Intelligent transportation device for agricultural product processing

By designing an intelligent transportation device including conveyor belts, curved blocks, connecting blocks, elastic plates and baffles, the problem that existing conveyor belts cannot be pre-cleaned is solved, and pre-cleaning is achieved while lifting and conveying taro, improving cleaning efficiency.

CN120096991APending Publication Date: 2025-06-06BEIJING DERUN AGRI SCI & TECHDEV
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Patent Information

Application Number
CN202510580569.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing inclined conveyor belt can only lift the taro during taro processing, and cannot perform pre-cleaning operations, resulting in low cleaning efficiency.

Method used

An intelligent transportation device is designed, including a transmission belt, arc-surface block, connecting block, elastic plate and baffle. Through the linkage between the transmission belt and arc-surface block, the transmission belt vibrates and shakes the soil on the surface of the taro to realize pre-cleaning operation.

Benefits of technology

While lifting and transporting taro, pre-cleaning of the soil on the surface of the taro is achieved, cleaning efficiency is improved, and the problem of decay of vibration effect in the middle of the conveyor belt is avoided.

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Abstract

The invention relates to the technical field of agricultural product processing, in particular to an intelligent conveying device for agricultural product processing, which comprises an electric roller I, an electric roller II, a conveying belt, a baffle I, a cambered surface block I, a cambered surface block II, a connecting block and an elastic plate, a plurality of first baffles are fixedly connected to the outer ring face of the conveying belt. A plurality of cambered surface blocks I are fixedly connected to the front side and the rear side of the inner ring surface of the conveying belt; a conveying belt and a first baffle are matched to lift and convey taros, in the process, the conveying belt can vibrate under the linkage effect of a first cambered surface block and a second cambered surface block, the conveying belt shakes off part of soil on the surfaces of the taros, the taros are pre-cleaned while being lifted and conveyed, the cleaning efficiency of the taros is improved, and meanwhile, the cleaning efficiency of the taros is improved. The first baffle originally used for conveying the taros can also conduct the vibration effect of the first cambered surface block to the middle of the conveying belt, the problem that the vibration effect of the middle of the conveying belt declines is solved, and therefore the problem that the middle taro pre-cleaning effect is poor is solved, and the structure is compact.
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Description

Technical Field

[0001] The present invention relates to the technical field of agricultural product processing, and more specifically, to an intelligent transportation device for agricultural product processing. Background Art

[0002] When processing taro, it is first necessary to clean the dirt remaining on the surface of the taro. During cleaning, the taro is lifted obliquely upward to the feeding port of the cleaning mechanism through an inclined conveyor belt mechanism, and then the taro is transported to the cleaning mechanism for cleaning. However, in this process, the existing inclined conveyor belt only has the function of lifting the taro, and cannot perform pre-cleaning operations on the taro.

[0003] In summary, this application proposes an intelligent transportation device for agricultural product processing to improve the technical problems mentioned above. Summary of the invention

[0004] In order to overcome the disadvantage that the existing inclined conveyor belt only has the function of lifting taro but cannot perform pre-cleaning operation on the taro, the present invention provides an intelligent transportation device for agricultural product processing.

[0005] Technical solution: An intelligent transportation device for agricultural product processing, comprising a support frame, a side plate 1 and a side plate 2; the side plate 1 is fixedly connected to the support frame; the side plate 2 is fixedly connected to the support frame, and the side plate 2 is symmetrically arranged with the side plate 1; it also comprises an electric roller 1, an electric roller 2, a transmission belt, a baffle plate 1, an arc surface block 1, an arc surface block 2, a connecting block and an elastic plate; the electric roller 1 is installed between the side plate 1 and the side plate 2; the electric roller 2 is installed between the side plate 1 and the side plate 2; a transmission belt is wound between the movable parts of the electric roller 1 and the electric roller 2; a plurality of Baffle plate 1; a plurality of arc surface blocks 1 are fixedly connected to the front and rear sides of the inner ring surface of the conveyor belt; a plurality of arc surface blocks 2 are fixedly connected to the side plates 1 and 2, and the arc surface blocks 2 match the arc surface blocks 1 to drive the conveyor belt to vibrate; a connecting block is fixedly connected to each arc surface block 1, and the connecting block passes through the conveyor belt and is fixedly connected to the corresponding baffle plate 1; two inclined elastic plates are fixedly connected to each baffle plate 1; the end of the elastic plate is fixedly connected to the end of the baffle plate 1; a plurality of soft rubber strips are arranged on each elastic plate; a groove is provided on the side of each baffle plate 1 close to the conveyor belt.

