Drying and feeding equipment

By designing a drying and feeding device with an internal water collection chamber, and using a shaking component to shake off the moisture from the konjac slices and an agitation component to reduce water toxicity, the problem of dripping water from the konjac slices affecting the drying efficiency was solved, achieving a highly efficient drying effect.

CN223538010UActive Publication Date: 2025-11-11西乡长乡豫食品有限公司
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Patent Information

Application Number
CN202423205157.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-11
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing feeding equipment causes severe water dripping when processing konjac slices due to the high moisture content on the slice surface, which affects drying efficiency.

Method used

A drying and feeding device with a built-in water collection chamber was designed. The conveyor belt is shaken by a shaking component to shake off the water, and the drug is mixed by an agitation component to reduce the toxicity of the water. The water is collected by the holes on the conveyor belt and dried in conjunction with a drum drying device.

Benefits of technology

It effectively reduces water stains on konjac slices, increases the drying rate, reduces the toxicity of water in the water collection chamber, and improves drying efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of feeding equipment, and discloses drying feeding equipment which comprises a bottom table internally provided with a water collecting cavity, the upper end of the water collecting cavity is provided with an opening, and the opening of the water collecting cavity is provided with a conveying piece used for conveying konjac slices. The conveying part comprises mounting plates which are oppositely arranged, rotatable transmission rollers are oppositely arranged between the mounting plates, a conveying belt is arranged between the opposite transmission rollers in a sleeving manner, a plurality of leaking holes are uniformly distributed in the conveying belt, and a shaking assembly used for shaking the mounting plates up and down is arranged in the water collecting cavity; the side wall of the bottom table is provided with a medicine adding opening communicated with the water collecting cavity, and a stirring assembly used for stirring water in the water collecting cavity is further arranged in the water collecting cavity. Through the arrangement of the shaking assembly, the shaking assembly can shake the konjak slices on the conveying belt, so that water on the konjak slices can be shaken off, water stains on the konjak slices can be reduced, and the subsequent drying speed of the roller drying device on the konjak slices is increased.
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Description

Technical Field

[0001] This utility model relates to the field of feeding equipment technology, specifically to a drying feeding device. Background Technology

[0002] Konjac is an alkaline food. For people who consume too much acidic food, eating it with konjac can help achieve acid-base balance, which is very beneficial to their health.

[0003] Currently, the processing flow of konjac is as follows: fresh konjac—washing—slicing—drying—discharging—packaging. When transporting the konjac slices to the dryer, a feeding device is often required. Currently, most feeding devices are traditional conveyor belts. While the conveyor belt has a good feeding effect, in actual use, because the konjac is sliced ​​directly after washing, the surface moisture of the konjac slices is relatively high. This easily causes continuous dripping of water while being transported on the conveyor belt, affecting the subsequent drying efficiency. Therefore, improvements are needed. Summary of the Invention

[0004] The purpose of this invention is to provide a drying and feeding device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A drying and feeding device includes a base platform with a water collection chamber. The water collection chamber has an opening at its upper end, and a conveyor for conveying konjac slices is provided at the opening of the water collection chamber. The conveyor includes mounting plates arranged opposite each other, with rotatable transmission rollers arranged opposite each other between the mounting plates. A conveyor belt is sleeved between the opposite transmission rollers, and multiple perforations are evenly distributed on the conveyor belt. A shaking component for shaking the mounting plates up and down is provided inside the water collection chamber. A dosing port communicating with the water collection chamber is provided on the side wall of the base platform, and a stirring component for agitating the water in the water collection chamber is also provided inside the water collection chamber.

[0007] Furthermore, the shaking assembly includes a rotating shaft disposed in the water collection cavity and a hinge seat fixedly installed on the lower side of the connecting plate. The opposite ends of the rotating shaft are provided with drive wheels, which are connected to each other by a connecting shaft. The connecting shaft is located at the edge of the drive wheels, and a drive plate is hingedly connected to the connecting shaft. One end of the drive plate is hingedly connected to the hinge seat.

