Embossing device for energy-saving building material heat-insulating decorative board and embossing method thereof
By introducing structures such as transmission worms and guide rods into the embossing device, limit adjustment of the decorative plate and replacement of the embossing rollers are solved, and the embossing effect and finished product quality are improved.
Patent Information
- Application Number
- CN202210643984.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-09
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2042-06-09
AI Technical Summary
The existing embossing devices cannot be adjusted according to the width of the decorative panel, which causes the decorative panel to easily deviate during transportation, affecting the embossing effect and quality.
An embossing device for energy-saving building materials insulation decorative panels is designed. Through the transmission structures such as worms, guide rods, slide chutes, adjustment racks, adjustment gears, etc., the limit adjustment of the decorative panel is achieved, ensuring that the pattern position of the embossing rollers is correct on the decorative panels, and the replacement of the embossing rollers and the extrusion and leveling of the shaping rollers are facilitated by the installation sleeve.
It effectively avoids the decorative panels during transportation, ensures the correct pattern position of the embossing rollers, and improves the quality and finished product effect of the embossing decorative panels.
Smart Images

Figure CN115071315B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of embossing processing of decorative boards, and specifically to an embossing device and an embossing method for an energy-saving building material thermal insulation decorative board. Background Art
[0002] The metal embossed board - mainly composed of three parts, with different names in the market, such as metal carved board, metal relief board, exterior wall thermal insulation decorative board, and thermal insulation and decoration integrated board. The surface of the metal embossed board is a high-quality colored relief finish metal plate treated with a special coating. The middle layer is a rigid high-density phenolic foam thermal insulation and heat insulation layer treated with flame retardant. The bottom surface is an aluminum foil protective layer that plays a role in heat insulation, moisture protection, and moisture prevention. Embossing processing refers to using an embossing roller to press concave and convex patterns on the metal plate.
[0003] However, the structure of the existing embossing device for transporting decorative boards cannot be adjusted according to the width of the device board. When using a transportation width larger than that of the decorative board, the decorative board is prone to deviation during transportation due to lack of limitation, ultimately resulting in the deviation of the pattern position rolled by the embossing roller on the decorative board, affecting the final embossing effect and reducing the quality of the embossed decorative board. Therefore, it does not meet the existing requirements. For this reason, we propose an embossing device and an embossing method for an energy-saving building material thermal insulation decorative board. Summary of the Invention
[0004] The purpose of the present invention is to provide an embossing device and an embossing method for an energy-saving building material thermal insulation decorative board, so as to solve the problem that the structure of the existing embossing device for transporting decorative boards cannot be adjusted according to the width of the device board. When using a transportation width larger than that of the decorative board, the decorative board is prone to deviation during transportation due to lack of limitation, ultimately resulting in the deviation of the pattern position rolled by the embossing roller on the decorative board, affecting the final embossing effect and reducing the quality of the embossed decorative board as mentioned in the above background art.
[0005] To achieve the above object, the present invention provides the following technical solution: A embossing device for an energy-saving building material thermal insulation decorative board, comprising a bracket, support side plates, support legs, a transport motor and a shaping motor. The support legs are fixedly arranged in an array at the bottom of the bracket. One side of the upper end of the bracket is fixedly provided with a baffle. Guide rods are arranged in an array between the two brackets and are fixedly connected to the brackets. A chute is opened at the rear of the bracket along the lower side of the guide rods. A guide plate is slidably connected in the chute. The lower end of the guide plate is fixedly provided with an adjusting rack. Fixing plates are fixedly arranged in an array at the bottom of the bracket. A transmission rod is arranged through between the rear ends of the plurality of fixing plates and is rotatably connected to the fixing plates through bearings. The transmission rod is provided with an adjusting gear along the lower end of the guide rod, and the adjusting gear is fixedly connected to the transmission rod through a keyway. The adjusting gear meshes with the adjusting rack. Guide sliding sleeves are sleeved on the front and rear ends of the outer wall of the guide rod. The front guide sliding sleeve is fixedly connected to the guide rod. The rear guide sliding sleeve is slidably connected to the guide rod. The bottom of the rear guide sliding sleeve is fixedly connected to the guide plate. The top of the guide sliding sleeve is rotatably connected to a side retaining cylinder. One end of the transmission rod is connected with a transmission worm through a keyway. Fixed blocks are fixedly arranged at the front and rear ends of the bottom of two adjacent fixing plates. A transmission worm is rotatably connected between the two fixed blocks. The transmission worm meshes with the transmission worm wheel.
