Automatic triangular plate machining device

By designing an automated triangular sheet processing device, which employs main and auxiliary translational conveyors, edge-planing motor assemblies, and auxiliary pressure roller assemblies, the problems of low edge-planing efficiency and significant safety hazards in triangular sheet processing have been solved, achieving efficient and safe automated processing.

CN223442437UActive Publication Date: 2025-10-17XUANCHENG XINYI WOOD CO LTD
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Patent Information

Application Number
CN202422906049.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-17
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

In the existing technology, the side planing of triangular plates is inefficient and requires manual operation, resulting in a large workload and high safety hazards.

Method used

Design an automated triangular sheet material processing device, which employs main and auxiliary translational conveyors, edge-planing motor assembly, auxiliary pressure roller assembly, and push rod assembly to achieve automated correction and edge-planing of triangular sheets. Combined with a dust removal mechanism, it improves processing efficiency and safety.

Benefits of technology

It enables automated edge planing of both sides of triangular boards, adapting to boards of different sizes and lengths, improving processing efficiency, reducing the workload of operators, and enhancing safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an automatic triangular plate processing device, which belongs to the technical field of plate processing and particularly comprises a rack, a main translation conveyor and an auxiliary translation conveyor are mounted at the top of the rack, and a dust removal mechanism is further mounted between the main translation conveyor and the auxiliary translation conveyor. A first edge planing motor assembly, a first auxiliary pressing wheel assembly, a second auxiliary pressing wheel assembly and a dust removal driving mechanism are installed on the main translation conveyor. A second edge planing motor assembly, a third auxiliary pressing wheel assembly, a fourth auxiliary pressing wheel assembly, an auxiliary feeding mechanism and a plurality of push rod assemblies are installed on the auxiliary translation conveyor. According to the triangular plate edge planer, mechanical automation operation is adopted in the whole triangular plate edge planer, edge planing operation on edges and corners on the two sides of a triangular plate can be completed at a time, the whole triangular plate machining process is high in automation degree, the plate machining efficiency is far better than that of traditional manual operation, the workload of operators can be effectively reduced, and the safety coefficient of plate machining is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of plate processing technology, specifically relates to an automatic triangular plate processing device. BACKGROUND

[0002] In the wood processing factory, the size specification of triangular plate is produced according to the use of wood and the demand of product order model, and the size and length exist diversification, leading to the side planing and chamfering of the side of the triangular plate can only adopt manual pushing feeding planing, and the processing efficiency is extremely low, and the workload is extremely great.

[0003] Therefore, an automatic triangular plate processing device is designed for the processing demand of triangular plate. CONTENT OF THE UTILITY MODEL

[0004] The utility model aims at providing, to solve the above-mentioned problems existing in prior art.

[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] An automatic triangular plate processing device, including the frame, the frame top same direction is installed with the first, the tail corresponding main translation conveyer and vice translation conveyer, the main translation conveyer and vice translation conveyer between transmission through the chain wheel assembly, the main translation conveyer and vice translation conveyer between still be installed with dust removal mechanism, the main translation conveyer and vice translation conveyer are installed with front and rear back gauge respectively.

[0007] Further, the main translation conveyer is installed with a side planing motor assembly and a first auxiliary pressure roller assembly respectively on the side close to the front back gauge, and the other side of the main translation conveyer is installed with a second auxiliary pressure roller assembly; the frame on the bottom of the main translation conveyer is installed with a dust removal driving mechanism for driving the dust removal mechanism to run.

[0008] Further, the vice translation conveyer top close to the rear back gauge side is installed with a second side planing motor assembly, a third auxiliary pressure roller assembly and a fourth auxiliary pressure roller assembly respectively, the third auxiliary pressure roller assembly and the fourth auxiliary pressure roller assembly are installed with an auxiliary feeding mechanism, and the other side of the vice translation conveyer top is installed with a plurality of push rod assemblies.

[0009] Further, the front back gauge and the rear back gauge are all designed with an inclined angle, and the front back gauge and the rear back gauge are arranged in diagonal opposition.

[0010] Further, the first side planing motor assembly and the second side planing motor assembly are the same structure, and all include a side planing motor and a planer installed on the output shaft of the motor, the planer in the first side planing motor assembly and the second side planing motor assembly is close to the front back gauge and the rear back gauge respectively.

