Discharging structure applied to betel nut production

By designing a fully automated cutting structure, including lifting, transmission and transmission mechanisms, the problem of traditional manual cutting efficiency is solved, efficient automated operation of betel nut production is achieved, and labor costs are reduced.

CN223162772UActive Publication Date: 2025-07-29SHENZHEN TUOFU TECH CO LTD
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Patent Information

Application Number
CN202422204539.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-07-29
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

The manual feeding method in traditional betel nut production leads to low work efficiency and increases labor costs, making it difficult to meet the needs of modern production.

Method used

Design a fully automated feeding structure including lifting mechanism, pallet transmission mechanism, transmission mechanism, hoisting mechanism, bracket and trolley, and realize automatic transmission and stacking of pallets through motor drive and sensor control to reduce manual intervention.

Benefits of technology

It realizes fully automated operation in the betel nut production process, saves labor and time, improves cutting efficiency and reduces labor costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223162772U_ABST
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Abstract

The utility model discloses a discharging structure applied to betel nut production. The discharging structure comprises a lifting mechanism, a tray transmission mechanism, a transmission mechanism, a jacking mechanism, a support, a trolley and a tray. The lifting mechanism and the conveying mechanism are both arranged on the support, the tray transmission mechanism is arranged on the lifting mechanism, and the tray is arranged on the tray transmission mechanism. The tray transmission mechanism is arranged on one side of the transmission mechanism; the jacking mechanism and the trolley are arranged in the support, and the jacking mechanism is arranged on the lower portion of the trolley. A first motor drives a first shaft rod to rotate so as to drive a first bearing plate to slide on a first sliding rail and a second sliding rail, the first shaft rod drives a first driving wheel to rotate, the first driving wheel drives a second driving wheel to rotate through a first belt, and the second driving wheel drives a second shaft rod to rotate; therefore, the second bearing plate slides on the third sliding rail and the fourth sliding rail to drive the tray transmission mechanism to move up and down. Full-automatic operation is achieved, the trays do not need to be stacked manually, and labor and time are saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of betel nut production and blanking, in particular to a blanking structure applied to betel nut production. Background Art

[0002] With the rapid development of the betel nut industry, it has become very difficult for the traditional betel nut processing method to improve the production and processing efficiency of betel nuts and reduce the production and processing cost. Traditional enterprises need to manually perform blanking operations on the processed betel nuts. However, this manual blanking method not only affects the low work efficiency of betel nut blanking but also increases certain labor costs. Summary of the Utility Model

[0003] The purpose of the utility model is to solve the deficiencies existing in the prior art and provide a blanking structure applied to betel nut production.

[0004] To achieve the above purpose, the utility model adopts the following technical solutions:

[0005] A blanking structure applied to betel nut production includes a lifting mechanism, a tray transmission mechanism, a transmission mechanism, a jacking mechanism, a bracket, a trolley, and a tray; the lifting mechanism and the transmission mechanism are both placed on the bracket, the tray transmission mechanism is placed on the lifting mechanism, and the tray is placed on the tray transmission mechanism; the tray transmission mechanism is placed on one side of the transmission mechanism; the jacking mechanism and the trolley are placed inside the bracket, and the jacking mechanism is placed below the trolley.

[0006] Preferably, the bracket includes a first support member, a second support member, a first fixing member, a second fixing member, a first housing, and a second housing; the first housing covers the first support member and the first fixing member, and the second housing covers the second support member and the second fixing member; the first support member is connected to the first fixing member, and the second support member is connected to the second fixing member; the first support member and the second support member are symmetrically positioned, and the first fixing member and the second fixing member are correspondingly positioned; a warning light and a button are provided on the first housing.

[0007] Preferably, the lifting mechanism includes a first sliding module and a second sliding module. The first sliding module is connected to the second sliding module through a first belt. The first sliding module includes a first fixed plate, a first sliding rail, a second sliding rail, a first receiving plate, and a first motor. The first fixed plate is placed on the first support member. The first sliding rail and the second sliding rail are both placed on the first fixed plate and are corresponding in position. A first slider is arranged on the first sliding rail, and a second slider is arranged on the second sliding rail. Two ends of the first receiving plate are respectively connected to the first slider and the second slider. The first motor is placed on the first fixed plate. A first fixed block is arranged on the first fixed plate. The first motor is connected with a first shaft rod. The first shaft rod passes through the first receiving plate and the first fixed block and is connected with a first driving wheel. The first fixed block is connected with a first driven wheel. First limiting blocks are respectively arranged at two ends of the first sliding rail, and second limiting blocks are respectively arranged at two ends of the second sliding rail.