[0006] Preferably, the support side plates are fixedly installed on one side of the outer wall of the bracket. The support side plates are embedded on one side of the baffle. A support top plate is fixedly arranged at the top of the two support side plates. A embossing motor is fixedly installed on the front side of the top of the support top plate.
[0007] Preferably, roller pressing rotating rods are arranged in a vertical array in the upper and middle parts of the support side plates and are rotatably connected to the support side plates through bearings. One end of the roller pressing rotating rods along the outer side of the baffle is connected with an embossing transmission gear through a keyway. The two embossing transmission gears mesh with each other. Both the upper roller pressing rotating rod and the output end of the embossing motor are connected with an embossing transmission wheel through a keyway. The two embossing transmission wheels are connected by an embossing transmission belt.
[0008] Preferably, the other end of the roller pressing rotating rod is provided with a mounting sleeve, and the mounting sleeve is fixedly connected to the roller pressing rotating rod. An embossing roller is arranged between two mounting sleeves of the same height. The embossing roller is connected to the mounting sleeve through bolts.
[0009] Preferably, transport rods are arranged in an array on one side of the inner side of the bracket along the support side plates and are rotatably connected to the brackets through bearings. The side retaining cylinder is located between the two transport rods. Transport rollers are fixedly arranged on the outer wall of the transport rods. One end of the transport rods along the outer side of the baffle is connected with a transport transmission wheel through a keyway. The two adjacent transport transmission wheels are connected by a transport transmission belt. One end of the transport rod is connected with the output end of the transport motor through a keyway.
[0010] Preferably, shaping connecting rods are arranged in an array along the other side of the supporting side plate inside the bracket, and the shaping connecting rods are rotatably connected to the bracket through bearings. There are two rows of the shaping connecting rods, and the upper and lower rows of shaping connecting rods are symmetrically arranged. Shaping rollers are fixed on the outer walls of the shaping connecting rods. Shaping transmission gears are connected to both ends of the shaping connecting rods through key grooves, and the two symmetrically arranged upper and lower shaping transmission gears mesh with each other.
[0011] Preferably, one end of the lower shaping connecting rod is connected to a shaping transmission wheel through a key groove, and adjacent two shaping transmission wheels are connected by a shaping transmission belt. One end of the shaping connecting rod is connected to the output end of the shaping motor through a key groove.
[0012] A embossing method for an embossing device of an energy-saving building material thermal insulation decorative board includes the following steps:
[0013] Step 1: Measure the width of the decorative board to be embossed. Then rotate the transmission worm. The transmission worm drives the transmission worm wheel to rotate through meshing with the transmission worm wheel. The transmission worm wheel drives the transmission rod and the adjusting gear to drive. The adjusting gear drives the guide plate to slide in the chute through meshing with the adjusting rack. The guide plate drives the side retaining cylinder to move through the guide sliding sleeve. When the rotation direction of the transmission worm is different, the rear side retaining cylinder will approach or move away from the front side retaining cylinder until the distance between the two side retaining cylinders is the same as the width of the decorative board to be embossed.
[0014] Step 2: Turn on the transport motor, the shaping motor and the embossing motor. Place the decorative boards to be embossed on the transport rollers one by one, and make the decorative boards to be embossed located between the side retaining cylinders at the front and rear ends.
[0015] Step 3: The output end of the transport motor drives the corresponding transport rod to rotate. Adjacent two transport rods drive each other through the transport transmission wheel and the transport transmission belt. The rotating transport rod drives the transport roller to rotate. The transport roller drives the decorative board to be embossed to move towards the embossing roller.
