Automatic plate turning and material pouring equipment for betel nut production

By designing automated flip-floping equipment for betel nut production, the problems of low product consistency and low manual operation efficiency caused by the lack of automation in betel nut production in the prior art are solved, and fully automated production is achieved, improving efficiency and safety.

CN223015924UActive Publication Date: 2025-06-24SHENZHEN TUOFU TECH CO LTD
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Patent Information

Application Number
CN202422304837.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-21
Publication Date
2025-06-24
Estimated Expiration
2034-09-21

AI Technical Summary

Technical Problem

The lack of automation technology in the existing betel nut production process leads to low product consistency and manual operation reliance on handling and transportation, which is insufficient efficiency and safety.

Method used

Design an automated flip-floping equipment for betel nut production, including feeding structure, split-disk structure, flip-floping structure, feeding structure, stacking structure and cutting structure, and realize fully automated production through a belt conveying system.

Benefits of technology

The production process of betel nuts is fully automated, which improves product consistency and production efficiency, reduces manual operations, improves safety and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic plate overturning and material pouring device for betel nut production. The automatic plate overturning and material pouring device comprises a feeding structure, a disc dividing structure, a first overturning and material pouring structure, a material stirring structure, a second overturning and material pouring structure, a disc stacking structure, a discharging structure, a support, a first discharging belt line and a second discharging belt line. The tray distributing structure, the first overturning material pouring structure, the material stirring structure, the second overturning material pouring structure and the tray stacking structure are all arranged in the bracket; one end of the first discharging belt line is arranged below the first overturning and pouring structure, and the other end of the first discharging belt line penetrates through the support and is arranged outside the support. One end of the second discharging belt line is arranged below the second overturning and pouring structure, and the other end of the second discharging belt line penetrates through the support and is arranged outside the support. The feeding structure is arranged on one side of the disc dividing structure, and the discharging structure is arranged on one side of the disc stacking structure. Manual operation is not needed, the whole process is automatic, and labor and cost are saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of areca production, in particular to an automatic turning plate and discharging device for areca production. Background Art

[0002] Industrial automation is a trend of widely adopting automatic control and automatic adjustment devices in industrial production to replace manual operation of machines and machine systems for processing production. Under the condition of industrial production automation, people only indirectly take care of and supervise the machines for production. Industrial automation can be divided into the following stages according to its development: (1) Semi-automation. That is, part of the automatic control and automatic devices are adopted, while the other part is produced by manual operation of machines. (2) Full automation. It means that all processes in the production process, including feeding, discharging, loading and unloading, etc., do not require people to directly carry out production operations (people only indirectly monitor and supervise the operation of machines), and the machines continuously and repeatedly produce one or a batch of products automatically.

[0003] Industrial automation technology is a comprehensive high-tech that uses control theory, instrumentation, computers and other information technologies to realize detection, control, optimization, scheduling, management and decision-making of industrial production processes, so as to achieve the purposes of increasing production, improving quality, reducing consumption, ensuring safety, etc. It includes three major parts: industrial automation software, hardware and systems. As one of the most important technologies in the modern manufacturing field in the 21st century, industrial automation technology mainly solves the problems of production efficiency and consistency. Whether it is a high-speed mass manufacturing enterprise or an enterprise pursuing flexibility, flexibility and customization, it must rely on the application of automation technology. The automation system itself does not directly create benefits, but it plays an obvious role in promoting the enterprise production process: (1) Improve the safety of the production process; (2) Improve production efficiency; (3) Improve product quality; (4) Reduce the consumption of raw materials and energy in the production process.

[0004] In the production process, the traditional handling and conveying of areca are all manual methods, resulting in low product consistency. It is of great practical significance to realize the automatic production of areca manufacturing operations by using industrial automation technology. Content of the Utility Model

[0005] The purpose of the utility model is to solve the defects existing in the prior art, and to provide an automatic turning plate and discharging device for areca production.

