Clean vegetable processing and conveying device
By designing a flip plate mechanism and a linkage system between the sphere and the guide plate in the vegetable clean processing and conveying device, the problem of vegetable cleaning blind spots in the prior art is solved, and multi-dimensional and blind spot cleaning of vegetables is achieved, which improves the cleanliness and working conditions of the clean vegetables.
Patent Information
- Application Number
- CN202510278035.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-05-06
AI Technical Summary
The existing vegetable clean processing and conveying device cannot dynamically turn over during transportation, resulting in a cleaning blind spot formed on the bottom and side of the vegetable, and residual sediment, pesticide residue and other pollutants, which cannot meet the requirements of processing distribution centers for the hygiene and controllability of the entire process.
A vegetable clean vegetable processing and conveying device including a flip plate mechanism and a sphere and guide plate linkage system is designed. The flip plate realizes controllable flip through the mechanical barrier of the top rod, and combines with the guide nozzle to achieve multi-dimensional cleaning; the linkage system between the sphere and the guide plate realizes uniform lifting of the top plate through the lever mechanism, and cleans vegetables with multi-angle spraying.
It achieves the effect of no blind spots on vegetables, improves the cleanliness of clean vegetables, meets the requirements for hygiene and controllability of the entire process, and operates stably under harsh working conditions with high humidity and high debris concentration.
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Figure CN119929466A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of conveying devices, and in particular to a clean vegetable processing and conveying device. Background Art
[0002] Clean vegetable processing refers to a series of processes such as cleaning, sorting, cutting, sterilization, and packaging of fresh vegetables, meat and other ingredients to make them reach a semi-finished product state that can be directly cooked or eaten. The conveying device generally refers to a chain-type conveying device, which places the vegetables on the chain and transports them to the bottom of the washing rack, and uses the nozzles on the washing rack to spray washing water to wash the vegetables below.
[0003] The current vegetable processing and conveying equipment only relies on the chain plate holes for drainage and the upper nozzle for surface washing. It is not possible to dynamically turn the vegetables over during transportation. The bottom of the vegetables is in contact with the chain plate for a long time, resulting in a cleaning blind spot under the vegetables and on their sides, which causes residual pollutants such as mud, pesticide residues, etc., and does not meet the requirements of the processing and distribution center for full-process hygiene controllability. Summary of the invention
[0004] In order to solve the problem in the above background technology that vegetables cannot be turned over during cleaning, the purpose of the present invention is to provide a vegetable cleaning processing and conveying device.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a vegetable cleaning processing and conveying device, comprising:
[0006] A bracket, on which two symmetrically arranged side plates are fixedly mounted, on which a plurality of sprocket shafts are cooperatively mounted, a driving motor is cooperatively mounted on the bracket, the driving motor is driven and connected to the sprocket shaft through a driving member, and two chains are cooperatively mounted on the sprocket shaft;
[0007] A plurality of first chain plates, which are cooperated and installed on the inner sides of two parallel chains, and the first chain plates include a first bearing plate, which is provided with a plurality of first windows, and each first window is provided with a first rotating shaft, and a flap plate is rotatably installed on the first rotating shaft, and a first guide groove is provided on one side of the flap plate, and a push rod is installed in the side plate, and the push rod corresponds to the swing position of the flap plate, and a plurality of mounting plates are fixedly installed on the push rod, and each mounting plate is provided with a first nozzle, and the spraying direction of the first nozzle is toward the first guide groove, and a first mounting frame is also installed in the side plate, and a plurality of second nozzles are provided on the first mounting frame, and the spraying direction of the second nozzle is vertically downward.
[0008] Preferably, the chain is composed of an annular chain link plate, a sleeve and a second pin, and a silicone baffle is installed on the side plate.
[0009] Preferably, a limit rod is provided in the first window, and the limit rod is arranged in coordination with the swing track of the flip plate.
[0010] Preferably, a weight-reducing groove is provided on the flip plate, a first through hole is provided on the flip plate, the first through hole connects the upper side of the flip plate with the inner side of the weight-reducing groove, and a plurality of second through holes are provided on the first supporting plate.
[0011] Preferably, the second pin passes through the first bearing plate and is rotatably arranged therewith.