[0008] Furthermore, the agitation assembly includes rotating rods disposed opposite each other within the water collection cavity. The opposing rotating rods are located on both sides of the rotating shaft and are arranged parallel to each other. Multiple agitation plates are evenly distributed on the outer side wall of the rotating rods. A first sprocket is provided on each opposing rotating shaft, and a second sprocket is provided on each opposing rotating rod. The first sprockets and the second sprockets are connected by a chain.

[0009] Furthermore, the opposite sidewalls of the base extend upward to form extensions, and the inner sidewalls of the opposite extensions are provided with limiting grooves, and the opposite outer sidewalls of the mounting plate are provided with limiting blocks, which are slidably positioned within the corresponding limiting grooves.

[0010] Furthermore, a first motor is provided on the mounting plate, one end of one of the two transmission rollers is connected to the output end of the first motor, and a slot with an upper opening is provided on the side wall of the extension.

[0011] Furthermore, a guide hopper is provided on one side of the base platform and below the conveyor belt.

[0012] Furthermore, a placement plate is provided opposite to the water collection cavity, the placement plate is arranged along the length of the water collection cavity, and a rubber pad is provided on the upper side wall of the placement plate.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This utility model, through the setting of the shaking component, enables the shaking component to shake the mounting plate, which in turn causes the mounting plate to shake the transmission roller and transmission belt, thereby causing the konjac slices on the conveyor belt to shake off the water on the konjac slices, thus reducing water stains on the konjac slices and accelerating the drying rate of the konjac slices by the subsequent drum drying device.

[0015] This invention, through the setting of the stirring component, enables the stirring component to stir the water in the water collection chamber, thereby allowing the drug to be fully mixed with the water in the water collection chamber, thus better reducing the toxicity of the water in the water collection chamber. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of a drying and feeding device according to the present invention.

[0017] Figure 2 This is a schematic diagram of the water outlet pipe and the chemical dosing port in this utility model.

[0018] Figure 3 This is a schematic diagram of the mounting plate and hinge seat in this utility model.

[0019] Figure 4 This is a schematic diagram of the vibration component in this utility model.

[0020] Figure 5 This is a schematic diagram of the structure of the placement plate and the limiting groove in this utility model.

[0021] Figure 6 This is a cross-sectional schematic diagram of the base platform of this utility model.

[0022] Figure 7 This is a schematic diagram of the agitation component in this utility model.

[0023] The meanings of the labels in the diagram are as follows: 100, base platform; 110, mounting plate; 120, first motor; 130, limit block; 140, second motor; 160, conveyor belt; 170, guide hopper; 180, support leg;

[0024] 200. Side panel; 220. Dosing port; 230. Water outlet pipe;

[0025] 310. Connecting plate; 320. Fixing block; 330. Connecting rod;

[0026] 400, transmission roller; 410, drive plate; 420, drive wheel; 430, rotating shaft; 440, first sprocket;

[0027] 500, Placement plate; 510, Limiting groove; 530, Groove opening; 540, Rotating rod; 550, Agitating plate; 560, Chain; 570, Water collection chamber;

[0028] 600, connecting shaft; 700, second sprocket. Detailed Implementation

[0029] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings and embodiments. It should be understood that the embodiments are merely illustrative of this utility model and are not intended to limit it.

[0030] The following is in conjunction with the appendix Figures 1-7 This embodiment will be described in further detail.

[0031] Combination Figures 1-7 As shown, a drying and feeding device in this embodiment includes a base platform 100 with a water collection chamber 570 inside. The water collection chamber 570 has an opening at its upper end, and a conveyor for conveying konjac slices is provided at the opening of the water collection chamber 570. The conveyor includes mounting plates 110 arranged opposite each other, with rotatable transmission rollers 400 arranged opposite each other between the mounting plates 110. A conveyor belt 160 is sleeved between the opposite transmission rollers 400. Multiple perforations are evenly distributed on the conveyor belt 160. A shaking component for shaking the mounting plates 110 up and down is provided inside the water collection chamber 570. A dosing port 220 communicating with the water collection chamber 570 is provided on the side wall of the base platform 100. A stirring component for stirring the water in the water collection chamber 570 is also provided inside the water collection chamber 570.