[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0007] An automatic turnover and discharging device for areca production, comprising a feeding structure, a tray separating structure, a first turnover and discharging structure, a material distributing structure, a second turnover and discharging structure, a tray stacking structure, a discharging structure, a bracket, a first discharging belt line and a second discharging belt line; the tray separating structure, the first turnover and discharging structure, the material distributing structure, the second turnover and discharging structure and the tray stacking structure are all arranged inside the bracket; one end of the first discharging belt line is arranged below the first turnover and discharging structure, and the other end of the first discharging belt line passes through the bracket and is arranged outside the bracket; one end of the second discharging belt line is arranged below the second turnover and discharging structure, and the other end of the second discharging belt line passes through the bracket and is arranged outside the bracket; the feeding structure is arranged on one side of the tray separating structure, and the discharging structure is arranged on one side of the tray stacking structure.

[0008] Preferably, the feeding structure includes a first lifting component, a first tray transmission component, a first transmission component, a first top plate component, a first jacking component, a stacking separation component, a second transmission component and a first trolley; the first tray transmission component is arranged on the first lifting component, the first transmission component is arranged on both sides of the first top plate component, the first trolley is arranged on the first top plate component, the first jacking component is arranged above the first transmission component, the stacking separation component and the second transmission component are both arranged above the first jacking component, and the first trolley is arranged on the first top plate component and located inside the first transmission component.

[0009] Preferably, the tray separating structure includes a second jacking component, a third transmission component, a first material receiving component and a second material receiving component; both the first material receiving component and the second material receiving component are connected to the second jacking component, the third transmission component is arranged between the first material receiving component and the second material receiving component, and the second jacking component is arranged below the third transmission component.

[0010] Preferably, the first turnover and discharging structure includes a first turnover motor module, a first material receiving cover, a first turnover roller component, a first baffle cylinder component, a first check component, a first pressing plate cylinder component, a first support and a second support; the first support and the second support are connected by a first connecting piece, and the first material receiving cover is arranged below the first support and the second support; the first turnover roller component and the first pressing plate cylinder component are both arranged on the first support and the second support, and the first baffle cylinder component and the first check component are both arranged on the first connecting piece; the first turnover motor module is connected to the second support.

[0011] Preferably, the material feeding structure includes a third support member, a conveying belt assembly, a baffle assembly, a material feeding X-axis assembly, a material feeding Z-axis assembly, and a material feeding device; the conveying belt assembly is disposed on one side of the third support member, the conveying belt assembly 42 is disposed on the support frame 47, and the baffle assembly is disposed at the front end of the conveying belt assembly; the material feeding X-axis assembly is disposed on the support, and the material feeding Z-axis assembly is connected to the material feeding X-axis assembly; the material feeding device is located above the conveying belt assembly and is connected to the material feeding Z-axis assembly.

[0012] Preferably, the second flipping and discharging structure includes a second flipping motor module, a second material receiving cover, a second flipping roller assembly, a second baffle cylinder assembly, a second check component, a second pressing plate cylinder assembly, a fourth support member, and a fifth support member; the fourth support member and the fifth support member are connected by a second connecting member, and the second material receiving cover is disposed below the fourth support member and the fifth support member; the second flipping roller assembly and the second pressing plate cylinder assembly are both disposed on the fourth support member and the fifth support member, and the second baffle cylinder assembly and the second check component are both disposed on the second connecting member; the second flipping motor module is connected to the fifth support member.

[0013] Preferably, the stacking structure includes a third lifting assembly, a fourth transmission assembly, a third material receiving assembly, and a fourth material receiving assembly; both the third material receiving assembly and the fourth material receiving assembly are connected to the third lifting assembly, the fourth transmission assembly is disposed between the third material receiving assembly and the fourth material receiving assembly, and the third lifting assembly is disposed below the fourth transmission assembly.

[0014] Preferably, the blanking structure includes a second lifting assembly, a second tray transmission assembly, a fifth transmission assembly, a second top plate assembly, a sixth support member, and a second trolley; both the second lifting assembly and the fifth transmission assembly are disposed on the sixth support member, the second tray transmission assembly is disposed on the second lifting assembly; the second tray transmission assembly is disposed on one side of the fifth transmission assembly; the second top plate assembly and the second trolley are disposed inside the sixth support member, and the second top plate assembly is disposed below the second trolley.