[0011] Further, the first and third auxiliary pressing wheel assemblies are installed at the side of the first and second edge planing motor assemblies, and the second and fourth auxiliary pressing wheel assemblies are installed close to the dust removal mechanism.

[0012] Further, the sprocket assembly comprises two transmission gears installed on the main and auxiliary translation conveyors respectively, and the two transmission gears are connected by a first transmission chain, and the main roller shaft of the main translation conveyor is driven by a speed reducer.

[0013] Further, the dust removal mechanism comprises two frames vertically installed on the two sides of the frame, and two brush rollers are arranged in an upper and lower manner between the two frames, and the two ends of each brush roller are assembled with the frame by an adjusting assembly; the adjusting assembly comprises a sliding block slidingly installed on the inner side of the frame, and the sliding block and the roller shaft of the brush roller are rotationally connected by a bearing, and a T-shaped adjusting screw is rotationally installed on the side of the sliding block close to the end of the frame, and a knob disc is installed on the end of the adjusting screw penetrating through the frame, and the position of the adjusting screw penetrating through the frame is designed in a threaded assembly manner; one driven wheel is installed on the end of each brush roller close to the dust removal driving mechanism.

[0014] Further, the dust removal driving mechanism comprises a dust removal driving motor, a main gear and a secondary gear, the main gear is installed on the output shaft of the dust removal driving motor, the secondary gear is engaged with the main gear, and the secondary gear is rotationally installed on the frame, coaxially arranged first and second driving wheels are installed on the side of the main and secondary gears respectively, and the first and second driving wheels are connected with the two driven wheels by a belt chain.

[0015] Further, the auxiliary feeding mechanism comprises a feeding motor installed on the bottom of the auxiliary translation conveyor and a horizontal shaft rotationally installed on the top of the auxiliary translation conveyor by a bearing with a seat, and the horizontal shaft is installed with an auxiliary feeding wheel on the side close to the back gauge, and the horizontal shaft is connected with the output shaft of the feeding motor by a second transmission chain and a gear.

[0016] Further, the first, second, third and fourth auxiliary pressing wheel assemblies are the same in structure, comprising an upright frame, a horizontal rod is horizontally installed in the middle of the upright frame by a mounting clamp, a support is installed on the front end of the horizontal rod, a wheel frame is installed on the bottom of the support by two slide rods, and a plurality of rubber pressing wheels are rotationally installed on the inner side of the wheel frame.

[0017] Further, the slide rod top end is in sliding penetration fit with the support, the slide rod bottom end is in fixed connection with the wheel frame, the support is fixed with a positioning sleeve at the position in sliding fit with the slide rod, and a tension spring is sleeved on the slide rod between the support and the wheel frame.

[0018] Further, the several push rod assemblies are divided into two groups, the two groups of push rod assemblies are obliquely installed on the two sides of the auxiliary feeding mechanism, the push rod assembly comprises a sliding sleeve installed on the auxiliary translation conveyor, a straight push rod is slidably penetrated in the sliding sleeve, an oblique push plate parallel to the conveying platform of the auxiliary translation conveyor is arranged at the front end of the straight push rod, a plurality of front push wheels are horizontally rotatably installed on the push plate, a top extension spring is sleeved on the straight push rod between the push plate and the sliding sleeve, and the two ends of the top extension spring are in abutment with the push plate and the sliding sleeve respectively.

[0019] Further, a threaded adjusting nut is screwed on the end of the straight push rod away from the push plate, a plurality of ball grooves are formed on the surface of the straight push rod along the length direction of the straight push rod, and balls are arranged in the sliding sleeve at positions corresponding to the ball grooves on the straight push rod.

