Device for processing environment-friendly building boards
The device design, featuring multi-axis drive and a dual-cleaning structure, solves the problem of mortar clumping on the surface of reinforcing bars during the processing of environmentally friendly concrete slabs. It achieves efficient cleaning and precise bending, improving the connection performance of reinforcing bars and the life of molds.
Patent Information
- Application Number
- CN202511275789.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2025-11-21
AI Technical Summary
During the processing of environmentally friendly concrete slabs, the surface of the reinforcing bars is scratched by mortar clumping and the mold is worn, which leads to a decrease in the connection performance of the reinforcing bars and a shortened service life of the mold.
The device adopts a multi-axis drive and precise positioning design, combined with a dual cleaning structure of scraper and wire brush, to achieve efficient cleaning of mortar on the surface of steel bars, avoiding misalignment and wear.
It improves the efficiency and quality of cleaning the surface of reinforcing bars, reduces damage to reinforcing bars and wear on molds, and ensures the accuracy of reinforcing bar bending and the service life of the device.
Smart Images

Figure CN120984784A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field related to building construction, and specifically discloses a device for processing environment-friendly building boards. BACKGROUND
[0002] Environment-friendly concrete steel reinforced boards (such as recycled aggregate concrete boards and industrial solid waste mixed concrete boards) are pre-stressed by built-in steel to improve mechanical properties, and the length and bending degree of the steel need to be accurately processed according to the size of the board, stress demand and pre-stress process. When pouring environment-friendly concrete, the steel is arranged equidistantly in the horizontal direction inside the mold, and after the steel and the environment-friendly concrete are formed, the steel extends to both ends of the board. The core purpose is to strengthen the connection performance of the steel and the board through mechanical anchoring, and to solve key problems such as easy disengagement of the steel, overall mechanical failure of the board, and subsequent assembly difficulties. The extended steel needs to be bent. Because of the large area of pouring, part of the original slurry of the environment-friendly concrete will splash onto the outer surface of the steel. If the area is located at the position that needs to be bent, the surface mortar lump will be crushed first when the bending mold extrudes the steel, and the sharp mortar particles after crushing will cut the surface of the steel like a knife, forming deep scratches. These scratches will become "stress concentration points" when the steel bears the bending moment, and stress will concentrate at the scratches, causing micro-cracks on the surface of the steel. In addition, the inner surface of the bending mold will also be extruded and worn due to the adhesion of the mortar particles, greatly reducing the service life of the bending mold.
[0003] Therefore, a device for processing environment-friendly building boards is proposed to solve the above problems. SUMMARY
[0004] The purpose of the present application is to solve the problems in the background art, and a device for processing environment-friendly building boards is proposed, which comprises a workbench, a board connected to the workbench through a clamping mechanism arranged at the upper end of the workbench, a steel rod equidistantly installed inside the board along the horizontal direction, a machine base arranged on one side of the workbench, a Y-axis sliding table slidingly installed inside the machine base through a Y-axis driving mechanism arranged at the upper part of the machine base, a bracket vertically installed on the upper end surface of one side of the Y-axis sliding table, an X-axis sliding frame connected to one side of the Y-axis sliding table and close to the bracket through a lifting piece arranged thereon, a T-shaped frame slidingly connected inside the X-axis sliding frame through an X-axis driving mechanism arranged therein, a sliding seat connected to one side of the T-shaped frame through a sliding piece arranged thereon, a sliding frame connected inside the sliding seat through a height adjusting piece arranged therein, a chip brushing mechanism symmetrically installed on both sides of the outside of the sliding frame, an arc-shaped fixing seat fixedly installed inside the lower part of the sliding frame, and the chip brushing mechanism on both sides of the arc-shaped fixing seat is connected through a bidirectional driving piece arranged inside the arc-shaped fixing seat.
[0005] Further, the clamping mechanism comprises a first hydraulic cylinder fixedly arranged on the upper end face of one side of the workbench, a clamping rod is fixedly installed on the telescopic end of the first hydraulic cylinder, and the clamping rod is abutted against the outer surface of one side of the plate.