[0006] As a preferred technical solution of the present invention, it also includes baffle plate 2; a plurality of baffle plates 2 are fixedly connected between side plate 1 and side plate 2, and baffle plates 2 are located on the inner side of the conveyor belt; each baffle plate 2 is in contact with the conveyor belt.

[0007] As a preferred technical solution of the present invention, a plurality of V-shaped portions are arranged at equal intervals on each baffle plate, and the sharp corners of the V-shaped portions are aligned with the corresponding circular holes.

[0008] As a preferred technical solution of the present invention, an extension portion is provided at both ends of each baffle; the inner diameter of the circular hole at the front and rear sides of the conveyor belt is larger than the inner diameter of the circular hole in the middle.

[0009] As a preferred technical solution of the present invention, it also includes elastic strips and steel balls; each baffle plate is fixedly connected to a plurality of elastic strips; and each end of the elastic strip is fixedly connected to a steel ball.

[0010] As a preferred technical solution of the present invention, a plurality of elastic parts are arranged on each baffle plate 2; and the end of each elastic strip is fixedly connected to the corresponding elastic part.

[0011] As a preferred technical solution of the present invention, it also includes a collection component, which includes a guide rail, a storage box and a handle; a guide rail is fixedly connected between side panel one and side panel two; a storage box is damped and slidably connected to the guide rail, the storage box is in contact with side panel one, and the storage box is in contact with side panel two; a handle is fixedly connected to the storage box.

[0012] As a preferred technical solution of the present invention, the surface of the storage box is set to be a smooth surface.

[0013] As a preferred technical solution of the present invention, it also includes an auxiliary component, which includes gears and toothed belts; the movable parts of the electric roller 1 and the electric roller 2 are fixedly connected to two gears; the front and rear sides of the transmission belt are fixedly connected to a toothed belt, and the toothed belts are meshed with corresponding gears.

[0014] As a preferred technical solution of the present invention, both the first electric roller and the second electric roller are provided with intelligent electrical control modules.

[0015] The present invention has the following advantages: 1. The taro is lifted and transported by the cooperation of the conveyor belt and the baffle plate 1, and in this process, the conveyor belt can be vibrated under the linkage of the cambered surface block 1 and the cambered surface block 2, and the conveyor belt shakes off part of the soil on the surface of the taro, so that the taro can be pre-cleaned while being lifted and transported, which is beneficial to improving the taro cleaning efficiency. At the same time, the baffle plate 1 originally used to transport the taro can also transmit the vibration effect of the cambered surface block 1 to the middle part of the conveyor belt, avoiding the problem of the fading of the vibration effect in the middle part of the conveyor belt, thereby avoiding the problem of low pre-cleaning effect of the taro in the middle part, and the structure is compact. At the same time, the taro can be turned over by the elastic plate, so that the soil remaining on the taro can be shaken off more efficiently, which is beneficial to improving the pre-cleaning effect. Second, the soil sliding down along the inner side of the conveyor belt is intercepted by the second baffle plate, which effectively avoids the problem of soil accumulation at the inner lower part interfering with the operation of the second electric roller. At the same time, an extension part is set at both ends of the second baffle plate, and the soil at the inner edge of the conveyor belt is guided to the middle part by the extension part to avoid the soil gathering to the side plates one and two and interfering with the movement of the conveyor belt. The circular holes on the front and rear sides can also be set larger to meet the larger soil passing requirements here. At the same time, the elastic strip can move the soil in the V-shaped part so that the soil in the V-shaped part can be moved. The soil can more easily pass through the circular hole and fall to the ground, and the clogging of the circular hole can also be avoided. At the same time, by arranging a steel ball at the end of the elastic strip, the degree of reciprocating swing of the end of the elastic strip is increased, thereby improving the effect of moving the soil, so that the soil can pass through the circular hole more smoothly and fall to the ground. The elastic strip can also be linked with the elastic part to move, so that the elastic part pushes part of the soil at the position other than the sharp corner of the V-shaped part toward the circular hole, so that part of the soil can pass through the circular hole and be discharged before gathering at the sharp corner of the V-shaped part, which is conducive to improving the soil discharge efficiency. 3. With the assistance of gears and toothed belts, the problem of transmission belt slipping caused by adhesion of mud can be effectively prevented. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 The structure diagram of the intelligent transportation device for agricultural product processing of the present invention is shown; Figure 2 A schematic diagram showing the installation position of the baffle 2 of the present invention is shown; Figure 3 A schematic structural diagram of a connecting block of the present invention is shown; Figure 4 A schematic diagram showing the structure of the elastic strip of the present invention is shown; Figure 5 The structural schematic diagram of the steel ball of the present invention is shown; Figure 6 A schematic diagram of the structure of the collecting assembly of the present invention is shown; Figure 7 A schematic diagram of the structure of the auxiliary component of the present invention is shown; Figure 8 An exploded view of a baffle plate and an elastic plate according to the present invention is shown.