[0016] Step 4: The output end of the embossing motor drives the embossing transmission wheel to rotate. The embossing transmission wheel drives the upper roller pressing rotating rod to rotate through the transmission of the embossing transmission belt. The upper and lower roller pressing rotating rods rotate relative to each other through the meshing of the embossing transmission gears. The two roller pressing rotating rods drive the embossing roller to rotate through the mounting sleeve. The two relatively rotating embossing rollers perform rolling embossing on the moving decorative board to be embossed.
[0017] Step 5: The decorative board completely embossed by the embossing roller moves between the upper and lower rows of shaping rollers. The output end of the shaping motor drives the shaping connecting rod to rotate. The shaping connecting rod drives the shaping transmission gear and the shaping transmission wheel to rotate. The two symmetrically arranged upper and lower shaping transmission gears mesh with each other to drive the upper and lower shaping connecting rods to rotate relative to each other. Two adjacent shaping connecting rods in the same row are driven by the shaping transmission wheel and the shaping transmission belt.
[0018] Step 6: The upper and lower symmetrically arranged shaping rollers extrude and shape the embossed decorative board. The shaping rollers in the same row drive the embossed decorative board to continue moving until the embossed decorative board disengages from the shaping rollers, thus completing the embossing of the decorative board.
[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0020] 1. Through the structures such as the driving worm, guiding rod, sliding groove, adjusting rack, adjusting gear, driving rod, side retaining cylinder and driving worm gear provided in the present invention, the guiding rod is used to guide the moving position of the guiding sliding sleeve, the sliding groove is used to guide and limit the guiding plate, the guiding plate is used to connect the adjusting rack and the guiding sliding sleeve, the driving worm can drive the driving rod and the adjusting gear to rotate through meshing with the driving worm gear, and the adjusting gear can drive the guiding sliding sleeve and the side retaining cylinder to move through mutual meshing with the adjusting rack, thereby adjusting the distance between the two rows of side retaining cylinders to make the width defined by the side retaining cylinders match the decorative board to be embossed, limiting the decorative board, avoiding the offset of the decorative board during transportation, ensuring that the pattern position on the decorative board rolled by the embossing roller is correct, the pattern is clear, and improving the quality of the embossed decorative board;
[0021] 2. Through the installation sleeve provided in the present invention, it is convenient for the staff to replace the embossing roller. Through the setting of the shaping rollers, the embossed decorative board can be leveled by the extrusion of the two upper and lower symmetrically arranged shaping rollers, smoothing the unnecessary bending of the decorative board caused by the embossing roller and improving the finished product quality of the embossed decorative board. Description of the Drawings
[0022] Figure 1 is a perspective view of the present invention;
[0023] Figure 2 is a front view cross-sectional view of the present invention;
[0024] Figure 3 is a side view cross-sectional view of the present invention;
[0025] Figure 4 is a perspective view of the connection relationship between the adjusting gear and the side retaining cylinder of the present invention;
[0026] Figure 5 is an enlarged view of Structure A of the present invention.
[0027] In the figure: 1, support; 2, transport rod; 3, transport roller; 4, fixed plate; 5, fixed block; 6, driving worm; 7, guide rod; 8, guide sliding sleeve; 9, guide plate; 10, chute; 11, adjusting rack; 12, driving rod; 13, adjusting gear; 14, side retaining cylinder; 15, supporting side plate; 16, rolling rod; 17, mounting sleeve; 18, embossing roller; 19, embossing driving gear; 20, supporting top plate; 21, embossing motor; 22, embossing driving wheel; 23, embossing driving belt; 24, shaping connecting rod; 25, shaping roller; 26, supporting leg; 27, baffle; 28, shaping driving gear; 29, driving worm gear; 30, shaping driving wheel; 31, shaping driving belt; 32, transport motor; 33, shaping motor; 34, transport driving wheel; 35, transport driving belt. Detailed implementation manner
[0028] 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.