[0012] Preferably, a second chain plate is also installed in the two chains, the second chain plate includes a second bearing plate, a top plate and a plurality of support rods, a plurality of second windows are provided on the second bearing plate, the top plate and the second windows are slidably matched, a second bearing seat is installed on the lower side of the second bearing plate, a lever is hingedly installed on the second bearing seat through a third pin shaft, a ball is installed on one end of the lever, a first bearing seat is provided on the lower side of the top plate, and the other end of the lever is hingedly installed on the first bearing seat through a first pin shaft;
[0013] The top plate is provided with a plurality of sliding grooves, a fourth pin and a fifth pin are fixed to one end of the support rod, the fourth pin is installed on the inner side of the second window, and the fifth pin is slidably installed in the sliding groove;
[0014] A first guide plate and a second guide plate are installed in the side plate, the first guide plate and the second guide plate have different heights, the first guide plate and the second guide plate are connected by a third guide plate, and the ball is slidably matched with the first guide plate, the second guide plate, and the third guide plate;
[0015] Two symmetrical second guide grooves are provided on the top plate, and a plurality of fourth guide plates are installed in the second guide grooves. The fourth guide plates are all arc plates, and the arc diameters of the fourth guide plates are different. A second mounting frame is installed on the side plate, and a plurality of third nozzles are installed on the second mounting frame. The third nozzles are arranged toward the second supporting plate.
[0016] Preferably, a plurality of third through holes and a plurality of fourth through holes are formed on the second supporting plate.
[0017] Preferably, a plurality of sixth through holes are formed on the top plate, and the sixth through holes connect the upper side of the top plate with the second guide groove.
[0018] Preferably, the third nozzle is arranged corresponding to the first guide plate, a third mounting frame is mounted on the side plate, a plurality of fourth nozzles are mounted on the third mounting frame, and the fourth nozzles are arranged downward.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] 1. The present invention sets a flip plate mechanism on the first chain plate: when the conveying device is running, the flip plate is controllably flipped under the mechanical blocking action of the top rod, which not only drives the vegetables to complete spatial displacement, but also links the guide flushing system to form a multi-dimensional cleaning network. Specifically, when the flip plate flips, the first nozzle sprays water through the first guide groove to form a directional refraction, accurately flushing the area below the side of the vegetable; the contact state of the vegetable itself with the bearing surface changes dynamically during the flipping process, and cooperates with the vertical water flow of the flushing nozzle of the top flushing rack to form a three-dimensional flushing. The above method achieves a cleaning effect without dead angles for vegetables. The whole set of mechanisms realizes the flipping of the flip plate through the mechanical realization of the flipping of the flip plate on the top rod, without the need for electrical drive components, so that the present application can operate stably in a more humid and harsh environment.
[0021] 2. The core design of the second chain plate lies in the linkage system between the ball and the guide plate: when the ball slides along the first guide plate, the top plate is embedded in the second window due to its own weight; as the conveyor chain runs to the third guide plate area, the ball is vertically displaced by the gradual track height difference, and the top plate is lifted at a uniform speed through the lever mechanism. On the one hand, during the lifting process of the top plate, the third nozzle sprays water through the special-shaped curved surface of the second guide groove to form a fan-shaped water curtain that diffuses laterally, flushing the side wrinkles of the vegetables layer by layer; on the other hand, the lifting height of the top plate is adaptively matched with the shape of the vegetables to ensure that the flushing water flow completely covers the side surfaces of vegetables of different sizes. The above method realizes the lifting and lowering stroke of the top plate through pure mechanical transmission, and cooperates with multi-angle spraying to clean the vegetables at multiple angles. The linkage system between the ball and the guide plate is a mechanical drive solution that completely abandons electronic control components and can be used at humidity>95% and debris concentration up to 200g / m 3 It can operate stably under harsh working conditions, breaking through the environmental adaptability limitations of traditional electric drive equipment.
[0022] 3. When the second chain plate of the present invention is not lifted up, the top plate will extend a certain distance from the second window, which can play a certain role in limiting the goods above it and effectively restrict the displacement of vegetables during transportation; and at this time, the third nozzle combines with the diversion structure of the second guide groove to form a directional water beam with a 45° elevation angle to accurately wash the area prone to scale accumulation on the side and bottom of the vegetables; the sixth through-hole array design produces a vertical downward high-pressure water column, which directly penetrates the gap between the vegetables and the bearing surface to remove stubborn stains attached to the bottom surface. Through the above multiple flushing, three-dimensional coverage flushing of the sides and bottom of the vegetables is achieved, effectively improving the flushing effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a basic structural schematic diagram of a vegetable cleaning processing and conveying device of the present invention.