[0017] In the accompanying drawings: 1-support frame, 2-side panel one, 3-side panel two, 4-electric roller one, 5-electric roller two, 6-transmission belt, 7-baffle one, 8-arc surface block one, 9-arc surface block two, 10-connecting block, 11-elastic plate, 201-baffle two, 202-elastic strip, 203-steel ball, 204-guide rail, 205-storage box, 206-handle, 207-gear, 208-toothed belt, 91-round hole, 92-V-shaped portion, 93-extension portion, 94-elastic portion. DETAILED DESCRIPTION

[0018] The present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments, but the protection scope and application scope of the present invention are not limited.

[0019] Example 1 An intelligent transport device for agricultural product processing, such as Figure 1-Figure 3 and Figure 6-Figure 8 As shown, it includes a support frame 1, a side plate 1 2 and a side plate 2 3; the support frame 1 is bolted with the side plate 1 2, and the support frame 1 is set to be made of steel; the support frame 1 is bolted with the side plate 2 3, and the side plate 2 3 is symmetrically arranged with the side plate 1 2; it also includes an electric roller 1 4, an electric roller 2 5, a transmission belt 6, a baffle 1 7, an arc block 1 8, an arc block 2 9, a connecting block 10 and an elastic plate 11; the electric roller 1 4 is installed between the side plate 1 2 and the side plate 2 3; the electric roller 2 5 is installed between the side plate 1 2 and the side plate 2 3; a transmission belt 6 is wound between the movable parts of the electric roller 1 4 and the electric roller 2 5; the transmission belt Twenty baffles 7 are fixedly connected to the outer ring surface of 6; twenty arc blocks 8 are fixedly connected to the front and rear sides of the inner ring surface of the conveyor belt 6, and the arc blocks 8 are set to wear-resistant material; a number of arc blocks 29 are fixedly connected to the side plates 12 and 23; each arc block 8 is fixedly connected to a connecting block 10, which passes through the conveyor belt 6 and is fixed to the corresponding baffle 7; each baffle 7 is fixedly connected to two inclined elastic plates 11; the end of the elastic plate 11 is fixedly connected to the end of the baffle 7; each elastic plate 11 is provided with a number of soft rubber strips; each baffle 7 is provided with a groove on the side close to the conveyor belt 6.

[0020] First, the device is set next to the external cleaning machine, and the upper left end of the device is located above the feeding port of the cleaning machine, and the electric roller 1 4 and the electric roller 2 5 are started. The electric roller 1 4 and the electric roller 2 5 drive the conveyor belt 6 to move through friction. From the front to the back, the conveyor belt 6 moves counterclockwise, and the conveyor belt 6 drives the baffle 1 7 to move counterclockwise. Then, the taro is manually placed in the lower right part of the conveyor belt 6, so that the conveyor belt 6 and the baffle 1 7 jointly drive the taro to move obliquely upward. When the taro moves to the upper left end of the conveyor belt 6, it will fall into the external cleaning machine, completing the taro lifting and feeding operation.

