Wiring slotting device for building construction
By introducing protective mechanisms, material receiving mechanisms, and cleaning structures into the grooving device, the problem of existing grooving machines being unable to effectively protect against dust and stone particles has been solved, achieving a safe and efficient wall grooving process.
Patent Information
- Application Number
- CN202511613822.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-01-23
AI Technical Summary
When cutting walls, the existing grooving machine's shield cannot contact the outside of the wall, thus failing to effectively protect against dust and flying stone particles, resulting in low safety.
A wiring grooving device for building construction was designed, comprising a protective mechanism, a material receiving mechanism, and a cleaning structure. The protective mechanism uses an arc-shaped baffle to shield the stone particles, the material receiving mechanism uses an installed belt to push the stone particles, and the cleaning structure uses a brush roller to clean the stone particles and dust.
It improves the safety of wall grooving, effectively shields and collects flying stone particles and dust, and ensures the safety and cleanliness of the grooving process.
Smart Images

Figure CN121374867A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of electric tools, in particular to a wiring grooving device for building construction. BACKGROUND
[0002] In building construction and interior decoration, in order to safely hide the electric wire, cable, weak current wire and small water pipe, a groove with appropriate width and depth needs to be opened on the surface of materials such as concrete, brick wall or gypsum board, and a grooving machine is usually needed to groove the wall, a plurality of diamond cutting blades are installed side by side in the grooving machine, which is driven by a motor to rotate at high speed to realize the grooving operation of the wall.
[0003] When the grooving machine is used, the high-speed rotating cutting blade is first placed close to the starting point of the groove on the wall, and then the cutting blade is inserted into the wall, and the grooving machine is pulled down to realize the grooving of the wall. However, in the process of grooving, a large amount of dust and flying stones will be generated by the cutting of the cutting knife on the wall. The existing grooving machine is provided with a cover outside the cutting knife, so that the cover can block the flying stones. However, the cover cannot contact the outer side of the wall during the contact of the cutting knife with the wall, and the cover cannot provide protection for the dust and flying stones, so the safety is low. SUMMARY
[0004] The purpose of the present application is to provide a wiring grooving device for building construction to solve the problems in the background art.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme:
[0006] A wiring grooving device for building construction, comprising: a machine body and a first shell fixedly installed at one end of the machine body, an inner side of the first shell being provided with a second shell, an inner side of the second shell being rotatably provided with a driving rod, an outer side of the driving rod being fixedly provided with a plurality of cutting knives distributed at equal intervals, and one end of the driving rod being connected to the machine body through a transmission shaft seat; further comprising: a protection mechanism for shielding the stones generated by the cutting knives, the protection mechanism being installed on the inner side of the second shell, the protection mechanism comprising an arc-shaped blocking frame arranged on the inner side of the second shell, the arc-shaped blocking frame being capable of covering the flying stones; a material collecting mechanism for collecting the flying stones, the material collecting mechanism being installed on the inner side of the second shell, the material collecting mechanism comprising an installation belt arranged on the inner side of the second shell, an outer side of the installation belt being fixedly provided with a plurality of feeding plates distributed at equal intervals, the installation belt being capable of pushing the flying stones in cooperation with the feeding plates; and a cleaning structure for cleaning the stones and dust on the feeding plates, the cleaning structure being installed on the inner side of the second shell, the cleaning structure comprising a brush roller arranged on the inner side of the second shell, the brush roller being capable of cleaning the feeding plates.
[0007] Preferably, the protection mechanism further comprises two arc-shaped slides symmetrically fixedly installed outside the second shell, outer sides of the arc-shaped slides are slidingly installed with sleeve blocks, a top of the second shell is provided with a long slot for limiting sliding of the sleeve blocks, an inner side of the second shell is provided with an arc-shaped cavity for limiting sliding of the arc-shaped blocking frame, a cross section of the arc-shaped blocking frame is in U-shaped structure, both of the sleeve blocks are fixedly installed outside the arc-shaped blocking frame, arc-shaped springs are fixedly installed between the outer sides of the sleeve blocks and the inner sides of the arc-shaped slides, a bottom end of the arc-shaped blocking frame is fixedly installed with a rubber pad strip, and a bottom of the machine body is fixedly installed with a sliding roller.
