Wall grooving device for green building construction

By designing a green building construction wall groove device including an angle adjustment mechanism, the problem of difficulty in dynamically adjusting the cutting angle and ensuring the consistency of arc grooves in existing equipment is solved, and flexible adjustment and precise control of cutting discs in multiple directions is realized, and the quality and efficiency of grooves are improved.

CN120134472AInactive Publication Date: 2025-06-13GANSU HONGCHUAN ARCHITECTURAL DECORATION CO LTD
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Patent Information

Application Number
CN202510530671.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

It is difficult for existing equipment to dynamically adjust the cutting angle according to the wall structure, especially when opening arc grooves, it is difficult to ensure the consistency of the arc and depth of the grooves, resulting in unstable groove quality.

Method used

A green building construction wall groove device including an angle adjustment mechanism is designed. The rotating plate is driven by the motor to adjust the angle of the cutting disk, and the precise movement and arc control of the cutting disk in the X, Y, and Z axes are realized through the moving mechanism and the arc adjustment mechanism.

Benefits of technology

It realizes multi-directional flexible adjustment of the cutting disk in the space, meets the grooved needs of complex wall structures and grooved bodies in different shapes, improves the accuracy and efficiency of grooved operations, and ensures the consistency of the arc and depth of the grooves.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a green building construction wall grooving device, and relates to the technical field of wall construction. And the angle adjusting mechanism comprises a supporting plate, a seventh motor is fixedly installed at one end of the supporting plate, a rotating plate is fixedly connected to the output end of the seventh motor, meanwhile, a second limiting block is fixedly connected to the rotating plate, a connecting shaft is fixedly connected to the middle of the second limiting block, and a cutting disc is arranged at one end of the connecting shaft. By arranging the angle adjusting mechanism, the cutting disc can be flexibly adjusted in multiple directions in the space. The seventh motor drives the rotating plate to rotate, then the cutting disc can incline and rotate at different angles, the grooving requirements of complex wall structures and groove bodies in different shapes are met, and accurate operation can be achieved for linear grooves or arc grooves.
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Description

Technical Field

[0001] The present invention relates to the technical field of wall construction, and particularly to a wall grooving device for green building construction. Background Art

[0002] In the field of building construction, wall grooving is an important process for concealed works such as hydropower pipelines and ventilation ducts. Green buildings emphasize resource conservation, environmental protection, and pollution reduction throughout the entire life cycle, providing healthy, applicable, and efficient usage spaces for people, and maximizing the harmonious coexistence between humans and nature. During the construction process of green buildings, wall grooving operation is one of the common processes, and its purpose is to hide various pipelines and improve the cleanliness and aesthetics of the wall surface.

[0003] Currently, most devices can only achieve single-plane cutting and are difficult to dynamically adjust the cutting angle according to the wall structure. Especially when opening arc-shaped grooves, it is difficult to ensure the consistency of the arc and depth of the groove, and deviations are likely to occur, resulting in unstable grooving quality, which may cause additional unnecessary damage to the wall. At the same time, the cutting disc angle adjustment mechanism mostly uses manual adjustment and is difficult to achieve precise multi-degree-of-freedom control in three-dimensional space, resulting in difficulties in processing complex groove types (such as inclined grooves and arc-shaped grooves). Summary of the Invention

[0004] The purpose of the present invention is to provide a wall grooving device for green building construction to solve the problems existing in the above background art.

[0005] The purpose of the present invention can be achieved through the following technical solutions:

[0006] A wall grooving device for green building construction includes an angle adjustment mechanism;

[0007] The angle adjustment mechanism includes a support plate. One end of the support plate is fixedly installed with a motor VII, and the output end of the motor VII is fixedly connected with a rotating plate. At the same time, a limiting block II is fixedly connected to the rotating plate, and a connecting shaft is fixedly connected to the middle of the limiting block II. One end of the connecting shaft is provided with a cutting disc;

[0008] When the rotating plate rotates, it drives the limiting block II and the connecting shaft to rotate, realizing the angle adjustment of the cutting disc.

[0009] As a further solution of the present invention: The angle adjustment mechanism further includes a limiting block I fixedly connected to the support plate, and a motor VIII for driving the docking block II is fixedly installed at one end;

[0010] A connecting ring is fixedly connected to the inner side of the docking block II, and the other end is hinged to the docking block I. The docking block I is fixedly connected to the other end of the connecting shaft.

