An inverted conveyor apparatus

CN224767787UActive Publication Date: 2026-09-18LASTER AUTOMOTIVE TECH SHANGHAI CO LTD
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Patent Information

Application Number
CN202521841401.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-28
Publication Date
2026-09-18
Estimated Expiration
2035-08-28

AI Technical Summary

Technical Problem

[0002]汽车车灯组件自动化生产过程中,为了提高生产线平衡率和生产效率,通常需要连续快速完成PCB板的刻印,通常的PCB板刻印需要采用人工手动将PCB板放入刻印机内刻印,且PCB板正反面刻印还需人工手动翻转,作业效率低下,不能满足生产需求

Benefits of technology

本实用新型配置调宽机构,适用于各种不同大小的PCB产品,通过翻转机构可以高效完成PCB产品完成正反面刻印加工,实现产品精确定位和刻印,保证了PCB产品刻印的质量,提高了生产效率。

✦ Generated by Eureka AI based on patent content.

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    Figure CN224767787U_ABST
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Abstract

The utility model discloses a kind of turnover conveying equipment, including outer frame, width adjusting mechanism, dust collection mechanism, belt limiting mechanism, width adjusting frame, turnover mechanism, turnover platform belt drive mechanism, laser engraving machine;Width adjusting mechanism, width adjusting frame are located in the lower part of outer frame front side and can be width-adjusted forwards and backwards, belt limiting mechanism is located in width adjusting frame, turnover mechanism, turnover platform belt drive mechanism are located in the upper part of width adjusting frame, outer frame front side upper part is equipped with belt conveyor, dust collection mechanism, laser engraving machine are located in the upper part of outer frame rear side, and laser engraving machine is transverse left and right through engraving machine screw rod;Width adjusting motor is driven width adjusting plate slippage by belt drive two width adjusting screw rods, turnover motor is driven turnover platform to realize 180 ° turnover by turnover belt drive shaft, turnover belt driving gear;The utility model is suitable for various different size PCB product, can efficiently complete PCB product complete front and back engraving processing, realize accurate positioning and engraving, guarantee the quality of PCB product engraving, improve production efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of automotive lighting PCB board technology, and in particular to a flipping conveyor device. Background Technology

[0002] In the automated production of automotive lighting components, in order to improve the production line balance and production efficiency, it is usually necessary to continuously and quickly complete the PCB board printing. The usual PCB board printing requires manual placement of the PCB board into the printing machine for printing, and the front and back of the PCB board also need to be manually flipped, which is inefficient and cannot meet production needs. Summary of the Invention

