A kind of draining transmission device for konjak processing

By designing shaking, pressure, and flipping components, and combining heating and airflow, the problem of incomplete drying of the lower surface of konjac was solved, achieving efficient and uniform drying of konjac processing and ensuring product quality.

CN120207919BActive Publication Date: 2025-12-26SHANDONG HEARUN DIETARY HALL CO LTD
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Patent Information

Application Number
CN202510491102.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-12-26
Estimated Expiration
2045-04-18

AI Technical Summary

Technical Problem

Existing konjac draining and conveying devices do not achieve thorough drying of the lower surface of konjac, resulting in a decline in overall processing quality and a tendency for adhesion problems.

Method used

The design incorporates a shaking assembly, a pressure assembly, and a flipping assembly. Combined with heating and airflow, this enhances drainage efficiency. Periodic flipping prevents adhesion. A driver operates the conveying and pressure assemblies, working in conjunction with a fan and heater to achieve efficient drying.

Benefits of technology

This method achieves uniform drying of the konjac surface, improves processing quality and efficiency, and avoids localized residual moisture affecting the product's taste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a draining transmission device for konjak processing and relates to the technical field of konjak processing, and aims to solve the technical problem that although the existing konjak draining transmission device is equipped with a perforated transmission belt to cooperate with vibration and air drying to accelerate draining, the lower surface of the konjak adhering to the transmission belt is blocked by air drying and is adhered by water film tension, leading to incomplete drying below and affecting the overall processing quality, and the application comprises a protection assembly and a driver arranged in the protection assembly. The application is provided with a shaking assembly, a pressure assembly and a surface turning assembly, so that the device can not only improve the draining and drying efficiency of the konjak by means of heating and accelerating the air flow rate during the conveying of the konjak, but also can avoid the adhesion between the lower surface of the konjak and the conveying assembly by cooperating with the automatic surface turning mode of the konjak, thereby guaranteeing the quality and efficiency of the device in processing the konjak.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of konjac processing, more particularly to a draining and conveying device for konjac processing. BACKGROUND

[0002] When processing konjac, it is usually necessary to peel and wash it. After cleaning, a draining and conveying device is needed to transport and dry the konjac at the same time.

[0003] The existing konjac draining and conveying device is designed with a perforated transmission belt. The original intention is to achieve the draining function through natural drainage during transportation. However, relying solely on natural draining during transportation, for konjac and other food materials with high water content and slippery surface, the draining effect is often difficult to meet expectations. To improve the draining efficiency, the current mainstream equipment mostly adopts a technical solution combining vibration and air drying. The vibration device promotes the shedding of water inside and on the surface of the konjac through mechanical vibration, while the air drying system accelerates the evaporation of water using air flow. However, in actual application, this design still has significant limitations. Since the konjac needs to be placed directly on the surface of the conveying belt for transportation, the lower surface area of the konjac that is in contact with the conveying belt is often difficult to fully expose to the air drying airflow above due to the obstruction of the conveying belt, resulting in slow water evaporation in this area. At the same time, during the vibration process, due to the surface tension of water, local adhesion is easily formed between the lower surface of the konjac and the conveying belt, further hindering the effective separation of water. This design flaw directly leads to the fact that the drying effect of the lower surface of the konjac is significantly inferior to that of the upper surface during transportation, forming an uneven drying phenomenon of "upper dry and lower wet". Long-term operation not only affects the overall processing quality of the konjac (such as easy breeding of microorganisms and affecting the subsequent shelf life), but also may cause problems such as poor taste and appearance defects due to residual water in the local area, ultimately restricting the quality improvement and efficiency optimization of the konjac processing industry. In view of this, we propose a draining and conveying device for konjac processing. SUMMARY

[0004] The present application aims to provide a draining and conveying device for konjac processing to solve the technical problem that the existing konjac draining and conveying device uses a perforated transmission belt in combination with vibration and air drying to accelerate draining, but the lower surface of the konjac that is in contact with the conveying belt is blocked by air drying and adhered by water film tension, resulting in incomplete drying on the lower side and affecting the overall processing quality.

[0005] To solve the above technical problems, the present application provides the following technical solution: a draining and conveying device for konjac processing, comprising a driver, a controller and a conveying belt, further comprising,

[0006] The conveying mechanism comprises a protection assembly, a driver arranged in the protection assembly, a conveying assembly driven by the driver, a support, a controller and a pressure assembly connected with the driver, wherein the support is arranged below the protection assembly, and the controller is arranged above the support; and the draining mechanism comprises two driven assemblies, two shaking assemblies connected with the two driven assemblies, a connecting assembly and a turnover assembly, wherein the two connecting assemblies are connected with the two driven assemblies, and the turnover assembly is connected with the driven assemblies through the connecting assembly.