[0032] In actual use, the opposite sidewalls of the base 100 extend upward to form extensions, and the conveying component is installed between the opposite extensions.

[0033] Specifically, the inner sidewalls of the extension are provided with limiting grooves 510 along their height direction. The upper end of the limiting grooves 510 is open. The side of the mounting plate 110 is provided with limiting blocks 130. The limiting blocks 130 are slidably disposed in the corresponding limiting grooves 510, so that the mounting plate 110 can be lifted and lowered at the upper opening of the base platform 100 by the limiting effect of the limiting grooves 510. The lower sidewalls of the mounting plate 110 are connected to each other in the middle by connecting plates 310. A first motor 120 is installed on the sidewall of one of the mounting plates 110. The first motor 120 is used to drive one of the two transmission rollers 400 to rotate, so as to realize the conveying operation of the conveyor belt 160.

[0034] In actual use, the feeding device is used in conjunction with the existing drum drying device. The konjac slices are placed on the conveyor belt 160 from the feeding end on one side of the base platform 100. The first motor 120 drives one of its transmission rollers 400 to rotate, so that the conveyor belt 160 can move. The konjac slices can be conveyed with the movement of the conveyor belt 160 and can be conveyed to the discharge end on the other side of the base platform 100. From the discharge end, they fall into the hopper of the drum drying device, so that the konjac slices can enter the drum drying device for drying.

[0035] Specifically, in order to better allow the konjac slices to enter the hopper of the drum drying device, a guide hopper 170 is provided on the other side of the base platform 100 and below the conveyor belt 160. The guide hopper 170 can better transport the konjac slices output from the conveyor belt 160 into the drum drying device.

[0036] During the conveying process, the konjac slices are shaken by a shaking component, which in turn shakes the mounting plate 110, which in turn shakes the transmission roller 400 and the conveyor belt 160. This shakes the konjac slices on the conveyor belt 160, causing water to fall off. The drainage holes on the conveyor belt 160 allow the water to fall off the konjac slices to flow into the water collection chamber 570 for collection, thereby reducing water stains on the konjac slices and accelerating the drying rate of the subsequent drum drying device.

[0037] In practical use, since fresh konjac slices contain toxins, the water entering the water collection chamber 570 also contains a certain degree of toxicity. The addition port 220 allows operators to add medication (such as chlorine peroxide) to the water collection chamber 570 to reduce its toxicity. To ensure thorough mixing of the medication with the water in the water collection chamber 570, a stirring component is used to agitate the water, thereby effectively reducing its toxicity.

[0038] Combination Figures 3-6 As shown, in this embodiment, the shaking component includes a rotating shaft 430 disposed in the water collection cavity 570 and a hinge seat fixedly installed on the lower side of the connecting plate 310. The opposite ends of the rotating shaft 430 are provided with driving wheels 420. The driving wheels 420 are connected to each other by a connecting shaft 600. The connecting shaft 600 is located at the edge of the driving wheel 420. A driving plate 410 is hingedly connected to the connecting shaft 600. One end of the driving plate 410 is hingedly connected to the hinge seat.

[0039] In actual use, the rotating shaft 430 is arranged along the width direction of the water collection cavity 570. A second motor 140 for driving one of the two rotating shafts 430 to rotate is installed on the outer side wall of the base 100. Since the drive wheel 420 is fixed to one end of the rotating shaft 430 and the two drive wheels 420 are connected by the connecting shaft 600, the second motor 140 can drive the two rotating shafts 430 to rotate synchronously, that is, drive the two drive wheels 420 to rotate synchronously. Since the two ends of the drive plate 410 are respectively hinged to the hinge seat and the connecting shaft 600, and through the cooperation between the limiting groove 510 and the limiting block 130, the synchronous rotation of the drive wheel 420 can drive the mounting plate 110 to vibrate in the up and down direction, so that the konjac slices can be vibrated to reduce water stains on the konjac slices and speed up the drying rate of the konjac slices by the drum drying device.