[0024] Figure 2This is a schematic diagram of the installation position of the first chain plate of a vegetable processing and conveying device of the present invention.
[0025] Figure 3 A vegetable cleaning processing and conveying device of the present invention Figure 2 main view.
[0026] Figure 4 The present invention is a schematic diagram of the matching relationship between the first chain plate and the chain of a vegetable processing and conveying device.
[0027] Figure 5 A vegetable cleaning processing and conveying device of the present invention Figure 4 Top view of the .
[0028] Figure 6 A vegetable cleaning processing and conveying device of the present invention Figure 5 CC cross-sectional view.
[0029] Figure 7 It is a schematic diagram of the position relationship between the flip plate and the first window of a vegetable processing and conveying device of the present invention.
[0030] Figure 8 It is a basic structural schematic diagram of the first chain plate of a vegetable cleaning processing and conveying device of the present invention.
[0031] Fig. 9 This is a schematic diagram of a second nozzle of a vegetable cleaning processing and conveying device of the present invention flushing an inverted first chain plate.
[0032] Fig.10 The present invention is a schematic diagram of the matching relationship between the turning plate and the push rod of the vegetable processing and conveying device.
[0033] Fig.11 This is another schematic diagram of the matching relationship between the turning plate and the push rod of the vegetable processing and conveying device of the present invention.
[0034] Fig.12 This is another structural schematic diagram of a vegetable cleaning processing and conveying device of the present invention.
[0035] Fig.13 A vegetable cleaning processing and conveying device of the present invention Fig.12 Schematic diagram of the internal structure.
[0036] Fig.14 A vegetable cleaning processing and conveying device of the present invention Fig.13 main view.
[0037] Fig.15 The present invention is a schematic diagram of the matching relationship between the first chain plate and the chain of a vegetable processing and conveying device.
[0038] Fig.16 The present invention is a schematic diagram of the matching relationship between a ball and a guide plate of a vegetable processing and conveying device.
[0039] Fig.17 It is a basic structural schematic diagram of a top plate of a vegetable cleaning processing and conveying device of the present invention.
[0040] Fig.18 This is a schematic diagram of the relationship between the top plate of a vegetable cleaning processing and conveying device of the present invention and the vegetables when the top plate is lifted up.
[0041] Fig.19 It is a structural schematic diagram of a vegetable processing and conveying device of the present invention when the top plate on the second chain plate is lifted up.
[0042] Fig. 20 This is a schematic diagram of the positional relationship between a top plate of a vegetable processing and conveying device of the present invention and vegetables when the top plate is not lifted up.
[0043] Fig.21 It is a schematic diagram of the positional relationship between the plate of a vegetable processing and conveying device of the present invention and the vegetables when the plate is lifted up.
[0044] Fig. 22 It is a basic structural schematic diagram of the second chain plate of a vegetable processing and conveying device of the present invention when the top plate is not lifted up.
[0045] Fig.23 A vegetable cleaning processing and conveying device of the present invention Fig. 22 Top view of the .
[0046] Fig.24 A vegetable cleaning processing and conveying device of the present invention Fig.23 Partial view of the AA cross-sectional view.
[0047] Fig.25 It is a basic structural schematic diagram of the second chain plate of a vegetable processing and conveying device of the present invention when the top plate is lifted up.
[0048] Fig.26 It is a schematic diagram of the internal structure of the second window of a vegetable cleaning processing and conveying device of the present invention.
[0049] Fig. 27 A vegetable cleaning processing and conveying device of the present invention Fig.25 Top view of the .
[0050] Fig.28 A vegetable cleaning processing and conveying device of the present invention Fig.25 Partial view of a cutaway view of the BB.
[0051] Fig.29 It is a schematic diagram of the positional relationship between the top plate of the second chain plate of a vegetable processing and conveying device of the present invention and the water flow sprayed from the nozzle when the top plate is lifted up.