[0008] Preferably, the material collecting mechanism further comprises a blocking cover fixedly installed inside the second shell, and both of the second shell and the blocking cover are in circular arc-shaped structure, the installation belt is located between the blocking cover and the second shell, two positioning plates symmetrically distributed are fixedly installed between the inner side of the second shell and the inner side of the blocking cover, the outer side of the positioning plate is provided with an arc-shaped slot for limiting plug-in of the installation belt, the inner side of the installation belt is provided with an arc-shaped plate, the arc-shaped plate is fixedly installed inside the second shell, two transmission rods symmetrically distributed are rotationally installed inside the second shell, and both of the transmission rods are located inside the installation belt, two synchronous toothed belts symmetrically distributed are fixedly installed inside the installation belt, the outer side of the transmission rod is fixedly installed with two transmission gears matched with the two synchronous toothed belts respectively, the outer side of the first shell is fixedly installed with a driving motor, one end of the transmission rod adjacent to the driving motor is fixedly connected with the output end of the driving motor, and the outer side of the blocking cover is provided with a feeding port.
[0009] Preferably, the cleaning structure further comprises a prismatic rod slidingly installed inside the brush roller, both ends of the prismatic rod are rotationally installed on the opposite sides of the two positioning plates, and a transmission belt is rotationally installed between each end of the prismatic rod and the adjacent transmission rod, the side of the first sliding disc away from the brush roller is fixedly installed with a plurality of sliding balls symmetrically distributed at the center, the inner side of the first sliding cavity is fixedly installed with a positioning ring, the outer side of the positioning ring is provided with a spherical slot for limiting sliding of the sliding ball, and the spherical slot is in one-third spherical structure, and the side of the second sliding disc away from the prismatic rod is fixedly installed with a positioning spring.
[0010] Preferably, the top of the machine body is fixedly installed with two handles, and the two handles are in T-shaped distribution.
[0011] Preferably, the arc-shaped slide is fixedly installed with a blocking strip on both sides, and the blocking strip is in contact with the outside of the sleeve block.
[0012] Preferably, the arc-shaped blocking frame is rotatably installed with a plurality of equidistantly distributed slide balls on both sides, and the outside of the slide ball is in contact with the inside of the arc-shaped cavity of the second shell.
[0013] Preferably, the blocking cover is slidably installed with a storage box away from one end of the installation belt, and the first shell and the outside of the second shell are both provided with an opening for limiting sliding of the storage box, and the outside of the storage box is fixedly installed with a magnetic plate.
[0014] Preferably, the bottom of the storage box is fixedly installed with an air-permeable filter screen, and the bottom of the blocking cover is provided with an opening corresponding to the air-permeable filter screen.
[0015] Preferably, the positioning spring is fixedly installed with a grommet away from one end of the second sliding disc, and the grommet is rotatably installed in the second sliding cavity of the positioning plate.
[0016] Compared with the prior art, the present application has the following advantages:
[0017] 1. The protection mechanism can first make the second shell approach the wall body in an inclined state, so that the cutting knife is cut and inserted into the wall body, the arc-shaped blocking frame is close to the outside of the wall body, the arc-shaped blocking frame keeps shielding the stone particles, and the safety of wall slotting is improved.
[0018] 2. The material collecting mechanism can make the splashed stone particles enter the blocking cover from the feeding port of the blocking cover when the cutting knife is completely inserted into the wall body and pushed for slotting, and the installation belt rotatingly moves can push and store the stone particles through the feeding plate, so that the splashed stone particles are conveniently stored and cleaned.