[0011] As a further solution of the present invention: The cutting disc is installed in the connecting cylinder through a limiting column and is fixedly connected to one end of the connecting shaft.

[0012] As a further solution of the present invention: it further includes a bottom plate, and a moving mechanism is arranged on the bottom plate, and the moving mechanism is used to adjust the movement of the X, Y, and Z axes.

[0013] As a further solution of the present invention: the moving mechanism includes

[0014] Two sets of lead screw assemblies one, which are installed on the bottom plate and used for Z-axis movement adjustment;

[0015] A support frame, symmetrically installed on the two sets of lead screw assemblies one;

[0016] A lead screw assembly two, which is installed on the two sets of symmetrically arranged support frames and used for Y-axis movement adjustment;

[0017] A connecting block, which is installed on the lead screw assembly two;

[0018] A lead screw assembly three, which is installed on the connecting block and used for X-axis movement adjustment.

[0019] As a further solution of the present invention: a radian adjustment mechanism is installed on the moving mechanism, which is used to adjust the radian size during the cutting of the cutting disc.

[0020] As a further solution of the present invention: the radian adjustment mechanism includes a connecting plate, and symmetrically installed limit plates one are fixedly connected to the connecting plate;

[0021] A driving component one, which is installed on the limit plate one and used for Y-axis movement adjustment;

[0022] A guide rod one, which is fixedly installed on the driving component one and used for X-axis movement guiding;

[0023] Limit plates two, symmetrically fixedly connected to the connecting plate;

[0024] A driving component two, which is installed on the limit plate two and used for X-axis movement adjustment;

[0025] A guide rod two, which is fixedly installed on the driving component two and used for Y-axis movement guiding.

[0026] As a further solution of the present invention: a rotating mechanism is installed on the radian adjustment mechanism, which is used for arc-shaped rotating cutting of the cutting disc.

[0027] As a further solution of the present invention: the rotating mechanism includes a guide block sliding in the guide rod one and the guide rod two;

[0028] A limit disc two, fixedly connected to the surface of the guide block and sliding on the surface of the guide rod one;

[0029] A limit disc one, fixedly connected to the surface of the guide block and sliding on the surface of the guide rod two;

[0030] The fourth motor is fixedly connected inside a protective box connected to one end of the guide block, and a transmission shaft is fixedly connected to the output end thereof.

[0031] The fixing block is fixedly connected to the other end of the transmission shaft and fixedly connected to the support plate.

[0032] As a further solution of the present invention: the transmission shaft is movably installed in the middle of the guide block, and the guide block slides in the sliding grooves opened in the first guide rod and the second guide rod.

[0033] The beneficial effects of the present invention:

[0034] (1) In the present invention, by setting the angle adjustment mechanism, flexible adjustment of the cutting disc in multiple directions in space can be achieved. The seventh motor drives the rotating plate to rotate, and then the cutting disc is tilted and rotated at different angles, meeting the grooving requirements of complex wall structures and different-shaped grooves. Whether it is a straight groove or an arc groove, precise operation can be carried out.

[0035] (2) In the present invention, through the moving mechanism, precise movement adjustment of the cutting disc in the X, Y, and Z axes can be achieved. The radian adjustment mechanism is used to precisely control the radian size during the cutting of the cutting disc, and the rotating mechanism realizes the arc-shaped rotating cutting of the cutting disc, making the grooving operation more efficient and precise, improving the construction quality, capable of generating complex cutting paths in real time, and enhancing the processing ability of special-shaped grooves.

[0036] (3) In the present invention, the cutting disc is installed in the connecting cylinder through the limiting column. When disassembling and replacing the cutting disc, the operation is simple. Just rotate the limiting column to make it horizontal with the annular groove on the connecting cylinder, and then the cutting disc can be easily removed, greatly improving the work efficiency and reducing the maintenance cost. Description of the Drawings

[0037] The present invention will be further described below with reference to the drawings.