[0008] Preferably, the second sliding module includes a second fixed plate, a third sliding rail, a fourth sliding rail, a second receiving plate, a second shaft rod, and a connecting arm. One end of the connecting arm is connected to the second fixed plate, and the other end of the connecting arm is connected to the second receiving plate. The second fixed plate is placed on the second support member. The third sliding rail and the fourth sliding rail are both placed on the second fixed plate and are corresponding in position. A third slider is arranged on the third sliding rail, and a fourth slider is arranged on the fourth sliding rail. Two ends of the second receiving plate are respectively connected to the third slider and the fourth slider. A second fixed block is arranged on the second fixed plate. One end of the second shaft rod is connected to the second fixed plate. The other end of the second shaft rod passes through the second receiving plate and the second fixed block and is connected with a second driving wheel. The second fixed block is connected with a first driven wheel. Third limiting blocks are respectively arranged at two ends of the third sliding rail, and fourth limiting blocks are respectively arranged at two ends of the fourth sliding rail. The first driving wheel is connected with the second driving wheel through the first belt.

[0009] Preferably, the tray transmission mechanism includes a first transmission module, a second transmission module, a second transmission motor module, a third fixing plate, and a cover plate; the first transmission module, the second transmission module, and the second transmission motor module are all placed on the third fixing plate, and the cover plate covers the second transmission motor module; the first transmission module and the second transmission module are symmetrically positioned and connected; the first transmission module includes a fourth fixing plate, a second belt, a plurality of third driving wheels, and a plurality of third driven wheels, the plurality of third driving wheels and the plurality of third driven wheels are all placed on the same side of the fourth fixing plate, and the plurality of third driving wheels and the plurality of third driven wheels are connected by the second belt; two first baffles corresponding to each other in position are provided on the fourth fixing plate; a plurality of first sensors 216 arranged in sequence are provided on the fourth fixing plate 211; the second transmission module includes a fifth fixing plate, a third belt, a plurality of fourth driving wheels, and a plurality of fourth driven wheels, the plurality of fourth driving wheels and the plurality of fourth driven wheels are all placed on the same side of the fifth fixing plate, and the plurality of fourth driving wheels and the plurality of fourth driven wheels are connected by the third belt; two second baffles corresponding to each other in position are provided on the fifth fixing plate; one of the third driving wheels is connected to a third shaft rod, and the third shaft rod is connected to one of the fourth driving wheels.

[0010] Preferably, the second transmission motor module includes a second motor, a fifth driving wheel, a fifth driven wheel, and a fourth belt. A first fixing seat is provided on the third fixing plate, the second motor is placed on the first fixing seat, the second motor is connected to the fifth driving wheel, the fifth driving wheel is connected to the fifth driven wheel through the fourth belt, and the fifth driven wheel is sleeved on the third shaft rod; a fourth shaft rod is provided between the fourth fixing plate and the fifth fixing plate.

[0011] Preferably, the transmission mechanism includes a first transmission module and a second transmission module; the first transmission module and the second transmission module are symmetrically positioned, the first transmission module is placed on the first fixing member, and the second transmission module is placed on the second fixing member; the first transmission module includes a sixth fixing plate, a seventh fixing plate, a third motor, and a fourth motor; the sixth fixing plate is placed on the first fixing member, and the sixth fixing plate is provided with a third slide rail and a fourth slide rail corresponding in position, a third slider is arranged on the third slide rail, and a fourth slider is arranged on the fourth slide rail, the seventh fixing plate is placed on the third slider and the fourth slider; a first long plate is arranged on the seventh fixing plate, the third motor is placed on the sixth fixing plate and is connected to the first long plate through a fifth shaft; the fourth motor is placed on the seventh fixing plate, a sixth driving wheel is connected to the rotating shaft of the fourth motor, and the sixth driving wheel is connected to a sixth driven wheel through a fifth belt; two seventh driven wheels corresponding in position are arranged on the first long plate, the two seventh driven wheels are connected through a sixth belt, and one end of the sixth driven wheel passes through the first long plate and is connected to a seventh driven wheel; a second sensor is arranged on the first long plate.

[0012] Preferably, the second transmission module includes an eighth fixing plate, a ninth fixing plate, a fifth motor, and a sixth motor; the eighth fixing plate is placed on the second fixing member, and the eighth fixing plate is provided with a fifth slide rail and a sixth slide rail corresponding in position, a fifth slider is arranged on the fifth slide rail, and a sixth slider is arranged on the sixth slide rail, the ninth fixing plate is placed on the fifth slider and the sixth slider; a second long plate is arranged on the ninth fixing plate, the fifth motor is placed on the eighth fixing plate and is connected to the second long plate through a sixth shaft; the sixth motor is placed on the ninth fixing plate, a seventh driving wheel is connected to the rotating shaft of the sixth motor, and the seventh driving wheel is connected to an eighth driven wheel through a seventh belt; two ninth driven wheels corresponding in position are arranged on the second long plate, the two ninth driven wheels are connected through an eighth belt, and one end of the eighth driven wheel passes through the second long plate and is connected to a ninth driven wheel; a third sensor is arranged on the second long plate.