[0019] 3. The cleaning structure can make the brush roller reciprocally move along the outside of the prismatic rod when the prismatic rod drives the brush roller to rotate, the brush roller can scrape down the stone particles and dust on the installation belt and the feeding plate in a rubbing state, the surface of the installation belt and the feeding plate is prevented from being left with stone particles and dust, and the stone particles and dust are conveniently continuously cleaned. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of the present application;
[0021] Figure 2 It is a schematic diagram of the partial cross-sectional structure of the second shell and the arc-shaped blocking frame in the present application;
[0022] Figure 3 It is a schematic diagram of the structure of the rubber gasket and the arc-shaped slide in the present application;
[0023] Figure 4 It is the schematic diagram of partial section structure of installing belt and cover in the application;
[0024] Figure 5 It is the schematic diagram of synchronous tooth belt and transmission gear structure in the application;
[0025] Figure 6 It is the schematic diagram of prismatic rod and transmission rod structure in the application;
[0026] Figure 7 It is the schematic diagram of partial section structure of brush roller and positioning plate in the application;
[0027] Figure 8 It is the schematic diagram of positioning ring and gasket ring structure in the application.
[0028] In the figure: 1, body; 2, first shell; 3, second shell; 4, drive rod; 5, cutting knife; 6, arc-shaped blocking frame; 7, installation belt; 8, feeding plate; 9, brush roller; 10, arc-shaped slide; 11, sleeve block; 12, arc-shaped spring; 13, rubber gasket strip; 14, slide roller; 15, cover; 16, positioning plate; 17, arc-shaped plate; 18, transmission rod; 19, synchronous tooth belt; 20, transmission gear; 21, drive motor; 22, prismatic rod; 23, first slide disc; 24, second slide disc; 25, transmission belt; 26, slide ball; 27, positioning ring; 28, positioning spring; 29, slide ball; 30, storage box; 31, magnetic plate; 32, air-permeable filter screen; 33, handle; 34, gasket ring; 35, blocking strip. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.
[0030] Embodiment one: please refer to Figures 1-8 , a kind of building construction wiring slotting device in the figure, including body 1 and fixedly installed in the first shell 2 of body 1 one end, the inner side of first shell 2 is installed with second shell 3, the inner side of second shell 3 is rotatably installed with drive rod 4, the outer side of drive rod 4 is fixedly installed with multiple equidistantly distributed cutting knives 5, and the one end of drive rod 4 is connected with body 1 through transmission shaft base, so that body 1 drives drive rod 4 to rotate through transmission shaft base, drive rod 4 drives multiple cutting knives 5 to rotate synchronously, realizes the one-time slotting to wall body, and second shell 3 can block the dust and stone particles generated by cutting knife 5 when cutting wall.
[0031] The protection mechanism comprises an arc-shaped blocking frame 6 arranged inside the second protective shell 3, which can cover the splashed stones. The protection mechanism further comprises two arc-shaped sliding frames 10 symmetrically and fixedly arranged outside the second protective shell 3. The outer side of the arc-shaped sliding frame 10 is slidingly provided with a sleeve block 11. The top of the second protective shell 3 is provided with a long slot for limiting the sliding of the sleeve block 11. The inner side of the second protective shell 3 is provided with an arc-shaped cavity for limiting the sliding of the arc-shaped blocking frame 6. The cross section of the arc-shaped blocking frame 6 is in a U-shaped structure, which is convenient for blocking the splashed stones. The two sleeve blocks 11 are fixedly arranged outside the arc-shaped blocking frame 6, so that when the arc-shaped blocking frame 6 moves along the inner side of the arc-shaped cavity, the sleeve block 11 can be driven to move along the inner side of the arc-shaped sliding frame 10. The arc-shaped spring 12 is fixedly arranged between the outer side of the sleeve block 11 and the inner side of the arc-shaped sliding frame 10, so that when the sleeve block 11 moves, the arc-shaped spring 12 can be compressed. The bottom end of the arc-shaped blocking frame 6 is fixedly provided with a rubber pad strip 13. The bottom of the machine body 1 is fixedly provided with a sliding roller 14. The sliding roller 14 and the rubber pad strip 13 are in contact with the wall body, the second protective shell 3 is swung towards the wall body with the sliding roller 14 as the fulcrum, the rubber pad strip 13 is driven to move along the inner side of the arc-shaped cavity by the reaction force of the wall body, the arc-shaped blocking frame 6 is retracted into the arc-shaped cavity, and in this process, the cutting knife 5 can be in contact with the wall body and perform slotting. The elasticity of the arc-shaped spring 12 enables the arc-shaped blocking frame 6 to keep shielding the stones. The top of the machine body 1 is fixedly provided with two handles 33, which are in a T-shaped distribution, so as to facilitate the staff to lift and pull and push the machine body 1. The two sides of the arc-shaped sliding frame 10 are fixedly provided with blocking strips 35, which are in contact with the outer side of the sleeve block 11, so that the sleeve block 11 can move along the two blocking strips 35, improving the stability of the movement of the sleeve block 11. The two sides of the arc-shaped blocking frame 6 are rotatably provided with a plurality of equidistantly distributed sliding beads 29, which are in contact with the inner side of the arc-shaped cavity of the second protective shell 3. The arc-shaped blocking frame 6 can move along the inner side of the arc-shaped cavity through the sliding beads 29, which is convenient for the arc-shaped blocking frame 6 to be retracted into the arc-shaped cavity.