[0007] The present application can improve the draining and drying efficiency of konjak by heating and increasing the air flow rate during the conveying process of konjak, and can avoid the adhesion between the konjak and the conveying assembly below, thereby ensuring the quality and efficiency of the device for processing konjak.

[0008] Preferably, the protection assembly is fixedly connected with the two drivers, the conveying assembly is arranged outside the two drivers, the conveying assembly is driven to operate by the driver, the pressure assembly is fixedly connected on one side of one of the drivers, the pressure assembly is fixedly connected with the protection assembly, the lower part of the protection assembly is fixedly connected with the support, the upper part of the support is fixedly connected with the controller, and the controller is electrically connected with the driver.

[0009] Preferably, the driven assembly is engaged with the shaking assembly, the driven assembly is in transmission connection with the connecting assembly, and the turnover assembly is clamped in the connecting assembly.

[0010] The driven assembly is in transmission connection with the conveying assembly, the shaking assembly is in sliding connection in the protection assembly, and the connecting assembly is fixedly connected above the protection assembly.

[0011] Preferably, the protection assembly comprises two protection side plates, a reinforcing plate is fixedly connected above each of the two protection side plates, and two limiting grooves are formed in one side of each of the two protection side plates.

[0012] The driver is fixedly connected on one side of the protection side plate, the pressure assembly is fixedly connected on one side of one of the protection side plates, the support is fixedly connected below the protection side plate, the driven assembly is clamped with the two protection side plates, and the connecting assembly is fixedly connected above the protection side plate.

[0013] Preferably, the pressure assembly comprises a fan, the fan is in communication with a duct, the other end of the duct is in communication with a plurality of exhaust covers through a plurality of branch pipes, and a heater is fixedly connected between adjacent two exhaust covers.

[0014] The exhaust hood and the heater are fixedly connected between the two protective side plates, the fan is in transmission connection with the driver, and the exhaust hood and the heater are located above the conveying assembly.

[0015] Preferably, the conveying assembly comprises a conveying belt, and a plurality of water draining holes are formed in the conveying belt.

[0016] The inner wall of the conveying belt is in transmission connection with the driver and the driven assembly.

[0017] Preferably, the driven assembly comprises a rotating shaft, two bearings are sleeved on the rotating shaft, a driven wheel is fixedly connected to the rotating shaft, and the two ends of the rotating shaft are fixedly connected with two transmission wheels penetrating through the two bearings, the number of the transmission wheels is four, the two transmission wheels on one side are in transmission connection through a transmission belt, and two half gears are fixedly connected to the rotating shaft.

[0018] The rotating shaft is in engagement with the shaking assembly through the half gears, the rotating shaft is in transmission connection with the connecting assembly through the transmission wheels and the transmission belt, the outer wall of the driven wheel is in transmission connection with the inner wall of the conveying belt, and the bearings are clamped on one side of the protective side plate.

[0019] Preferably, the shaking assembly comprises two positioning plates, an elastic telescopic rod is fixedly connected to the lower portion of each of the two positioning plates, a limiting block is fixedly connected to the bottom end of the elastic telescopic rod, a toothed plate is fixedly connected to the other side of the limiting block, a connecting block is fixedly connected to one side of the toothed plate, an installation cylinder is clamped on one side of each of the two connecting blocks, and a same rotating cylinder is sleeved in the two installation cylinders.

[0020] The toothed plate is in engagement with the half gear, the limiting block is in sliding connection in a limiting groove, and the two positioning plates are fixedly connected with the two protective side plates respectively.

[0021] Preferably, the connecting assembly comprises two reinforcing ribs, a connecting cylinder is clamped in each of the two reinforcing ribs, a rotating rod is sleeved in each of the two connecting cylinders, a first gear wheel is fixedly connected to the opposite end of each of the two rotating rods, and the first gear wheel is a one-fourth gear wheel.

[0022] The reinforcing rib is fixedly connected above the reinforcing plate, the rotating rod is in transmission connection with the rotating shaft through the transmission wheels and the transmission belt, and the turning-over assembly is clamped between the two reinforcing ribs.