[0021] During the process of conveying taro by conveyor belt 6, conveyor belt 6 will also drive arc surface block 1 8 to perform circumferential movement. When the arc surface of arc surface block 1 8 contacts the arc surface of arc surface block 2 9, arc surface block 1 8 will slide along the arc surface of arc surface block 2 9 and pass over arc surface block 2 9. In this process, arc surface block 2 9 will lift up arc surface block 1 8, and arc surface block 1 8 drives the edge of conveyor belt 6 to tilt up. When arc surface block 1 8 passes over arc surface block 2 9, conveyor belt 6 rebounds and drives arc surface block 1 8 to move back to its original position. 8 is continuously matched with the arc surface block 2 9, so that the conveyor belt 6 vibrates, and the conveyor belt 6 vibrates the taro thereon, thereby shaking off part of the soil on the taro, causing the soil to pass through the circular hole 91 and fall to the inner side of the conveyor belt 6, and be received on the lower side of the inner ring surface of the conveyor belt 6. The conveyor belt 6 drives the soil thereon to vibrate, so that the soil on the inner side of the conveyor belt 6 passes through the circular hole 91 and falls to the ground, realizing the pre-cleaning operation of the taro while lifting and conveying it, which is beneficial to improving the taro cleaning efficiency.

[0022] When the arc block 18 continuously cooperates with the arc block 29 to vibrate the front and rear edges of the conveyor belt 6, due to the relatively long front and rear span of the conveyor belt 6, the vibration is greatly weakened after being transmitted from the front and rear edges of the conveyor belt 6 to the middle, resulting in the conveyor belt 6 having a low vibration effect on the taro located in the middle, and thus a low pre-cleaning effect on the taro in the middle. Therefore, the arc block 18 is fixed to the baffle 17 by the connecting block 10, and when the arc block 29 lifts the arc block 18, the arc block 18 drives the connecting block 10 to move upward, and the connecting block 10 drives the baffle 17 to move upward, and the baffle 17 synchronously makes the conveyor belt 6 move upward. Belt 6 moves. When the arc block 18 passes over the arc block 29, the conveyor belt 6 rebounds and drives the baffle 17 and the arc block 18 to move back to their original positions. The arc block 18 continuously cooperates with the arc block 29, so that the baffle 17 vibrates. The baffle 17 can fully transmit the vibration to the front and rear spans of the conveyor belt 6, and fully vibrate the taro at various positions on the conveyor belt 6. That is, the baffle 17 originally used to transport the taro can also transmit the vibration effect of the arc block 18 to the middle part of the conveyor belt 6, avoiding the problem of the vibration effect fading in the middle part of the conveyor belt 6, thereby avoiding the problem of low pre-cleaning effect of the taro in the middle part.

[0023] When the conveyor belt 6 drives the taro thereon to vibrate, the taro during the vibration process will squeeze the elastic plate 11, so that the end of the elastic plate 11 close to the middle of the baffle 7 is pressed downward and deformed. Since the baffle 7 is arranged at an angle, the rebound of the baffle 7 can apply an oblique forward or backward thrust to the taro through the soft rubber strip thereon, so that the taro rolls obliquely forward or backward, achieving the effect of turning the taro, thereby more efficiently shaking off the soil remaining on the taro, which is beneficial to improving the pre-cleaning effect.

[0024] When in use, the taro is lifted and transported by the cooperation of the conveyor belt 6 and the baffle plate 1 7, and in this process, the conveyor belt 6 can be vibrated under the linkage action of the cambered block 1 8 and the cambered block 2 9, and the conveyor belt 6 shakes off part of the soil on the surface of the taro, thereby realizing a pre-cleaning operation on the taro while lifting and transporting the taro, which is beneficial to improving the taro cleaning efficiency. At the same time, the baffle plate 1 7 originally used to convey the taro can also transmit the vibration effect of the cambered block 1 8 to the middle part of the conveyor belt 6, avoiding the problem of fading of the vibration effect in the middle part of the conveyor belt 6, thereby avoiding the problem of low pre-cleaning effect of the taro in the middle part, and the structure is compact. At the same time, by turning the taro through the elastic plate 11, the soil remaining on the taro can be shaken off more efficiently, which is beneficial to improving the pre-cleaning effect.

[0025] Example 2 On the basis of Example 1, Figure 2 , Figure 4-Figure 7 As shown, it also includes a baffle plate 201; a plurality of baffle plates 201 are fixedly connected between the side plate 1 2 and the side plate 2 3, and the baffle plates 201 are located on the inner side of the conveyor belt 6; each baffle plate 201 is in contact with the conveyor belt 6, and the baffle plates 201 are used to intercept the soil sliding downward along the inner side of the conveyor belt 6.