[0020] Beneficial effects:

[0021] The utility model discloses a whole adopts mechanical automation operation, can complete the planing operation of the two side edges of triangular plate one time, in the transmission movement process of triangular plate, through the cooperation of front and rear rulers and several push rod assemblies, the automatic correction of triangular plate can be realized, the processing of triangular plate of different sizes and lengths can be adapted, the whole triangular plate processing process is high in automation, and the plate processing efficiency is far superior to traditional manual operation, the work load of operating personnel can be effectively reduced, and the safety factor of plate processing is improved. ACCURACY

[0022] Figure 1 It is the structure diagram of the utility model Figure 1 ;

[0023] Figure 2 It is the structure diagram of the utility model Figure 2 ;

[0024] Figure 3 It is the structure diagram of the utility model Figure 1 ;

[0025] Figure 4 It is the structure diagram of the utility model Figure 2 ;

[0026] Figure 5 It is the structure diagram of the auxiliary compression wheel assembly of the utility model

[0027] Figure 6 It is the structure diagram of the push rod assembly of the utility model.

[0028] In the figure: 1. Frame; 2. Main translation conveyor; 3. Auxiliary translation conveyor; 4. Sprocket assembly; 401. Transmission gear; 402. Transmission chain No. 1; 5. Dust removal mechanism; 501. Frame; 502. Slider; 503. Brush roller; 504. Adjusting screw; 505. Driven pulley; 6. Dust removal drive mechanism; 601. Dust removal drive motor; 602. Main gear; 603. Auxiliary gear; 604. Driving pulley No. 1; 605. Driving pulley No. 2; 606. Belt chain; 7. Front ruler; 8. Planer motor assembly No. 1; 9. Auxiliary pressure roller assembly No. 1; 901. Stand; 902. Mounting clamp ;903, cross bar; 904, bracket; 905, slide bar; 906, wheel frame; 907, rubber pressure wheel; 908, tension spring; 10, No. 2 auxiliary pressure wheel assembly; 11, rear ruler; 12, No. 2 planer motor assembly; 13, No. 3 auxiliary pressure wheel assembly; 14, No. 4 auxiliary pressure wheel assembly; 15, auxiliary feeding mechanism; 151, feeding motor; 152, cross shaft; 153, auxiliary feeding wheel; 154, No. 2 transmission chain; 16, push rod assembly; 161, sliding sleeve; 162, straight push rod; 163, push plate; 164, front push wheel; 165, extension spring; 166, adjusting nut. DETAILED DESCRIPTION

[0029] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention will be briefly introduced below in conjunction with the drawings and the description of the embodiments or the prior art. Obviously, the following description of the structures of the drawings is only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative work. It should be noted that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation of the present invention.

[0030] Example

[0031] In the current chamfering and beveling processing of triangular plates, since the two sides of the plate structure are not parallel, conventional automated plate beveling processing equipment is not suitable for triangular plates. As a result, the beveling and beveling processing of triangular plates is usually done manually, which is not only slow and inefficient, but also has a large workload. At the same time, manual feeding is required throughout the processing process, which poses a great safety hazard. For this reason, we have designed an automated device that can bevel and bevel both sides of triangular plates. The specific solution is as follows:

[0032] like Figures 1-6As shown, the embodiment provides an automatic triangular plate processing device, which comprises a rack 1, a main translation conveyor 2 and a vice translation conveyor 3 are installed on the top of the rack 1 in a head-tail corresponding manner and are arranged in the same direction, and the main translation conveyor 2 and the vice translation conveyor 3 are driven by a chain wheel assembly 4, the two translation conveyors are driven at the same time by a reduction motor installed on the main roller shaft of the main translation conveyor 2, specifically, the chain wheel assembly 4 comprises two transmission gears 401 installed on the roller shafts at the ends of the main translation conveyor 2 and the vice translation conveyor 3 respectively, power transmission is achieved between the two transmission gears 401 by a No. 1 transmission chain 402, and an electric control box for controlling the operation of the entire device is also installed on the side of the rack 1.

[0033] In order to facilitate the subsequent surface treatment of the plate, a dust removal mechanism 5 is also installed between the main translation conveyor 2 and the vice translation conveyor 3, the dust removal mechanism 5 is driven to operate by a dust removal driving mechanism 6 installed on the rack 1 at the bottom of the main translation conveyor 2, so as to remove the wood dust on the surface of the plate.