[0023] Preferably, the turning-over assembly comprises two sleeves, a connecting rod is sleeved in each of the two sleeves, a second gear wheel is fixedly connected to one end of the connecting rod, the two ends of the same driving rod are fixedly connected with one end of each of the two connecting rods penetrating through the second gear wheel, a coil spring is fixedly connected to the outside of each of the two connecting rods, a push plate is fixedly connected to the outside of the driving rod, and a plurality of friction strips are fixedly connected to one side of the push plate.

[0024] The sleeve is clamped on one side of the reinforcing rib, the first gear is engaged with the second gear, and the other ends of the two coil springs are fixedly connected with the two reinforcing ribs respectively.

[0025] Compared with the prior art, the present application has the following advantages:

[0026] 1、The driving device runs, the conveying assembly and the pressure assembly run together, the driven assembly also runs under the driving of the conveying assembly, the konjak to be drained is placed above the conveying assembly, the gas and high temperature are discharged through the pressure assembly to dry the konjak, the shaking assembly is driven by the driven assembly to move upward to deform the conveying assembly, and the shaking assembly is reset quickly after being separated from the driven assembly, so that the shaking effect of the konjak above the conveying assembly is realized, and when the driving device runs a circle (360 degrees), the connecting assembly drives the turnover assembly to turn over the konjak on the conveying belt, so that the draining and drying efficiency of the konjak is improved by heating and accelerating the air flow, the automatic turnover operation is periodic, the adhesion between the konjak and the conveying assembly is avoided, and the quality and efficiency of the device in processing the konjak are ensured.

[0027] 2、The driving device runs, the fan runs synchronously, the driving device drives the conveying belt to run, the konjak is placed above the conveying belt, the gas is injected into the exhaust hood through the duct and the branch pipe by the fan, a large amount of air is discharged from the exhaust hood, the surface temperature of the konjak is increased, the air flow speed on the surface of the konjak is accelerated, the evaporation of the water on the surface of the konjak is accelerated, the accelerated draining and drying of the konjak are completed, the driven wheel rotates with the conveying belt, the half gear is in contact with the tooth plate when the half gear rotates 180 degrees, the tooth plate and the limiting block move upward along the limiting groove with the continuous rotation of the half gear, the transmission belt is deformed upward when the half gear rotates 180 degrees again, the elastic expansion rod pushes the limiting block and the drum to reset when the half gear rotates to separate the tooth plate from the half gear, so that the transmission belt is reset, the shaking effect of the transmission belt is realized, the air drying, heating and shaking of the konjak are completed by starting the motor, the operation difficulty is reduced, and the processing effect of the device on the konjak is improved through the cooperation of multiple components.

[0028] 3、The present application also through the design of the turnover assembly and connecting assembly, when the driven wheel rotates, the rotating shaft and the transmission wheel drive the first gear to rotate, at this time, the first gear rotates in the same direction with the driven wheel, in the process of rotating three hundred and sixty degrees, the first gear will contact with the second gear and drive the second gear to rotate in reverse, when the second gear rotates, it will drive the second gear to rotate ninety degrees, so that its rotation direction is opposite to the driven wheel and the first gear, and the second gear is perpendicular to the conveying belt after rotating, thereby forming a barrier to the konjak above the conveying belt, so that the konjak accumulates on one side of the push plate, with the continuous rotation of the first gear, the first gear and the second gear are out of contact, at this time, the coil spring quickly drives the connecting rod to reset, thereby making the push plate move the konjak during resetting, since the konjak adheres to the surface of the push plate under the driving of the conveying belt, the push plate can smoothly move the konjak during resetting, completing the turnover processing of the konjak, and thus reciprocating, since a plurality of push plates are arranged above the conveying belt, the device can continuously process the konjak during use, in addition, the device can process the residual moisture on the surface of the konjak in all directions (three hundred and sixty degrees), ensuring that the overall dryness degree of the surface of the konjak is consistent, thereby ensuring the quality of the device processing konjak and avoiding the situation that the local residual moisture affects the taste of konjac products. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is the overall structure schematic diagram of the present application;

[0030] Figure 2 It is the conveying assembly structure schematic diagram of the present application;

[0031] Figure 3 It is the protection assembly structure schematic diagram of the present application;

[0032] Figure 4 It is the conveying assembly cross section structure schematic diagram of the present application;

[0033] Figure 5 It is the Figure 4 It is the enlarged structure schematic diagram of A in the present application;

[0034] Figure 6 It is the shaking assembly structure schematic diagram of the present application;

[0035] Figure 7 It is the driven assembly structure schematic diagram of the present application;

[0036] Figure 8 It is the turnover assembly explosion structure schematic diagram of the present application.