[0026] Eight V-shaped portions 92 are arranged at equal intervals on each baffle plate 201 , and the sharp corners of the V-shaped portions 92 are aligned with the corresponding circular holes 91 . After the baffle plate 201 intercepts the soil, the soil will be guided to the V-shaped portions 92 .

[0027] Each baffle plate 201 is provided with an extended portion 93 at both ends, through which the soil at the front and rear sides is guided to the middle; the inner diameter of the circular hole 91 at the front and rear sides of the conveyor belt 6 is larger than the inner diameter of the circular hole 91 in the middle.

[0028] It also includes elastic strips 202 and steel balls 203 ; eight elastic strips 202 are welded on each baffle 201 ; and a steel ball 203 is fixedly connected to the end of each elastic strip 202 .

[0029] A plurality of elastic parts 94 are disposed on each baffle plate 201 ; and an end of each elastic strip 202 is fixedly connected to a corresponding elastic part 94 .

[0030] It also includes a collecting component, which includes a guide rail 204, a storage box 205 and a handle 206; the guide rail 204 is bolted between the side panel 1 2 and the side panel 2 3, and the guide rail 204 is set to a metal material with a low friction coefficient; the guide rail 204 is connected to the storage box 205 in a damping sliding manner, the storage box 205 is in contact with the side panel 1 2, and the storage box 205 is in contact with the side panel 2 3, and the soil is collected through the storage box 205; the storage box 205 is welded with a handle 206.

[0031] The surface of the storage box 205 is set to be a smooth surface to reduce friction.

[0032] When the soil passes through the circular hole 91 and falls to the inner side of the conveyor belt 6 and is received on the lower side of the inner ring surface of the conveyor belt 6, since the conveyor belt 6 is inclined, even if part of the soil can pass through the circular hole 91 and fall to the ground after being vibrated, part of the soil will slide down along the inner side surface of the conveyor belt 6 to its bottom. Over time, a large amount of soil will accumulate in the lower inner part of the conveyor belt 6, thereby interfering with the operation of the electric roller 25. Therefore, a plurality of baffles 201 are provided on the inner side of the conveyor belt 6. When the soil slides down along the inner side surface of the conveyor belt 6, the baffles 201 will intercept the soil and gather in the V-shaped portion 92, and the sharp corner of the V-shaped portion 92 is aligned with the circular hole 91. When the circular hole 91 on the conveyor belt 6 moves to below the sharp corner of the V-shaped portion 92, the soil here will be shaken off from the circular hole 91 to the ground, effectively avoiding the problem of soil accumulation in the lower inner part interfering with the operation of the electric roller 25.

[0033] When the soil passes through the circular hole 91 and falls to the inner side of the conveyor belt 6, it will spread to the surroundings the moment it falls to the inner side of the conveyor belt 6, causing the soil to exceed the coverage area of ​​the circular hole 91, thereby interfering with the discharge of the soil. Even some of the soil will continue to move toward the front side plate 2 and the side plate 23 after being vibrated, and get stuck in the gap between the side plate 12, the side plate 23 and the conveyor belt 6, thereby interfering with the movement of the conveyor belt 6. Therefore, an extension portion 93 is provided at both ends of the baffle plate 201, and the extension portion 93 is used to guide the soil located at the inner edge of the conveyor belt 6 to the middle, so as to prevent the soil from gathering to the side plate 12 and the side plate 23 and interfering with the movement of the conveyor belt 6. In addition, the circular holes 91 on the front and rear sides can also be set larger to meet the larger soil passing requirements here.

[0034] When the conveyor belt 6 moves, the edge of the circular hole 91 on the conveyor belt 6 will squeeze the end of the elastic strip 202, causing the elastic strip 202 to bend and deform, and causing the end of the elastic strip 202 to slide from the circular hole 91 to the surface of the conveyor belt 6, and then slide along the surface of the conveyor belt 6. When the next circular hole 91 moves to the end of the elastic strip 202, the conveyor belt 6 stops limiting the elastic strip 202. At this time, the end of the elastic strip 202 rebounds to the corresponding circular hole 91, and the circular hole 91 continuously interacts with the elastic strip 202, thereby causing the elastic strip 202 to vibrate. When the circular hole 91 is aligned with the sharp corner of the V-shaped portion 92, the elastic strip 202 can move the soil in the V-shaped portion 92, so that the soil in the V-shaped portion 92 can more easily pass through the circular hole 91 and fall to the ground, and the clogging of the circular hole 91 can also be avoided.