[0006] Further, the lifting piece comprises a second hydraulic cylinder fixedly installed on the Y-axis sliding table and located on the upper end face of one side of the support, a fixing rod is fixedly arranged on the telescopic end of the second hydraulic cylinder, one end of the fixing rod is connected with the outer surface of one side of the X-axis sliding frame, and the X-axis sliding frame is slidingly connected between one end and the support.
[0007] Further, the sliding piece comprises a rack fixedly installed below the outer surface of one side of the T-shaped frame, an electric gear walking mechanism is meshingly connected on the outer top of the rack, one side of a sliding seat is slidingly arranged in the inner portion of the T-shaped frame, a fourth hydraulic cylinder is fixedly installed on the outer wall of the sliding seat, a U-shaped frame is fixedly installed on the telescopic end of the fourth hydraulic cylinder, a fixed bending wheel is rotatably installed in the inner portion of the U-shaped frame, and a resisting bending wheel is installed below the inner portion of the T-shaped frame.
[0008] Further, the height adjusting piece comprises a third hydraulic cylinder fixedly clamped in the inner portion of the sliding seat, the telescopic end of the third hydraulic cylinder is connected with the inner surface of a sliding frame, and one end of the sliding frame is slidingly penetrated through the upper end face of the sliding seat.
[0009] Further, the bidirectional driving piece comprises a double-shaft motor fixedly installed in the inner portion of the arc-shaped fixing seat, the double-shaft motor is connected with the corresponding scrap brushing mechanism at both ends, a knife cutting table is fixedly installed on the inner surface of the arc-shaped fixing seat, and a scraping cone is fixedly installed on both sides of the outer wall of the knife cutting table.
[0010] Further, the scrap brushing mechanism comprises a clamping shaft, universal ball joints are installed at both ends of the clamping shaft respectively, a plurality of steel wire brushes are installed on the outer surface of the clamping shaft, a connecting seat is embedded on the outer portion of one group of universal ball joints, one end of the connecting seat is connected with the output shaft of the double-shaft motor, a clamping cylinder is embedded on the outer portion of the other group of universal ball joints away from the connecting seat, and an angle adjusting piece is arranged on the outer portion of the clamping cylinder.
[0011] Further, the angle adjusting piece comprises a movable rod rotatably installed on the outer portion of the clamping cylinder, a sliding groove is correspondingly formed on the outer surface of one side of the sliding frame, a plurality of clamping holes are formed on the inner surface of the sliding groove, a clamping pin is threadedly inserted into the inner portion of one group of clamping holes at one end of the inner portion of the movable rod, and the clamping pin is movably inserted into the inner portion of the clamping hole.
[0012] Compared with the prior art, the present application has the following beneficial effects: 1. Through the cooperative design of multi-axis drive and precise positioning, efficient alignment and attitude adjustment before steel bending is realized, the bending quality problem caused by positioning deviation in traditional processing is solved, the Y-axis drive mechanism on the machine base drives the Y-axis sliding table to move along the horizontal direction, the X-axis drive mechanism drives the T-shaped frame to slide in the X-axis sliding frame, and the lifting part drives the X-axis sliding frame to adjust up and down, so that the position of the sliding seat and the scrap brushing mechanism can be quickly adjusted according to the spacing and height of the steel bars on the plate; at the same time, the electric gear walking mechanism in the sliding part moves along the rack, further adjusts the position of the sliding seat, ensures the precise alignment of the scrap brushing mechanism and the steel bar, and avoids incomplete brushing or steel bar deviation during bending due to alignment deviation.
[0013] 2. Through the double cleaning structure of pre-treatment by scraping cone and fine cleaning by steel wire brush, the mortar cleaning efficiency and quality are improved, and the mortar characteristics of the environmental protection concrete steel plate are adapted. The scraping cones on both sides of the knife cutting table in the arc fixed seat can first pre-scrape the thick mortar clumps on the surface of the steel bar, quickly remove the large impurities, and reduce the cleaning load of the steel wire brush; then the steel wire brush finely grinds the residual fine mortar, reducing the wear of the steel bar and the mold during later bending of the steel bar.