[0013] Preferably, the lifting mechanism includes a tenth fixing plate, a blocking cylinder module, and a plurality of lifting modules; the tenth fixing plate is placed between the first fixing member and the second fixing member, and the blocking cylinder module and the plurality of lifting modules are both placed on the tenth fixing plate; the plurality of lifting modules are distributed around the tenth fixing plate; the blocking cylinder module includes a blocking cylinder and a blocking member, the blocking cylinder is placed on the tenth fixing plate, and the blocking member is connected to the blocking cylinder.

[0014] Preferably, the trolley includes a vehicle body and a plurality of universal wheels; the plurality of universal wheels are disposed around the bottom of the vehicle body, and openings are provided at positions of the vehicle body corresponding to each of the lifting modules and the blocking members; trolley guide wheels with corresponding positions are provided on the first fixing member and the second fixing member.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0016] The present utility model designs a blanking structure applied to betel nut production. The first motor drives the first shaft to rotate, thereby driving the first receiving plate to slide on the first slide rail and the second slide rail. The first shaft drives the first driving wheel to rotate, and the first driving wheel drives the second driving wheel to rotate through the first belt. The second driving wheel drives the second shaft to rotate, so that the second receiving plate slides on the third slide rail and the fourth slide rail to drive the tray transmission mechanism to move up and down; the second motor drives the fifth driving wheel to rotate, the fifth driving wheel drives the fifth driven wheel to rotate through the fourth belt, the fifth driven wheel is sleeved on the third shaft, the third shaft drives the third driving wheel and the fourth driving wheel to rotate, the third driving wheel drives the third driven wheel to rotate through the second belt, and the fourth driving wheel drives the fourth driven wheel to rotate through the third belt, thereby transmitting the tray to the transmission mechanism; the lifting module moves the tray up and down, the blocking cylinder drives the blocking member to work, and the blocking member limits the trolley; the operation is fully automated, and there is no need for manual stacking of trays, saving labor and time. Description of the Drawings

[0017] The above and / or additional aspects and advantages of the present utility model will become obvious and easy to understand from the following description of the embodiments in conjunction with the accompanying drawings, where:

[0018] Figure 1 is a schematic structural diagram proposed by the present utility model;

[0019] Figure 2 is a schematic structural diagram of the present utility model with the first housing and the second housing removed;

[0020] Figure 3 is a schematic structural diagram of the bracket and the transmission mechanism proposed by the present utility model;

[0021] Figure 4 is a schematic structural diagram of the bracket proposed by the present utility model;

[0022] Figure 5 is a schematic structural diagram of the lifting mechanism proposed by the present utility model;

[0023] Figure 6 is a schematic structural diagram of the lifting mechanism from another angle proposed by the present utility model;

[0024] Figure 7Schematic structural diagram of the tray transmission mechanism proposed by the present utility model;

[0025] Figure 8 Schematic structural diagram of the tray transmission mechanism with the cover removed proposed by the present utility model;

[0026] Figure 9 Schematic structural diagram of the tray transmission mechanism from another angle with the cover removed proposed by the present utility model;

[0027] Figure 10 Schematic structural diagram of the second transmission module proposed by the present utility model;

[0028] Figure 11 Schematic structural diagram of the second transmission module from another angle proposed by the present utility model;

[0029] Figure 12 Schematic structural diagram of the first transmission module proposed by the present utility model;

[0030] Figure 13 Schematic structural diagram of the jacking mechanism proposed by the present utility model;

[0031] Figure 14 Schematic structural diagram of the trolley proposed by the present utility model.