[0035] During the process of the elastic strip 202 being squeezed and rebounding, a steel ball 203 is provided at the end of the elastic strip 202 to increase the degree of reciprocating swing of the end of the elastic strip 202, thereby improving the effect of moving the soil, so that the soil can pass through the circular hole 91 more smoothly and fall to the ground.

[0036] When the elastic strip 202 is squeezed, a reaction force is applied to the elastic portion 94 on the baffle 201, squeezing and deforming the elastic portion 94. When the elastic strip 202 rebounds, the elastic portion 94 loses the squeezing force from the elastic strip 202, causing the elastic portion 94 to rebound. During the rebound process of the elastic portion 94, a thrust is applied to the soil on its side, thereby pushing part of the soil at a position other than the sharp corner of the V-shaped portion 92 toward the circular hole 91, so that part of the soil can be discharged through the circular hole 91 before gathering at the sharp corner of the V-shaped portion 92, which is beneficial to improving the soil discharge efficiency and reducing the risk of clogging of the circular hole 91.

[0037] After the baffle 201 intercepts the soil, a small amount of soil will be shaken off to the lower inner part of the conveyor belt 6. At this time, this part of the soil is collected by the storage box 205. During regular maintenance, the storage box 205 is manually pulled by the handle 206 to slide the storage box 205 forward on the guide rail 204, thereby taking out the storage box 205 and then pouring out the soil in the storage box 205.

[0038] When in use, the baffle plate 201 is used to intercept the soil sliding down the inner side of the conveyor belt 6, effectively avoiding the problem of soil accumulation to the lower inner side interfering with the operation of the electric roller 25. At the same time, extensions 93 are provided at both ends of the baffle plate 201 to guide the soil at the inner edge of the conveyor belt 6 to the middle through the extensions 93 to avoid the soil gathering to the side plates 1 2 and 2 3 and interfering with the movement of the conveyor belt 6. The circular holes 91 on the front and rear sides can also be set larger to meet the larger soil passing requirements here. At the same time, the elastic strip 202 can move the soil in the V-shaped portion 92 so that the soil in the V-shaped portion 92 can be moved. The soil can more easily pass through the circular hole 91 and fall to the ground, and the clogging of the circular hole 91 can also be avoided. At the same time, by arranging a steel ball 203 at the end of the elastic strip 202, the degree of reciprocating swing of the end of the elastic strip 202 is increased, thereby improving the effect of moving the soil, so that the soil can pass through the circular hole 91 more smoothly and fall to the ground. The elastic strip 202 can also be linked with the movement of the elastic part 94, so that the elastic part 94 pushes part of the soil at a position other than the sharp corner of the V-shaped part 92 toward the circular hole 91, so that part of the soil can be discharged through the circular hole 91 before gathering at the sharp corner of the V-shaped part 92, which is beneficial to improving the soil discharge efficiency.

[0039] Example 3 On the basis of Example 2, Figure 7 As shown, auxiliary components are also included, including gears 207 and toothed belts 208; the movable parts of the electric roller 1 4 and the electric roller 2 5 are fixedly connected to two gears 207, and the gears 207 are set to metal material; the front and rear sides of the transmission belt 6 are fixedly connected to a toothed belt 208, and the toothed belt 208 is meshed with the corresponding gear 207, the electric roller 1 4 drives the gear 207 to rotate, and the gear 207 drives the toothed belt 208 to rotate.

[0040] Both the electric roller 1 4 and the electric roller 2 5 are provided with intelligent electrical control modules, and the rotation speeds of the electric roller 1 4 and the electric roller 2 5 are adjusted by the intelligent electrical control modules, so that the taro conveying speed can be intelligently controlled.

[0041] When the taro is pre-cleaned by vibration, some soil will adhere to the inner side of the conveyor belt 6, which will cause the friction between the electric roller 1 4, the electric roller 2 5 and the conveyor belt 6 to decrease, causing the conveyor belt 6 to slip. Therefore, gears 207 and toothed belts 208 are added. When the electric rollers 1 4 and the electric rollers 2 5 drive the conveyor belt 6 to move through the friction force, the gears 207 are driven to rotate through the electric rollers 1 4 and the electric rollers 2 5, the gears 207 drive the toothed belt 208 to move, and the toothed belt 208 drives the conveyor belt 6 to move, which can effectively prevent slipping.