[0014] 3. Through the adaptation of bidirectional drive scrap brushing mechanism and universal ball joint, the steel bar surface mortar is cleaned in all directions without dead angle, and the problems of steel bar damage and mold wear caused by mortar residue are solved. The two-sided scrap brushing mechanisms in the arc fixed seat are synchronously driven by the double-shaft motor, and the steel wire brush outside the shaft rotates at high speed, which can quickly grind the mortar clumps on the surface of the steel bar; the universal ball joint at both ends of the scrap brushing mechanism can flexibly adjust the angle, and cooperates with the angle adjusting part (movable rod, clamping pin and multiple clamping holes), so that the steel wire brush can be adjusted to the best cleaning angle according to the diameter of the steel bar and the position of the mortar adhesion, effectively avoiding the scratch of the steel bar or the wear of the bending mold caused by the mortar particles during bending. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the present application; Figure 2 It is a schematic diagram of the overall structure of the present application; Figure 1 It is an enlarged schematic diagram of the overall connection structure at A in the present application; Figure 3 It is a schematic diagram of the connection structure between the sliding seat and the scrap brushing mechanism of the present application; Figure 4 It is a schematic diagram of the connection structure between the bending wheel and the resisting bending wheel of the present application; Figure 5 It is a schematic diagram of the surface connection structure in the arc fixed seat of the present application; Figure 6 It is a schematic diagram of the connection of the scrap brushing mechanism part of the present application; Figure 7 It is an enlarged schematic diagram of the connection structure at B in the present application. Figure 3
[0016] In the figure: 1, workbench; 2, plate; 3, first hydraulic cylinder; 4, machine base; 5, second hydraulic cylinder; 6, support; 7, Y-axis sliding table; 8, X-axis sliding frame; 9, Y-axis drive mechanism; 10, X-axis drive mechanism; 11, bending wheel; 12, T-shaped frame; 13, rack; 14, electric gear walking mechanism; 15, sliding seat; 16, sliding frame; 17, third hydraulic cylinder; 18, fourth hydraulic cylinder; 19, U-shaped frame; 20, arc-shaped fixed seat; 21, bending wheel; 22, movable rod; 23, steel wire brush; 24, clamping cylinder; 25, scraping cone; 26, knife cutting table; 27, double-shaft motor; 28, connecting seat; 29, clamping shaft; 30, universal ball joint; 31, clamping hole; 32, clamping pin; 33, sliding groove. DETAILED DESCRIPTION
[0017] In order to enable one skilled in the art to better understand the above-mentioned objects, features and advantages of the present application, the present application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0018] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, therefore, the present application is not limited to the specific embodiments disclosed below.
[0019] As Figures 1-7 shown in a device for processing environmentally friendly building boards, comprising a workbench 1, the upper end of the workbench 1 is connected with a plate 2 through the setting of a clamping mechanism, the plate 2 is internally installed with steel bars along the horizontal direction at equal intervals, one side of the workbench 1 is provided with a machine base 4, the inside of the machine base 4 is slidably installed with a Y-axis sliding table 7 through the installation of a Y-axis drive mechanism 9 on the upper side, the upper end of one side of the Y-axis sliding table 7 is vertically installed with a support 6, one side of the Y-axis sliding table 7 and close to one side of the support 6 is connected with an X-axis sliding frame 8 through the setting of a lifting piece, the inside of the X-axis sliding frame 8 is slidably connected with a T-shaped frame 12 through the installation of an X-axis drive mechanism 10, one side of the T-shaped frame 12 is connected with a sliding seat 15 through the setting of a sliding piece, the inside of the sliding seat 15 is connected with a sliding frame 16 through the setting of a height adjusting piece, the outside of the sliding frame 16 is symmetrically installed with a brush chip mechanism on both sides, the inside of the sliding frame 16 is fixedly installed with an arc-shaped fixed seat 20 on the lower side, the arc-shaped fixed seat 20 is connected with the brush chip mechanisms on both sides through the setting of a bidirectional