[0032] Legend:

[0033] 1. Lifting mechanism, 2. Tray transmission mechanism, 3. Transmission mechanism, 4. Jacking mechanism, 5. Bracket, 6. Trolley, 7. Tray, 51. First support, 52. Second support, 53. First fixing piece, 54. Second fixing piece, 55. First housing, 56. Second housing, 57. Warning light, 58. Button, 59. Trolley guide wheel, 11. First sliding module, 12. Second sliding module, 13. First belt, 111. First fixing plate, 112. First slide rail, 113. Second slide rail, 114. First receiving plate, 115. First motor, 116. First fixing block, 117. First shaft rod, 118. First driving wheel, 119. First driven wheel, 121. Second fixing plate, 122. Third slide rail, 123. Fourth slide rail, 124. Second receiving plate, 125. Second shaft rod, 126. Connecting arm, 127. Second fixing block, 128. Second driving wheel, 129. Second driven wheel, 21. First transmission module, 22. Second transmission module, 23. Second transmission motor module, 24. Third fixing plate, 25. Cover plate, 211. Fourth fixing plate, 212. Second belt, 213. Third driving wheel, 214. Third driven wheel, 215. First baffle, 221. Fifth fixing plate, 222. Third belt, 223. Fourth driving wheel, 224. Fourth driven wheel, 225. Second baffle, 26. Third shaft rod, 216. First sensor, 231. Second motor, 232. Fifth driving wheel, 233. Fifth driven wheel, 234. Fourth belt, 241. First fixing seat, 27. Fourth shaft rod, 31. First transmission module, 32. Second transmission module, 311. Sixth fixing plate, 312. Seventh fixing plate, 313. Third motor, 314. Fourth motor, 3111. Third slide rail, 3112. Fourth slide rail, 315. First long plate, 316. Fifth shaft rod, 317. Sixth driving wheel, 318. Fifth belt, 319. Sixth driven wheel, 3151. Seventh driven wheel, 3152. Sixth belt, 3153. Second sensor, 321. Eighth fixing plate, 322. Ninth fixing plate, 323. Fifth motor, 324. Sixth motor, 3211. Fifth slide rail, 3212. Sixth slide rail, 325. Second long plate, 326. Sixth shaft rod, 327. Seventh driving wheel, 328. Seventh belt, 329. Eighth driven wheel, 3251. Ninth driven wheel, 3252. Eighth belt, 3253. Third sensor, 41. Tenth fixing plate, 42. Blocking cylinder module, 43. Jacking module, 421. Blocking cylinder, 422. Blocking piece, 61. Vehicle body, 62. Universal wheel, 63. Opening Detailed implementation manners

[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0035] In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate the orientation or positional relationship 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, the features defined as "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 defined and limited, the terms "mounted", "connected", "coupled" 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 internal communication of 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.

[0036] Refer to Figures 1 to 14As shown in the figure, a blanking structure applied to areca production includes a lifting mechanism 1, a tray transmission mechanism 2, a transmission mechanism 3, a jacking mechanism 4, a bracket 5, a trolley 6 and a tray 7; the lifting mechanism 1 and the transmission mechanism 3 are both placed on the bracket 5, the tray transmission mechanism 2 is placed on the lifting mechanism 1, and the tray 7 is placed on the tray transmission mechanism 2; the tray transmission mechanism 2 is placed on one side of the transmission mechanism 3; the jacking mechanism 4 and the trolley 6 are placed inside the bracket 5, and the jacking mechanism 4 is placed under the trolley 6; when the waiting material level of the lifting mechanism 1 drops to the discharging position, the tray transmission mechanism 2 conveys out the first tray, the second sensor 3153 senses the first tray, the transmission mechanism 3 stops working, the jacking mechanism 4 jacks up the first tray, the lifting mechanism 1 receives the second tray and conveys it, the third sensor 3253 senses the second tray, the jacking mechanism 4 jacks up the second tray, and the jacking mechanism 4 that jacks up the first tray places the first tray on the transmission mechanism 3 to prompt blanking; the trolley 6 enters, the blocking cylinder module 42 limits the trolley 6, the jacking mechanism 4 that jacks up the first tray jacks up the first tray, the transmission mechanism 3 retracts backward, and the trolley 6 discharges materials.

[0037] Among them, the bracket 5 includes a first support member 51, a second support member 52, a first fixing member 53, a second fixing member 54, a first housing 55 and a second housing 56; the first housing 55 covers the first support member 51 and the first fixing member 53, and the second housing 56 covers the second support member 52 and the second fixing member 54; the first support member 51 is connected to the first fixing member 53, and the second support member 52 is connected to the second fixing member 54; the first support member 51 and the second support member 52 are symmetric in position, and the first fixing member 53 and the second fixing member 54 are corresponding in position; a warning light 57 and a button 58 are arranged on the first housing 55.