[0029] Please refer to Figures 1-5, an embodiment provided by the present invention: an embossing device for an energy-saving building material thermal insulation decorative board, comprising a bracket 1, supporting side plates 15, supporting legs 26, a conveying motor 32 and a shaping motor 33. Supporting legs 26 are fixedly arranged in an array at the bottom of the bracket 1. One side of the upper end of the bracket 1 is fixedly provided with a baffle 27. Guide rods 7 are arranged in an array between the two brackets 1, and the guide rods 7 are fixedly connected with the brackets 1. The arranged guide rods 7 are used to guide the moving position of the guide sliding sleeves 8. A chute 10 is opened below the guide rods 7 at the rear side of the bracket 1. The arranged chute 10 is used to guide and limit the guide plate 9. A guide plate 9 is slidably connected in the chute 10. The arranged guide plate 9 is used to connect the adjusting rack 11 and the guide sliding sleeve 8. The lower end of the guide plate 9 is fixedly provided with an adjusting rack 11. Fixed plates 4 are fixedly arranged in an array at the bottom of the bracket 1. A transmission rod 12 is arranged through between the rear ends of the plurality of fixed plates 4, and the transmission rod 12 is rotatably connected with the fixed plates 4 through bearings. The arranged transmission rod 12 is used to drive the adjusting gear 13 to rotate. An adjusting gear 13 is arranged directly below the guide rod 7 on the transmission rod 12, and the adjusting gear 13 is fixedly connected with the transmission rod 12 through a keyway. The adjusting gear 13 and the adjusting rack 11 are meshed with each other. Guide sliding sleeves 8 are sleeved on the front and rear ends of the outer wall of the guide rod 7. The front guide sliding sleeve 8 is fixedly connected with the guide rod 7, and the rear guide sliding sleeve 8 is slidably connected with the guide rod 7. The bottom of the rear guide sliding sleeve 8 is fixedly connected with the guide plate 9. A side retaining cylinder 14 is rotatably connected to the top of the guide sliding sleeve 8. One end of the transmission rod 12 is connected with a transmission worm gear 29 through a keyway. Fixed blocks 5 are fixedly arranged at the front and rear ends of the bottom of adjacent two fixed plates 4. A transmission worm 6 is rotatably connected between the two fixed blocks 5. The transmission worm 6 and the transmission worm gear 29 are meshed with each other. The arranged transmission worm 6 can drive the transmission rod 12 and the adjusting gear 13 to rotate through meshing with the transmission worm gear 29. The adjusting gear 13 can drive the guide sliding sleeve 8 and the side retaining cylinder 14 to move through meshing with the adjusting rack 11. Thus, the distance between the two rows of side retaining cylinders 14 is adjusted, so that the width defined by the side retaining cylinders 14 matches the decorative board to be embossed, the decorative board is limited, the decorative board is prevented from shifting during transportation, and the pattern position on the decorative board rolled by the embossing roller is correct, the pattern is clear, and the quality of the embossed decorative board is improved.
[0030] Please refer to Figure 1 , Figure 2 , Figure 3 , the supporting side plates 15 are fixedly installed on one side of the outer wall of the bracket 1. The supporting side plates 15 are embedded on one side of the baffle 27. A supporting top plate 20 is fixedly arranged at the top of the two supporting side plates 15. An embossing motor 21 is fixedly installed at the front side of the top of the supporting top plate 20. The arranged embossing motor 21 is used to provide a power source for the embossing roller 18 to ensure the normal rotation of the embossing roller 18.
[0031] Please refer to Figure 1 , Figure 2 , Figure 3, roller press rotating rods 16 are vertically arrayed at the upper and middle parts of the support side plates 15, and the roller press rotating rods 16 are rotatably connected to the support side plates 15 through bearings. One end of the roller press rotating rod 16 along the outer side of the baffle 27 is connected with an embossing transmission gear 19 through a keyway. The two embossing transmission gears 19 mesh with each other. The output ends of the upper roller press rotating rod 16 and the embossing motor 21 are both connected with an embossing transmission wheel 22 through keyways. The two embossing transmission wheels 22 are connected by an embossing transmission belt 23. The arranged roller press rotating rods 16, embossing transmission gears 19, embossing transmission wheels 22 and embossing transmission belt 23 can drive each other, enabling the embossing motor 21 to drive the upper and lower embossing rollers 18 to rotate relative to each other and ensuring the normal progress of the embossing work.