drive piece; The Y-axis drive mechanism 9 inside the starting seat 4 drives the Y-axis sliding table 7 to slide horizontally along the seat 4, adjusts the transverse position of the Y-axis sliding table 7; the height of the X-axis sliding frame 8 is adjusted by the lifting piece on one side of the Y-axis sliding table 7, so that the X-axis sliding frame 8 is at an appropriate height with the steel bars on the plate 2; the X-axis drive mechanism 10 inside the X-axis sliding frame 8 is started to drive the T-shaped frame 12 to slide horizontally along the X-axis sliding frame 8, further close to the steel bar area, the position of the sliding seat 15 is adjusted by the sliding piece on one side of the T-shaped frame 12, so that the sliding seat 15 is aligned with the steel bar to be processed; then the height of the sliding frame 16 is adjusted by the height adjusting piece inside the sliding seat 15, so that the brush chip mechanism outside the sliding frame 16 is in contact with the surface of the steel bar, and at the same time, it is ensured that the arc-shaped fixed seat 20 below the sliding frame 16 is adapted to the position of the steel bar; finally, the brush chip mechanism is driven to operate by the bidirectional drive piece inside the arc-shaped fixed seat 20, and after the surface of the steel bar is cleaned, the subsequent bending operation can be performed.
[0020] The clamping mechanism includes a first hydraulic cylinder 3 fixedly arranged on the upper end face of one side of the workbench 1, and a clamping rod fixedly installed at the telescopic end of the first hydraulic cylinder 3, the clamping rod abutting against the outer surface of one side of the plate 2. The first hydraulic cylinder 3 fixedly arranged on the upper end face of one side of the workbench 1 is started, the telescopic end of the first hydraulic cylinder 3 extends to the plate 2, and the clamping rod fixedly arranged at the telescopic end of the first hydraulic cylinder 3 is driven to move synchronously, so that the clamping rod is continuously pushed until the clamping rod abuts against the outer surface of one side of the plate 2, thereby ensuring the stability of the plate during subsequent processing.
[0021] The lifting piece includes a second hydraulic cylinder 5 fixedly installed on the Y-axis sliding table 7 and located on the upper end face of one side of the support 6, and a fixed rod fixedly arranged at the telescopic end of the second hydraulic cylinder 5, one end of the fixed rod being connected to the outer surface of one side of the X-axis sliding frame 8, and the X-axis sliding frame 8 being in sliding connection between one end and the support 6. Under the telescopic drive of the second hydraulic cylinder 5, the X-axis sliding frame 8 can slide outside the support 6, thereby adjusting the height of the T-shaped frame 12 during processing of the steel bar.
[0022] The sliding piece includes a rack 13 fixedly installed on the outer surface of one side of the T-shaped frame 12, a motor gear walking mechanism 14 meshingly connected to the outer upper portion of the rack 13, and a sliding seat 15 sliding in the interior of the T-shaped frame 12 on one side, the sliding seat 15 being fixedly installed with a fourth hydraulic cylinder 18 on the outer wall, the fourth hydraulic cylinder 18 being fixedly installed with a U-shaped frame 19 at the telescopic end, the U-shaped frame 19 being rotatably installed with a bending wheel 11 in the interior, and a resisting bending wheel 21 being installed in the interior of the T-shaped frame 12 below. The motor gear walking mechanism 14 meshingly connected to the upper portion of the rack 13 fixedly installed on the outer surface of one side of the T-shaped frame 12 is started, when the motor gear walking mechanism 14 operates, the gear rolls along the rack 13, drives the sliding seat 15 connected thereto to slide in the interior of the T-shaped frame 12, and adjusts the transverse relative position of the sliding seat 15 and the steel bar. When the steel bar bending operation is needed, the fourth hydraulic cylinder 18 fixed outside the sliding seat 15 is started, the extension end of the fourth hydraulic cylinder 18 is controlled to extend and retract, the U-shaped frame 19 fixed at the end is driven to move up and down, and then the height of the bending wheel 11 rotatably installed in the U-shaped frame 19 is adjusted, so that the bending wheel 11 cooperates with the abutting wheel 21 installed below in the T-shaped frame 12 to clamp the steel bar therebetween, and the steel bar is ready for bending.