[0052] In the figure: 101, bracket; 102, silicone baffle; 103, first guide plate; 104, second guide plate; 105, third guide plate; 106, drive motor; 107, sprocket shaft; 108, side plate; 200, second chain plate; 201, second bearing plate; 202, third through hole; 203, fourth through hole; 204, second window; 205, top plate; 206, sixth through hole; 207, fourth guide plate; 208, second guide groove; 209, first bearing seat; 210, first pin; 211, lever; 212, sphere; 213, second bearing seat; 214, third pin; 215, support rod; 216, fourth Pin; 217, sliding groove; 218, fifth pin; 219, second mounting bracket; 220, third nozzle; 221, third mounting bracket; 222, fourth nozzle; 300, chain; 301, link plate; 302, sleeve; 303, second pin; 400, first chain plate; 401, first bearing plate; 402, first window; 403, first rotating shaft; 404, flip plate; 405, weight reduction groove; 406, first guide groove; 407, limit rod; 408, push rod; 409, mounting plate; 410, first nozzle; 411, first through hole; 412, second through hole; 413, first mounting bracket; 414, second nozzle. DETAILED DESCRIPTION
[0053] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0054] like Figure 1 - Fig.11As shown, a vegetable processing and conveying device provided in this embodiment includes a bracket 101, on which two symmetrically arranged side plates 108 are fixedly installed, on which the side plates 108 are cooperatedly installed with silicone baffles 102, on which a plurality of sprocket shafts 107 are cooperatedly installed, and on which the bracket 101 is cooperatedly installed with a driving motor 106, which is connected to the sprocket shaft 107 through a belt and a pulley drive, on each sprocket shaft 107 two sprockets are symmetrically installed, on each sprocket shaft 107 two chains 300 are cooperatedly installed, and the silicone baffles 102 can effectively prevent vegetables from entering the chain 300 and causing it to get stuck, and each chain 300 is composed of a plurality of groups of annular chain link plates 301, a sleeve 302 and a second pin shaft 303, and the sprocket can engage with the chain 300, and the chain 300 can be driven to rotate by the driving motor 106.
[0055] A plurality of first chain plates 400 are installed between the two chains 300. The chains 300 and the first chain plates 400 form an annular conveying structure. The first chain plates 400 include first bearing plates 401. Two second pins 303 are passed through each first bearing plate 401 and rotated with the two second pins 303. A plurality of first windows 402 are opened on the first bearing plate 401. A first rotating shaft 403 is arranged in each first window 402. A flip plate 404 is rotatably installed on the first rotating shaft 403.
[0056] A first guide groove 406 is opened on one side of the flip plate 404, and a push rod 408 is installed in the side plate 108, and the push rod 408 corresponds to the swing position of the flip plate 404. A plurality of mounting plates 409 are fixedly installed on the push rod 408, and each mounting plate 409 is provided with a first nozzle 410, and the spraying direction of the first nozzle 410 is toward the first guide groove 406. A limit rod 407 is provided in the first window 402, and the limit rod 407 is arranged in coordination with the swing trajectory of the flip plate 404.
[0057] Specifically, this embodiment should be placed under the washing rack for use. The washing rack is equipped with a nozzle that sprays downwards for washing vegetables. Figure 6 , Fig. 9 - Fig.11(In the figure, z represents vegetables, and s represents flushing water sprayed from the upper nozzle). When the flip plate 404 is not in contact with the top rod 408 and is located above the top rod 408, the flip plate 404 will block the first window 402 due to its own gravity, and at this time, a certain groove will be formed between the flip plate 404 and the first window 402, and the groove can have a certain limiting effect on the smooth vegetables. When the flip plate 404 begins to contact with the top rod 408, the flip plate 404 will gradually flip over due to the action of the top rod 408, so that the water sprayed from the first nozzle 410 will rush to the lower side of the vegetable after being guided by the first guide groove 406. In the process of flipping the flip plate 404 (refer to Figure 6 , where the white arrow is the moving direction of the chain 300), the lower side of the vegetables is completely washed, and the water sprayed by the first nozzle 410 will also cause the vegetables to flip to a certain extent, thereby washing the dead corners formed by the contact between the vegetables and the flip plate 404 and the first supporting plate 401 (refer to Fig.10 and Fig.11 The black arrow inside indicates the flow direction of the flushing water sprayed from the first nozzle 410), which further improves the cleanliness of the vegetables and effectively removes residual dead corners that are difficult to reach with traditional flushing.
[0058] In the present embodiment, when the vegetables are located above the flip plate 404, the vegetables will be turned over by the flipping of the flip plate 404, so that the dead corners below the vegetables can be washed by the washing nozzle above, and the mud and agricultural residues under the vegetables can also be washed away; because the first chain plate 400 will circulate through the top rod 408 under the drive of the chain 300, all the vegetables located above the first chain plate 400 can be turned over and washed.