[0003] To address the problems existing in the prior art, this utility model provides a flipping conveyor device suitable for PCB products of various sizes, capable of efficiently completing the front and back printing process for PCB products. To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: This utility model proposes a flipping conveyor device, characterized in that it includes an outer frame, a width adjustment mechanism, a dust collection mechanism, a belt limiting mechanism, a width adjustment frame, a flipping mechanism, a flipping table belt drive mechanism, and a laser engraving machine. The width adjustment mechanism and the width adjustment frame are located at the lower part of the front side of the outer frame and can adjust the width in the front-back direction. The width adjustment mechanism and the belt limiting mechanism are located inside the width adjustment frame. The flipping mechanism and the flipping table belt drive mechanism are located at the upper part of the width adjustment frame. A belt conveyor is provided at the upper part of the front side of the outer frame. The belt conveyor is located inside the width adjustment mechanism. The dust collection mechanism and the laser engraving machine are located at the upper part of the rear side of the outer frame. The laser engraving machine moves laterally left and right at the rear side of the outer frame through an engraving machine screw. The width adjustment mechanism includes a width adjustment motor, a width adjustment belt, a belt conveyor pulley, a reversing motor, a reversing belt drive shaft, a first width adjustment screw, and a second width adjustment screw. The width adjustment motor drives the width adjustment belt to rotate, thereby driving the belt conveyor pulley to rotate. The belt conveyor pulley drives the first width adjustment screw and the second width adjustment screw to rotate via the belt. The width adjustment frame includes a first fixed plate, a second fixed plate, a width adjustment plate, a belt motor, and a belt drive rod arranged in parallel. The width adjustment plate is located between the first fixed plate and the second fixed plate. The front and rear ends of the first and second width adjustment screws are hinged to the first and second fixed plates. The first and second width adjustment screws traverse the width adjustment plate in the front-rear direction. The rotation of the first and second width adjustment screws drives the width adjustment plate to move back and forth. The flipping motor and the flipping belt drive shaft are mounted on the width adjustment plate. The front and rear ends of the belt drive rod are hinged to the first and second fixed plates. The belt motor is fixed to the outside of the second fixed plate. The belt drive rod is driven to rotate by the belt motor. The belt limiting mechanism includes a fixed side plate, a belt limiting coupling sleeve, a conveyor belt, and a belt limiting wheel. The belt limiting wheel and the conveyor belt are mounted on the fixed side plate. The belt drive rod runs transversely through the two fixed side plates and the coupling sleeve in the front-to-back direction. The belt drive rod and the belt limiting wheels on the front and rear sides are driven by the conveyor belt. The coupling sleeve is fixed between the fixed side plate and the width adjustment plate. The flipping mechanism includes a flipping table, with flipping shafts on the front and rear sides of the flipping table. The flipping table belt drive mechanism includes a flipping table belt, a flipping belt transmission gear, a flipping belt drive gear, and a drive gear fixing base. The flipping belt transmission gear is connected to the flipping shafts, and the flipping belt transmission gear is hinged to both sides of the flipping table. The flipping belt transmission gear and the flipping belt drive gear are driven by the flipping table belt. The flipping belt drive gear is hinged to the drive gear fixing base. The flipping belt drive gear is fixed at both ends of the flipping belt transmission shaft, and the drive gear fixing base is fixed to the outer frame. The flipping motor drives the flipping belt drive shaft, which in turn drives the flipping belt drive gear to drive the flipping shaft, thereby achieving the degree of flipping of the flipping table.

[0004] Furthermore, the outer frame includes a fixed bracket, within which an electrical control box is housed. A three-color alarm light is located at the top of the fixed bracket. A device start button, a device stop button, a device reset button, and a device emergency stop button are located on the side of the fixed bracket. All three buttons are electrically connected to the electrical control box. A width adjustment control touchscreen and a keyboard placement box are also located on the side of the fixed bracket. The width adjustment control touchscreen is electrically connected to the electrical control box and the width adjustment motor. Casters are located at the bottom of the fixed bracket.

[0005] Furthermore, the product feeding side of the fixed side plate is equipped with a feeding detection sensor, which is electrically connected to the electrical control box.

[0006] Furthermore, the product feeding side of the tilting table is equipped with a positioning detection sensor, which is electrically connected to the electrical control box.

[0007] Furthermore, the flipping mechanism includes a fixed pressure bar, a fixed pressure block, a feeding stop block, a stop block cylinder, a fixed pressure block cylinder, and a flipping table belt drive shaft. The fixed pressure bar is fixed to the lower ends of both sides of the fixed pressure block. The fixed pressure block cylinder drives the fixed pressure block to press down, thereby driving the fixed pressure bar to press down and fix the product. The feeding stop block is driven by the stop block cylinder to block the product.

[0008] Furthermore, the width adjustment mechanism includes a width adjustment slider and a width adjustment track, the width adjustment plate is fixed to the upper end of the width adjustment slider, and the width adjustment slider slides along the width adjustment track.