[0032] Example two: please refer to Figures 1-7The embodiment further illustrates the first embodiment. The material collecting mechanism in the drawing includes a mounting belt 7 arranged inside the second shell 3. The outer side of the mounting belt 7 is fixedly provided with a plurality of feeding plates 8 distributed at equal intervals. The mounting belt 7 can push the splashed stones in cooperation with the feeding plates 8. The material collecting mechanism further includes a baffle 15 fixedly arranged inside the second shell 3. The baffle 15 can shield the splashed stones inside the second shell 3. The second shell 3 and the baffle 15 are both circular arc structures. The mounting belt 7 is located between the baffle 15 and the second shell 3. Two positioning plates 16 symmetrically distributed are fixedly arranged between the inner side of the second shell 3 and the inner side of the baffle 15. The outer side of the positioning plate 16 is provided with an arc-shaped slot for limiting the insertion of the mounting belt 7. The mounting belt 7 can be in a circular arc state and be arranged between the two arc-shaped slots. The inner side of the mounting belt 7 is provided with an arc-shaped plate 17 fixedly arranged on the inner side of the second shell 3. The arc-shaped plate 17 provides support for the inner side of the mounting belt 7. Two transmission rods 18 symmetrically distributed are rotatably arranged on the inner side of the second shell 3. The two transmission rods 18 are both located on the inner side of the mounting belt 7. Two synchronous tooth belts 19 symmetrically distributed are fixedly arranged on the inner side of the mounting belt 7. The outer side of the transmission rod 18 is fixedly provided with two transmission gears 20 respectively matched with the two synchronous tooth belts 19. A driving motor 21 is fixedly arranged on the outer side of the first shell 2. The output end of the driving motor 21 is fixedly connected with one end of the adjacent transmission rod 18. The driving motor 21 can drive the corresponding transmission rod 18 to rotate. The transmission rod 18 drives the two synchronous tooth belts 19 to synchronously rotate and move through the transmission gear 20 on the outer side of the transmission rod 18 and the transmission gear 20 on the outer side of the other transmission rod 18. The two synchronous tooth belts 19 drive the mounting belt 7 to rotate and move along the outer side of the arc-shaped plate 17 and the arc-shaped slots of the two positioning plates 16. The mounting belt 7 drives the plurality of feeding plates 8 to synchronously move. The outer side of the baffle 15 is provided with an inlet. The stones generated by the cutting knife 5 can enter the inlet and be collected by the plurality of synchronously moving feeding plates 8. The stones are pushed to the space between the baffle 15 and the second shell 3, thereby facilitating the storage of the stones. A storage box 30 is slidably arranged on the end of the baffle 15 away from the mounting belt 7. The outer sides of the first shell 2 and the second shell 3 are both provided with an opening for limiting the sliding of the storage box 30. A magnetic plate 31 is fixedly arranged on the outer side of the storage box 30. The feeding plates 8 can push the stones into the storage box 30. The storage box 30 can be fixedly arranged on the outer side of the second shell 3 through the magnetic plate 31. A breathable filter screen 32 is fixedly arranged on the bottom of the storage box 30. The bottom of the baffle 15 is provided with an opening corresponding to the breathable filter screen 32, thereby facilitating the discharge of the air entering the baffle 15.