[0038] Figure 1 is the three-dimensional structure schematic diagram of the present invention Figure 1 ;

[0039] Figure 2 is the three-dimensional structure schematic diagram of the present invention Figure 2 ;

[0040] Figure 3 is the structural disassembly schematic diagram of the moving mechanism in the present invention;

[0041] Figure 4 is the combined structure schematic diagram of the moving mechanism and the angle adjustment mechanism in the present invention;

[0042] Figure 5 is the three-dimensional structure schematic diagram of the radian adjustment mechanism in the present invention;

[0043] Figure 6 It is a schematic structural diagram of the rotating mechanism in the present invention;

[0044] Figure 7 It is a schematic cross-sectional structural diagram of the angle adjustment mechanism in the present invention;

[0045] Figure 8 It is a schematic diagram of the partial structure disassembly of the present invention.

[0046] In the figure: 1, base plate; 2, moving mechanism; 200, motor one; 201, lead screw one; 202, slider one; 203, support frame; 204, motor two; 205, lead screw two; 206, slider two; 207, connecting block; 208, motor three; 209, lead screw three; 210, slider three; 3, rotating mechanism; 301, motor four; 302, transmission shaft; 303, guide block; 304, limit disk one; 305, limit disk two; 306, fixed block; 4, radian adjustment mechanism; 400, connecting plate; 401, limit plate one; 402, motor five; 403, threaded column one; 405, moving block one; 406, guide rod one; 407, limit plate two; 408, motor six; 409, threaded column two; 411, moving block two; 412, guide rod two; 5, angle adjustment mechanism; 500, support plate; 501, limit block one; 502, motor seven; 503, rotating plate; 504, limit block two; 505, connecting shaft; 506, docking block one; 507, connecting ring; 508, docking block two; 509, motor eight; 6, connecting cylinder; 7, limit column; 8, locking block; 9, docking column; 10, cutting disk. Specific embodiments

[0047] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0048] Embodiment 1

[0049] Please refer to Figure 1 - Figure 8 As shown, the present invention is a wall grooving device for green building construction, including an angle adjustment mechanism 5;

[0050] The angle adjustment mechanism 5 includes a support plate 500. One end of the support plate 500 is fixedly installed with a motor seven 502, and the output end of the motor seven 502 is fixedly connected to a rotating plate 503. At the same time, a limit block two 504 is fixedly connected to the rotating plate 503, and a connecting shaft 505 is fixedly connected to the middle of the limit block two 504, and a cutting disk 10 is arranged at one end of the connecting shaft 505;

[0051] The rotating plate 503 rotates, driving the second limiting block 504 and the connecting shaft 505 to rotate, thereby realizing the angle adjustment of the cutting disc 10. The rotating plate 503 rotates on the surface of the support plate 500, and the output end of the seventh motor 502 is movably disposed in the middle of the support plate 500.

[0052] In the present invention, preferably, the angle adjustment mechanism 5 further includes a first limiting block 501, which is fixedly connected to the support plate 500 and has a motor eight 509 fixedly installed at one end for driving the second docking block 508.

[0053] A connecting ring 507 is fixedly connected to the inner side of the second docking block 508 and is hinged to the first docking block 506 at the other end. The first docking block 506 is fixedly connected to the other end of the connecting shaft 505.

[0054] In the present invention, preferably, the cutting disc 10 is installed in the connecting cylinder 6 through the limiting column 7 and is fixedly connected to one end of the connecting shaft 505.

[0055] Locking blocks 8 are fixedly installed on both sides of the limiting column 7. A docking column 9 is fixedly installed on one side of the cutting disc 10, and the docking column 9 slides on one side of the connecting cylinder 6. The limiting column 7 slides in the docking column 9 and the connecting cylinder 6 and is locked through a circular groove in the connecting cylinder 6.

[0056] During the implementation process, the seventh motor 502 is set. The output end of the seventh motor 502 drives the rotating plate 503 to rotate along the support plate 500. The rotating plate 503 drives the second limiting block 504, the connecting shaft 505, the first docking block 506, and the cutting disc 10 installed in the connecting cylinder 6 to rotate along the connecting ring 507 to adjust the angle of the cutting disc 10.

[0057] The eighth motor 509 is set. The output end of the eighth motor 509 drives the second docking block 508 to rotate along the middle of the first limiting block 501. The second docking block 508 drives the connecting ring 507 to rotate. The connecting ring 507 drives the connecting shaft 505 with an adjusted angle, the second limiting block 504, and the cutting disc 10 installed in the connecting cylinder 6 to rotate along the middle of the second limiting block 504, so that the cutting disc 10 can adjust its own angle without affecting the rotary cutting, thereby improving the adjustability of the cutting disc 10 during cutting.