[0009] Compared with the prior art, the present invention has the following technical effects: This utility model is equipped with a width adjustment mechanism, which is suitable for PCB products of various sizes. Through the flipping mechanism, the front and back printing processes of PCB products can be completed efficiently, achieving precise product positioning and printing, ensuring the printing quality of PCB products, and improving production efficiency. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application; Figure 2 This is a schematic diagram of the belt conveyor according to an embodiment of this application; Figure 3 This is a schematic diagram of the outer frame structure of an embodiment of this application; Figure 4 This is a schematic diagram of the electrical control box according to an embodiment of this application; Figure 5 This is a schematic diagram of the structure of the laser engraving machine according to an embodiment of this application; Figure 6 This is a schematic diagram of the belt limiting mechanism according to an embodiment of this application; Figure 7 This is a schematic diagram of the structure of the width adjustment framework in an embodiment of this application; Figure 8 This is a schematic diagram of the structure of the flipping mechanism according to an embodiment of this application; Figure 9 This is a schematic diagram of the structure of the tilting table belt drive mechanism according to an embodiment of this application; Figure 10 This is a schematic diagram of the dust collection mechanism according to an embodiment of this application; Figure 11 This is a schematic diagram of the structure of the display lifting mechanism according to an embodiment of this application; Figure 12 This is a schematic diagram of the width adjustment mechanism in an embodiment of this application.

[0011] The parts in the attached diagram are labeled as follows: 1. Outer frame; 2. Width adjustment mechanism; 3. Dust collection mechanism; 4. Belt limiting mechanism. 5. Width adjustment frame; 6. Tilting mechanism; 7. Tilting table belt drive mechanism. 8. Laser engraving machine; 9. Engraving machine lead screw; 10. Door frame connecting hinge. 11. Monitor, 12. Door frame, 13. Door handle, 14. Belt conveyor 15 Hydraulic tappet, 16 Tappet fixing block, 101 Three-color alarm light, 102 Equipment start button, 103 Equipment stop button 104 Equipment reset button, 105 Equipment emergency stop button, 106 Width adjustment control touch screen. 107 Keyboard stand, 108 Fixing bracket, 109 Casters 201 Adjustable width motor, 202 Adjustable width belt, 203 Belt drive pulley 204 Tilting motor, 205 Tilting belt drive shaft, 206 Width adjustment slider 207 Width Adjusting Track, 208 Drive Shaft Bushing, 209 First Width Adjusting Screw 210 Second width-adjusting lead screw, 211 Coupling sleeve, 212 Width-adjusting motor base, 301 vacuum cleaner pipe, 302 vacuum cleaner pipe fixing block, 401 Fixed side plate, 402 Belt limit coupling sleeve, 403 Conveyor belt, 404 stainless steel belt limit pulley, 405 stainless steel feed detection sensor, 501 First fixing plate, 502 Width adjustment plate, 503 Second fixing plate, 504 belt motor mounting bracket, 505 belt motor, 506 belt drive rod, 601 Tilting shaft, 602 Fixed pressure strip, 603 Fixed pressure block, 604 Feed stop block, 605 stop block cylinder, 606 fixed pressure block cylinder, 607 tilting table belt drive shaft, 608 Tilting table, 609 Position detection sensor, 701 Tilting table belt, 702 Tilting belt transmission gear, 703 Reversible belt drive gear, 704 Drive gear fixing base, 801 Limit plate, 802 Linear slider, 803 Base fixing plate, 804 Servo motor, 805 fixing block. Detailed Implementation

[0012] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0013] This embodiment proposes a flipping conveyor device, see [link / reference] Figure 1 and Figure 2It includes an outer frame 1, a width adjustment mechanism 2, a dust collection mechanism 3, a belt limiting mechanism 4, a width adjustment frame 5, a flipping mechanism 6, a flipping table belt drive mechanism 7, and a laser engraving machine 8. The width adjustment frame 5 is located at the lower front side of the outer frame 1 and its width can be adjusted in the front-back direction. The width adjustment mechanism 2 and the belt limiting mechanism 4 are located inside the width adjustment frame 5. The flipping mechanism 6 and the flipping table belt drive mechanism 7 are located at the upper part of the width adjustment frame 5.

[0014] The products on the flipping mechanism 6 are transferred to the front side of the outer frame 1 via belt conveyor 14, which is located inside the upper end of the width-adjusting frame 5. (See attached image) Figure 1 and Figure 2 The conveying direction of the belt conveyor 14 is aligned with the central axis of the width adjustment frame 5.