[0038] The lifting mechanism 1 includes a first sliding module 11 and a second sliding module 12. The first sliding module 11 is connected to the second sliding module 12 through a first belt 13. The first sliding module 11 includes a first fixing plate 111, a first slide rail 112, a second slide rail 113, a first receiving plate 114 and a first motor 115. The first fixing plate 111 is placed on the first support member 51. The first slide rail 112 and the second slide rail 113 are both placed on the first fixing plate 111 and are correspondingly positioned. A first slider is arranged on the first slide rail 112, and a second slider is arranged on the second slide rail 113. The two ends of the first receiving plate 114 are respectively connected to the first slider and the second slider. The first motor 115 is placed on the first fixing plate 111. A first fixing block 116 is arranged on the first fixing plate 111. The first motor 115 is connected with a first shaft rod 117. The first shaft rod 117 passes through the first receiving plate 114 and the first fixing block 116 and is connected with a first driving wheel 118. The first fixing block 116 is connected with a first driven wheel 119. First limiting blocks are respectively arranged at both ends of the first slide rail 112, and second limiting blocks are respectively arranged at both ends of the second slide rail 113. The sliding range of the first receiving plate 114 is limited by the first limiting blocks and the second limiting blocks.

[0039] The second sliding module 12 includes a second fixing plate 121, a third slide rail 122, a fourth slide rail 123, a second receiving plate 124, a second shaft rod 125 and a connecting arm 126. One end of the connecting arm 126 is connected to the second fixing plate 121, and the other end of the connecting arm 126 is connected to the second receiving plate 124. The second fixing plate 121 is placed on the second support member 52. The third slide rail 122 and the fourth slide rail 123 are both placed on the second fixing plate 121 and are correspondingly positioned. A third slider is arranged on the third slide rail 122, and a fourth slider is arranged on the fourth slide rail 123. The two ends of the second receiving plate 124 are respectively connected to the third slider and the fourth slider. A second fixing block 127 is arranged on the second fixing plate 121. One end of the second shaft rod 125 is connected to the second fixing plate 127. The other end of the second shaft rod 125 passes through the second receiving plate 124 and the second fixing block 127 and is connected with a second driving wheel 128. The second fixing block 127 is connected with a first driven wheel 129. Third limiting blocks are respectively arranged at both ends of the third slide rail 122, and fourth limiting blocks are respectively arranged at both ends of the fourth slide rail 123. The first driving wheel 118 is connected to the second driving wheel 128 through the first belt 13.

[0040] The first motor 115 drives the first shaft rod 117 to rotate, thereby driving the first receiving plate 114 to slide on the first slide rail and the second slide rail. The first shaft rod 117 drives the first driving wheel 118 to rotate. The first driving wheel 118 drives the second driving wheel 128 to rotate through the first belt 13. The second driving wheel 128 drives the second shaft rod 125 to rotate, so that the second receiving plate 124 slides on the third slide rail and the fourth slide rail to drive the tray transmission mechanism 2 to move up and down.

[0041] The tray transmission mechanism 2 includes a first transmission module 21, a second transmission module 22, a second transmission motor module 23, a third fixing plate 24 and a cover plate 25; the first transmission module 21, the second transmission module 22 and the second transmission motor module 23 are all placed on the third fixing plate 24, and the cover plate 25 covers the second transmission motor module 23; the first transmission module 21 and the second transmission module 22 are symmetrically positioned and connected; the first transmission module 21 includes a fourth fixing plate 211, a second belt 212, a plurality of third driving wheels 213 and a plurality of third driven wheels 214, the plurality of third driving wheels 213 and the plurality of third driven wheels 214 are all placed on the same side of the fourth fixing plate 211, and the plurality of third driving wheels 213 and the plurality of third driven wheels 214 are connected by the second belt 212; two first baffles 215 corresponding to each other in position are arranged on the fourth fixing plate 211; a plurality of first sensors 216 arranged in sequence are arranged on the fourth fixing plate 211; the second transmission module 22 includes a fifth fixing plate 221, a third belt 222, a plurality of fourth driving wheels 223 and a plurality of fourth driven wheels 224, the plurality of fourth driving wheels 223 and the plurality of fourth driven wheels 224 are all placed on the same side of the fifth fixing plate 221, and the plurality of fourth driving wheels 223 and the plurality of fourth driven wheels 224 are connected by the third belt 222; two second baffles 225 corresponding to each other in position are arranged on the fifth fixing plate 221; a third driving wheel 213 is connected to a third shaft rod 26, and the third shaft rod 26 is connected to a fourth driving wheel 223.

[0042] The second transmission motor module 23 includes a second motor 231, a fifth driving wheel 232, a fifth driven wheel 233 and a fourth belt 234, a first fixing seat 241 is arranged on the third fixing plate 24, the second motor 231 is placed on the first fixing seat 241, the second motor 231 is connected to the fifth driving wheel 232, the fifth driving wheel 232 is connected to the fifth driven wheel 233 through the fourth belt 234, and the fifth driven wheel 233 is sleeved on the third shaft rod 26; a fourth shaft rod 27 is arranged between the fourth fixing plate 211 and the fifth fixing plate 221.