[0037] Mark explanation in the figure:

[0038] 1, conveying mechanism; 2, draining mechanism;

[0039] 11, protection assembly; 12, driver; 13, pressure assembly; 14, conveying assembly; 15, support; 16, controller;

[0040] 21, driven assembly; 22, shaking assembly; 23, connecting assembly; 24, turning assembly;

[0041] 111, protection side plate; 112, reinforcing plate; 113, limiting groove;

[0042] 131, fan; 132, duct; 133, tapping pipe; 134, exhaust cover; 135, heater;

[0043] 141, conveying belt; 142, drainage hole;

[0044] 211, rotating shaft; 212, bearing; 213, driven wheel; 214, half gear; 215, transmission wheel; 216, transmission belt;

[0045] 221, positioning plate; 222, elastic telescopic rod; 223, limiting block; 224, toothed plate; 225, connecting block; 226, mounting cylinder; 227, rotating cylinder;

[0046] 231, reinforcing rib; 232, connecting cylinder; 233, rotating rod; 234, first gear;

[0047] 241, sleeve; 242, connecting rod; 243, second gear; 244, driving rod; 245, coil spring; 246, push plate; 247, friction strip. DETAILED DESCRIPTION

[0048] As Figures 1 to 8 shown, the application relates to a draining and conveying device for processing konjak, which comprises a driver 12, a controller 16 and a conveying belt 141, and further comprises,

[0049] The conveying mechanism 1 comprises a protection assembly 11, a driver 12 arranged in the protection assembly 11, a conveying assembly 14 driven by the driver 12, a support 15, a controller 16 and a pressure assembly 13 connected with the driver 12, wherein the support 15 is arranged below the protection assembly 11, and the controller 16 is arranged above the support 15; and the draining mechanism 2 comprises two driven assemblies 21, two shaking assemblies 22 connected with the two driven assemblies 21, connecting assemblies 23 and a turnover assembly 24, wherein the two connecting assemblies 23 are connected with the two driven assemblies 21, and the turnover assembly 24 is connected with the driven assemblies 21 through the connecting assemblies 23; by designing the shaking assemblies 22, the pressure assembly 13 and the turnover assembly 24, when the driver 12 operates, the conveying assembly 14 and the pressure assembly 13 operate together, at this time, the driven assemblies 21 also operate under the driving of the conveying assembly 14, then, the konjak to be drained is placed above the conveying assembly 14, and the konjak is dried by discharging gas and high temperature through the pressure assembly 13, along with the operation of the driven assemblies 21, the shaking assemblies 22 are driven by the driven assemblies 21 to move upward, and the conveying assembly 14 is deformed by being extruded; after the shaking assemblies 22 are separated from the driven assemblies 21, the shaking assemblies 22 are quickly reset, so that the shaking effect on the konjak above the conveying assembly 14 is realized, and at the same time, when the driver 12 operates for 360 degrees, the connecting assemblies 23 push the turnover assembly 24 to turn over the konjak, and the konjak being conveyed on the conveying belt 141 is turned over, in this way, in the process of conveying the konjak, the device not only can improve the draining and drying efficiency of the konjak by heating and accelerating the air flow rate, but also can avoid the adhesion of the konjak below to the conveying assembly 14 by cooperating with the periodic automatic turnover operation, so that the quality and efficiency of the device in processing the konjak are ensured.