[0015] The dust collection mechanism 3 and the laser engraving machine 8 are located on the upper part of the rear side of the outer frame 1. The laser engraving machine 8 moves laterally left and right on the rear side of the outer frame 1 through the engraving machine lead screw 9.

[0016] See Figure 10 The vacuuming mechanism 3 includes a vacuuming pipe 301 and a vacuuming pipe fixing block 302, wherein the vacuuming pipe 301 is fixed on the vacuuming pipe fixing block 302, and the top end of the vacuuming pipe 301 is connected to an external vacuuming device.

[0017] See Figure 3 The outer frame 1 includes a fixed bracket 108, which houses an electrical control box with a built-in PLC controller. The upper end of the fixed bracket 108 is equipped with a three-color alarm light 101. The side of the fixed bracket 108 is equipped with a device start button 102, a device stop button 103, a device reset button 104, and a device emergency stop button 105. The three-color alarm light 101, device start button 102, device stop button 103, device reset button 104, and device emergency stop button 105 are all electrically connected to the electrical control box. The side of the fixed bracket 108 is also equipped with a width adjustment control touch screen 106 and a keyboard placement box 107. The width adjustment control touch screen 106 is electrically connected to the electrical control box and the width adjustment motor 201. The bottom of the fixed bracket 108 is equipped with a pulley 109.

[0018] See Figure 4 An electrical control box is provided on the upper part of the outer frame 1. In this embodiment, the electrical control box is equipped with a quick-closing door assembly, which includes a door frame connecting hinge 10, a display 11, a door frame 12, and a door handle 13.

[0019] See Figure 11 The display 11 is equipped with a lifting mechanism, which includes a hydraulic push rod 15 and a push rod fixing block 16. One end of the hydraulic push rod 15 is fixed to the door frame 12, and the other end is fixed to the push rod fixing block 16 to achieve the lifting and support functions of the door frame 12.

[0020] See Figure 5 The laser engraving machine 8 is equipped with a limit plate 801, a linear slider 802, a base fixing plate 803, a servo motor 804, and a fixing block 805. The fixing block 805 is installed on the base fixing plate 803, the base fixing plate 803 is installed on the linear slider 802, and the linear slider 802 is installed on the engraving machine lead screw 9. The servo motor 804 drives the linear slider 802 to make the laser engraving machine 8 move linearly along the engraving machine lead screw 9.

[0021] See Figure 12 The width adjustment mechanism 2 includes a width adjustment motor 201, a width adjustment belt 202, a belt conveyor pulley 203, a reversing motor 204, a reversing belt drive shaft 205, a first width adjustment lead screw 209, and a second width adjustment lead screw 210. The width adjustment motor 201 drives the width adjustment belt 202 to rotate, thereby driving the belt conveyor pulley 203 to rotate. The belt conveyor pulley 203 drives the first width adjustment lead screw 209 and the second width adjustment lead screw 210 to rotate via the belt.

[0022] See Figure 7 The width adjustment frame 5 includes a first fixed plate 501, a second fixed plate 503, a width adjustment plate 502, a belt motor 505, and a belt drive rod 506 arranged in parallel. The width adjustment motor 201 is fixed to the outside of the first fixed plate 501 through the width adjustment motor base 212. The width adjustment plate 502 is located between the first fixed plate 501 and the second fixed plate 503. The front and rear ends of the first width adjustment screw 209 and the second width adjustment screw 210 are hinged to the first fixed plate 501 and the second fixed plate 503. The first width adjustment screw 209 and the second width adjustment screw 210 traverse the width adjustment plate 502 in the front-rear direction. The rotation of the first width adjustment screw 209 and the second width adjustment screw 210 drives the width adjustment plate 502 to move back and forth.

[0023] The flip motor 204 and the flip belt drive shaft 205 are mounted on the width adjustment plate 502. The front and rear ends of the belt drive rod 506 are hinged to the first fixed plate 501 and the second fixed plate 503. The belt motor 505 is fixed to the outside of the second fixed plate 503 through the belt motor mounting seat 504. The belt drive rod 506 is driven to rotate by the belt motor 505.