[0043] The second motor 231 drives the fifth driving wheel 232 to rotate, the fifth driving wheel 232 drives the fifth driven wheel 233 to rotate through the fourth belt 234, the fifth driven wheel 233 is sleeved on the third shaft rod 26, the third shaft rod 26 drives the third driving wheel 213 and the fourth driving wheel 223 to rotate, the third driving wheel 213 drives the third driven wheel 214 to rotate through the second belt 212, and the fourth driving wheel 223 drives the fourth driven wheel 224 to rotate through the third belt 222, so as to transfer the tray 7 to the transmission mechanism 3.

[0044] The transmission mechanism 3 includes a first transmission module 31 and a second transmission module 32; the first transmission module 31 and the second transmission module 32 are symmetrically positioned. The first transmission module 31 is placed on the first fixing member 53, and the second transmission module 32 is placed on the second fixing member 54. The first transmission module 31 includes a sixth fixing plate 311, a seventh fixing plate 312, a third motor 313 and a fourth motor 314. The sixth fixing plate 311 is placed on the first fixing member 53. On the sixth fixing plate 311, there are provided a third slide rail 3111 and a fourth slide rail 3112 which are correspondingly positioned. A third slider is provided on the third slide rail 3111, and a fourth slider is provided on the fourth slide rail 3112. The seventh fixing plate 312 is placed on the third slider and the fourth slider. On the seventh fixing plate 312, there is provided a first long plate 315. The third motor 313 is placed on the sixth fixing plate 311 and is connected to the first long plate 315 through a fifth shaft 316. The fourth motor 314 is placed on the seventh fixing plate 312. The rotating shaft of the fourth motor 314 is connected with a sixth driving wheel 317. The sixth driving wheel 317 is connected with a sixth driven wheel 319 through a fifth belt 318. On the first long plate 315, there are provided two correspondingly positioned seventh driven wheels 3151. Between the two seventh driven wheels 3151, they are connected through a sixth belt 3152. One end of the sixth driven wheel 319 passes through the first long plate 315 and is connected with a seventh driven wheel 3151. On the first long plate 315, there is provided a second sensor 3153.

[0045] The second transmission module 32 includes an eighth fixing plate 321, a ninth fixing plate 322, a fifth motor 323 and a sixth motor 324. The eighth fixing plate 321 is placed on the second fixing member 54. On the eighth fixing plate 321, there are provided a fifth slide rail 3211 and a sixth slide rail 3212 which are correspondingly positioned. A fifth slider is provided on the fifth slide rail 3211, and a sixth slider is provided on the sixth slide rail 3212. The ninth fixing plate 322 is placed on the fifth slider and the sixth slider. On the ninth fixing plate 322, there is provided a second long plate 325. The fifth motor 323 is placed on the eighth fixing plate 321 and is connected to the second long plate 325 through a sixth shaft 326. The sixth motor 324 is placed on the ninth fixing plate 322. The rotating shaft of the sixth motor 324 is connected with a seventh driving wheel 327. The seventh driving wheel 327 is connected with an eighth driven wheel 329 through a seventh belt 328. On the second long plate 325, there are provided two correspondingly positioned ninth driven wheels 3251. Between the two ninth driven wheels 3251, they are connected through an eighth belt 3252. One end of the eighth driven wheel 329 passes through the second long plate 325 and is connected with a ninth driven wheel 3251. On the second long plate 325, there is provided a third sensor 3253.

[0046] The third motor 313 drives the seventh fixing plate 312 to move back and forth through the fifth shaft rod 316. The fourth motor 314 drives the sixth driving wheel 317 to rotate. The sixth driving wheel 317 drives the sixth driven wheel 319 to rotate through the fifth belt 318. The sixth driven wheel 319 is connected to the seventh driven wheels 3151. The two seventh driven wheels 3151 drive each other to rotate through the sixth belt 3152. The fifth motor 323 drives the ninth fixing plate 322 to move back and forth through the sixth shaft rod 326. The sixth motor 324 drives the seventh driving wheel 327 to rotate. The seventh driving wheel 327 drives the eighth driven wheel 329 to rotate through the seventh belt 328. The eighth driven wheel 329 is connected to the ninth driven wheels 3251. The two ninth driven wheels 3251 drive each other to rotate through the eighth belt 3252. The second sensor 3153 and the third sensor 3253 sense the position of the tray 7.