[0015] Preferably, the first discharge belt line includes a seventh support member, a first motor assembly, and a first belt; both ends of the seventh support member are provided with a first roller, the first belt is sleeved on the seventh support member and the first roller; the first motor assembly is connected to a first roller.

[0016] Preferably, the second discharge belt line includes an eighth support member, a second motor assembly, and a second belt; both ends of the eighth support member are provided with a second roller, and the second belt is sleeved on the eighth support member and the second roller; the second motor assembly is connected to a second roller.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] The present invention designs an automated turning and discharging device for betel nut production, with a feeding structure for feeding and stacking, a tray dividing structure for dividing trays, a first turning and discharging structure for turning and discharging high-quality materials, discharging to a first discharge belt line, the first discharge belt line receiving the high-quality materials discharged by the first turning and discharging structure and conveying them to the next process; a material pushing structure for pushing the betel nuts on the tray, a second turning and discharging structure for pouring the materials on the tray onto the second discharge belt line, the second discharge belt line receiving the high-quality materials discharged by the second turning and discharging structure and conveying them to the next process; a tray stacking structure for driving the tray to be transported to the discharging structure, and the discharging structure for discharging; it is convenient and fast, without manual operation, fully automated, saving labor and cost. Description of the Drawings

[0019] The above and / or additional aspects and advantages of the present invention will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, where:

[0020] Figure 1 is a schematic structural diagram proposed by the present invention;

[0021] Figure 2 is a schematic structural diagram of the present invention with the bracket removed;

[0022] Figure 3 is a schematic structural diagram of the present invention with the feeding structure and the discharging structure removed;

[0023] Figure 4 is a schematic structural diagram inside the bracket proposed by the present invention;

[0024] Figure 5 is a schematic structural diagram of the feeding structure proposed by the present invention;

[0025] Figure 6 is a schematic structural diagram of the tray dividing structure proposed by the present invention;

[0026] Figure 7 is a schematic structural diagram of the first turning and discharging structure proposed by the present invention;

[0027] Figure 8 is a schematic structural diagram of the material pushing structure proposed by the present invention;

[0028] Figure 9 Schematic diagram of the second flipping and discharging structure proposed by the present utility model;

[0029] Figure 10 Schematic diagram of the stacked tray structure proposed by the present utility model;

[0030] Figure 11 Schematic diagram of the blanking structure proposed by the present utility model;

[0031] Figure 12 Internal structure schematic diagram of the blanking structure proposed by the present utility model;

[0032] Figure 13 Schematic diagram of the first discharge belt line proposed by the present utility model;

[0033] Figure 14 Schematic diagram of the second discharge belt line proposed by the present utility model.

[0034] Legend:

[0035] 1. Loading structure, 2. Tray-sorting structure, 3. First flipping and discharging structure, 4. Pushing structure, 5. Second flipping and discharging structure, 6. Stacking structure, 7. Unloading structure, 8. Support, 9. First discharge conveyor belt line, 10. Second discharge conveyor belt line, 11. First lifting component, 12. First tray transmission component, 13. First transmission component, 14. First top plate component, 15. First jacking component, 16. Stack-sorting component, 17. Second transmission component, 18. First trolley, 21. Second jacking component, 22. Third transmission component, 23. First receiving component, 24. Second receiving component, 31. First flipping motor module, 32. First receiving cover, 33. First flipping roller component, 34. First baffle cylinder component, 35. First check component, 36. First pressing plate cylinder component, 37. First support, 38. Second support, 39. First connecting piece, 41. Third support, 42. Conveyor belt component, 43. Baffle component, 44. Pushing X-axis component, 45. Pushing Z-axis component, 46. Pushing device, 51. Second flipping motor module, 52. Second receiving cover, 53. Second flipping roller component, 54. Second baffle cylinder component, 55. Second check component, 56. Second pressing plate cylinder component, 57. Fourth support, 58. Fifth support, 59. Second connecting piece, 61. Third jacking component, 62. Fourth transmission component, 63. Third receiving component, 64. Fourth receiving component, 71. Second lifting component, 72. Second tray transmission component, 73. Fifth transmission component, 74. Second top plate component, 75. Sixth support, 76. Second trolley, 91. Seventh support, 92. First motor component, 93. First belt, 94. First roller, 101. Eighth support, 102. Second motor component, 103. Second belt, 104. Second roller. Detailed implementation manners