[0033] Example three: please refer to Figures 4-8The embodiment is further illustrated for other embodiments. The cleaning structure in the drawing includes a brush roller 9 arranged inside the second protective shell 3, which can clean the feeding plate 8. The cleaning structure further includes a prismatic rod 22 slidingly arranged inside the brush roller 9. Both ends of the brush roller 9 are fixedly provided with a first sliding disc 23 and a second sliding disc 24, respectively. The outer side of each positioning plate 16 is provided with a first sliding cavity for limiting the sliding of the first sliding disc 23 and a second sliding cavity for limiting the sliding of the second sliding disc 24. Both ends of the prismatic rod 22 are rotatably arranged on the opposite side of the two positioning plates 16. A transmission belt 25 is rotatably arranged between both ends of the prismatic rod 22 and the adjacent transmission rod 18, so that when the transmission rod 18 rotates, the prismatic rod 22 can be driven to rotate synchronously through the transmission belt 25. The prismatic rod 22 drives the brush roller 9 to rotate, and the brush roller 9 cleans the stones on the installation belt 7 and the feeding plate 8, thereby improving the convenience of collecting stones and dust. A plurality of sliding balls 26 symmetrically distributed at the center are fixedly arranged on the side of the first sliding disc 23 away from the brush roller 9. A positioning ring 27 is fixedly arranged on the inner side of the first sliding cavity. A spherical groove for limiting the sliding of the sliding ball 26 is arranged on the outer side of the positioning ring 27. The spherical groove has a one-third spherical structure. A positioning spring 28 is fixedly arranged on the side of the second sliding disc 24 away from the prismatic rod 22. When the brush roller 9 rotates, the first sliding disc 23 and the second sliding disc 24 can rotate along the inner side of the first sliding cavity and the second sliding cavity, respectively. The sliding ball 26 on the first sliding disc 23 moves out of the spherical groove on the positioning ring 27. The sliding ball 26 is pushed to move by the reaction force of the positioning ring 27. The first sliding disc 23 drives the brush roller 9 to move horizontally along the outer side of the prismatic rod 22, drives the second sliding disc 24 to compress the positioning spring 28, and when the sliding ball 26 is aligned with the spherical groove again, the brush roller 9 is moved back to the original position by the elastic force of the positioning spring 28. The sliding ball 26 can enter the spherical groove again. Thus, with the rotation of the prismatic rod 22, the reciprocating swing of the brush roller 9 is realized, and the cleaning efficiency of the brush roller 9 on the installation belt 7 and the feeding plate 8 is improved. The end of the positioning spring 28 away from the second sliding disc 24 is fixedly provided with a grommet 34 rotatably arranged in the second sliding cavity of the positioning plate 16. When the second sliding disc 24 compresses the positioning spring 28, the grommet 34 can provide support for the positioning spring 28.
[0034] Working principle: first, the staff hold two handles 33, make the second shell 3 tilt state close to the wall, rubber pad strip 13 on the arc-shaped frame 6 and slide roller 14 contact with the wall, and with slide roller 14 as fulcrum, push the other end of the second shell 3 close to the wall, make rubber pad strip 13 push arc-shaped frame 6 move along the inside of the arc-shaped cavity of the second shell 3, arc-shaped frame 6 drive two sleeve blocks 11 move along the inside of the arc-shaped slide 10, and compress the arc-shaped spring 12, the machine body 1 drive the drive rod 4 rotate through the transmission shaft seat, make the drive rod 4 drive multiple cutting knives 5 high speed rotation, with the swing of the second shell 3, cutting knife 5 contact with the wall, groove the wall, use the elasticity of the arc-shaped spring 12, make the arc-shaped frame 6 rest on the outside of the wall, provide shelter protection for the stone and dust generated by cutting knife 5, when the bottom of the second shell 3 completely contact with the wall, the staff pull the second shell 3 down through the handle 33, make cutting knife 5 groove the wall, the splashing stone and dust contact with the installation belt 7 through the feed inlet on the cover 15, at this time, the drive motor 21 drive corresponding transmission rod 18 