[0024] A drive shaft sleeve 208 is provided at the mating point between the reversible belt drive shaft 205 and the first fixed plate 501 and the second fixed plate 503. The drive shaft sleeve 208 is fixed on the first fixed plate 501 and the second fixed plate 503 and serves as a guide for the reversible belt drive shaft 205.

[0025] A coupling sleeve 211 is provided at the joint between the first width adjusting screw 209, the second width adjusting screw 210 and the width adjusting plate 502. The coupling sleeve 211 is fixed on the width adjusting plate 502 and serves as a guide for the first width adjusting screw 209 and the second width adjusting screw 210.

[0026] The width adjustment mechanism 2 also includes a width adjustment slider 206 and a width adjustment track 207. The width adjustment plate 502 is fixed to the upper end of the width adjustment slider 206, and the width adjustment slider 206 slides along the width adjustment track 207.

[0027] See Figure 6 The belt limiting mechanism 4 includes a fixed side plate 401, a belt limiting coupling sleeve 402, a conveyor belt 403, and a belt limiting wheel 404. The belt limiting wheel 404 and the conveyor belt 403 are mounted on the fixed side plate 401. The belt drive rod 506 runs transversely through the two fixed side plates 401 and the coupling sleeve 402 in the front-to-back direction. The belt drive rod 506 and the belt limiting wheels 404 on the front and rear sides are driven by the conveyor belt 403. The coupling sleeve 402 is fixed between the fixed side plate 401 and the width adjustment plate 502. The product feeding side of the fixed side plate 401 is provided with a feeding detection sensor 405, which is electrically connected to the electrical control box.

[0028] See Figure 8 The flipping mechanism 6 includes a flipping table 608, a fixed pressure bar 602, a fixed pressure block 603, a feeding stop block 604, a stop block cylinder 605, a fixed pressure block cylinder 606, and a flipping table belt drive shaft 607. The flipping table 608 is provided with flipping shafts 601 on the front and rear sides. The fixed pressure bar 602 is fixed to the lower ends of both sides of the fixed pressure block 603. The fixed pressure block cylinder 606 drives the fixed pressure block 603 to press down, thereby driving the fixed pressure bar 602 to press down and fix the product. The feeding stop block 604 is driven by the stop block cylinder 605 to block the product. The product feeding side of the flipping table 608 is provided with a position detection sensor 609. The position detection sensor 609, the stop block cylinder 605, and the fixed pressure block cylinder 606 are all electrically connected to the electrical control box.

[0029] See Figure 9 The tilting table belt drive mechanism 7 includes a tilting table belt 701, a tilting belt transmission gear 702, a tilting belt drive gear 703, and a drive gear fixing base 704. The tilting belt transmission gear 702 is connected to the tilting shaft 601. The tilting belt transmission gear 702 is hinged to both sides of the tilting table 608. The tilting belt transmission gear 702 and the tilting belt drive gear 703 are driven by the tilting table belt 701. The tilting belt drive gear 703 is hinged to the drive gear fixing base 704. The tilting belt drive gear 703 is fixed at both ends of the tilting belt transmission shaft 205. The drive gear fixing base 704 is fixed on the outer frame 1.

[0030] In use, the tilting motor 204 drives the tilting belt drive shaft 205, which in turn drives the tilting belt drive gear 703 to drive the tilting shaft 601, thereby achieving a 180-degree tilting of the tilting table 608.

[0031] In actual operation, the worker needs to confirm the product width dimension, set the parameters on the width control touch screen 106 so that the conveyor width of the equipment in this embodiment is the same as the product width, open the engraving machine software on the equipment main control display 11, select the engraving program corresponding to the product, start the external dust suction mechanism 3, and the front-end PCB board loading machine will load the board.

[0032] Press the device start button 102, and the PCB product will start from... Figure 1 The equipment enters through the right conveyor. After entering, the first section of the conveyor belt of the belt conveyor 14 rotates. After the PCB product sensing signal is detected, the middle section of the belt conveyor 14 is started to rotate. The middle section of the PCB product sensing signal is detected and the feed stop 604 falls down, blocking the PCB product. The fixing strips 602 on both sides press down to fix the PCB product.