[0040] In actual use, the hinge seat includes a fixing block 320 disposed on the lower side of the mounting plate 110, and the opposing fixing blocks 320 are connected by a connecting rod 330. One end of the drive plate 410 is rotatably mounted on the connecting rod 330.

[0041] When the mounting plate 110 moves to the highest point, the limiting block 130 is still located in the limiting groove 510, so that the limiting block 130 cannot leave the limiting groove 510, thus preventing the mounting plate 110 from leaving the base platform 100.

[0042] The rotating shaft 430 is mounted on the corresponding side wall of the water collection cavity 570 via a bearing seat, thereby enabling the rotating shaft 430 to be rotatably mounted within the water collection cavity 570.

[0043] The water collection chamber 570 has an opening on one side, and a detachable side plate 200 is provided at the opening position by screws. The detachable side plate 200 allows the shaking component and the agitation component inside the water collection chamber 570 to be installed.

[0044] Specifically, a rubber pad is adhered to one side of the side plate 200, which can better prevent water leakage in the water collection cavity 570.

[0045] Combination Figure 5 As shown, in order to avoid interference between the first motor 120 and the mounting plate 110 when it vibrates, in this embodiment, the side wall of the extension is provided with a slot 530 with an upper opening. When the mounting plate 110 moves down and the limiting block 130 overlaps with the bottom wall of the limiting groove 510, the first motor 120 can be located in the slot 530. When the mounting plate 110 moves up, the first motor 120 can move up along the slot 530. Thus, interference between the first motor 120 and the mounting plate 110 when it vibrates is better avoided.

[0046] Combination Figure 5 As shown, in this embodiment, a placement plate 500 is provided opposite to the opening of the water collection cavity 570. The placement plate 500 is arranged along the length direction of the water collection cavity 570, and a rubber pad is provided on the upper side wall of the placement plate 500.

[0047] In actual use, the lower end of the mounting plate 110 abuts against the upper side of the placement plate 500. With the rubber pad, when the mounting plate 110 shakes up and down, the rubber pad can buffer and dampen the mounting plate 110, thereby better preventing the first motor 120 from directly abutting against the bottom wall of the slot 530 when it moves down, thus better protecting the first motor 120.

[0048] Combination Figure 7 As shown, in this embodiment, the agitation assembly includes rotating rods 540 disposed opposite each other in the water collection cavity 570. The opposite rotating rods 540 are respectively located on both sides of the rotating shaft 430 and are arranged parallel to each other with the rotating shaft 430. A plurality of agitating plates 550 are evenly provided on the outer side wall of the rotating rods 540. A first sprocket 440 is provided on each opposite rotating shaft 430, and a second sprocket 700 is provided on each opposite rotating rod 540. The first sprocket 440 and the corresponding second sprocket 700 are connected by a chain 560.

[0049] In actual use, when the second motor 140 drives the two rotating shafts 430 to rotate synchronously, the two rotating shafts 430 can drive the corresponding first sprocket 440 to rotate. Through the setting of the chain 560, the first sprocket 440 can drive the corresponding second sprocket 700 to drive the two rotating rods 540 to rotate. In turn, the rotating rods 540 can drive the stirring plate 550 to stir the water in the water collection chamber 570, so that the drug can be fully mixed with the water in the water collection chamber 570, thereby better reducing the toxicity of the water in the water collection chamber 570.

[0050] In actual use, both ends of the two rotating rods 540 are rotatably mounted on the side wall of the water collection cavity 570 through bearings, so that the two rotating rods 540 can be rotatably mounted in the water collection cavity 570.

[0051] Among them, a water outlet pipe 230 is provided on one side wall of the base 100, which is connected to the water collection chamber 570. Through the setting of the water outlet pipe 230, the water in the water collection chamber 570 can be discharged through the water outlet pipe 230.

[0052] The base 100 is equipped with support legs 180 at its four corners. The support legs 180 support the base 100, allowing it to be raised off the ground, which makes it easier for operators to collect the water discharged from the water outlet pipe 230.