[0059] A weight-reducing groove 405 is provided on the flip plate 404, a first through hole 411 is provided on the flip plate 404, the first through hole 411 connects the upper side of the flip plate 404 with the inner side of the weight-reducing groove 405, a plurality of second through holes 412 are provided on the first supporting plate 401, the first through holes 411 and the second through holes 412 can be used for the passage of flushing water, and the weight-reducing groove 405 can greatly reduce the weight of the flip plate 404, so that the flipping of the flip plate 404 is smoother.
[0060] A first mounting frame 413 is also installed in the side plate 108, and a plurality of second nozzles 414 are provided on the first mounting frame 413. Figure 2 and Figure 3 The second nozzle 414 is arranged toward the first chain plate 400 below, and the spraying direction of the second nozzle 414 is arranged vertically downward. When the corresponding first chain plate 400 rotates to the bottom of the second nozzle 414, refer to Fig. 9The first chain plate 400 will flip 180 degrees, and the flip plate 404 will flip out of the first window 402 due to its own weight. At this time, the flushing water sprayed by the second nozzle 414 can flush the first window 402, the flip plate 404, the weight reduction groove 405, and the first through hole 411, and flush the remaining broken leaves from the first chain plate 400.
[0061] In another embodiment of the present application, referring to Fig.12 - Fig.29 The second chain plate 200 is installed in the two chains 300, and the second chain plate 200 includes a second bearing plate 201, a top plate 205 and a plurality of support rods 215. The second pin shaft 303 passes through both sides of the second bearing plate 201 and rotates with it. The second bearing plate 201 is provided with a plurality of second windows 204 (such as Fig. 22 As shown in the figure, the top plate 205 is slidably matched with the second window 204, the second bearing seat 213 is matched and installed on the lower side of the second bearing plate 201, the second bearing seat 213 is hingedly installed with a lever 211 through a third pin shaft 214, one end of the lever 211 is matched and installed with a ball 212, the lower side of the top plate 205 is provided with a first bearing seat 209, the other end of the lever 211 is hingedly connected to the first bearing seat 209 through a first pin shaft 210, and a plurality of sliding grooves 217 (as shown in the figure) are provided on the top plate 205. Fig.17 As shown), a fourth pin shaft 216 and a fifth pin shaft 218 are respectively fixed at both ends of the support rod 215. The fourth pin shaft 216 is installed on the inner side of the second window 204, and the fifth pin shaft 218 is slidably installed in the sliding groove 217.
[0062] The first guide plate 103 and the second guide plate 104 are installed in the side plate 108. The first guide plate 103 and the second guide plate 104 have different heights. The first guide plate 103 and the second guide plate 104 are connected by the third guide plate 105. The ball 212 is slidably matched with the first guide plate 103, the second guide plate 104, and the third guide plate 105. Fig.15 and Fig.16 There is a certain height difference between the first guide plate 103 and the second guide plate 104. The first guide plate 103 is located below the second guide plate 104. The third guide plate 105, which is a transition section between the first guide plate 103 and the second guide plate 104, is relatively smooth, which can facilitate the sliding of the ball 212 along the third guide plate 105. A plurality of third through holes 202 and a plurality of fourth through holes 203 are provided on the second supporting plate 201. The third through holes 202 and the fourth through holes 203 are used for the flow of flushing water.
[0063] In this embodiment, this embodiment should be placed under the washing rack for use. The washing rack is equipped with a downward spray nozzle for washing vegetables. Fig.19(The black arrow in the figure is the direction of gravity of the top plate 205, and the white arrow is the direction of the force applied by the lever 211 to the sphere 212). When the top plate 205 is set upward, it will be inside the second window 204 due to its own gravity (until the top plate 205 contacts the fourth pin 216), so that the sphere 212 at one end of the lever 211 is close to the corresponding guide plate (the first guide plate 103, the second guide plate 104, the third guide plate 105), so the sphere 212 can be limited by the corresponding guide plate (the first guide plate 103, the second guide plate 104, the third guide plate 105), thereby controlling the top plate 205 to be lifted up from the second window 204.