[0032] Please refer to Figure 1 , Figure 2 , Figure 3 , an installation sleeve 17 is arranged at the other end of the roller press rotating rod 16, and the installation sleeve 17 is fixedly connected to the roller press rotating rod 16. An embossing roller 18 is arranged between two installation sleeves 17 at the same height. The embossing roller 18 is connected to the installation sleeve 17 through bolts. By arranging the installation sleeve 17, it is convenient for the staff to replace the embossing roller 18.
[0033] Please refer to Figure 1 , Figure 2 , Figure 3 , transport rods 2 are arrayed along one side of the support side plates 15 inside the bracket 1, and the transport rods 2 are rotatably connected to the bracket 1 through bearings. The side retaining cylinder 14 is located between two transport rods 2. Transport rollers 3 are fixed on the outer walls of the transport rods 2. One end of the transport rod 2 along the outer side of the baffle 27 is connected with a transport transmission wheel 34 through a keyway. The two adjacent transport transmission wheels 34 are connected by a transport transmission belt 35. One end of the transport rod 2 is connected with the output end of the transport motor 32 through a keyway. The arranged transport transmission wheels 34 and transport transmission belt 35 can drive each other through the transmission relationship, enabling the transport motor 32 to drive all the transport rods 2 to rotate in the same direction.
[0034] Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 5 , shaping connecting rods 24 are arrayed along the other side of the support side plates 15 inside the bracket 1, and the shaping connecting rods 24 are rotatably connected to the bracket 1 through bearings. There are two rows of shaping connecting rods 24, and the upper and lower two rows of shaping connecting rods 24 are symmetrically arranged. Shaping rollers 25 are fixed on the outer walls of the shaping connecting rods 24. Both ends of the shaping connecting rods 24 are connected with shaping transmission gears 28 through keyways. The two upper and lower symmetrically arranged shaping transmission gears 28 mesh with each other. By arranging the shaping rollers 25, the embossed decorative board can be leveled by the extrusion of the two upper and lower symmetrically arranged shaping rollers 25, smoothing out the unnecessary bending of the decorative board caused by the embossing roller 18 and improving the finished product quality of the embossed decorative board.
[0035] A embossing method for an embossing device of an energy-saving building material thermal insulation decorative board, comprising the following steps:
[0036] Step 1: Measure the width of the decorative board to be embossed. Then rotate the transmission worm 6. The transmission worm 6 drives the transmission worm wheel 29 to rotate through meshing with the transmission worm wheel 29. The transmission worm wheel 29 drives the transmission rod 12 and the adjusting gear 13 to transmit. The adjusting gear 13 drives the guide plate 9 to slide in the chute 10 through meshing with the adjusting rack 11. The guide plate 9 drives the side retaining cylinder 14 to move through the guide sliding sleeve 8. When the rotation direction of the transmission worm 6 is different, the rear side retaining cylinder 14 will approach or move away from the front side retaining cylinder 14 until the distance between the two side retaining cylinders 14 is the same as the width of the decorative board to be embossed;
[0037] Step 2: Turn on the transport motor 32, the shaping motor 33 and the embossing motor 21. Place the decorative boards to be embossed on the transport rollers 3 one by one, and make the decorative boards to be embossed located between the side retaining cylinders 14 at the front and rear ends;
[0038] Step 3: The output end of the transport motor 32 drives the corresponding transport rod 2 to rotate. Adjacent two transport rods 2 are mutually driven through the transport transmission wheels 34 and the transport transmission belt 35. The rotating transport rod 2 drives the transport roller 3 to rotate. The transport roller 3 drives the decorative board to be embossed to move in the direction of the embossing roller 18;