[0058] Rotate the limiting column 7. The limiting column 7 drives the locking blocks 8 to rotate and then be horizontal with the annular groove on the connecting cylinder 6. Remove the limiting column 7 and pull the cutting disc 10. The cutting disc 10 drives the docking column 9 to slide out along the connecting cylinder 6, making the cutting disc 10 more convenient to disassemble and replace.

[0059] When the cutting is completed, the chisel (not shown) is placed in the connecting tube 6, the limiting column 7 is placed in the connecting tube 6 and rotated through the locking block 8 to stagger with the annular groove in the connecting tube 6 to lock the chisel, so that the chisel and the cutting disc 10 are easier to replace and use, so as to improve the efficiency of wall grooving.

[0060] Embodiment 2

[0061] In the present invention, preferably, it further comprises a base plate 1, on which a moving mechanism 2 is arranged, and the moving mechanism 2 is used to adjust the movement of the X, Y and Z axes.

[0062] In the present invention, preferably, the moving mechanism 2 includes

[0063] Two sets of lead screw assemblies 1, mounted on the base plate 1, for Z-axis movement adjustment;

[0064] The lead screw assembly 1 includes a motor 1 200, a lead screw 1 201, and a slider 1 202. The motor 1 200 is fixedly connected to one end of the base plate, and the output end is fixedly connected to the lead screw 1 201 which is threadedly connected to the slider 1 202;

[0065] The slider 202 slides in the slide groove provided on the bottom plate 1 and is fixedly connected to the support frame 203 on the surface, and the screw rod 201 rotates in the middle of the bottom plate 1;

[0066] The second lead screw assembly is mounted on two sets of symmetrically arranged support frames 203 for Y-axis movement adjustment;

[0067] The second lead screw assembly includes a second motor 204, a second lead screw 205, and a second slider 206. The second motor 204 is fixed to the support frame 203, and the output end is fixed to the second lead screw 205 threadedly connected to the second slider 206;

[0068] The second slider 206 slides in the slide groove provided in the support frame 203 and is fixedly connected with a connecting block 207 at one end, and the second screw rod 205 rotates in the middle of the support frame 203;

[0069] The lead screw assembly three is mounted on the connecting block 207 and is used for X-axis movement adjustment.

[0070] The lead screw assembly 3 includes a motor 3 208, a lead screw 3 209, and a slider 3 210. The motor 3 208 is fixedly connected to one end of the connecting block 207, and the output end is fixedly connected to the lead screw 3 209 threadedly connected to the slider 3 210;

[0071] The slider three 210 slides in the slide groove of the connecting block 207 , and the screw rod three 209 rotates in the middle of the connecting block 207 .

[0072] In the present invention, preferably, the moving mechanism 2 is equipped with an arc adjustment mechanism 4 for adjusting the arc size of the cutting disc 10 during cutting.

[0073] In the present invention, preferably, the radian adjustment mechanism 4 includes a connecting plate 400 fixedly connected to one end of the third slider 210, and symmetrically mounted limit plates 401 are fixedly connected to the connecting plate 400;

[0074] A first driving assembly, mounted on the limit plate 401, for Y-axis movement adjustment;

[0075] The first driving assembly includes a fifth motor 402, a first threaded column 403, and a first moving block 405. The fifth motor 402 is fixedly connected to one end of one of the limit plates 401, and the output end is fixedly connected to the first threaded column 403 threadedly connected to the first moving block 405. The first threaded column 403 rotates in the middle of the two limit plates 401;

[0076] A first guiding rod 406, fixedly installed at one end of the first moving block 405, for X-axis movement guiding;

[0077] Limit plates 407, symmetrically fixedly connected to the connecting plate 400;

[0078] A second driving assembly, mounted on the limit plate 407, for X-axis movement adjustment;

[0079] The second driving assembly includes a sixth motor 408, a second threaded column 409, and a second moving block 411. The sixth motor 408 is fixedly connected to one end of one of the limit plates 407, and the output end is fixedly connected to the second threaded column 409 threadedly connected to the second moving block 411. The second threaded column 409 rotates in the middle of the two limit plates 407;

[0080] A second guiding rod 412, fixedly installed at one end of the second moving block 411, for Y-axis movement guiding.