[0034] Due to the special structure of the triangular plate, in order to facilitate the position transfer of the plate and the adjustment of the edge planing angle and depth, a front stop ruler 7 and a rear stop ruler 11 are respectively installed on the main translation conveyor 2 and the vice translation conveyor 3, the front stop ruler 7 and the rear stop ruler 11 are installed on the main translation conveyor 2 and the vice translation conveyor 3 by bolts, the angle position of the front stop ruler 7 and the rear stop ruler 11 is adjustable, in order to facilitate the smooth transfer of the plate from one side of the rack 1 to the other side, the position change of the plate on the main translation conveyor 2 and the vice translation conveyor 3 is realized, the front stop ruler 7 and the rear stop ruler 11 are designed to be inclined at an angle, and the front stop ruler 7 and the rear stop ruler 11 are arranged in a diagonal opposite manner.

[0035] The main translation conveyor 2 is provided with a No. 1 edge planing motor assembly 8 and a No. 1 auxiliary pressure wheel assembly 9 on the side close to the front stop ruler 7, and the other side of the main translation conveyor 2 is provided with a No. 2 auxiliary pressure wheel assembly 10, wherein the No. 1 auxiliary pressure wheel assembly 9 is installed on the side of the No. 1 edge planing motor assembly 8, the No. 1 auxiliary pressure wheel assembly 9 and the No. 2 auxiliary pressure wheel assembly 10 press the plate during the edge planing and chamfering of the plate, and cooperate with the main translation conveyor 2 to realize the edge planing operation of one side edge of the plate.

[0036] Meanwhile, the vice translation conveyor 3 is provided with a No. 2 edge planing motor assembly 12, a No. 3 auxiliary pressure wheel assembly 13 and a No. 4 auxiliary pressure wheel assembly 14 on the side close to the rear stop ruler 11 at the top, and the No. 3 auxiliary pressure wheel assembly 13 is installed on the side of the No. 2 edge planing motor assembly 12, which is used for pressing the plate during the edge planing processing of the other side edge of the plate.

[0037] The No. 1 edge planing motor assembly 8 and the No. 2 edge planing motor assembly 12 are the same in structure, and each comprises an edge planing motor and an edge planing cutter installed on the output shaft of the motor.

[0038] In order to improve the plate in the subsequent planing process has enough feeding thrust, but also in order to facilitate the plate to push the third auxiliary pressure wheel below the successful, between the third auxiliary pressure wheel assembly 13 and the fourth auxiliary pressure wheel assembly 14 is installed with the auxiliary feeding mechanism 15, wherein the auxiliary feeding mechanism 15 includes the feeding motor 151 installed in the bottom of the vice translation conveyor 3 and the cross shaft 152 is transversely rotatingly installed on the top of the vice translation conveyor 3 through the bearing seat, and the cross shaft 152 is installed with the auxiliary feeding wheel 153 outside near the rear side of the ruler 11, and the cross shaft 152 is driven connected through the second transmission chain 154 gear cooperation between the output shaft of the feeding motor 151.

[0039] In order to cooperate with the front side of the ruler 7 and the rear side of the ruler 11 to realize the position translation of the plate, a plurality of push rod assemblies 16 are installed on the other side of the top of the vice translation conveyor 3, so that the plate to be processed one side edge can be smoothly attached to the rear side of the ruler 11, thereby providing the correct angle and position for the subsequent plate planing processing.

[0040] In order to be able to realize the planing and chamfering of the plate through the cooperation of the front side of the ruler 7 and the rear side of the ruler 11, the planer in the first planing motor assembly 8 and the second planing motor assembly 12 is respectively close to the front side of the ruler 7 and the rear side of the ruler 11, and in order to avoid the planer, the front side of the ruler 7 and the rear side of the ruler 11 are provided with a notch corresponding to the position of the planer.

[0041] Since the triangular plate is transferred from the main translation conveyor 2 to the vice translation conveyor 3, and the position is changed from left to right, and the plate needs to pass through the dust removal mechanism 5 during the transition process, in order to avoid the plate from jumping during the dust removal operation, the plate needs to be pressed during the transition of the plate through the dust removal mechanism 5, therefore, the second auxiliary pressure wheel assembly 10 and the fourth auxiliary pressure wheel assembly 14 are installed near the dust removal mechanism 5.