[0023] The height adjusting member includes a third hydraulic cylinder 17 fixedly clamped in the sliding seat 15, and the extension end of the third hydraulic cylinder 17 is connected with the inner surface of the sliding frame 16, and one end of the sliding frame 16 is slidably penetrated through the upper end surface of the sliding seat 15; The third hydraulic cylinder 17 fixedly clamped in the sliding seat 15 is started, the extension end of the third hydraulic cylinder 17 is controlled to extend and retract, and if the brushing mechanism needs to be close to the steel bar, the extension end of the third hydraulic cylinder 17 is controlled to extend, the sliding frame 16 is pushed to slide upward along the inside of the sliding seat 15; if the brushing mechanism needs to be away from the steel bar, the extension end of the third hydraulic cylinder 17 is controlled to retract, the sliding frame 16 is pulled to slide downward, and until the brushing mechanism is in close contact with the surface of the steel bar, the third hydraulic cylinder 17 is stopped.
[0024] The bidirectional driving member includes a double-shaft motor 27 fixedly installed in the arc-shaped fixed seat 20, the double-shaft motor 27 is connected with the brushing mechanism at both ends, the knife cutting table 26 is fixedly installed on the inner surface of the arc-shaped fixed seat 20, and the scraping cone 25 is fixedly installed on the outer wall of the knife cutting table 26; The double-shaft motor 27 fixedly installed in the arc-shaped fixed seat 20 is started, when the double-shaft motor 27 operates, the output shafts at both ends thereof rotate synchronously, the brushing mechanism at the corresponding position is driven to operate, and the mortar on the surface of the steel bar is started to be cleaned. During the cleaning process of the brushing mechanism, the knife cutting table 26 fixed on the inner surface of the arc-shaped fixed seat 20 moves with the sliding frame 16, the scraping cone 25 fixed on the outer wall of the knife cutting table 26 first contacts the thick mortar lump on the surface of the steel bar to pre-scrape it, and assists the brushing mechanism to complete the cleaning.
[0025] The brushing mechanism includes a clamping shaft 29, universal ball joints 30 are respectively installed at both ends of the clamping shaft 29, a plurality of steel wire brushes 23 are installed on the outer surface of the clamping shaft 29, a connecting seat 28 is embedded on the outside of one group of universal ball joints 30, one end of the connecting seat 28 is connected with the output shaft of the double-shaft motor 27, a clamping cylinder 24 is embedded on the outside of the other group of universal ball joints 30 away from the connecting seat 28, and an angle adjusting member is arranged outside the clamping cylinder 24; When the double-shaft motor 27 operates, the output shaft thereof drives one group of universal ball joints 30 to rotate through the connecting seat 28, and then drives the clamping shaft 29 and the other group of universal ball joints 30 to rotate synchronously, the steel wire brushes 23 on the outer surface of the clamping shaft 29 rotate with the clamping shaft 29 to polish and clean the small mortar particles remaining on the surface of the steel bar.
[0026] The angle adjusting piece comprises a movable rod 22 rotatably installed outside the clamping cylinder 24, the outer surface of one side of the sliding frame 16 is provided with a sliding groove 33, the inner surface of the sliding groove 33 is provided with a plurality of clamping holes 31, and the inner end of the movable rod 22 is threadedly inserted with a clamping pin 32 which is movably inserted into one of the clamping holes 31; When the angle of the steel wire brush 23 needs to be adjusted, the clamping pin 32 at the inner end of the movable rod 22 is loosened first, so that the clamping pin 32 is separated from the clamping hole 31 in the sliding groove 33 of one side of the sliding frame 16, and the movable rod 22 is released from the limitation. Then, according to the required angle, the movable rod 22 is adjusted up and down, and the movable rod 22 drives the universal ball joint 30 and the clamping shaft 29 at the clamping cylinder 24 to adjust the angle until the steel wire brush 23 is in contact with the inner surface of the fixed bending wheel 11 and the pressing bending wheel 21, so that the curved surface area can be contacted, and the steel wire brush 23 can reach the best cleaning angle.