[0036] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0037] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model. In addition, features defined with "first", "second", "third" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise stated, the meaning of "a plurality" is two or more; in addition, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", "connection" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0038] Referring to Figures 1 to 14 As shown in the figure, an automatic turning and discharging device for betel nut production includes a feeding structure 1, a tray separating structure 2, a first turning and discharging structure 3, a material pushing structure 4, a second turning and discharging structure 5, a tray stacking structure 6, a discharging structure 7, a bracket 8, a first discharging belt conveyor 9 and a second discharging belt conveyor 10; the tray separating structure 2, the first turning and discharging structure 3, the material pushing structure 4, the second turning and discharging structure 5 and the tray stacking structure 6 are all arranged inside the bracket 8; one end of the first discharging belt conveyor 9 is arranged below the first turning and discharging structure 3, and the other end of the first discharging belt conveyor 9 passes through the bracket 8 and is arranged outside the bracket 8; one end of the second discharging belt conveyor 10 is arranged below the second turning and discharging structure 5, and the other end of the second discharging belt conveyor 10 passes through the bracket 8 and is arranged outside the bracket 8; the feeding structure 1 is arranged on one side of the tray separating structure 2, and the discharging structure 7 is arranged on one side of the tray stacking structure 6; the feeding structure 1 performs feeding and palletizing, the tray separating structure 2 separates trays, the first turning and discharging structure 3 performs turning and discharging treatment on high-quality materials and discharges them onto the first discharging belt conveyor 9, the first discharging belt conveyor 9 receives the high-quality materials discharged by the first turning and discharging structure 3 and conveys them to the next process; the material pushing structure 4 pushes the betel nuts on the trays, the second turning and discharging structure 5 pours the materials on the trays onto the second discharging belt conveyor 10, the second discharging belt conveyor 10 receives the high-quality materials discharged by the second turning and discharging structure 5 and conveys them to the next process; the tray stacking structure 6 drives the trays to be transported to the discharging structure 7, and the discharging structure 7 discharges the materials.

[0039] Among them, the feeding structure 1 includes a first lifting component 11, a first pallet transmission component 12, a first transmission component 13, a first top plate component 14, a first jacking component 15, a pallet separating component 16, a second transmission component 17, and a first trolley 18; the first pallet transmission component 12 is placed on the first lifting component 11, the first transmission component 13 is placed on both sides of the first top plate component 14, the first trolley 18 is placed on the first top plate component 14, the first jacking component 15 is placed above the first transmission component 13, both the pallet separating component 16 and the second transmission component 17 are placed above the first jacking component 15, and the first trolley 18 is placed on the first top plate component 14 and is located within the first transmission component 13.

[0040] The first trolley 18 feeds materials, the first top plate component 14 holds the pallet and rises, the first jacking component 15 jacks up, the pallet separating component 16 extends to separate the pallets, the pallet is placed on the second transmission component 17, the first jacking component 14 descends, the pallet separating component 16 retracts, the first top plate component 14 descends, the first transmission component 13 receives the materials, the pallet separation is completed, the first trolley 18 exits, the first lifting component 11 drives the first pallet transmission component 12 to lift and receive the materials, and the second transmission component 17 transports the pallet to the first pallet transmission component 12.

[0041] The tray splitting structure 2 includes a second jacking component 21, a third transmission component 22, a first material receiving component 23, and a second material receiving component 24; both the first material receiving component 23 and the second material receiving component 24 are connected to the second jacking component 21, the third transmission component 22 is placed between the first material receiving component 23 and the second material receiving component 24, and the second jacking component 21 is placed below the third transmission component 22; the second jacking component 21 jacks up the first material receiving component 23 and the second material receiving component 24, the first material receiving component 23 and the second material receiving component 24 receive the pallet, the second jacking component 21 drives the first material receiving component 23, the second material receiving component 24, and the pallet to descend, the pallet is placed on the third transmission component 22, and the third transmission component 22 drives the pallet to be transported to the first flipping and discharging structure 3.