[0081] It should be noted that a limiting column is installed between the two limit plates 401 for limiting the movement of the first moving block 405, and a limiting column is installed between the two limit plates 407 for limiting the movement of the second moving block 411.

[0082] In the present invention, preferably, a rotating mechanism 3 is installed on the radian adjustment mechanism 4 for arc-shaped rotary cutting of the cutting disc 10.

[0083] In the present invention, preferably, the rotating mechanism 3 includes a guiding block 303 sliding in the first guiding rod 406 and the second guiding rod 412;

[0084] A second limiting disc 305, fixedly connected to the surface of the guiding block 303 and sliding on the surface of the first guiding rod 406;

[0085] A first limiting disc 304, fixedly connected to the surface of the guiding block 303 and sliding on the surface of the second guiding rod 412;

[0086] The motor four 301 is fixedly connected inside a protective box connected to one end of the guiding block 303, and a transmission shaft 302 is fixedly connected to the output end thereof.

[0087] The fixing block 306 is fixedly connected to the other end of the transmission shaft 302 and fixedly connected to the support plate 500.

[0088] It should be noted that the settings of the second limiting disc 305 and the first limiting disc 304 can effectively prevent the guiding block 303 from falling off during the movement.

[0089] In the present invention, preferably, the transmission shaft 302 is movably installed in the middle of the guiding block 303, and the guiding block 303 slides in the sliding grooves opened in the first guiding rod 406 and the second guiding rod 412.

[0090] During the implementation process, the motor one 200 is set. The output end of the motor one 200 drives the first lead screw 201 to rotate, so that the first slider 202 drives the support frame 203, the connecting block 207, the arc adjustment mechanism 4, the rotation mechanism 3, the angle adjustment mechanism 5 and the cutting disc 10 to adjust the Z-axis position along the sliding groove of the bottom plate 1, ensuring that the cutting disc 10 is close to the wall.

[0091] The motor two 204 is set. The output end of the motor two 204 drives the second lead screw 205 to rotate along the middle of the support frame 203, so that the second slider 206 drives the connecting block 207, the arc adjustment mechanism 4, the rotation mechanism 3, the angle adjustment mechanism 5 and the cutting disc 10 to adjust the Y-axis position for movement adjustment.

[0092] The motor three 208 is set. The output end of the motor three 208 drives the third lead screw 209 to rotate along the middle of the connecting block 207, so that the third slider 210 drives the arc adjustment mechanism 4, the rotation mechanism 3, the angle adjustment mechanism 5 and the cutting disc 10 to adjust the X-axis position for movement adjustment.

[0093] The motor four 301 is set. The output end of the motor four 301 drives the transmission shaft 302 to rotate along the middle of the guiding block 303. The motor four 301 drives the fixing block 306 to rotate and move in an arc. The fixing block 306 drives the angle adjustment mechanism 5 and the cutting disc 10 to perform arc-shaped movement cutting.

[0094] The motor five 402 is set. The output end of the motor five 402 drives the first threaded column 403 to rotate along the middle of the first limiting plate 401, so that the first moving block 405 moves along the first threaded column 403. The first moving block 405 drives the first guiding rod 406 to move. The first guiding rod 406 pushes the rotation mechanism 3 so that the rotation mechanism 3 adjusts the Y-axis movement direction along the sliding groove of the second guiding rod 412, thereby adjusting the Y-axis arc when the rotation mechanism 3 controls the cutting disc 10 to rotate and cut.

[0095] A motor six 408 is provided. The output end of the motor six 408 drives a threaded post two 409 to rotate along the middle of a limiting plate two 407, so that a moving block two 411 moves along the threaded post two 409. The moving block two 411 drives a guide rod two 412 to move. The guide rod two 412 pushes the rotating mechanism 3 to adjust the X-axis moving direction of the rotating mechanism 3 along the chute of the guide rod one 406, thereby adjusting the X-axis radian when the rotating mechanism 3 controls the cutting disc 10 to rotate and cut;

[0096] Meanwhile, a motor five 402 and a motor six 408 are provided to enable the rotating mechanism 3 to move synchronously in the X and Y axes, quickly adjusting the cutting radian of the X and Y axes to improve the cutting efficiency.