[0027] Working principle: Place the environmental protection concrete steel bar plate material (with built-in horizontal equidistant steel bars) to be processed on the workbench 1, start the first hydraulic cylinder 3 in the clamping mechanism, and the telescopic end pushes the clamping rod to move to one side of the plate material 2 until the clamping rod is tightly abutted with the outer wall of the plate material 2, so as to realize the stable fixation of the plate material 2 during the processing process and avoid the deviation of the plate material 2 during the bending; According to the distance and height of the steel bars on the plate material 2, start the Y-axis driving mechanism 9 in the machine base 4 to drive the Y-axis sliding table 7 to move along the horizontal Y-axis direction, so that the X-axis sliding frame 8 preliminarily approaches the steel bar area; at the same time, start the second hydraulic cylinder 5 in the lifting part, and the telescopic end drives the X-axis sliding frame 8 to rise and fall through the fixed rod, adjusts the height of the X-axis sliding frame 8, so that the pressing bending wheel 21 is abutted with the lower surface of the steel bar, and then drives the sliding frame 16 to move downward under the drive of the third hydraulic cylinder 17, so that the arc-shaped fixed seat 20 is placed above the outer part of the steel bar, the knife cutting table 26 is in contact with the mortar block, and then starts the electric gear walking mechanism 14 in the sliding part to make it mesh and move along the rack 13 on one side of the T-shaped frame 12, drives the sliding seat 15 to slide in the T-shaped frame 12, and the knife cutting table 26 and the scraping cone 25 scrape off the large mortar block. At the same time, start the double-shaft motor 27 in the bidirectional driving part, and the two end output shafts drive the clamping shaft 29 of the brush chip removing mechanism to rotate at high speed through the connecting seat 28; the steel wire brush 23 on the outer surface of the clamping shaft 29 rotates synchronously, finely polishes the fine mortar particles remaining on the surface of the steel bar, realizes the dead angle cleaning, ensures that the inner surfaces of the fixed bending wheel 11 and the pressing bending wheel 21 are not in contact with the mortar block during the bending process, reduces the abrasion, and also avoids the damage of the steel bar during the extrusion bending process; After the completion of the mortar cleaning, the sliding seat 15 is moved to the outer surface of the steel bar, and under the extension and retraction drive of the fourth hydraulic cylinder 18, the bending wheel 11 is urged to abut against the upper surface of the steel bar. At this time, the X-axis sliding frame 8 is abutted by the second hydraulic cylinder 5, so that the tail end of the steel bar is bent upward. When the X-axis sliding frame 8 is pushed up, the independently arranged fourth hydraulic cylinder 18 needs to be correspondingly retracted downward at the upper end of the steel bar. After the completion of the bending work, the angle of the steel wire brush 23 can be adjusted by the angle adjusting piece, the locking pin 32 on the movable rod 22 is loosened, the locking barrel 24 is rotated to drive the universal ball joint 30 to adjust the angle of the clamping shaft 29, so that the steel wire brush 23 is inclined to a certain angle, so that the steel wire brush 23 can clean the inner surface of the abutting bending wheel 21 and the fixed bending wheel 11. After adjustment, the locking pin 32 is inserted into the sliding groove 33 to correspond to the locking hole 31, and the angle of the steel wire brush 23 is fixed. The double-shaft motor 27 drives the steel wire brush 23 to rotate to clean the inner surface of the abutting bending wheel 21 and the fixed bending wheel 11.
[0028] The basic principles, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.