[0047] The lifting mechanism 4 includes a tenth fixing plate 41, a blocking cylinder module 42 and a plurality of lifting modules 43. The tenth fixing plate 41 is disposed between the first fixing member 53 and the second fixing member 54. The blocking cylinder module 42 and the plurality of lifting modules 43 are both disposed on the tenth fixing plate 41. The plurality of lifting modules 43 are distributed around the tenth fixing plate 41. The blocking cylinder module 42 includes a blocking cylinder 421 and a blocking member 422. The blocking cylinder 421 is disposed on the tenth fixing plate 41. The blocking member 422 is connected to the blocking cylinder 421. The lifting module 43 moves the tray 7 up and down. The blocking cylinder 421 drives the blocking member 422 to work, and the blocking member 422 limits the trolley 6.

[0048] The trolley 6 includes a vehicle body 61 and a plurality of universal wheels 62. The plurality of universal wheels 62 are disposed around the bottom of the vehicle body 61. Openings 63 are provided at positions on the vehicle body 61 corresponding to each lifting module 43 and the blocking member 422. Two trolley guide wheels 59 with corresponding positions are provided on the first fixing member 53 and the second fixing member 54.

[0049] In the description of this specification, the descriptions with reference to the terms "one 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 can be combined in a suitable manner in any one or more embodiments or examples.

[0050] The above is only the preferred specific implementation manner of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, makes equivalent substitutions or changes, and should be covered within the protection scope of the present utility model.

Claims

1. A blanking structure for betel nut production, characterized in that: It includes a lifting mechanism, a pallet transmission mechanism, a transmission mechanism, a jacking mechanism, a bracket, a trolley and a pallet; the lifting mechanism and the transmission mechanism are both placed on the bracket, the pallet transmission mechanism is placed on the lifting mechanism, and the pallet is placed on the pallet transmission mechanism; the pallet transmission mechanism is placed on one side of the transmission mechanism; the jacking mechanism and the trolley are placed inside the bracket, and the jacking mechanism is placed under the trolley.

2. The feeding structure for betel nut production according to claim 1, characterized in that, The bracket includes a first support member, a second support member, a first fixing member, a second fixing member, a first housing and a second housing; the first housing covers the first support member and the first fixing member, and the second housing covers the second support member and the second fixing member; the first support member is connected to the first fixing member, and the second support member is connected to the second fixing member; the first support member and the second support member are symmetric in position, and the first fixing member and the second fixing member correspond in position; a warning light and a button are provided on the first housing.

3. The feeding structure for areca production according to claim 2, characterized in that, The lifting mechanism includes a first sliding module and a second sliding module. The first sliding module is connected to the second sliding module through a first belt. The first sliding module includes a first fixing plate, a first slide rail, a second slide rail, a first receiving plate and a first motor; the first fixing plate is placed on the first support member, the first slide rail and the second slide rail are both placed on the first fixing plate and correspond in position. A first slider is provided on the first slide rail, and a second slider is provided on the second slide rail. The two ends of the first receiving plate are respectively connected to the first slider and the second slider; the first motor is placed on the first fixing plate, a first fixing block is provided on the first fixing plate, the first motor is connected with a first shaft rod, the first shaft rod passes through the first receiving plate and the first fixing block and is connected with a first driving wheel, and the first fixing block is connected with a first driven wheel; first limiting blocks are respectively provided at both ends of the first slide rail, and second limiting blocks are respectively provided at both ends of the second slide rail.

4. The blanking structure for areca production according to claim 3, characterized in that, The second sliding module includes a second fixing plate, a third slide rail, a fourth slide rail, a second receiving plate, a second shaft rod and a connecting arm; one end of the connecting arm is connected to the second fixing plate, and the other end of the connecting arm is connected to the second receiving plate; the second fixing plate is placed on the second support member, the third slide rail and the fourth slide rail are both placed on the second fixing plate and are corresponding in position, a third slider is arranged on the third slide rail, a fourth slider is arranged on the fourth slide rail, and two ends of the second receiving plate are respectively connected to the third slider and the fourth slider; a second fixing block is arranged on the second fixing plate, one end of the second shaft rod is connected to the second fixing plate, the other end of the second shaft rod passes through the second receiving plate and the second fixing block and is connected with a second driving wheel, and the second fixing block is connected with a first driven wheel; third limiting blocks are respectively arranged at two ends of the third slide rail, and fourth limiting blocks are respectively arranged at two ends of the fourth slide rail; the first driving wheel is connected to the second driving wheel through the first belt.