[0097] The above has described the embodiments of the present invention in detail, but the described content is only the preferred embodiments of the present invention and cannot be considered as limiting the scope of implementation of the present invention. All equivalent changes and improvements made according to the scope of the present invention application shall still fall within the scope covered by the patent of the present invention.

Claims

1. A green building construction wall grooving device, characterized in that: It includes an angle adjustment mechanism (5); The angle adjustment mechanism (5) comprises a support plate (500), one end of which is fixedly mounted a motor seven (502), and the output end of the motor seven (502) is fixedly connected to a rotating plate (503), while a limit block two (504) is fixedly connected to the rotating plate (503), and a connecting shaft (505) is fixedly connected to the middle of the limit block two (504), and a cutting disc (10) is arranged at one end of the connecting shaft (505); The rotating plate (503) rotates, causing the second limit block (504) and the connecting shaft (505) to rotate, thereby achieving angle adjustment of the cutting disc (10).

2. The green building construction wall grooving device according to claim 1 is characterized in that: The angle adjustment mechanism (5) further comprises a limit block 1 (501) which is fixedly connected to the support plate (500) and has a motor 8 (509) fixedly mounted on one end thereof for driving the docking block 2 (508); The connecting ring (507) is fixedly connected to the inner side of the second docking block (508) and the other end is hingedly connected to the first docking block (506), and the first docking block (506) is fixedly connected to the other end of the connecting shaft (505).

3. The green building construction wall grooving device according to claim 1, characterized in that: The cutting disc (10) is installed in the connecting tube (6) via a limiting column (7) and is fixedly connected to one end of the connecting shaft (505).

4. The green building construction wall grooving device according to claim 1, characterized in that: It also comprises a base plate (1), on which a moving mechanism (2) is arranged, and the moving mechanism (2) is used to adjust the movement of the X, Y and Z axes.

5. The green building construction wall grooving device according to claim 4, characterized in that: The moving mechanism (2) comprises Two sets of lead screw assemblies are mounted on the base plate (1) and are used for Z-axis movement adjustment; A support frame (203) is symmetrically mounted on one of the two sets of lead screw assemblies; The second lead screw assembly is mounted on two sets of symmetrically arranged support frames (203) and is used for Y-axis movement adjustment; A connecting block (207) is mounted on the second lead screw assembly; The lead screw assembly 3 is mounted on the connecting block (207) and is used for X-axis movement adjustment.

6. The green building construction wall grooving device according to claim 4, characterized in that: The moving mechanism (2) is provided with an arc adjustment mechanism (4) for adjusting the size of the arc when the cutting disc (10) is cutting.

7. The green building construction wall grooving device according to claim 6, characterized in that: The arc adjustment mechanism (4) comprises a connecting plate (400), and a symmetrically installed limiting plate 1 (401) is fixedly connected to the connecting plate (400); A driving assembly 1, mounted on a limiting plate 1 (401), for Y-axis movement adjustment; A guide rod 1 (406), fixedly mounted on the driving assembly 1, for guiding movement along the X-axis; The second limiting plate (407) is symmetrically fixed to the connecting plate (400); A second driving assembly is mounted on the second limiting plate (407) and is used for X-axis movement adjustment; The second guide rod (412) is fixedly mounted on the second driving assembly and is used for Y-axis movement guidance.

8. The green building construction wall grooving device according to claim 6, characterized in that: The arc adjustment mechanism (4) is provided with a rotation mechanism (3) for arc-shaped rotation cutting of the cutting disc (10).

9. The green building construction wall grooving device according to claim 8, characterized in that: The rotating mechanism (3) comprises a guide block (303) sliding inside the guide rod 1 (406) and the guide rod 2 (412); The second limiting plate (305) is fixedly connected to the surface of the guide block (303) and slides on the surface of the first guide rod (406); A limiting plate 1 (304) is fixedly connected to the surface of the guide block (303) and slides on the surface of the guide rod 2 (412); Motor 4 (301) is fixedly connected in a protection box connected to one end of the guide block (303) and has a transmission shaft (302) fixedly connected to its output end; The fixed block (306) is fixedly connected to the other end of the transmission shaft (302) and is fixedly connected to the support plate (500).

10. The green building construction wall grooving device according to claim 9, characterized in that: The transmission shaft (302) is movably mounted in the middle of the guide block (303), and the guide block (303) slides in a slide groove formed by the first guide rod (406) and the second guide rod (412).