Packaging line conveying device convenient to arrange

Through the PLC module controlled motor and infrared sensor working together, combined with the design of the deflector and conveyor belt, the automatic boxing of wine bottles is realized, solving the problem of low efficiency of wine bottles in the existing technology and improving boxing efficiency and stability.

CN223302968UActive Publication Date: 2025-09-05CHENYANG GUFANG WINE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422681972.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-09-05
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The existing wine bottle boxing process relies on manual operation, which is inefficient and has high labor and time costs.

Method used

The motor, electric telescopic rod and infrared sensor controlled by PLC module work together to realize the automatic boxing of wine bottles, combined with the design of deflectors and conveyor belts to ensure the orderly conveying of wine bottles and wine boxes.

Benefits of technology

It improves the efficiency and stability of boxing, reduces manual operation, and realizes efficient coordinated delivery and accurate packing of wine bottles and wine boxes.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223302968U_ABST
    Figure CN223302968U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of wine production devices, and discloses a packaging line conveying device convenient to arrange, which comprises a wine bottle conveying mechanism, a wine box conveying mechanism and a boxing mechanism, the wine bottle conveying mechanism comprises two guide plates, a first driving roller and a plurality of first driven rollers, the wine box conveying mechanism comprises two protection plates, a second driving roller and a plurality of second driven rollers, the boxing mechanism comprises two rotating discs, and a plurality of rotating shafts are fixedly arranged at the front positions of the lower ends of the two flow guide plates. According to the automatic winebottle boxing device, the first motor, the second motor, the two electric telescopic rods, the two angle gauges and the two infrared sensors are accurately controlled to operate cooperatively through the integrated PLC module, automation of the winebottle boxing process is achieved, and the winebottles and the wineboxes are guided by the first conveying belt and the second conveying belt through the two flow guide plates and the multiple flow guide cylinders correspondingly; and orderly conveying of the wine bottles and the wine boxes is ensured, and the conveying efficiency and the boxing stability are effectively improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of wine production devices, in particular to a packaging line conveying device which is easy to organize. Background Art

[0002] Alcohol production is a complex process involving raw material selection, fermentation, distillation, aging, blending, and packaging. It combines traditional brewing techniques with modern production technologies to produce a wide range of alcoholic beverages that meet diverse consumer tastes and quality requirements. From the selection of raw materials such as grains and fruits, to the role of yeast in fermentation, to the shaping of flavor during distillation and aging, every step is crucial to the quality of the final product. Modern distilleries also incorporate automation and information technology to improve production efficiency and ensure consistent product quality.

[0003] After wine is filled, it needs to be boxed. Conventional methods typically involve conveying the bottles to a designated location using a conveyor, manually placing the bottles into boxes, and then transporting the boxes back to the designated location for packaging. This manual boxing method is extremely inefficient, and labor and time costs need to be reduced. Therefore, those skilled in the art have provided a convenient packaging line conveyor device to address the issues raised in the background art. Utility Model Content

[0004] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a packaging line conveying device that is easy to organize. The device accurately controls the coordinated operation of the first motor, the second motor, two electric telescopic rods, two inclinometers and two infrared sensors through an integrated PLC module to realize the automation of the wine bottle boxing process. The first conveyor belt and the second conveyor belt guide the wine bottles and wine boxes through two guide plates and multiple guide cylinders respectively, ensuring the orderly transportation of the wine bottles and wine boxes, and effectively improving the transportation efficiency and boxing stability.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a packaging line conveying device that is easy to organize, including a wine bottle conveying mechanism, a wine box conveying mechanism and a cartoning mechanism, the wine bottle conveying mechanism includes two guide plates, a first active roller and multiple first driven rollers, the wine box conveying mechanism includes two guard plates, a second active roller and multiple second driven rollers, the cartoning mechanism includes two rotating disks, a plurality of rotating shafts are fixedly provided at the front position of the lower ends of the two guide plates, the lower ends of the plurality of rotating shafts are respectively fixedly provided to the rear position of the upper ends of the two guard plates, and the two rotating disks are respectively rotated to the front middle position of the outer sides of the two guide plates.

[0006] Furthermore, a first motor is fixedly provided at the rear outer side of the guide plate on one side through a bracket, and the first active roller is rotatably provided between the rear inner sides of the two guide plates. A rotating shaft fixed on one side of the first active roller passes through the guide plate on the same side and is fixedly connected to the output end of the first motor.