[0064] Reference Fig. 22 - Fig.28 When the ball 212 is limited by the second guide plate 104, the top plate 205 is located inside the second window 204. When the ball 212 slides through the third guide plate 105 and moves toward the first guide plate 103, the height between the second guide plate 104 and the first guide plate 103 changes, so that the ball 212 gradually moves downward, and the other end of the lever 211 pushes the top plate 205 upward, so that the top plate 205 emerges from the second window 204. The emerging top plate 205 can play a certain limiting role on the vegetables above the second chain plate 200.
[0065] Two symmetrical second guide grooves 208 are provided on the top plate 205, and a plurality of fourth guide plates 207 are installed in the second guide grooves 208. The fourth guide plates 207 are all arc plates, and the arc diameters of the fourth guide plates 207 are different. A second mounting frame 219 is installed on the side plate 108, and a plurality of third nozzles 220 are installed on the second mounting frame 219. The third nozzles 220 are arranged toward the second bearing plate 201. A plurality of sixth through holes 206 are provided on the top plate 205, and the sixth through holes 206 connect the upper side of the top plate 205 with the second guide grooves 208. Fig.26 The curvatures of the multiple arc-shaped fourth guide plates 207 are different, which can ensure the uniformity of spraying.
[0066] Reference Fig.18 , Fig. 20 and Fig.21(In the figure, z represents vegetables, and s represents flushing water sprayed from the nozzle of the upper spray rack), when the top plate 205 is lifted up, the spraying water sprayed upward by the third nozzle 220 passes through the second window 204 and is guided by the fourth guide plate 207 or the second guide groove 208 to flush the lower sides of the vegetables on both sides, and the top plate 205 is slowly raised, so the spraying water can flush the entire lower sides of the vegetables after being guided by the fourth guide plate 207 or the second guide groove 208, and a number of sixth through holes 206 are also provided on the top plate 205, and the spraying water can also directly flush the vegetables through the sixth through holes 206, and the spraying water through the sixth through holes 206 will also cause the vegetables to flip at a certain angle, so that every corner of the vegetables will be flushed, further improving the cleanliness of the vegetables after cleaning.
[0067] The third nozzle 220 is arranged corresponding to the first guide plate 103 , and a third mounting frame 221 is mounted on the side plate 108 , and a plurality of fourth nozzles 222 are mounted on the third mounting frame 221 , and the fourth nozzles 222 are arranged downward.
[0068] Reference Fig.12 , Fig.13 and Fig.29 When the second chain plate 200 flips to the bottom, the top plate 205 will escape from the second window 204 due to its own gravity. At this time, the corresponding fourth nozzle 222 can rinse the top plate 205 and the second window 204 to prevent vegetables from being stuck inside and causing failure.
[0069] The first nozzle 410, the second nozzle 414, the third nozzle 220 and the fourth nozzle 222 are all connected to the liquid pump system through corresponding connecting pipes, and water is supplied through the liquid pump and the water tank. The liquid pump and the water tank are commonly used devices in the clean vegetable processing process, which are not shown in the figure and will not be described in detail here.
[0070] In another embodiment of the present application, the first chain plate 400 is used in conjunction with the second chain plate 200. In this embodiment, the second chain plate 200 and the first chain plate 400 can be staggered, and the vegetables are flipped and rinsed by the first chain plate 400, and then lifted up by the second chain plate 200 for further rinsing. The first chain plate 400 realizes the flipping operation of the flip plate 404 through the interaction of the top rod 408 with the flip plate 404, and the second chain plate 200 adjusts the position of the top plate 205 on one side of the lever 211 through the corresponding guide plate on one side (the first guide plate 103, the second guide plate 104, and the third guide plate 105). There is no mutual interference between the top rod 408 and the corresponding guide plate (the first guide plate 103, the second guide plate 104, and the third guide plate 105), and they can be used in combination.