[0050] In the embodiment of the present application, the protection assembly 11 is fixedly connected with the two drivers 12, the conveying assembly 14 is arranged outside the two drivers 12, the conveying assembly 14 is driven to operate by the driver 12, the pressure assembly 13 is fixedly connected on one side of one of the drivers 12, the pressure assembly 13 is fixedly connected with the protection assembly 11, the lower portion of the protection assembly 11 is fixedly connected with the support 15, the upper portion of the support 15 is fixedly connected with the controller 16, the controller 16 is electrically connected with the driver 12, the driven assembly 21 is engaged with the shaking assembly 22, the driven assembly 21 is in transmission connection with the connecting assembly 23, the turnover assembly 24 is clamped in the connecting assembly 23, the driven assembly 21 is in transmission connection with the conveying assembly 14, the shaking assembly 22 is in sliding connection in the protection assembly 11, the connecting assembly 23 is fixedly connected above the protection assembly 11, by designing the shaking assembly 22 and the driver 12, when the driver 12 operates, the fan 131 operates synchronously. The driver 12 drives the conveying belt 141 to operate, at this time, the konjak is placed above the conveying belt 141, so that the conveying of the konjak is realized, when the conveying belt 141 drives the konjak to move twice below the heater 135 and the exhaust hood 134, the fan 131 injects the gas into the exhaust hood 134 through the pipe 132 and the branch pipe 133, so that a large amount of air is discharged from the exhaust hood 134, this process can not only increase the surface temperature of the konjak, but also accelerate the air flow rate on the surface of the konjak, so as to accelerate the evaporation of the water on the surface of the konjak, complete the accelerated water draining and drying of the konjak, when the conveying belt 141 operates, the driven wheel 213 rotates with the conveying belt 141, when the half gear 214 rotates one hundred and eighty degrees, the half gear 214 is in contact with the toothed plate 224, with the continuous rotation of the half gear 214, the toothed plate 224 and the limiting block 223 are driven to move upward along the limiting groove 113, when the half gear 214 rotates one hundred and eighty degrees again, the toothed plate 224 drives the rotating drum 227 to extrude the transmission belt 216, so that the transmission belt 216 is deformed upward, when the half gear 214 rotates to make the toothed plate 224 and the half gear 214 disengage, the elastic expansion rod 222 pushes the limiting block 223 and the rotating drum 227 to reset, so that the conveying belt returns to the original state, so that the shaking effect of the conveying belt is realized, the device only needs to start the motor, so that the air drying, heating and shaking of the konjak are completed, the operation difficulty is reduced, and the processing effect of the device on the konjak is improved through the cooperation of multiple components.

[0051] In the embodiment of the present application, the protection assembly 11 comprises two protection side plates 111, and a reinforcing plate 112 is fixedly connected above each of the two protection side plates 111, two limiting grooves 113 are formed in one side of each of the two protection side plates 111, the driver 12 is fixedly connected to one side of the protection side plate 111, the pressure assembly 13 is fixedly connected to one side of one of the protection side plates 111, the support 15 is fixedly connected below the protection side plate 111, the driven assembly 21 is clamped with the two protection side plates 111, the connecting assembly 23 is fixedly connected above the protection side plate 111, the pressure assembly 13 comprises a fan 131, the fan 131 is communicated with a conduit 132, the other end of the conduit 132 is communicated with a plurality of exhaust hoods 134 through a plurality of branch pipes 133, respectively, a heater 135 is fixedly connected between adjacent two exhaust hoods 134, the exhaust hood 134 and the heater 135 are fixedly connected between the two protection side plates 111, the fan 131 is drivingly connected with the driver 12, the exhaust hood 134 and the heater 135 are above the conveying assembly 14, the conveying assembly 14 comprises a conveying belt 141, a plurality of drip holes 142 are formed outside the conveying belt 141, the inner wall of the conveying belt 141 is drivingly connected with the driver 12, the inner wall of the conveying belt 141 is drivingly connected with the driven assembly 21, a plurality of friction strips 247 are designed on the surface of the push plate 246, so that the friction between the push plate 246 and the konjak is increased, the sliding of the konjak when the konjak is turned is avoided, and it is ensured that the push plate 246 can stably push the konjak.

[0052] By designing the limiting groove 113 on one side of the protection side plate 111, the movement direction of the limiting block 223 is limited, the pressure of the toothed plate 224 when moving is shared by the elastic extension rod 222, and the service life of the device is improved.