[0007] Furthermore, multiple first driven rollers are rotated in sequence and set to the inner side of the two guide plates between the front positions of the first active roller, the surface of the first active roller and multiple first driven rollers are covered with a first conveyor belt, and the outer sides of the two guide plates are fixedly provided with a first pillar at a lower rear position.

[0008] Furthermore, a second motor is fixedly provided at the rear position of the outer side of the guard plate on one side through a bracket, and the second active roller is rotatably provided between the rear positions of the inner sides of the two guard plates. A rotating shaft fixed on one side of the second active roller passes through the guard plate on the same side and is fixedly connected to the output end of the second motor.

[0009] Furthermore, multiple second driven rollers are rotated in sequence to be set to the inner side of the two guard plates and between the front positions of the second active rollers. The surfaces of the second active roller and multiple second driven rollers are covered with a second conveyor belt for rolling. Second pillars are fixedly set at the rear and front lower positions of the outer sides of the two guard plates, and multiple rotating shaft bodies are fixedly provided with guide tubes.

[0010] Furthermore, two swing arms are rotatably provided at the front and lower outer sides of the two guide plates, a connecting block is fixedly provided through the middle position of the two swing arms, an electric telescopic rod is fixedly provided at the upper ends of the two swing arms, and a telescopic connecting rod is fixedly provided at the front ends of the two rotating disks.

[0011] Furthermore, springs are fixedly provided on the upper ends of the two rotating disks, the front ends of the two springs are fixedly provided to the rear positions of the two electric telescopic rods, and the front ends of the two telescopic connecting rods are respectively ball-hinged and connected to the rear end centers of the two connecting blocks.

[0012] Furthermore, a circular ring is rotatably provided on one inward end of each of the two electric telescopic rods, an arc-shaped clamping pad is fixedly provided on the inner side of each of the two circular rings, and an infrared sensor is fixedly provided on the upper end of each of the two circular rings.

[0013] The utility model has the following beneficial effects:

[0014] 1. The utility model proposes a packaging line conveying device that is easy to organize. The device controls the coordinated actions of a first motor, a second motor, two inclinometers, two electric telescopic rods, and two infrared sensors through a PLC module to realize an automated wine bottle boxing process. When the wine bottle is clamped and conveyed to a position where the center of gravity exceeds the front position of the upper end of the first conveyor belt, the two swing arms rotate forward under the action of the gravity of the wine bottle and the wine content, so that the wine bottle enters the wine box vertically, which fully reduces manual operation and improves the boxing efficiency and accuracy.

[0015] 2. The utility model proposes a packaging line conveying device that is easy to organize. The device realizes efficient coordinated conveying of wine bottles and wine boxes through the design of the first conveyor belt and the second conveyor belt. The multiple wine bottles on the first conveyor belt are gradually arranged into a triangle with the tips facing forward under the guidance of the two guide plates, ensuring that only one wine bottle passes through the front middle position of the inner side of the two guide plates at the same time, thereby improving the stability and efficiency of conveying. The wine boxes on the second conveyor belt maintain a straight line under the guidance of multiple guide tubes, also ensuring that only one wine box passes through at the same time, effectively avoiding congestion and confusion, and facilitating the coordinated packing operation of wine bottles and wine boxes. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is an axonometric diagram of the present utility model;

[0017] Figure 2 This is an axonometric diagram of the present invention when viewed from one side;

[0018] Figure 3 This is an axonometric diagram of the present invention when viewed from the rear end;

[0019] Figure 4 It is an axonometric diagram of one side of the cartoning mechanism of the present invention;

[0020] Figure 5 For the utility model Figure 3 A magnified schematic diagram of the structure at point A.

[0021] Legend:

[0022] 1. Wine bottle conveying mechanism; 2. Wine box conveying mechanism; 3. Cartoning mechanism; 101. First conveyor belt; 102. First motor; 103. Guide plate; 104. First active roller; 105. First driven roller; 106. First pillar; 201. Second conveyor belt; 202. Second motor; 203. Guide tube; 204. Second active roller; 205. Second driven roller; 206. Second pillar; 207. Guard plate; 301. Rotating disk; 302. Spring; 303. Telescopic connecting rod; 304. Connecting block; 305. Swing arm; 306. Electric telescopic rod; 307. Arc clamping pad; 308. Ring; 309. Infrared sensor. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] Reference Figure 1 、 Figure 2 and Figure 3 The utility model provides an embodiment: a packaging line conveying device that is easy to organize, including a wine bottle conveying mechanism 1, a wine box conveying mechanism 2 and a cartoning mechanism 3, the wine bottle conveying mechanism 1 includes two guide plates 103, a first active roller 104 and a plurality of first driven rollers 105, the wine box conveying mechanism 2 includes two guard plates 207, a second active roller 204 and a plurality of second driven rollers 205, the cartoning mechanism 3 includes two rotating disks 301, the lower ends of the two guide plates 103 are fixedly provided with a plurality of rotating shafts at the front position, the lower ends of the plurality of rotating shafts are respectively fixedly provided to the rear position of the upper ends of the two guard plates 207, and the two rotating disks 301 are respectively rotatably provided to the front middle position of the outer sides of the two guide plates 103;