[0039] Step 4: The output end of the embossing motor 21 drives the embossing transmission wheel 22 to rotate. The embossing transmission wheel 22 drives the upper roller pressing rotating rod 16 to rotate through the transmission of the embossing transmission belt 23. The upper and lower two roller pressing rotating rods 16 rotate relatively through the meshing of the embossing transmission gears 19. The two roller pressing rotating rods 16 drive the embossing roller 18 to rotate through the mounting sleeve 17. The two relatively rotating embossing rollers 18 perform rolling embossing on the moving decorative board to be embossed;
[0040] Step 5: The decorative board completely embossed by the embossing roller 18 moves between the upper and lower rows of shaping rollers 25. The output end of the shaping motor 33 drives the shaping connecting rod 24 to rotate. The shaping connecting rod 24 drives the shaping transmission gear 28 and the shaping transmission wheel 30 to rotate. The two symmetrically arranged upper and lower shaping transmission gears 28 mesh with each other to drive the upper and lower two shaping connecting rods 24 to rotate relatively; two adjacent shaping connecting rods 24 in the same row are transmitted through the shaping transmission wheel 30 and the shaping transmission belt 31;
[0041] Step 6: The symmetrically arranged upper and lower shaping rollers 25 extrude and shape the embossed decorative board. The shaping rollers 25 in the same row drive the embossed decorative board to continue to move until the embossed decorative board disengages from the shaping rollers 25, that is, the embossing of the decorative board is completed.
[0042] Working principle: Measure the width of the decorative board to be embossed. Then rotate the drive worm 6. The drive worm 6 drives the drive worm gear 29 to rotate through meshing with the drive worm gear 29. The drive worm gear 29 drives the drive rod 12 and the adjusting gear 13 to transmit power. The adjusting gear 13 drives the guide plate 9 to slide in the chute 10 through meshing with the adjusting rack 11. The guide plate 9 drives the side retaining cylinder 14 to move through the guide sliding sleeve 8. When the rotation direction of the drive worm 6 is different, the rear side retaining cylinder 14 will approach or move away from the front side retaining cylinder 14 until the distance between the two side retaining cylinders 14 is the same as the width of the decorative board to be embossed. Turn on the transport motor 32, the shaping motor 33 and the embossing motor 21. Place the decorative boards to be embossed one by one on the transport rollers 3, and make the decorative boards to be embossed located between the side retaining cylinders 14 at the front and rear ends. The output end of the transport motor 32 drives the corresponding transport rod 2 to rotate. Two adjacent transport rods 2 are mutually driven through the transport drive wheels 34 and the transport drive belt 35. The rotating transport rod 2 drives the transport roller 3 to rotate. The transport roller 3 drives the decorative board to be embossed to move in the direction of the embossing roller 18. The output end of the embossing motor 21 drives the embossing drive wheel 22 to rotate. The embossing drive wheel 22 drives the upper roller pressing rotating rod 16 to rotate through the transmission of the embossing drive belt 23. The upper and lower roller pressing rotating rods 16 rotate relatively through the meshing of the embossing drive gears 19. The two roller pressing rotating rods 16 drive the embossing roller 18 to rotate through the mounting sleeves 17. The two relatively rotating embossing rollers 18 perform rolling embossing on the moving decorative board to be embossed. The decorative board that has been completely embossed by the embossing roller 18 moves between the upper and lower rows of shaping rollers 25. The output end of the shaping motor 33 drives the shaping connecting rod 24 to rotate. The shaping connecting rod 24 drives the shaping drive gear 28 and the shaping drive wheel 30 to rotate. The two symmetrically arranged upper and lower shaping drive gears 28 mesh with each other to drive the upper and lower shaping connecting rods 24 to rotate relatively. Two adjacent shaping connecting rods 24 in the same row are driven through the shaping drive wheels 30 and the shaping drive belt 31. The symmetrically arranged upper and lower shaping rollers 25 extrude and shape the embossed decorative board. The shaping rollers 25 in the same row drive the embossed decorative board to continue moving until the embossed decorative board separates from the shaping rollers 25, thus completing the embossing of the decorative board.