[0053] As another embodiment of the present application, the driven assembly 21 comprises a rotating shaft 211, two bearings 212 are sleeved on the rotating shaft 211, a driven wheel 213 is fixedly connected outside the rotating shaft 211, the two ends of the rotating shaft 211 pass through the two bearings 212 and are fixedly connected with two transmission wheels 215, the number of the transmission wheels 215 is four, the two transmission wheels 215 on one side are drivingly connected through a transmission belt 216, two half gears 214 are fixedly connected outside the rotating shaft 211, the rotating shaft 211 is engaged with the shaking assembly 22 through the half gears 214, the rotating shaft 211 is drivingly connected with the connecting assembly 23 through the transmission wheels 215 and the transmission belt 216, the outer wall of the driven wheel 213 is drivingly connected with the inner wall of the conveyor belt 141, the bearings 212 are clamped on one side of the protective side plate 111, the shaking assembly 22 comprises two positioning plates 221, the two positioning plates 221 are fixedly connected with elastic expansion rods 222 below, the bottom end of the elastic expansion rod 222 is fixedly connected with a limiting block 223, the other side of the limiting block 223 is fixedly connected with a toothed plate 224, one side of the toothed plate 224 is fixedly connected with a connecting block 225, one side of the two connecting blocks 225 is clamped with a mounting cylinder 226, the same rotating cylinder 227 is sleeved in the two mounting cylinders 226, the toothed plate 224 is engaged with the half gear 214, the limiting block 223 is slidingly connected in the limiting groove 113, the two positioning plates 221 are fixedly connected with the two protective side plates 111 respectively, through the design of the turnover assembly 24 and the connecting assembly 23, when the driven wheel 213 rotates, it will drive the first gear 234 to rotate through the rotating shaft 211 and the transmission wheel 215, at this time, the first gear 234 rotates in the same direction with the driven wheel 213, in the process of rotating three hundred and sixty degrees, the first gear 234 will contact the second gear 243 and drive the second gear 243 to rotate in the opposite direction, when the second gear 243 rotates, it will drive the second gear 243 to rotate ninety degrees, so that its rotating direction is opposite to that of the driven wheel 213 and the first gear 234, and after the second gear 243 rotates, it is perpendicular to the conveyor belt 141, thereby blocking the konjak above the conveyor belt 141, so that the konjak accumulates on one side of the push plate 246, with the continuous rotation of the first gear 234, the first gear 234 is out of contact with the second gear 243, at this time, the coil spring 245 will quickly drive the connecting rod 242 to reset, thereby making the push plate 246 push the konjak in the resetting process, since the konjak adheres to the surface of the push plate 246 under the drive of the conveyor belt 141, the push plate 246 can smoothly push the konjak when resetting, completing the turnover processing of the konjak, and through the reciprocating movement, since a plurality of push plates 246 are arranged above the conveyor belt 141, the device can continuously process the konjak during use, in addition, the device can process the residual moisture on the surface of the konjak in all directions three hundred and sixty degrees, ensuring that the overall drying degree of the konjak surface is consistent, thereby ensuring the quality of the device processing konjak and avoiding the situation that the local residual moisture affects the taste of konjac products.

[0054] As another embodiment of the application, the connecting assembly 23 comprises two reinforcing ribs 231, a connecting barrel 232 is clamped in each of the two reinforcing ribs 231, a rotating rod 233 is sleeved in each of the two connecting barrels 232, a first gear 234 is fixedly connected to the opposite end of each of the two rotating rods 233, the first gear 234 is a quarter gear, the reinforcing rib 231 is fixedly connected above the reinforcing plate 112, the rotating rod 233 is in transmission connection with the rotating shaft 211 through the transmission wheel 215 and the transmission belt 216, the flipping assembly 24 is clamped between the two reinforcing ribs 231, the flipping assembly 24 comprises two sleeves 241, a connecting rod 242 is sleeved in each of the two sleeves 241, a second gear 243 is fixedly connected to one end of the connecting rod 242, the two connecting rods 242 are fixedly connected to the two ends of the same driving rod 244 through one end of the two connecting rods 242 passing through the second gear 243, a coil spring 245 is fixedly connected to the outside of each of the two connecting rods 242, a push plate 246 is fixedly connected to the outside of the driving rod 244, a plurality of friction strips 247 are fixedly connected to one side of the push plate 246, the sleeve 241 is clamped on one side of the reinforcing rib 231, the first gear 234 is in meshing connection with the second gear 243, the other end of each of the two coil springs 245 is fixedly connected to the two reinforcing ribs 231, the rotating direction of the second gear 243 is designed to be opposite to that of the rotating shaft 211, so that the conveying belt 141 can guarantee that the konjak adheres to the surface of the push plate 246 when the konjak is pushed to move, and the moving direction of the konjak can increase the friction between the konjak and the push plate 246, so that enough friction is guaranteed when the push plate 246 resets, and the stability of the operation of the device is improved.