[0033] When the feed detection sensor 405 detects a material, the PLC's internal program will control the first section of the conveyor belt. When the signal detects a PCB product, the conveyor belt will stop to prevent the PCB product from entering the middle section.

[0034] After the PCB product in the middle section is fixed, the laser engraving machine 8 is automatically started. Through the engraving machine program and the bottom motor drive, it moves along the engraving machine lead screw 9 to engrave different points. The engraving of one side of the PCB product is completed. Then, the PLC controller controls the laser engraving machine 8 to return to its original position, the middle section conveyor belt rotates, the feed stop 604 and the pressure bar 602 open and release the PCB product.

[0035] If the PCB product has a double-sided engraving task, after one side is engraved, the PLC controller controls the laser engraving machine 8 to return to its original position. The PLC controls the flipping motor to rotate the flipping table 608 180°. After the sensing signal is detected, the flipping machine 8 stops and continues to start. After both sides of the PCB product are engraved, the laser engraving machine 8 returns to its original position, the flipping table 608 flips in the opposite direction to the initial angle, the middle conveyor belt rotates, and the feed stop 604 and pressure bar 602 open to release the PCB product.

[0036] The PCB products that have completed the engraving enter the third section of the belt conveyor 14. When the PCB product sensor signal is detected in the third section of the conveyor, the PLC controller starts the first section of the conveyor belt to allow the PCB products to enter the middle section. The third section of the conveyor releases the PCB products to the next equipment or puts them into the PCB product box after the task is completed. In summary, one cycle of PCB products is completed.

[0037] If a fault occurs during the engraving process, the three-color alarm light 101 will sound an alarm. You can press the stop button 103 or the PLC controller to force a pause, open the door frame 12 of the main control display, observe the engraved products inside, close the door frame 12 after confirming there are no problems, press the equipment reset button 104, and restart the equipment to perform engraving again.

[0038] All of the above actions are controlled by the PLC controller and the laser engraving machine 8.

[0039] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.

Claims

1. A flip conveyor, characterized by The system includes an outer frame (1), a width adjustment mechanism (2), a dust extraction mechanism (3), a belt limiting mechanism (4), a width adjustment frame (5), a flipping mechanism (6), a flipping table belt drive mechanism (7), and a laser engraving machine (8). The width adjustment mechanism (2) and the width adjustment frame (5) are located at the lower front side of the outer frame (1) and can adjust the width in the front-back direction. The width adjustment mechanism (2) and the belt limiting mechanism (4) are located inside the width adjustment frame (5). The flipping mechanism (6) and the flipping table belt drive mechanism (7) are located at the upper part of the width adjustment frame (5). A belt conveyor (14) is provided at the upper front side of the outer frame (1). The belt conveyor (14) is located inside the width adjustment mechanism (2). The dust extraction mechanism (3) and the laser engraving machine (8) are located at the upper rear side of the outer frame (1). The laser engraving machine (8) moves laterally left and right at the rear side of the outer frame (1) through the engraving machine screw (9). The width adjustment mechanism (2) includes a width adjustment motor (201), a width adjustment belt (202), a belt conveyor pulley (203), a reversing motor (204), a reversing belt drive shaft (205), a first width adjustment screw (209), and a second width adjustment screw (210). The width adjustment motor (201) drives the width adjustment belt (202) to rotate, thereby driving the belt conveyor pulley (203) to rotate. The belt conveyor pulley (203) drives the first width adjustment screw (209) and the second width adjustment screw (210) to rotate via the belt. The width adjustment frame (5) includes a first fixed plate (501), a second fixed plate (503), a width adjustment plate (502), a belt motor (505), and a belt drive rod (506) arranged in parallel. The width adjustment plate (502) is located between the first fixed plate (501) and the second fixed plate (503). The front and rear ends of the first width adjustment screw (209) and the second width adjustment screw (210) are hinged to the first fixed plate (501) and the second fixed plate (503). The first width adjustment screw (209) and the second width adjustment screw (210) extend along the front and rear sides. The first and second adjusting screws (209 and 210) rotate to drive the width adjusting plate (502) to move back and forth. The flipping motor (204) and the flipping belt drive shaft (205) are mounted on the width adjusting plate (502). The front and rear ends of the belt drive rod (506) are hinged to the first fixed plate (501) and the second fixed plate (503). The belt motor (505) is fixed on the outside of the second fixed plate (503). The belt drive rod (506) is driven to rotate by the belt motor (505). The belt limiting mechanism (4) includes a fixed side plate (401), a belt limiting coupling sleeve (402), a conveyor belt (403), and a belt limiting wheel (404). The belt limiting wheel (404) and the conveyor belt (403) are mounted on the fixed side plate (401). The belt drive rod (506) runs through the two fixed side plates (401) and the coupling sleeve (402) in the front-back direction. The belt drive rod (506) and the belt limiting wheels (404) on the front and rear sides are driven by the conveyor belt (403). The coupling sleeve (402) is fixed between the fixed side plate (401) and the width adjustment plate (502). The flipping mechanism (6) includes a flipping table (608), and flipping shafts (601) are provided on the front and rear sides of the flipping table (608). The flipping table belt transmission mechanism (7) includes a flipping table belt (701), a flipping belt transmission gear (702), a flipping belt drive gear (703), and a drive gear fixing base (704). The flipping belt transmission gear (702) is connected to the flipping shaft (601). The flipping belt transmission gear (702) is hinged to both sides of the flipping table (608). The flipping belt transmission gear (702) and the flipping belt drive gear (703) are driven by the flipping table belt (701). The flipping belt drive gear (703) is hinged to the drive gear fixing base (704). The flipping belt drive gear (703) is fixed at both ends of the flipping belt transmission shaft (205). The drive gear fixing base (704) is fixed on the outer frame (1). The rotating motor (204) drives the rotating belt drive shaft (205), which in turn drives the rotating belt drive gear (703) to drive the rotating shaft (601), thereby realizing the 180-degree rotation of the rotating table (608).