[0043] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.
Claims
1. An embossing device for an energy-saving building material thermal insulation decorative board, comprising a bracket (1), a supporting side plate (15), a supporting leg (26), a conveying motor (32) and a shaping motor (33), characterized in that: The bottom of the bracket (1) is fixedly arranged with support legs (26) in an array. One side of the upper end of the bracket (1) is fixedly provided with a baffle (27). Guide rods (7) are arranged in an array between the two brackets (1), and the guide rods (7) are fixedly connected with the brackets (1). A chute (10) is formed below the guide rods (7) along the rear side of the bracket (1). A guide plate (9) is slidably connected in the chute (10). An adjusting rack (11) is fixedly arranged at the lower end of the guide plate (9). Fixing plates (4) are fixedly arranged at the bottom of the bracket (1) in an array. A transmission rod (12) is arranged through the rear ends between the plurality of fixing plates (4), and the transmission rod (12) is rotatably connected with the fixing plates (4) through bearings. An adjusting gear (13) is arranged at the lower end of the transmission rod (12) along the guide rod (7), and the adjusting gear (13) is fixedly connected with the transmission rod (12) through a keyway. The adjusting gear (13) is meshed with the adjusting rack (11). Guide sliding sleeves (8) are sleeved on the front and rear ends of the outer wall of the guide rod (7). The front guide sliding sleeve (8) is fixedly connected with the guide rod (7), and the rear guide sliding sleeve (8) is slidably connected with the guide rod (7). The bottom of the rear guide sliding sleeve (8) is fixedly connected with the guide plate (9). A side baffle cylinder (14) is rotatably connected to the top of the guide sliding sleeve (8). One end of the transmission rod (12) is connected with a transmission worm wheel (29) through a keyway. Fixing blocks (5) are fixedly arranged at the front and rear ends of the bottom of adjacent two fixing plates (4). A transmission worm (6) is rotatably connected between the two fixing blocks (5). The transmission worm (6) is meshed with the transmission worm wheel (29); The support side plate (15) is fixedly installed on one side of the outer wall of the bracket (1). The support side plate (15) is embedded on one side of the baffle (27). A support top plate (20) is fixedly arranged at the top of the two support side plates (15). A knurling motor (21) is fixedly installed at the front side of the top of the support top plate (20). Roller pressing rotating rods (16) are vertically arranged in an array at the middle upper part of the support side plate (15), and the roller pressing rotating rods (16) are rotatably connected with the support side plate (15) through bearings. One end of the roller pressing rotating rod (16) along the outside of the baffle (27) is connected with a knurling transmission gear (19) through a keyway. The two knurling transmission gears (19) are meshed with each other. Knurling transmission wheels (22) are connected to the output end of the knurling motor (21) and the upper roller pressing rotating rod (16) through keyways. The two knurling transmission wheels (22) are connected through a knurling transmission belt (23). An installation sleeve (17) is arranged at the other end of the roller pressing rotating rod (16), and the installation sleeve (17) is fixedly connected with the roller pressing rotating rod (16). A knurling roller (18) is arranged between the two installation sleeves (17) at the same height. The knurling roller (18) is connected with the installation sleeve (17) through bolts.
2. The embossing device for an energy-saving building material thermal insulation decorative board according to claim 1, characterized in that: Inside the bracket (1), conveying rods (2) are arranged in an array along one side of the supporting side plate (15), and the conveying rods (2) are rotatably connected to the bracket (1) through bearings. The side retaining cylinder (14) is located between two conveying rods (2). A conveying roller (3) is fixed to the outer wall of the conveying rod (2). One end of the conveying rod (2) along the outer side of the baffle (27) is connected with a conveying driving wheel (34) through a keyway. Two adjacent conveying driving wheels (34) are drivingly connected through a conveying belt (35). One end of the conveying rod (2) is connected with the output end of a conveying motor (32) through a keyway.