5. The feeding structure for areca nut production according to claim 4, wherein, The tray transmission mechanism includes a first transmission module, a second transmission module, a second transmission motor module, a third fixing plate and a cover plate; the first transmission module, the second transmission module and the second transmission motor module are all placed on the third fixing plate, and the cover plate covers the second transmission motor module; the first transmission module and the second transmission module are symmetric in position and connected; the first transmission module includes a fourth fixing plate, a second belt, a plurality of third driving wheels and a plurality of third driven wheels, the plurality of third driving wheels and the plurality of third driven wheels are all placed on the same side of the fourth fixing plate, and the plurality of third driving wheels and the plurality of third driven wheels are connected through the second belt; two first baffles corresponding in position are arranged on the fourth fixing plate; a plurality of first sensors arranged in sequence are arranged on the fourth fixing plate; the second transmission module includes a fifth fixing plate, a third belt, a plurality of fourth driving wheels and a plurality of fourth driven wheels, the plurality of fourth driving wheels and the plurality of fourth driven wheels are all placed on the same side of the fifth fixing plate, and the plurality of fourth driving wheels and the plurality of fourth driven wheels are connected through the third belt; two second baffles corresponding in position are arranged on the fifth fixing plate; one of the third driving wheels is connected with a third shaft rod, and the third shaft rod is connected with one of the fourth driving wheels.

6. The feeding structure applied to areca production according to claim 5, characterized in that, The second transmission motor module includes a second motor, a fifth driving wheel, a fifth driven wheel and a fourth belt, a first fixing seat is arranged on the third fixing plate, the second motor is placed on the first fixing seat, the second motor is connected with the fifth driving wheel, the fifth driving wheel is connected with the fifth driven wheel through the fourth belt, and the fifth driven wheel is sleeved on the third shaft rod; a fourth shaft rod is arranged between the fourth fixing plate and the fifth fixing plate.

7. The feeding structure for areca production according to claim 2, characterized in that, The transmission mechanism includes a first transmission module and a second transmission module; the first transmission module and the second transmission module are symmetrically located, the first transmission module is placed on the first fixing member, and the second transmission module is placed on the second fixing member; the first transmission module includes a sixth fixing plate, a seventh fixing plate, a third motor and a fourth motor; the sixth fixing plate is placed on the first fixing member, the sixth fixing plate is provided with a third slide rail and a fourth slide rail corresponding in position, a third slider is arranged on the third slide rail, and a fourth slider is arranged on the fourth slide rail, the seventh fixing plate is placed on the third slider and the fourth slider; a first long plate is arranged on the seventh fixing plate, the third motor is placed on the sixth fixing plate and is connected to the first long plate through a fifth shaft; the fourth motor is placed on the seventh fixing plate, a sixth driving wheel is connected to the rotating shaft of the fourth motor, and the sixth driving wheel is connected to a sixth driven wheel through a fifth belt; two seventh driven wheels corresponding in position are arranged on the first long plate, the two seventh driven wheels are connected through a sixth belt, and one end of the sixth driven wheel passes through the first long plate and is connected to a seventh driven wheel; a second sensor is arranged on the first long plate.

8. The blanking structure applied to areca production according to claim 7, characterized in that, The second transmission module includes an eighth fixing plate, a ninth fixing plate, a fifth motor and a sixth motor; the eighth fixing plate is placed on the second fixing member, the eighth fixing plate is provided with a fifth slide rail and a sixth slide rail corresponding in position, a fifth slider is arranged on the fifth slide rail, and a sixth slider is arranged on the sixth slide rail, the ninth fixing plate is placed on the fifth slider and the sixth slider; a second long plate is arranged on the ninth fixing plate, the fifth motor is placed on the eighth fixing plate and is connected to the second long plate through a sixth shaft; the sixth motor is placed on the ninth fixing plate, a seventh driving wheel is connected to the rotating shaft of the sixth motor, and the seventh driving wheel is connected to an eighth driven wheel through a seventh belt; two ninth driven wheels corresponding in position are arranged on the second long plate, the two ninth driven wheels are connected through an eighth belt, and one end of the eighth driven wheel passes through the second long plate and is connected to a ninth driven wheel; a third sensor is arranged on the second long plate.

9. The feeding structure for areca nut production according to claim 2, wherein, The lifting mechanism includes a tenth fixing plate, a blocking cylinder module and a plurality of lifting modules; the tenth fixing plate is placed between the first fixing member and the second fixing member, the blocking cylinder module and the plurality of lifting modules are all placed on the tenth fixing plate; the plurality of lifting modules are distributed around the tenth fixing plate; the blocking cylinder module includes a blocking cylinder and a blocking member, the blocking cylinder is placed on the tenth fixing plate, and the blocking member is connected to the blocking cylinder.

10. The feeding structure for areca production according to claim 9, characterized in that, The trolley includes a vehicle body and a plurality of universal wheels; the plurality of universal wheels are arranged around the bottom of the vehicle body, and openings are provided at positions corresponding to each of the lifting modules and the blocking members on the vehicle body; trolley guide wheels with corresponding positions are provided on the first fixing member and the second fixing member.