[0042] The first flipping and discharging structure 3 includes a first flipping motor module 31, a first material receiving cover 32, a first flipping roller assembly 33, a first baffle cylinder assembly 34, a first check component 35, a first pressing plate cylinder assembly 36, a first support member 37, and a second support member 38; the first support member 37 and the second support member 38 are connected by a first connecting member 39, and the first material receiving cover 32 is placed below the first support member 37 and the second support member 38; both the first flipping roller assembly 33 and the first pressing plate cylinder assembly 36 are placed on the first support member 37 and the second support member 38, and both the first baffle cylinder assembly 34 and the first check component 35 are placed on the first connecting member 39; the first flipping motor module 31 is connected to the second support member 38.

[0043] When the tray travels onto the first flipping roller assembly 33, the first pressing plate cylinder assembly 36 presses the tray, the first baffle cylinder assembly 34 and the first check structure 35 limit the tray, and the first flipping motor module 31 drives the first flipping roller assembly 33, the first baffle cylinder assembly 34, the first check mechanism 35, the first pressing plate cylinder assembly 36, the first support member 37, the second support member 38 and the tray to flip, and the materials on the tray are introduced onto the first discharge belt line 9 through the first material receiving cover 32; the first flipping motor module 31 returns to its original position, the first pressing plate cylinder assembly 36 lifts up, the first baffle cylinder assembly 34 retracts, and the tray exits the plate; when inferior materials enter the first flipping and discharging structure 3 along with the tray, the first flipping and discharging structure 3 does not process them and directly transfers them to the next process's material distributing structure 4.

[0044] The material distributing structure 4 includes a third support member 41, a conveying belt assembly 42, a baffle assembly 43, a material distributing X-axis assembly 44, a material distributing Z-axis assembly 45 and a material distributing device 46; the conveying belt assembly 42 is placed on one side of the third support member 41, the conveying belt assembly 42 is placed on the support frame 47, and the baffle assembly 43 is placed at the front end of the conveying belt assembly 42; the material distributing X-axis assembly 44 is placed on the third support member 41, and the material distributing Z-axis assembly 45 is connected to the material distributing X-axis assembly 44; the material distributing device 46 is located above the conveying belt assembly 42 and is connected to the material distributing Z-axis assembly 45; when the tray moves into the conveying belt assembly 42, the material distributing X-axis assembly 44 causes the material distributing Z-axis assembly 45 to move on the X-axis, and the material distributing Z-axis assembly 45 causes the material distributing device 46 to move on the Z-axis; the material distributing device 46 distributes the areca nuts on the tray.

[0045] The second flipping and discharging structure 5 includes a second flipping motor module 51, a second material receiving cover 52, a second flipping roller assembly 53, a second baffle cylinder assembly 54, a second check assembly 55, a second pressing plate cylinder assembly 56, a fourth support member 57 and a fifth support member 58; the fourth support member 57 and the fifth support member 58 are connected by a second connecting member 59, and the second material receiving cover 52 is placed below the fourth support member 57 and the fifth support member 58; the second flipping roller assembly 53 and the second pressing plate cylinder assembly 54 are both placed on the fourth support member 57 and the fifth support member 58, and the second baffle cylinder assembly 54 and the second check assembly 55 are both placed on the second connecting member 59; the second flipping motor module 51 is connected to the fifth support member 58.

[0046] When the tray moves onto the second flipping roller assembly 53, the second pressing plate cylinder assembly 56 presses the tray, and the second baffle cylinder assembly 54 and the second anti - check structure 55 limit the tray. The second flipping motor module 51 drives the second flipping roller assembly 53, the second baffle cylinder assembly 54, the second anti - check mechanism 55, the second pressing plate cylinder assembly 56, the fourth support member 57, the fifth support member 58 and the tray to flip, and the materials on the tray are poured onto the second discharge belt line 10 through the second material receiving cover 52. The second flipping motor module 51 returns to its original position, the second pressing plate cylinder assembly 56 lifts up, the second baffle cylinder assembly 54 retracts, and the tray exits the plate.