rotate, the transmission rod 18 drive two synchronous toothed belts 19 synchronous rotation through two transmission gears 20 on the outside of the transmission rod 18 and cooperate with two transmission gears 20 on the outside of another transmission rod 18, two synchronous toothed belts 19 drive installation belt 7 rotate along the outside of the arc-shaped plate 17 and the arc-shaped slot of two positioning plates 16, make installation belt 7 drive multiple feeding plates 8 synchronous movement, make the stone generated by cutting knife 5 can enter the feed inlet, and push the stone and dust through multiple synchronous feeding plates 8, push the stone to the cover 15 and the second shell 3, at the same time, the transmission rod 18 drive prismatic rod 22 rotate through transmission belt 25, make prismatic rod 22 drive brush roller 9 rotate, brush roller 9 drive first slide 23 and second slide 24 synchronous rotation, the slide ball 26 on the first slide 23 move out of the spherical groove on the positioning ring 27, use the reaction force of the positioning ring 27 on the slide ball 26, make the slide ball 26 push the first slide 23 move, the first slide 23 drive brush roller 9 move horizontally along the outside of the prismatic rod 22, at the same time, brush roller 9 push the second slide 24 move along the second slide cavity on the positioning plate 16, make the second slide 24 compress the positioning spring 28, and when the slide ball 26 align with the spherical groove again, use the rebound force of the positioning spring 28 to make brush roller 9 move back to position, the slide ball 26 can enter the spherical groove again, thus, with the rotation of the prismatic rod 22, brush roller 9 can rotate while move left and right reciprocating, make brush roller 9 present the state of rubbing brush to clean the stone and dust on the installation belt 7 and feeding plate 8, make the stone and dust fall into the storage box 30, the air in the storage box 30 can be discharged from the air filter screen 32, thus, the effect of improving the safety of wall grooving is achieved, avoid the splashing of stone.
[0035] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and illustrative figures, it should be apparent that the scope of the present application is not limited to these specific embodiments.
[0036] While the embodiments of the application have been shown and described herein, it will be understood by those skilled in the art that many changes, modifications, substitutions and alterations to these embodiments can be made without departing from the spirit and scope of the present application, which is defined by the appended claims and their equivalents.
Claims
1. A wiring grooving device for building construction, characterized by comprising: 1) a base frame 1, The utility model relates to a cutting device, including: A machine body (1) and a first shell (2) installed at one end of the machine body (1), the inner side of the first shell (2) is installed with a second shell (3), the inner side of the second shell (3) is rotatably installed with a driving rod (4), the outer side of the driving rod (4) is fixedly installed with a plurality of cutting knives (5), and one end of the driving rod (4) is connected with the machine body (1) through a transmission shaft base (6); Further including: A protection mechanism for shielding the stone particles generated by the cutting knives (5), the protection mechanism is installed on the inner side of the second shell (3), the protection mechanism includes an arc-shaped blocking frame (6) arranged on the inner side of the second shell (3), and the arc-shaped blocking frame (6) can cover the splashed stone particles; A material collecting mechanism for collecting the splashed stone particles, the material collecting mechanism is installed on the inner side of the second shell (3), and the material collecting mechanism includes a mounting belt (7) arranged on the inner side of the second shell (3), the outer side of the mounting belt (7) is fixedly installed with a plurality of feeding plates (8) distributed at equal intervals, and the mounting belt (7) can push the splashed stone particles in cooperation with the feeding plates (8); A cleaning structure for cleaning the stone particles and dust on the feeding plates (8), the cleaning structure is installed on the inner side of the second shell (3), and the cleaning structure includes a brush roller (9) arranged on the inner side of the second shell (3), and the brush roller (9) can clean the feeding plates (8).