[0025] Specifically, the two guide plates 103 in the wine bottle conveying mechanism 1 and the two guard plates 207 in the wine box conveying mechanism 2 provide good installation positions for multiple rotating shafts. The multiple rotating shafts connect the two guide plates 103 in the wine bottle conveying mechanism 1 and the two guard plates 207 in the wine box conveying mechanism 2 well and stably. The two guide plates 103 in the wine bottle conveying mechanism 1 provide good installation positions for the two rotating disks 301 in the cartoning mechanism 3.

[0026] Reference Figure 2 、 Figure 3 and Figure 5 : A first motor 102 is fixedly provided on the outer rear position of the guide plate 103 on one side through a bracket, a first active roller 104 is rotatably provided between the inner rear positions of the two guide plates 103, a rotating shaft fixed on one side of the first active roller 104 passes through the guide plate 103 on the same side and is fixedly connected to the output end of the first motor 102, a plurality of first driven rollers 105 are rotatably provided on the inner sides of the two guide plates 103 and between the front positions of the first active roller 104, a first conveyor belt 101 is rolled and covered on the surfaces of the first active roller 104 and the plurality of first driven rollers 105, and a first pillar 106 is fixedly provided on the outer rear lower positions of the two guide plates 103;

[0027] Specifically, the two first pillars 106 provide good support. When in use, the first motor 102 drives the first active roller 104 to rotate and cooperates with the multiple first driven rollers 105 to drive the first conveyor belt 101 to rotate well, so that the multiple wine bottles placed on the upper end of the first conveyor belt 101 are well conveyed forward. During the conveying process, the multiple wine bottles are gradually arranged into a triangle with the tip facing forward under the guidance of the two guide plates 103, and only one wine bottle passes through the inner front position of the two guide plates 103 at the same time.

[0028] Reference Figure 2 、 Figure 3 and Figure 5 : A second motor 202 is fixedly provided on the outer rear position of the guard plate 207 on one side through a bracket, and the second active roller 204 is rotatably provided between the inner rear positions of the two guard plates 207. A rotating shaft fixed on one side of the second active roller 204 passes through the guard plate 207 on the same side and is fixedly connected to the output end of the second motor 202. A plurality of second driven rollers 205 are rotatably provided on the inner sides of the two guard plates 207 and between the front positions of the second active roller 204. The second active roller 204 and the plurality of second driven rollers 205 are covered with a second conveyor belt 201 that is rolled thereon. Second pillars 206 are fixedly provided on the outer rear and front lower positions of the two guard plates 207, and a plurality of rotating shaft bodies are all fixedly provided with guide cylinders 203;

[0029] Specifically, the four second pillars 206 provide good support. When in use, the second motor 202 drives the second active roller 204 to rotate and cooperates with the multiple second driven rollers 205 to drive the second conveyor belt 201 to rotate well, so that the multiple wine boxes placed on the upper end of the second conveyor belt 201 are well conveyed forward. During the conveying process, the multiple wine boxes maintain a straight line forward under the guidance of the multiple guide cylinders 203 on both sides, and only one wine box passes through the inner sides of the multiple guide cylinders 203 on both sides at the same time.

[0030] Reference Figure 2 、 Figure 3 、 Figure 4 and Figure 5: Two swing arms 305 are rotatably provided at the lower front outer sides of the two deflectors 103, and a connecting block 304 is fixedly provided through the middle position of the arm body of the two swing arms 305. An electric telescopic rod 306 is fixedly provided on the upper ends of the two swing arms 305. A telescopic connecting rod 303 is fixedly provided at the front ends of the two rotating disks 301. A spring 302 is fixedly provided on the upper ends of the two rotating disks 301. The front ends of the two springs 302 are fixed to the rear positions of the rod bodies of the two electric telescopic rods 306. The front ends of the two telescopic connecting rods 303 are respectively connected to the rear centers of the two connecting blocks 304 by ball hinges. A circular ring 308 is rotatably provided at one end of the two electric telescopic rods 306. An arc-shaped clamping pad 307 is fixedly provided on the inner sides of the two circular rings 308. An infrared sensor 309 is fixedly provided on the upper ends of the two circular rings 308.