[0055] Working principle: the embodiment provides a draining and conveying device for konjak processing, in use, when the driver 12 operates, the conveying assembly 14 is driven to operate, at the same time, the pressure assembly 13 also starts to operate, at this time, the driven assembly 21 operates under the driving of the conveying assembly 14, then, the konjak to be drained is placed above the conveying assembly 14, the gas discharged by the pressure assembly 13 and the high temperature generated are used for drying the konjak, along with the operation of the driven assembly 21, the shaking assembly 22 is lifted under the driving of the driven assembly 21, and the conveying assembly 14 is deformed under the extrusion of the shaking assembly 22; when the shaking assembly 22 is separated from the driven assembly 21, the shaking assembly 22 is quickly reset, and the shaking operation on the konjak above the conveying assembly 14 is completed, at the same time, when the driver 12 operates for one circle, the connecting assembly 23 pushes the flipping assembly 24 to flip the konjak being conveyed on the conveying belt 141;

[0056] When the driver 12 is running, the fan 131 is running synchronously, the driver 12 drives the conveying belt 141 to run, at this time, the konjak is placed above the conveying belt 141, and the konjak can be conveyed, when the konjak is moved twice by the conveying belt 141 and passes below the heater 135 and the exhaust hood 134, the fan 131 injects the gas into the exhaust hood 134 through the pipe 132 and the branch pipe 133, and a large amount of air is discharged from the exhaust hood 134, so that the surface temperature of the konjak is increased, the air flow rate on the surface of the konjak is accelerated, and the evaporation of the water on the surface of the konjak is accelerated, the accelerated dewatering and drying of the konjak are completed, and the driven wheel 213 rotates with the conveying belt 141 when the conveying belt 141 is running, when the half gear 214 rotates by 180 degrees, the half gear 214 is in contact with the toothed plate 224, with the continuous rotation of the half gear 214, the toothed plate 224 and the limiting block 223 are driven to move upwards along the limiting groove 113, when the half gear 214 rotates by 180 degrees again, the toothed plate 224 drives the rotating drum 227 to extrude the transmission belt 216, so that the transmission belt 216 is deformed upwards, when the toothed plate 224 is separated from the half gear 214 due to the rotation of the half gear 214, the elastic expansion rod 222 pushes the limiting block 223 and the rotating drum 227 to reset, so that the conveying belt returns to the original state, and the shaking effect of the conveying belt is realized.

[0057] When the driven wheel 213 rotates, the first gear 234 is driven to rotate through the rotating shaft 211 and the transmission wheel 215, at this time, the first gear 234 rotates in the same direction as the driven wheel 213, in the process of rotating by 360 degrees, the first gear 234 is in contact with the second gear 243 and drives the second gear 243 to rotate in the opposite direction, so that the second gear 243 rotates in the opposite direction as the driven wheel 213 and the first gear 234 by 90 degrees, and is perpendicular to the conveying belt 141, the konjak above the conveying belt 141 is blocked, and the konjak is accumulated on one side of the push plate 246, with the continuous rotation of the first gear 234, the first gear 234 is separated from the second gear 243, the connecting rod 242 is quickly reset by the coil spring 245, and the push plate 246 pushes the konjak in the resetting process, since the konjak is attached to the surface of the push plate 246 under the driving of the conveying belt 141, the push plate 246 can smoothly push the konjak in the resetting process, so that the konjak is turned over, and the process is repeated.

[0058] The preferred embodiments of the present application are disclosed, but the present application is not limited to the embodiments, and those skilled in the art can easily understand the spirit of the present application according to the above embodiments and make different inferences and changes, as long as the inferences and changes do not deviate from the spirit of the present application, and are within the protection scope of the present application.

