame (401) is provided with a plurality of sets of rotating mechanisms and grinding discs (402), wherein the grinding discs (402) grind the wall (1), and wherein the cleaning component (5) comprises a cleaning frame (501), wherein the cleaning frame (501) is provided with an adjusting mechanism and a hair dryer (505), wherein the adjusting mechanism adjusts the angle of the hair dryer (505) to expand the cleaning range of the hair dryer (505).

2. A building material reinforcement construction equipment according to claim 1, Features: The support frame (203) is provided with a plurality of sets of universal wheels (201) and a hydraulic cylinder (204); a support plate (202) is provided at the movable end of the hydraulic cylinder (204); and the support plate (202) supports the support frame (203).

3. A building material reinforcement construction equipment according to claim 1, Features: The lifting mechanism comprises a plurality of adjusting blocks (205) slidably mounted on a support frame (203), wherein the adjusting blocks (205) are mounted in groups of two on both sides of the support frame (203), wherein one group of adjusting blocks (205) is rotatably provided with a support rod 1 (206), and another group of adjusting blocks (205) is rotatably provided with a support rod 2 (207), wherein the support rod 1 (206) is rotatably connected to the support rod 2 (207), and the lifting frame 1 (208) is slidably connected to the support rod 1 (206) and the support rod 2 (207).

4. A building material reinforcement construction equipment according to claim 1, Features: The mounting mechanism comprises a sliding block (211) slidably mounted on a mounting platform (209); a lifting frame (212) is slidably mounted on the sliding block (211); a clamping block (213) is slidably mounted on the lifting frame (212); and the clamping block (213) mounts the grinding component (4) or the cleaning component (5) on the mounting block (210).

5. A building material reinforcement construction equipment according to claim 1, Features: The swing mechanism comprises a lifting frame three (305) slidably mounted on a sliding block two (304); a mounting frame (306) is slidably arranged on the lifting frame three (305); the electric cylinder (302) is rotatably mounted on the mounting frame (306); a rotating rod one (307) is rotatably arranged on the lifting frame three (305); a sliding block three (310) is slidably arranged on the electric cylinder (302); the sliding block three (310) is rotatably connected to the rotating rod one (307); when the mounting frame (306) slides on the lifting frame three (305), it drives the electric cylinder (302) to rotate on the mounting frame (306).

6. A construction material reinforcement construction equipment according to claim 5, Features: The crushing assembly (3) further comprises a collection box (301), on which a connection block 1 (308) is arranged, and the connection block 1 (308) is mounted on a sliding block 2 (304).

7. A building material reinforcement construction equipment according to claim 1, Features: The rotating mechanism comprises a lifting frame four (405) slidably mounted on the grinding frame (401), the lifting frame four (405) is provided with teeth inside, a connecting rod (408) is rotatably provided on the lifting frame four (405), a gear two (407) is rotatably provided at one end of the connecting rod (408), a gear one (406) is rotatably provided at the other end of the connecting rod (408), and a grinding disc (402) is rotatably provided on the gear one (406).

8. A building material reinforcement construction equipment according to claim 7, Features: The gear one (406) meshes with the teeth on the lifting frame four (405), and the grinding frame (401) is provided with multiple sets of racks (404), and the racks (404) mesh with the gear two (407).

9. A building material reinforcement construction equipment according to claim 1, Features: The adjustment mechanism comprises a sliding frame (504) slidably mounted on the cleaning frame (501); a second rotating rod (506) and a lifting plate (502) are arranged on the sliding frame (504); a swing rod (507) is rotatably arranged on the second rotating rod (506); a blower (505) is arranged at one end of the swing rod (507); an adjustment ball (508) is arranged at the other end of the swing rod (507); and the adjustment ball (508) is slidably connected to the lifting plate (502).

Citation Information

Patent Citations

  • A Reinforcement Method of Architectural Structure Relying on Self-generated Reaction Force

    CN104695721B