[0042] In order to realize double-sided dust removal when the board is transferred from the main translation conveyor 2 to the auxiliary translation conveyor 3, prevent the wood dust on the surface of the wood from affecting the friction of the board on the conveyor, and cause the board to slip during the chamfering process, the dust removal mechanism 5 includes two frames 501 vertically installed on both sides of the rack 1, two brush rollers 503 arranged in an upper and lower position between the two frames 501, and the two ends of each brush roller 503 are assembled together with the frame 501 through an adjusting assembly; the adjusting assembly includes a sliding block 502 slidingly installed on the inner side of the frame 501, the sliding block 502 is rotatably connected to the shaft of the brush roller 503 through a bearing, a T-shaped adjusting screw 504 is rotatably installed on the side of the sliding block 502 close to the end of the frame 501, the end of the adjusting screw 504 penetrates the frame 501 and is provided with a knob disc, so as to facilitate the adjustment of the distance between the two brush rollers 503, and the position of the adjusting screw 504 penetrating the frame 501 is designed as a threaded assembly; one driven wheel 505 is installed on one end of each brush roller 503 close to the dust removal driving mechanism 6, and the dust removal driving mechanism 6 includes a dust removal driving motor 601, a main gear 602 and a secondary gear 603, the main gear 602 is installed on the output shaft of the dust removal driving motor 601, the secondary gear 603 is engaged with the main gear 602, and the secondary gear 603 is rotatably installed on the rack 1, and coaxially arranged primary drive wheel 604 and secondary drive wheel 605 are installed on the side edges of the main gear 602 and the secondary gear 603, and the primary drive wheel 604 and the secondary drive wheel 605 are drivingly connected with the two driven wheels 505 through the belt chain 606.

[0043] It should be noted that the structures of the first auxiliary pressure wheel assembly 9, the second auxiliary pressure wheel assembly 10, the third auxiliary pressure wheel assembly 13 and the fourth auxiliary pressure wheel assembly 14 are the same, and all include a stand 901, and a cross bar 903 is horizontally installed on the middle part of the stand 901 through a mounting clamp 902, a support 904 is installed on the front end of the cross bar 903, and a wheel frame 906 is installed on the bottom of the support 904 through two slide rods 905, and a plurality of rubber pressure wheels 907 are rotatably installed on the inner side of the wheel frame 906.

[0044] In order to enable each auxiliary pressure wheel assembly to effectively press and position the board, the top end of the slide rod 905 is slidingly connected with the support 904, and the bottom end of the slide rod 905 is fixedly connected with the wheel frame 906, a tension spring 908 is sleeved on the slide rod 905 between the support 904 and the wheel frame 906, and a positioning sleeve is fixed at the position where the support 904 and the slide rod 905 slidingly connect, so as to position the angle of the wheel frame 906.

[0045] In order to make the plate smoothly from the main translation conveyor 2 to the vice translation conveyor 3, and complete the position conversion and prevent the plate from position deviation when the edge milling operation, if several push rod assembly 16 is divided into two groups, two groups of push rod assembly 16 is installed on the two sides of the auxiliary feeding mechanism 15 at an angle, at the same time, in order to make the plate can be extruded by lateral push force in the process of translation, ensure that the plate to be processed along the side can always effectively with the rear rely on the ruler 11, push rod assembly 16 adopts elastic extension structure design, specifically, push rod assembly 16 includes the sleeve 161 installed on the vice translation conveyor 3, the sleeve 161 inside sliding through the straight push rod 162, the straight push rod 162 front end is inclinedly provided with the push plate 163 parallel to the vice translation conveyor 3 conveying platform, the push plate 163 is horizontally rotatably installed with several front push wheels 164, the straight push rod 162 between the push plate 163 and the sleeve 161 is sleeved with the top extension spring 165, the both ends of the top extension spring 165 are respectively in contact with the push plate 163 and the sleeve 161, at the same time, in order to adjust the position of the front end of the push rod assembly 16, the straight push rod 162 away from the push plate 163 one end is provided with screw and adjusts the nut 166.

[0046] In order to avoid the straight push rod 162 in the sleeve 161 inside the extension when rotating, the circumferential direction of the straight push rod 162 needs to be positioned, so several ball grooves are provided on the surface of the straight push rod 162 around the circumference along the length direction of the straight push rod 162, and the sleeve 161 inside corresponds to the ball groove position on the straight push rod 162.