2. The flipper conveyor according to claim 1, wherein, The outer frame (1) includes a fixed bracket (108), an electrical control box is provided inside the fixed bracket (108), a three-color alarm light (101) is provided at the upper end of the fixed bracket (108), and a device start button (102), a device stop button (103), a device reset button (104), and a device emergency stop button (105) are provided on the side of the fixed bracket (108). The three-color alarm light (101), the device start button (102), the device stop button (103), the device reset button (104), and the device emergency stop button (105) are all electrically connected to the electrical control box. The side of the fixed bracket (108) is also provided with a width adjustment control touch screen (106) and a keyboard placement box (107). The width adjustment control touch screen (106) is electrically connected to the electrical control box and the width adjustment motor (201). The bottom of the fixed bracket (108) is provided with a pulley (109).

3. The flipper conveyor of claim 2, wherein, The product feed side of the fixed side plate (401) is provided with a feed detection sensor (405), and the feed detection sensor (405) is electrically connected to the electrical control box.

4. The flipper conveyor of claim 2, wherein, The product feeding side of the tilting table (608) is equipped with a position detection sensor (609), which is electrically connected to the electrical control box.

5. The flipper conveyor of claim 1, wherein, The flipping mechanism (6) includes a fixed pressure bar (602), a fixed pressure block (603), a feeding stop block (604), a stop block cylinder (605), a fixed pressure block cylinder (606), and a flipping table belt drive shaft (607). The fixed pressure bar (602) is fixed at the lower ends of both sides of the fixed pressure block (603). The fixed pressure block cylinder (606) drives the fixed pressure block (603) to press down so as to drive the fixed pressure bar (602) to press down and fix the product. The feeding stop block (604) is driven by the stop block cylinder (605) to block the product.

6. The flipper conveyor of claim 1, wherein, The width adjustment mechanism (2) includes a width adjustment slider (206) and a width adjustment track (207). The width adjustment plate (502) is fixed at the upper end of the width adjustment slider (206), and the width adjustment slider (206) slides along the width adjustment track (207).