[0047] The stacked tray structure 6 includes a third lifting assembly 61, a fourth transmission assembly 62, a third material receiving assembly 63 and a fourth material receiving assembly 64. Both the third material receiving assembly 63 and the fourth material receiving assembly 64 are connected to the third lifting assembly 61. The fourth transmission assembly 62 is placed between the third material receiving assembly 63 and the fourth material receiving assembly 64, and the third lifting assembly 61 is placed below the fourth transmission assembly 64. The third lifting assembly 61 lowers the third material receiving assembly 63 and the fourth material receiving assembly 64, and the tray is transferred onto the fourth transmission assembly 62. The third material receiving assembly 63 and the fourth material receiving assembly 64 receive the tray, and the third lifting assembly 61 drives the third material receiving assembly 63, the fourth material receiving assembly 64 and the tray to rise, and drives the tray to be transferred to the blanking structure 7.

[0048] The blanking structure 7 includes a second lifting assembly 71, a second tray transmission assembly 72, a fifth transmission assembly 73, a second top plate assembly 74, a sixth support member 75 and a second trolley 76. Both the second lifting assembly 71 and the fifth transmission assembly 73 are placed on the sixth support member 75, and the second tray transmission assembly 72 is placed on the second lifting assembly 71. The second tray transmission assembly 72 is placed on one side of the fifth transmission assembly 73. The second top plate assembly 74 and the second trolley 76 are placed inside the sixth support member 75, and the second top plate assembly 74 is placed below the second trolley 76.

[0049] When the waiting position of the second lifting assembly 71 drops to the discharging position, the second tray transmission mechanism 72 transmits the tray out. The fifth transmission assembly 73 stops working. A part of the second top plate assembly 74 lifts the tray, and the second lifting assembly 71 receives the tray again for transmission. Another part of the second top plate structure 74 lifts another tray, and the second top plate structure 74 places the tray on the fifth transmission assembly 73 to prompt blanking. The second trolley 76 enters, the second top plate assembly 74 lifts the tray, the transmission mechanism 73 retracts backward, and the second trolley 76 discharges the material.

[0050] The first discharge belt line 9 includes a seventh support member 91, a first motor assembly 92 and a first belt 93; both ends of the seventh support member 91 are provided with a first roller 94, and the first belt 93 is sleeved on the seventh support member 91 and the first roller 94; the first motor assembly 92 is connected to a first roller 94; the first discharge belt line 9 receives the high-quality materials discharged by the first flipping and discharging structure 3 and conveys them to the next process; the second discharge belt line 10 includes an eighth support member 101, a second motor assembly 102 and a second belt 103; both ends of the eighth support member 101 are provided with a second roller 104, and the second belt 103 is sleeved on the eighth support member 101 and the second roller 104; the second motor assembly 102 is connected to a second roller 104; the second discharge belt line 10 receives the inferior materials discharged by the second flipping and discharging structure 5 and conveys them to the next process.

[0051] In the description of this specification, the descriptions referring to terms such as "an embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples", etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner.

[0052] The above is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. An automatic plate turning and unloading device for betel nut production, characterized in that: It includes a feeding structure, a plate-dividing structure, a first flipping and pouring structure, a material-dividing structure, a second flipping and pouring structure, a stacking plate structure, a feeding structure, a bracket, a first discharging belt line and a second discharging belt line; the plate-dividing structure, the first flipping and pouring structure, the material-dividing structure, the second flipping and pouring structure and the stacking plate structure are all placed in the bracket; one end of the first discharging belt line is placed under the first flipping and pouring structure, and the other end of the first discharging belt line passes through the bracket and is placed outside the bracket; One end of the second unloading belt line is placed under the second flipping and unloading structure, and the other end of the second unloading belt line passes through the bracket and is placed outside the bracket; the loading structure is placed on one side of the disc separation structure, and the unloading structure is placed on one side of the disc stacking structure.

2. The automatic plate turning and unloading equipment for betel nut production according to claim 1, characterized in that: The feeding structure includes a first lifting component, a first tray transmission component, a first transmission component, a first top plate component, a first jacking component, a sub-stove component, a second transmission component and a first trolley; the first tray transmission component is placed on the first lifting component, the first transmission component is placed on both sides of the first top plate component, the first trolley is placed on the first top plate component, the first jacking component is placed above the first transmission component, the sub-stove component and the second transmission component are both placed above the first jacking component, and the first trolley is placed on the first top plate component and is located in the first transmission component.