Claims

1. A draining conveyor for processing konjac, comprising a driver (12), a controller (16) and a conveyor belt (141), characterized in that, Also include, The conveying mechanism (1) comprises a protection assembly (11), a driver (12) arranged in the protection assembly (11), a conveying assembly (14) driven by the driver (12), a support (15), a controller (16) and a pressure assembly (13) connected with the driver (12), wherein the support (15) is arranged below the protection assembly (11), and the controller (16) is located above the support (15); and, The draining mechanism (2) comprises two driven assemblies (21), two shaking assemblies (22) connected with the two driven assemblies (21), a connecting assembly (23) and a turnover assembly (24), wherein the two connecting assemblies (23) are connected with the two driven assemblies (21), and the turnover assembly (24) is connected with the driven assembly (21) through the connecting assembly (23); The conveying assembly (14) comprises a conveying belt (141), and a plurality of draining holes (142) are formed in the conveying belt (141); The driven assembly (21) comprises a rotating shaft (211), two bearings (212) are sleeved on the rotating shaft (211), a driven wheel (213) is fixedly connected outside the rotating shaft (211), and the two ends of the rotating shaft (211) pass through the two bearings (212) and are fixedly connected with two transmission wheels (215), respectively. The rotating shaft (211) is engaged with the shaking assembly (22) through the half gear (214), the rotating shaft (211) is drivingly connected with the connecting assembly (23) through the transmission wheel (215) and the transmission belt (216), the outer wall of the driven wheel (213) is drivingly connected with the inner wall of the conveying belt (141), and the bearing (212) is clamped on one side of the protection side plate (111); The shaking assembly (22) comprises two positioning plates (221), and elastic telescopic rods (222) are fixedly connected below the two positioning plates (221), respectively. The tooth plate (224) is engaged with the half gear (214), and the limiting block (223) is slidingly connected in the limiting groove (113); The connecting assembly (23) comprises two reinforcing ribs (231), a connecting barrel (232) is clamped in each of the two reinforcing ribs (231), a rotating rod (233) is sleeved in each of the two connecting barrels (232), a first gear (234) is fixedly connected to the opposite ends of the two rotating rods (233), and the first gear (234) is a one-fourth gear; The rotating rod (233) is in transmission connection with the rotating shaft (211) through a transmission wheel (215) and a transmission belt (216); The turning subassembly (24) comprises two sleeves (241), the two sleeves (241) are sleeved with connecting rods (242), one end of the connecting rod (242) is fixedly connected with a second gear (243), the two ends of the two connecting rods (242) are fixedly connected with two ends of the same driving rod (244) penetrating through the second gear (243), the two connecting rods (242) are fixedly connected with coil springs (245) outside, the driving rod (244) is fixedly connected with a push plate (246) outside, one side of the push plate (246) is fixedly connected with a plurality of friction strips (247). The sleeve (241) is clamped on one side of the reinforcing rib (231), the first gear (234) is engaged with the second gear (243), and the other ends of the two coil springs (245) are fixedly connected with the two reinforcing ribs (231) respectively.

2. The water draining conveyor for processing of konjak as claimed in claim 1, wherein The protection assembly (11) is fixedly connected with the two drivers (12), the conveying assembly (14) is arranged outside the two drivers (12), the conveying assembly (14) is driven to operate through the driver (12), the pressure assembly (13) is fixedly connected on one side of one of the drivers (12), the pressure assembly (13) is fixedly connected with the protection assembly (11), the lower portion of the protection assembly (11) is fixedly connected with the support (15), the upper portion of the support (15) is fixedly connected with the controller (16), and the controller (16) is electrically connected with the driver (12).

3. The water draining conveyor for processing of konjak as claimed in claim 2, wherein The driven assembly (21) is engaged with the shaking assembly (22), the driven assembly (21) is in transmission connection with the connecting assembly (23), and the turning subassembly (24) is clamped in the connecting assembly (23). The driven assembly (21) is in transmission connection with the conveying assembly (14), the shaking assembly (22) is slidingly connected in the protection assembly (11), and the connecting assembly (23) is fixedly connected above the protection assembly (11).

4. The water draining conveyor for processing of konjak as claimed in claim 3, wherein The protection assembly (11) comprises two protection side plates (111), and the upper portions of the two protection side plates (111) are fixedly connected with reinforcing plates (112), and the sides of the two protection side plates (111) are provided with two limiting grooves (113). The driver (12) is fixedly connected on one side of the protection side plate (111), the pressure assembly (13) is fixedly connected on one side of one of the protection side plates (111), the support (15) is fixedly connected below the protection side plate (111), the driven assembly (21) is clamped with the two protection side plates (111), and the connecting assembly (23) is fixedly connected above the protection side plate (111).

5. The water draining conveyor for processing of konjak as claimed in claim 4, wherein The pressure assembly (13) comprises a fan (131) which is communicated with a pipeline (132), one end of the pipeline (132) is communicated with a plurality of exhaust hoods (134) through a plurality of branch pipes (133), and the adjacent two exhaust hoods (134) are fixedly connected with a heater (135); The exhaust hood (134) and the heater (135) are fixedly connected between the two protective side plates (111), the fan (131) is drivingly connected with the driver (12), and the exhaust hood (134) and the heater (135) are located above the conveying assembly (14).

6. The water draining conveyor for processing of konjak as claimed in claim 5, wherein The reinforcing ribs (231) are fixedly connected above the reinforcing plates (112), the two reinforcing ribs (231) are clamped with the turnover assembly (24), and the positioning plates (221) are fixedly connected with the two protective side plates (111) respectively.

Citation Information

Patent Citations

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    CN110280370A

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    CN220427963U