[0042] When in use, with the assistance of the gear 207 and the toothed belt 208, the problem of the transmission belt 6 slipping due to the adhesion of mud can be effectively prevented.

[0043] 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, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. An intelligent transportation device for agricultural product processing, comprising a support frame (1); a first side plate (2) is fixedly connected to the support frame (1); a second side plate (3) is fixedly connected to the support frame (1), and the second side plate (3) is symmetrically arranged with the first side plate (2); characterized in that: An electric roller (4) is installed between the side plate (2) and the side plate (3); an electric roller (5) is installed between the side plate (2) and the side plate (3); a transmission belt (6) is wound between the movable parts of the electric roller (4) and the electric roller (5); a plurality of baffle plates (7) are fixedly connected to the outer ring surface of the transmission belt (6); a plurality of arc surface blocks (8) are fixedly connected to the front and rear sides of the inner ring of the transmission belt (6); a plurality of arc surface blocks (9) are fixedly connected to the side plate (2) and the side plate (3); the arc surface blocks (9) Matching with the arc surface block one (8), it can drive the conveyor belt (6) to vibrate; each arc surface block one (8) is fixedly connected to a connecting block (10), and the connecting block (10) passes through the conveyor belt (6) and is fixedly connected to the corresponding baffle one (7); each baffle one (7) is fixedly connected to two inclined elastic plates (11); the end of the elastic plate (11) is fixedly connected to the end of the baffle one (7); each elastic plate (11) is provided with a plurality of soft rubber strips; each baffle one (7) is provided with a groove on one side close to the conveyor belt (6).

2. The intelligent transportation device for agricultural product processing according to claim 1 is characterized in that: It also includes a baffle plate 2 (201); a plurality of baffle plates 2 (201) are fixedly connected between the side plate 1 (2) and the side plate 2 (3), and the baffle plates 2 (201) are located on the inner side of the conveyor belt (6); and each baffle plate 2 (201) is in contact with the conveyor belt (6).

3. The intelligent transportation device for agricultural product processing according to claim 2 is characterized in that: A plurality of V-shaped portions (92) are arranged at equal intervals on each baffle plate 2 (201), and the sharp corners of the V-shaped portions (92) are aligned with the corresponding circular holes (91).

4. The intelligent transportation device for agricultural product processing according to claim 3 is characterized in that: Each baffle plate (201) is provided with an extended portion (93) at both ends; the inner diameters of the circular holes (91) at the front and rear sides of the conveyor belt (6) are larger than the inner diameter of the circular hole (91) in the middle.

5. The intelligent transportation device for agricultural product processing according to claim 3 is characterized in that: It also includes elastic strips (202) and steel balls (203); a plurality of elastic strips (202) are fixedly connected to each baffle plate 2 (201); and a steel ball (203) is fixedly connected to the end of each elastic strip (202).

6. The intelligent transportation device for agricultural product processing according to claim 5 is characterized in that: A plurality of elastic parts (94) are provided on each baffle plate (201); and the end of each elastic strip (202) is fixedly connected to the corresponding elastic part (94).

7. The intelligent transportation device for agricultural product processing according to claim 6, characterized in that: The invention also comprises a collecting assembly, which comprises a guide rail (204), a storage box (205) and a handle (206); the guide rail (204) is fixedly connected between the side panel 1 (2) and the side panel 2 (3); the storage box (205) is connected to the guide rail (204) in a damping sliding manner, the storage box (205) is in contact with the side panel 1 (2), and the storage box (205) is in contact with the side panel 2 (3); and the handle (206) is fixedly connected to the storage box (205).

8. The intelligent transportation device for agricultural product processing according to claim 7 is characterized in that: The surface of the storage box (205) is configured to be a smooth surface.

9. The intelligent transportation device for agricultural product processing according to claim 8, characterized in that: It also includes an auxiliary component, which includes a gear (207) and a toothed belt (208); the movable parts of the electric roller 1 (4) and the electric roller 2 (5) are both fixedly connected to two gears (207); the front side and the rear side of the transmission belt (6) are both fixedly connected to a toothed belt (208), and the toothed belt (208) is meshed with the corresponding gear (207).

10. An intelligent transportation device for agricultural product processing according to any one of claims 1 to 9, characterized in that: Both the electric roller 1 (4) and the electric roller 2 (5) are provided with intelligent electrical control modules.