[0047] When the triangular plate is edge milling, the operator puts the triangular plate on the front rely on the ruler 7, and pushes the plate forward, so that the plate is pressed by the first auxiliary wheel assembly 9, because the front rely on the ruler 7 is inclinedly designed on the main translation conveyor 2, so that the plate can be firmly attached to the front rely on the ruler 7 when the main translation conveyor 2 drives the plate to move forward, when the plate continuously moves forward, the second auxiliary wheel assembly 10 replaces the first auxiliary wheel assembly 9 to press the plate, until the plate passes through the dust removal mechanism 5, and is pushed to the side of the rear rely on the ruler 11 by the push rod mechanism, in the process of continuously moving forward, the push rod assembly 16 always pushes the plate horizontally, to ensure that the edge of the plate to be processed is always attached to the rear rely on the ruler 11, and the fourth auxiliary wheel assembly 14, the auxiliary feeding mechanism 15 and the third auxiliary wheel assembly 13 successively press the plate, until the plate completes the edge milling and chamfering operation.

[0048] Finally, it should be pointed out that: the above only for the preferred embodiment of the utility model, and does not limit the protection scope of the utility model. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the utility model should be included in the protection scope of the utility model.

Claims

1. An automated triangular plate processing device, characterized in that: The machine comprises a frame (1), wherein a main translation conveyor (2) and an auxiliary translation conveyor (3) corresponding to the front and rear ends are installed in the same direction on the top of the frame (1), the main translation conveyor (2) and the auxiliary translation conveyor (3) are driven by a sprocket assembly (4), and a dust removal mechanism (5) is also installed between the main translation conveyor (2) and the auxiliary translation conveyor (3); The main translation conveyor (2) and the auxiliary translation conveyor (3) are respectively equipped with a front ruler (7) and a rear ruler (11); A first planing motor assembly (8) and a first auxiliary pressure wheel assembly (9) are respectively installed on one side of the main translation conveyor (2) close to the front ruler (7), and a second auxiliary pressure wheel assembly (10) is installed on the other side of the main translation conveyor (2); a dust removal drive mechanism (6) for driving the dust removal mechanism (5) is installed on the frame (1) at the bottom of the main translation conveyor (2); A second planing motor assembly (12), a third auxiliary pressure wheel assembly (13) and a fourth auxiliary pressure wheel assembly (14) are respectively installed on the top of the auxiliary translation conveyor (3) near the rear ruler (11), an auxiliary feeding mechanism (15) is installed between the third auxiliary pressure wheel assembly (13) and the fourth auxiliary pressure wheel assembly (14), and a plurality of push rod assemblies (16) are installed on the other side of the top of the auxiliary translation conveyor (3).

2. The automated triangular plate processing device according to claim 1, characterized in that: The front ruler (7) and the rear ruler (11) are both designed with an inclined angle, and the front ruler (7) and the rear ruler (11) are arranged diagonally relative to each other.

3. The automated triangular plate processing device according to claim 1, characterized in that: The first planing motor assembly (8) and the second planing motor assembly (12) have the same structure, both comprising a planing motor and a planer blade mounted on the motor output shaft, the planers in the first planing motor assembly (8) and the second planing motor assembly (12) being respectively close to the front ruler (7) and the rear ruler (11).

4. The automated triangular plate processing device according to claim 1, characterized in that: The first auxiliary pressure wheel assembly (9) and the third auxiliary pressure wheel assembly (13) are respectively installed at the side positions of the first planing motor assembly (8) and the second planing motor assembly (12), and the second auxiliary pressure wheel assembly (10) and the fourth auxiliary pressure wheel assembly (14) are both installed at a position close to the dust removal mechanism (5).

5. The automated triangular plate processing device according to claim 1, characterized in that: The sprocket assembly (4) comprises two transmission gears (401) respectively mounted on the end rollers of the main translation conveyor (2) and the auxiliary translation conveyor (3); power is transmitted between the two transmission gears (401) via a No. 1 transmission chain (402); and the main roller of the main translation conveyor (2) is driven by a reduction motor.