2. A wiring routing device for building construction according to claim 1, characterized in that: The protection mechanism further includes two arc-shaped carriages (10) installed on the outer side of the second shell (3), the outer side of the arc-shaped carriage (10) is slidably installed with a sleeve block (11), the top of the second shell (3) is provided with a long slot for limiting the sliding of the sleeve block (11), the inner side of the second shell (3) is provided with an arc-shaped cavity for limiting the sliding of the arc-shaped blocking frame (6), the cross section of the arc-shaped blocking frame (6) is in a U-shaped structure, the two sleeve blocks (11) are installed on the outer side of the arc-shaped blocking frame (6), arc-shaped springs (12) are fixedly installed between the outer side of the sleeve block (11) and the inner side of the arc-shaped carriage (10), rubber pad strips (13) are installed at the bottom end of the arc-shaped blocking frame (6), and slide rollers (14) are fixedly installed at the bottom of the machine body (1).
3. A routing and grooving device for building construction according to claim 2, characterized in that: The receiving mechanism further comprises a baffle cover (15) mounted on the inner side of the second shell (3), and the second shell (3) and the baffle cover (15) are both circular arc structures, two positioning plates (16) are fixedly mounted between the inner side of the second shell (3) and the inner side of the baffle cover (15), an arc-shaped groove for limiting the insertion of the mounting belt (7) is formed on the outer side of the positioning plate (16), an arc-shaped plate (17) is arranged on the inner side of the mounting belt (7), the arc-shaped plate (17) is mounted on the inner side of the second shell (3), two transmission rods (18) are rotatably mounted on the inner side of the second shell (3), two synchronous toothed belts (19) are fixedly mounted on the inner side of the mounting belt (7), two transmission gears (20) are fixedly mounted on the outer side of the transmission rod (18) and matched with the two synchronous toothed belts (19) respectively, a driving motor (21) is mounted on the outer side of the first shell (2), and one end of the driving motor (21) is fixedly connected with the adjacent transmission rod (18), and a feeding port is formed on the outer side of the baffle cover (15).
4. A routing and grooving device for building construction according to claim 3, characterized in that: The cleaning structure further comprises a prismatic rod (22) slidingly mounted on the inner side of the brush roller (9), a first sliding disc (23) and a second sliding disc (24) are fixedly mounted on the two ends of the brush roller (9) respectively, first sliding cavities for limiting the sliding of the first sliding disc (23) and second sliding cavities for limiting the sliding of the second sliding disc (24) are formed on the outer sides of the two positioning plates (16) respectively, the two ends of the prismatic rod (22) are rotatably mounted on the opposite sides of the two positioning plates (16) respectively, and a transmission belt (25) is rotatably mounted between the two ends of the prismatic rod (22) and the adjacent transmission rod (18), a plurality of sliding balls (26) are fixedly mounted on one side of the first sliding disc (23), a positioning ring (27) is mounted on the inner side of the first sliding cavity, and a spherical groove for limiting the sliding of the sliding ball (26) is formed on the outer side of the positioning ring (27), and a positioning spring (28) is mounted on one side of the second sliding disc (24).
5. A routing and grooving device for use in building construction according to claim 1, characterized in that: The top of the machine body (1) is fixedly mounted with two handles (33).
6. A routing and grooving device for use in building construction according to claim 2, characterized in that: The two sides of the arc-shaped sliding frame (10) are both mounted with a blocking strip (35), and the blocking strip (35) is in contact with the outer side of the sleeve block (11).
7. A routing and grooving device for use in building construction according to claim 2, characterized in that: The two sides of the arc-shaped blocking frame (6) are both rotatably mounted with a plurality of sliding beads (29), and the outer sides of the sliding beads (29) are in contact with the inner side of the arc-shaped cavity of the second shell (3).
8. A routing and grooving device for use in building construction according to claim 3, characterized in that: One end of the baffle cover (15) is slidingly mounted with a storage box (30), and the outer sides of the first shell (2) and the second shell (3) are both formed with openings for limiting the sliding of the storage box (30), and a magnetic plate (31) is mounted on the outer side of the storage box (30).
9. A routing and grooving device for use in building construction according to claim 8, characterized in that: The bottom of the storage box (30) is mounted with an air permeable filter screen (32), and the bottom of the baffle cover (15) is formed with an opening corresponding to the air permeable filter screen (32).
10. A routing and grooving device for use in building construction according to claim 4, characterized in that: One end of the positioning spring (28) is fixedly installed with a grommet (34), and the grommet (34) is rotatably installed in the second sliding cavity of the positioning plate (16).