[0053] In practical use, the konjac slices are first placed on the conveyor belt 160 from the feeding end of the mounting plate 110 for conveying. Medicine is added into the dosing port 220, and the second motor 140 is started. This allows the second motor 140 to drive the two rotating shafts 430 to drive the corresponding drive wheels 420 to rotate synchronously. Since the two ends of the drive plate 410 are hinged to the hinge seat and the connecting shaft 600, and through the cooperation between the limiting groove 510 and the limiting block 130, the synchronous rotation of the drive wheels 420 causes the mounting plate 110 to vibrate vertically, thereby allowing the konjac slices to be properly prepared. The shaking is used to reduce water stains on the konjac slices and accelerate the drying rate of the konjac slices in the subsequent drum drying device. While the rotating shaft 430 rotates, the two rotating shafts 430 can drive the corresponding first sprocket 440 to rotate. Through the setting of the chain 560, the first sprocket 440 can drive the corresponding second sprocket 700 to drive the two rotating rods 540 to rotate. In turn, the rotating rods 540 can drive the stirring plate 550 to stir the water in the water collection chamber 570, so that the drug can be fully mixed with the water in the water collection chamber 570, which can better reduce the toxicity of the water in the water collection chamber 570.

[0054] In summary, the above description is only a preferred embodiment of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall fall within the scope of the patent of the present utility model.

Claims

1. A drying and feeding device, comprising a base platform (100) with an internal water collection chamber (570), wherein the upper end of the water collection chamber (570) is open, characterized in that: The opening of the water collection chamber (570) is provided with a conveyor for conveying konjac slices; the conveyor includes mounting plates (110) arranged opposite each other, with rotatable transmission rollers (400) arranged opposite each other between the mounting plates (110), and a conveyor belt (160) sleeved between the opposite transmission rollers (400). Multiple leakage holes are evenly distributed on the conveyor belt (160). The water collection chamber (570) is provided with a shaking component for shaking the mounting plates (110) up and down; the side wall of the base (100) is provided with a drug inlet (220) that connects to the water collection chamber (570), and the water collection chamber (570) is also provided with a stirring component for stirring the water in the water collection chamber (570).

2. The drying and feeding equipment according to claim 1, characterized in that: The shaking assembly includes a rotating shaft (430) disposed in the water collection cavity (570) and a hinge seat fixedly installed on the lower side of the connecting plate (310). The rotating shaft (430) has a drive wheel (420) disposed at opposite ends. The drive wheels (420) are connected to each other by a connecting shaft (600). The connecting shaft (600) is located at the edge of the drive wheel (420). A drive plate (410) is hinged to the connecting shaft (600). One end of the drive plate (410) is hinged to the hinge seat.

3. The drying and feeding equipment according to claim 2, characterized in that: The agitation assembly includes rotating rods (540) disposed opposite each other in the water collection chamber (570). The opposite rotating rods (540) are located on both sides of the rotating shaft (430) and are arranged parallel to each other. Multiple agitation plates (550) are evenly provided on the outer side wall of the rotating rods (540). A first sprocket (440) is provided on each opposite rotating shaft (430), and a second sprocket (700) is provided on each opposite rotating rod (540). The first sprocket (440) and the second sprocket (700) are connected by a chain (560).

4. The drying and feeding equipment according to claim 2, characterized in that: The opposite sidewall of the base (100) extends upward to form an extension. The inner sidewall of the opposite extension is provided with a limiting groove (510), and the opposite outer sidewall of the mounting plate (110) is provided with a limiting block (130). The limiting block (130) is slidably positioned within the corresponding limiting groove (510).

5. The drying and feeding equipment according to claim 4, characterized in that: The mounting plate (110) is provided with a first motor (120), one end of one of the two transmission rollers (400) is connected to the output end of the first motor (120), and the side wall of the extension is provided with a slot (530) with an upper opening.

6. The drying and feeding equipment according to claim 1, characterized in that: A guide hopper (170) is provided on the other side of the base (100) and below the conveyor belt (160).

7. The drying and feeding equipment according to claim 4, characterized in that: A placement plate (500) is provided inside the water collection cavity (570). The placement plate (500) is arranged along the length of the water collection cavity (570), and a rubber pad is provided on the upper side wall of the placement plate (500).