[0071] It should be further noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0072] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A vegetable cleaning processing and conveying device, characterized in that: include: A bracket (101), wherein two symmetrically arranged side plates (108) are fixedly mounted on the bracket (101), a plurality of sprocket shafts (107) are cooperatively mounted on the side plates (108), a driving motor (106) is cooperatively mounted on the bracket (101), the driving motor (106) is driven by a driving member to connect to the sprocket shaft (107), and two chains (300) are cooperatively mounted on the sprocket shaft (107); A plurality of first chain plates (400), wherein the first chain plates (400) are mounted on the inner side of two parallel chains (300), wherein the first chain plates (400) include a first bearing plate (401), wherein the first bearing plate (401) is provided with a plurality of first windows (402), wherein each first window (402) is provided with a first rotating shaft (403), wherein a flap plate (404) is rotatably mounted on the first rotating shaft (403), wherein a first guide groove (406) is provided on one side of the flap plate (404), and wherein a top rod (406) is installed in the side plate (108) 408), the push rod (408) corresponds to the swing position of the flip plate (404), a plurality of mounting plates (409) are fixedly mounted on the push rod (408), each mounting plate (409) is provided with a first nozzle (410), the spray direction of the first nozzle (410) is toward the first guide groove (406), a first mounting frame (413) is also installed in the side plate (108), the first mounting frame (413) is provided with a plurality of second nozzles (414), the spray direction of the second nozzles (414) is vertically downward.
2. A clean vegetable processing and conveying device according to claim 1, characterized in that: The chain (300) is composed of an annular chain link plate (301), a sleeve (302) and a second pin shaft (303) spliced together, and a silicone baffle (102) is mounted on the side plate (108).
3. The clean vegetable processing and conveying device according to claim 2, characterized in that: A limiting rod (407) is provided in the first window (402), and the limiting rod (407) is arranged in coordination with the swing track of the flip plate (404).
4. The clean vegetable processing and conveying device according to claim 2, characterized in that: The flip plate (404) is provided with a weight-reducing groove (405), the flip plate (404) is provided with a first through hole (411), the first through hole (411) connects the upper side of the flip plate (404) with the inner side of the weight-reducing groove (405), and the first bearing plate (401) is provided with a plurality of second through holes (412).
5. The clean vegetable processing and conveying device according to claim 2, characterized in that: The second pin shaft (303) passes through the first bearing plate (401) and is rotatably arranged therewith.
6. The clean vegetable processing and conveying device according to claim 1, characterized in that: A second chain plate (200) is also installed in the two chains (300), and the second chain plate (200) includes a second bearing plate (201), a top plate (205) and a plurality of support rods (215). The second bearing plate (201) is provided with a plurality of second windows (204), and the top plate (205) and the second windows (204) are slidably matched. A second bearing seat (213) is installed in cooperation with the lower side of the second bearing plate (201), and a lever (211) is hingedly installed on the second bearing seat (213) through a third pin shaft (214), and a ball (212) is installed in cooperation with one end of the lever (211), and a first bearing seat (209) is provided on the lower side of the top plate (205), and the other end of the lever (211) is hingedly installed on the first bearing seat (209) through a first pin shaft (210); The top plate (205) is provided with a plurality of sliding grooves (217), and a fourth pin shaft (216) and a fifth pin shaft (218) are fixed to one end of the support rod (215), the fourth pin shaft (216) is installed on the inner side of the second window (204), and the fifth pin shaft (218) is slidably installed in the sliding groove (217); A first guide plate (103) and a second guide plate (104) are mounted in the side plate (108); the first guide plate (103) and the second guide plate (104) have different heights; the first guide plate (103) and the second guide plate (104) are connected via a third guide plate (105); the ball (212) and the first guide plate (103), the second guide plate (104), and the third guide plate (105) are all slidably matched; The top plate (205) is provided with two symmetrical second guide grooves (208), a plurality of fourth guide plates (207) are mounted in the second guide grooves (208), the fourth guide plates (207) are all arc plates, and the arc diameters of the fourth guide plates (207) are different, a second mounting frame (219) is mounted on the side plate (108), a plurality of third nozzles (220) are mounted on the second mounting frame (219), and the third nozzles (220) are arranged toward the second supporting plate (201).
7. The clean vegetable processing and conveying device according to claim 6, characterized in that: The second supporting plate (201) is provided with a plurality of third through holes (202) and a plurality of fourth through holes (203).
8. The clean vegetable processing and conveying device according to claim 6, characterized in that: A plurality of sixth through holes (206) are provided on the top plate (205), and the sixth through holes (206) are connected to the upper side of the top plate (205) and the second guide groove (208).
9. The clean vegetable processing and conveying device according to claim 6, characterized in that: The third nozzle (220) is arranged corresponding to the first guide plate (103), a third mounting frame (221) is mounted on the side plate (108), a plurality of fourth nozzles (222) are mounted on the third mounting frame (221), and the fourth nozzles (222) are arranged facing downward.