[0031] Specifically, an inclinometer is fixed coaxially with the rotating shaft at the lower inner side of each swing arm 305. A PLC module is built into the deflector 103 on one side. The two inclinometers, two infrared sensors 309, two electric telescopic rods 306, the first motor 102 and the second motor 202 are wirelessly connected to the PLC module respectively, and the PLC module is wirelessly connected to the external control network.

[0032] When the wine bottle passes the two infrared sensors 309, the two infrared sensors 309 detect that the distance between them is shortened, and send a signal to the PLC module to control the two electric telescopic rods 306 to extend and drive the two arc-shaped clamping pads 307 to stably clamp the wine bottle above the center of gravity. One second later, the PLC module controls the first motor 102 and the second motor 202 to stop, and the first conveyor belt 101 conveys the clamped wine bottle to a position where the center of gravity exceeds the front of the upper end of the first conveyor belt 101. Under the action of the gravity of the wine bottle and the wine content, the two swing arms 305 rotate forward, the two springs 302 extend, and the two telescopic links 303 extend. Since the wine bottle is clamped above the center of gravity and the two arc-shaped clamping pads 307 are connected by two rings 308 and the two electric telescopic rods 306, the wine bottle remains vertical during the rotation of the two swing arms 305. When the two swing arms 305 rotate ninety degrees, three-fifths of the wine bottle enters the wine box below.

[0033] When the two inclinometers detect that the two swing arms 305 have rotated ninety degrees, they send a signal to the PLC module to control the two electric telescopic rods 306 to shorten and drive the two arc-shaped clamping pads 307 to release the wine bottle. The wine bottle falls completely into the wine box. The two springs 302 recover their deformation, driving the two swing arms 305 to rotate, and the two telescopic links 303 shorten to their original length. When the two inclinometers detect that the two swing arms 305 have rotated back ninety degrees, they send a signal to the PLC module to control the first motor 102 and the second motor 202 to continue running. And so on, the wine bottles are boxed one by one and continue to be transported for subsequent processes.

[0034] Working Principle: Multiple wine bottles placed on the top of the first conveyor belt 101 are transported forward smoothly. During the transport process, the multiple wine bottles are gradually arranged into a triangle with the tips facing forward under the guidance of the two guide plates 103. Only one wine bottle passes through the front inner side of the two guide plates 103 at a time. Multiple wine boxes placed on the top of the second conveyor belt 201 are transported forward smoothly. During the transport process, the multiple wine boxes are guided by the multiple guide cylinders 203 on both sides to maintain a straight line. Only one wine box passes through the inner side of the multiple guide cylinders 203 at a time.

[0035] Secondly, when the wine bottle passes the two infrared sensors 309, the two infrared sensors 309 detect that the distance between them is shortened, and send a signal to the PLC module to control the two electric telescopic rods 306 to extend and drive the two arc-shaped clamping pads 307 to stably clamp the wine bottle above the center of gravity. One second later, the PLC module controls the first motor 102 and the second motor 202 to stop, and the first conveyor belt 101 conveys the clamped wine bottle to a position where the center of gravity exceeds the front of the upper end of the first conveyor belt 101. Under the action of the gravity of the wine bottle and the wine content, the two swing arms 305 rotate forward, the two springs 302 extend, and the two telescopic links 303 extend. Since the wine bottle is clamped above the center of gravity and the two arc-shaped clamping pads 307 are rotatably connected by two rings 308 and the two electric telescopic rods 306, the wine bottle remains vertical during the rotation of the two swing arms 305. When the two swing arms 305 rotate ninety degrees, three-fifths of the wine bottle enters the wine box below.