3. The embossing device for an energy-saving building material thermal insulation decorative board according to claim 2, characterized in that: Inside the bracket (1), shaping connecting rods (24) are arranged in an array along the other side of the supporting side plate (15), and the shaping connecting rods (24) are rotatably connected to the bracket (1) through bearings. There are two rows of shaping connecting rods (24), and the upper and lower rows of shaping connecting rods (24) are symmetrically arranged. A shaping roller (25) is fixed to the outer wall of the shaping connecting rod (24). Both ends of the shaping connecting rod (24) are connected with shaping driving gears (28) through keyways. Two symmetrically arranged upper and lower shaping driving gears (28) mesh with each other.
4. The embossing device for an energy-saving building material thermal insulation decorative board according to claim 3, characterized in that: One end of the lower shaping connecting rod (24) is connected with a shaping driving wheel (30) through a keyway. Two adjacent shaping driving wheels (30) are drivingly connected through a shaping belt (31). One end of the shaping connecting rod (24) is connected with the output end of a shaping motor (33) through a keyway.
5. A embossing method for an embossing device of an energy-saving building material thermal insulation decorative board, which is realized based on the embossing device of an energy-saving building material thermal insulation decorative board described in claim 4, and is characterized in that, It includes the following steps: Step 1: Measure the width of the decorative board to be embossed. Then rotate the driving worm (6). The driving worm (6) drives the driving worm wheel (29) to rotate through meshing with the driving worm wheel (29). The driving worm wheel (29) drives the driving rod (12) and the adjusting gear (13) to transmit. The adjusting gear (13) drives the guide plate (9) to slide in the chute (10) through meshing with the adjusting rack (11). The guide plate (9) drives the side retaining cylinder (14) to move through the guide sliding sleeve (8). When the rotation direction of the driving worm (6) is different, the rear side retaining cylinder (14) will approach or move away from the front side retaining cylinder (14) until the distance between the two side retaining cylinders (14) is the same as the width of the decorative board to be embossed. Step 2: Turn on the conveying motor (32), the shaping motor (33) and the embossing motor (21). Place the decorative boards to be embossed on the conveying rollers (3) one by one, and make the decorative boards to be embossed located between the front and rear side retaining cylinders (14). Step 3: The output end of the conveying motor (32) drives the corresponding conveying rod (2) to rotate. Two adjacent conveying rods (2) are mutually driven through the conveying driving wheels (34) and the conveying belt (35). The rotating conveying rod (2) drives the conveying roller (3) to rotate. The conveying roller (3) drives the decorative board to be embossed to move towards the embossing roller (18). Step Four: The output end of the embossing motor (21) drives the embossing driving wheel (22) to rotate. The embossing driving wheel (22) drives the upper roller pressing rotating rod (16) to rotate through the transmission of the embossing transmission belt (23). The upper and lower roller pressing rotating rods (16) rotate relative to each other through the meshing of the embossing transmission gears (19). The two roller pressing rotating rods (16) drive the embossing roller (18) to rotate through the mounting sleeve (17). The two relatively rotating embossing rollers (18) perform rolling embossing on the decorative board to be embossed that moves over; Step Five: The decorative board that is completely embossed by the embossing roller (18) moves between the upper and lower rows of shaping rollers (25). The output end of the shaping motor (33) drives the shaping connecting rod (24) to rotate. The shaping connecting rod (24) drives the shaping transmission gear (28) and the shaping driving wheel (30) to rotate. The two symmetrically arranged upper and lower shaping transmission gears (28) mesh with each other to drive the upper and lower shaping connecting rods (24) to rotate relative to each other. The two adjacent shaping connecting rods (24) in the same row are transmitted through the shaping driving wheel (30) and the shaping transmission belt (31); Step Six: The symmetrically arranged upper and lower shaping rollers (25) extrude and shape the embossed decorative board. The shaping rollers (25) in the same row drive the embossed decorative board to continue moving until the embossed decorative board disengages from the shaping rollers (25), that is, the embossing of the decorative board is completed.
Citation Information
Patent Citations
Embossing device for plate processing
CN212667011U
Aluminum alloy veneer embossing device
CN213649229U