Claims
1. A device for processing environmentally friendly building materials, comprising a workbench (1), characterized in that: The upper end of the workbench (1) is connected to a plate (2) by a clamping mechanism. Steel bars are installed horizontally at equal intervals inside the plate (2). A base (4) is provided on one side of the workbench (1). A Y-axis slide (7) is slidably mounted on the upper part of the base (4) via a Y-axis drive mechanism (9). A bracket (6) is vertically mounted on the upper surface of one side of the Y-axis slide (7). An X-axis slide (8) is connected to one side of the Y-axis slide (7) and the side closest to the bracket (6) via a lifting mechanism. The X-axis carriage (8) is slidably connected to a T-shaped frame (12) through an installed X-axis drive mechanism (10). A slide block (15) is connected to one side of the T-shaped frame (12) through a sliding member. A slide frame (16) is connected to the slide block (15) through a height adjustment member. A chip brushing mechanism is symmetrically installed on both sides of the slide frame (16). An arc-shaped fixing seat (20) is fixedly installed at the bottom inside the slide frame (16). The arc-shaped fixing seat (20) is connected to the chip brushing mechanism on both sides through a bidirectional drive member.
2. The device for processing environmentally friendly building materials according to claim 1, characterized in that: The clamping mechanism includes a first hydraulic cylinder (3) fixedly installed on the upper surface of one side of the workbench (1). A clamping rod is fixedly installed on the telescopic end of the first hydraulic cylinder (3), and the clamping rod abuts against the outer surface of one side of the plate (2).
3. The device for processing environmentally friendly building materials according to claim 1, characterized in that: The lifting component includes a second hydraulic cylinder (5) fixedly installed on the Y-axis slide (7) and located on the upper side of the bracket (6). The extension end of the second hydraulic cylinder (5) is fixedly provided with a fixing rod. One end of the fixing rod is connected to the outer surface of one side of the X-axis slide (8). One end of the X-axis slide (8) is slidably connected to the bracket (6).
4. The device for processing environmentally friendly building materials according to claim 1, characterized in that: The sliding component includes a rack (13) fixedly installed below the outer surface of one side of the T-shaped frame (12). An electric gear traveling mechanism (14) is meshed above the outside of the rack (13). The slide block (15) slides inside the T-shaped frame (12) on one side. A fourth hydraulic cylinder (18) is fixedly installed on the outer wall of the slide block (15). A U-shaped frame (19) is fixedly installed at the telescopic end of the fourth hydraulic cylinder (18). A fixed bending wheel (11) is rotatably installed inside the U-shaped frame (19). A bending anti-bending wheel (21) is installed below the inside of the T-shaped frame (12).
5. The device for processing environmentally friendly building materials according to claim 1, characterized in that: The height adjustment component includes a third hydraulic cylinder (17) that is fixedly mounted inside the slide (15). The telescopic end of the third hydraulic cylinder (17) is connected to the inner surface of the slide frame (16), and one end of the slide frame (16) slides through the upper surface of the slide (15).
6. The device for processing environmentally friendly building materials according to claim 1, characterized in that: The bidirectional drive includes a dual-axis motor (27) fixedly installed inside the arc-shaped fixed base (20). The two ends of the dual-axis motor (27) are connected to the corresponding chip brushing mechanism. A cutting table (26) is fixedly installed on the inner surface of the arc-shaped fixed base (20). Scraping cones (25) are fixedly installed on both sides of the outer wall of the cutting table (26).
7. The device for processing environmentally friendly building materials according to claim 6, characterized in that: The brushing mechanism includes a retaining shaft (29), with universal ball joints (30) installed at both ends of the retaining shaft (29). Multiple wire brushes (23) are installed on the outer surface of the retaining shaft (29). One set of universal ball joints (30) is fitted with a connecting seat (28), one end of which is connected to the output shaft of a dual-axis motor (27). The other set of universal ball joints (30) is fitted with a retaining sleeve (24) at the end away from the connecting seat (28), and the retaining sleeve (24) is provided with an adjusting member.
8. The device for processing environmentally friendly building materials according to claim 7, characterized in that: The adjusting component includes a movable rod (22) that is rotatably installed outside the clamping cylinder (24). A groove (33) is correspondingly opened on the outer surface of one side of the sliding frame (16). Multiple sets of clamping holes (31) are opened on the inner surface of the groove (33). A locking pin (32) is threaded through one end of the movable rod (22). The locking pin (32) is movably inserted into one set of clamping holes (31).