[0036] Finally, when the two angle meters detect that the two swing arms 305 have rotated 90 degrees, a signal is sent to the PLC module to control the two electric telescopic rods 306 to shorten and drive the two arc-shaped clamping pads 307 to release the wine bottle. The wine bottle falls completely into the wine box. The two springs 302 recover their deformation, driving the two swing arms 305 to rotate. The two telescopic links 303 shorten to their original lengths. When the two angle meters detect that the two swing arms 305 have rotated back 90 degrees, a signal is sent to the PLC module to control the first motor 102 and the second motor 202 to continue to operate. Similarly, the wine bottles are boxed one by one and continue to be transported to the subsequent process. The PLC module is an existing structure, and the control circuit can be implemented by simple programming by technicians in this field. It is common knowledge in this field. In this application, it is only used and not modified. Therefore, the control method and circuit connection are not described in detail. The selection of each device for the use of the above-mentioned equipment is different. It is selected and used according to actual conditions, and with reference to various parameters, according to the function of the equipment used and the effect achieved.

[0037] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A packaging line conveying device that is easy to organize, comprising a wine bottle conveying mechanism (1), a wine box conveying mechanism (2) and a boxing mechanism (3), characterized in that: The wine bottle conveying mechanism (1) comprises two guide plates (103), a first active roller (104) and a plurality of first driven rollers (105); the wine box conveying mechanism (2) comprises two guard plates (207), a second active roller (204) and a plurality of second driven rollers (205); the box loading mechanism (3) comprises two rotating disks (301); a plurality of rotating shafts are fixedly provided at the front positions of the lower ends of the two guide plates (103); the lower ends of the plurality of rotating shafts are respectively fixedly provided at the rear positions of the upper ends of the two guard plates (207); and the two rotating disks (301) are respectively rotatably provided at the front middle positions of the outer sides of the two guide plates (103).

2. The packaging line conveying device that is easy to organize according to claim 1 is characterized in that: A first motor (102) is fixedly provided at a rear position on the outer side of the guide plate (103) on one side through a bracket, and the first active roller (104) is rotatably provided between the rear positions on the inner sides of the two guide plates (103). A rotating shaft fixedly provided on one side of the first active roller (104) passes through the guide plate (103) on the same side and is fixedly connected to the output end of the first motor (102).

3. The packaging line conveying device that is easy to organize according to claim 1 is characterized in that: The plurality of first driven rollers (105) are rotated and arranged in sequence to be located between the inner sides of the two guide plates (103) and the front positions of the first active roller (104); the surfaces of the first active roller (104) and the plurality of first driven rollers (105) are covered with a first conveyor belt (101) for rolling; and the outer sides of the two guide plates (103) are fixedly provided with first pillars (106) at the rear lower positions.

4. The packaging line conveying device that is easy to organize according to claim 1 is characterized in that: A second motor (202) is fixedly provided at a rear position outside the guard plate (207) on one side through a bracket, and the second active roller (204) is rotatably provided between the rear positions inside the two guard plates (207). A rotating shaft fixedly provided on one side of the second active roller (204) passes through the guard plate (207) on the same side and is fixedly connected to the output end of the second motor (202).

5. The packaging line conveying device that is easy to organize according to claim 1 is characterized in that: The plurality of second driven rollers (205) are rotated in sequence and arranged to be located inside the two guard plates (207) and between the front positions of the second active roller (204); the surfaces of the second active roller (204) and the plurality of second driven rollers (205) are covered with a second conveyor belt (201) for rolling; second pillars (206) are fixedly arranged at the rear and front lower positions of the outer sides of the two guard plates (207); and a guide tube (203) is fixedly arranged through the shaft bodies of the plurality of rotating shafts.

6. The packaging line conveying device that is easy to organize according to claim 1 is characterized in that: Two swing arms (305) are rotatably provided at the front lower positions of the outer sides of the two guide plates (103); a connecting block (304) is fixedly provided through the middle positions of the arm bodies of the two swing arms (305); an electric telescopic rod (306) is fixedly provided at the upper ends of the two swing arms (305); and a telescopic connecting rod (303) is fixedly provided at the front ends of the two rotating disks (301).

7. The packaging line conveying device for arranging conveniently according to claim 6, characterized in that: The upper ends of the two rotating disks (301) are fixedly provided with springs (302), the front ends of the two springs (302) are fixedly provided to the rear positions of the rod bodies of the two electric telescopic rods (306), and the front ends of the two telescopic connecting rods (303) are respectively connected to the rear end centers of the two connecting blocks (304) by ball hinges.

8. The packaging line conveying device for arranging conveniently according to claim 6, characterized in that: A circular ring (308) is rotatably provided at one inward end of the two electric telescopic rods (306), an arc-shaped clamping pad (307) is fixedly provided on the inner side of the two circular rings (308), and an infrared sensor (309) is fixedly provided at the upper end of the two circular rings (308).