6. The automated triangular plate processing device according to claim 1, characterized in that: The dust removal mechanism (5) comprises two frames (501) vertically mounted on both sides of the frame (1), two brush rollers (503) arranged in an upper and lower position are provided between the two frames (501), and both ends of each brush roller (503) are assembled with the frame (501) through an adjustment assembly; the adjustment assembly comprises a slider (502) slidably mounted on the inner side of the frame (501), the slider (502) and the roller shaft of the brush roller (503) are rotatably engaged by means of bearings, a T-shaped adjustment screw (504) is rotatably mounted on one side of the slider (502) close to the end of the frame (501), the end of the adjustment screw (504) passes through the frame (501) and is mounted with a knob disk, and the position where the adjustment screw (504) passes through the frame (501) is designed for threaded assembly; A driven wheel (505) is mounted on each end of the two brush rollers (503) close to the dust removal drive mechanism (6).

7. The automated triangular plate processing device according to claim 1, characterized in that: The dust removal drive mechanism (6) comprises a dust removal drive motor (601), a main gear (602) and a sub-gear (603), wherein the main gear (602) is mounted on the output shaft of the dust removal drive motor (601), the sub-gear (603) is meshed with the main gear (602), and the sub-gear (603) is rotatably mounted on the frame (1), and a first driving wheel (604) and a second driving wheel (605) coaxially arranged are respectively mounted on the sides of the main gear (602) and the sub-gear (603), and the first driving wheel (604) and the second driving wheel (605) are both connected to two driven wheels (505) through a belt chain (606).

8. The automated triangular plate processing device according to claim 1, characterized in that: The auxiliary feeding mechanism (15) comprises a feeding motor (151) mounted at the bottom of the auxiliary translation conveyor (3) and a transverse shaft (152) mounted on the top of the auxiliary translation conveyor (3) for transverse rotation via a seat bearing, an auxiliary feeding wheel (153) being mounted on the outside of the transverse shaft (152) near the rear ruler (11), and a transmission connection is established between the end of the transverse shaft (152) and the output shaft of the feeding motor (151) via a No. 2 transmission chain (154) and a gear.

9. The automated triangular plate processing device according to claim 1, characterized in that: The structures of the auxiliary pressure wheel assembly (9), the auxiliary pressure wheel assembly (10), the auxiliary pressure wheel assembly (13) and the auxiliary pressure wheel assembly (14) are the same, including a stand (901), a cross bar (903) is horizontally mounted in the middle of the stand (901) through a mounting clamp (902), a bracket (904) is mounted at the front end of the cross bar (903), a wheel frame (906) is mounted at the bottom of the bracket (904) through two sliding rods (905), and a plurality of rubber pressure wheels (907) are rotatably mounted on the inner side of the wheel frame (906); The top end of the slide rod (905) and the bracket (904) are in sliding engagement with each other, and the bottom end of the slide rod (905) and the wheel frame (906) are in fixed connection with each other. A positioning sleeve is fixed at the position where the bracket (904) and the slide rod (905) are in sliding engagement with each other, and a tension spring (908) is sleeved on the slide rod (905) between the bracket (904) and the wheel frame (906).

10. The automated triangular plate processing device according to claim 1, characterized in that: A plurality of push rod assemblies (16) are divided into two groups, and the two groups of push rod assemblies (16) are respectively installed obliquely on both sides of the auxiliary feeding mechanism (15), and the push rod assemblies (16) include a sliding sleeve (161) installed on the auxiliary translation conveyor (3), a straight push rod (162) is slidably penetrated inside the sliding sleeve (161), and a push plate (163) parallel to the conveying platform of the auxiliary translation conveyor (3) is obliquely provided at the front end of the straight push rod (162), and a plurality of front push wheels (164) are horizontally rotatably installed on the push plate (163), and a top extension spring (165) is sleeved on the straight push rod (162) between the push plate (163) and the sliding sleeve (161), and the two ends of the top extension spring (165) are respectively in contact with the push plate (163) and the sliding sleeve (161); The push rod (162) is provided with a thread at one end away from the push plate (163) and is screwed with an adjusting nut (166). The surface of the push rod (162) is provided with a plurality of ball grooves along the length direction of the push rod (162) around the circumference. Balls are provided inside the sliding sleeve (161) at positions corresponding to the ball grooves on the push rod (162).