3. The automatic plate turning and unloading equipment for betel nut production according to claim 2, characterized in that: The tray-dividing structure includes a second jacking assembly, a third transmission assembly, a first material receiving assembly and a second material receiving assembly; the first material receiving assembly and the second material receiving assembly are both connected to the second jacking assembly, the third transmission assembly is placed between the first material receiving assembly and the second material receiving assembly, and the second jacking assembly is placed below the third transmission assembly.

4. The automatic plate turning and unloading equipment for betel nut production according to claim 3 is characterized in that: The first flipping and unloading structure includes a first flipping motor module, a first material receiving cover, a first flipping roller assembly, a first baffle cylinder assembly, a first non-return assembly, a first pressure plate cylinder assembly, a first support member and a second support member; the first support member and the second support member are connected by a first connecting member, and the first material receiving cover is placed under the first support member and the second support member; the first flipping roller assembly and the first pressure plate cylinder assembly are both placed on the first support member and the second support member, and the first baffle cylinder assembly and the first non-return assembly are both placed on the first connecting member; the first flipping motor module is connected to the second support member.

5. The automatic plate turning and unloading equipment for betel nut production according to claim 4 is characterized in that: The material shifting structure includes a third support member, a conveyor belt assembly, a baffle assembly, a material shifting X-axis assembly, a material shifting Z-axis assembly and a material shifting device; the conveyor belt assembly is placed on one side of the third support member, the conveyor belt assembly is placed on the support frame, and the baffle assembly is placed on the front end of the conveyor belt assembly; the material shifting X-axis assembly is placed on the bracket, and the material shifting Z-axis assembly is connected to the material shifting X-axis assembly; the material shifting device is located above the conveyor belt assembly and is connected to the material shifting Z-axis assembly.

6. The automatic plate turning and unloading equipment for betel nut production according to claim 5 is characterized in that: The second flipping and unloading structure includes a second flipping motor module, a second material receiving cover, a second flipping roller assembly, a second baffle cylinder assembly, a second non-return assembly, a second pressure plate cylinder assembly, a fourth support member and a fifth support member; the fourth support member and the fifth support member are connected by a second connecting member, and the second material receiving cover is placed under the fourth support member and the fifth support member; the second flipping roller assembly and the second pressure plate cylinder assembly are both placed on the fourth support member and the fifth support member, and the second baffle cylinder assembly and the second non-return assembly are both placed on the second connecting member; the second flipping motor module is connected to the fifth support member.

7. The automatic plate turning and unloading equipment for betel nut production according to claim 6 is characterized in that: The stacked disc structure includes a third jacking assembly, a fourth transmission assembly, a third material receiving assembly and a fourth material receiving assembly; the third material receiving assembly and the fourth material receiving assembly are both connected to the third jacking assembly, the fourth transmission assembly is placed between the third material receiving assembly and the fourth material receiving assembly, and the third jacking assembly is placed below the fourth transmission assembly.

8. The automatic plate turning and unloading equipment for betel nut production according to claim 7 is characterized in that: The unloading structure includes a second lifting assembly, a second pallet transmission assembly, a fifth transmission assembly, a second top plate assembly, a sixth support and a second trolley; the second lifting assembly and the fifth transmission assembly are both placed on the sixth support, and the second pallet transmission assembly is placed on the second lifting assembly; the second pallet transmission assembly is placed on one side of the fifth transmission assembly; the second top plate assembly and the second trolley are placed in the sixth support, and the second top plate assembly is placed at the bottom of the second trolley.

9. The automatic plate turning and unloading equipment for betel nut production according to claim 8, characterized in that: The first discharging belt line includes a seventh support member, a first motor assembly and a first belt; a first roller is provided at both ends of the seventh support member, and the first belt is sleeved on the seventh support member and the first roller; the first motor assembly is connected to a first roller.

10. The automatic plate turning and unloading equipment for betel nut production according to claim 9, characterized in that: The second discharging belt line includes an eighth support member, a second motor assembly and a second belt; a second roller is provided at both ends of the eighth support member, and the second belt is sleeved on the eighth support member and the second roller; the second motor assembly is connected to a second roller.