Draining and draining dryer

By designing an automatic screening and turning drain dryer, the problems of low efficiency caused by inconsistent sizes and manual turning in shiitake mushroom drying equipment have been solved, achieving a highly efficient and uniform shiitake mushroom drying process.

CN223515697UActive Publication Date: 2025-11-07XIXIA YUANFENG MUSHROOM MASCH CO LTD
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Patent Information

Application Number
CN202422414930.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-11-07
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

Existing shiitake mushroom drying equipment cannot screen shiitake mushrooms according to their size, resulting in over-drying of undersized shiitake mushrooms, which affects production efficiency. In addition, manual turning is required to ensure uniform heating, which increases the input of manpower and resources.

Method used

A draining and drying machine was designed, which includes a movable chamber, a dispersing chamber, and a drying chamber. The machine automatically sieves and turns shiitake mushrooms through components such as an electric telescopic rod, a motor, and a sieve plate. Combined with the heat control of the heating resistance wire and the fan, it achieves uniform drying.

Benefits of technology

It enables automatic sieving and turning of shiitake mushrooms according to their size, improving drying efficiency, reducing manual operation, and ensuring heat uniformity and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of mushroom drying, and particularly relates to a draining dryer which comprises a working box, one end of a second electric telescopic rod is fixedly connected with the center of the top end of a pressing plate, the pressing plate is slidably installed in a movable cavity, a first baffle is slidably installed at the bottom end of the movable cavity, and one end of the first baffle is connected with a connecting base; a mounting cavity is formed in the connecting base, a drying assembly is arranged in the mounting cavity, the drying assembly is connected with one end of a first inserting plate, one end of a second inserting plate and one end of a third inserting plate, sieving plates are arranged below the first inserting plate, the second inserting plate and the third inserting plate, an oscillation assembly is arranged at the bottom end of the drying cavity, and the oscillation assembly is connected with the sieving plates; the shiitake mushroom drying equipment solves the problems that existing shiitake mushroom drying equipment cannot screen and uniformly dry shiitake mushrooms according to different sizes of the shiitake mushrooms, the shiitake mushrooms which are too small are easy to dry excessively at the moment, in order to enable the shiitake mushrooms to be heated uniformly, manual turning is generally needed, and the production efficiency is not high.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of lentinus edodes drying, and particularly relates to a draining and draining dryer. BACKGROUND

[0002] Lentinus edodes has been a common food on people's table, and it is nutritious and delicious. Fresh lentinus edodes is not easy to store, therefore, farmers who plant lentinus edodes usually sell it after drying. The existing lentinus edodes drying equipment has the problem that the drying chamber is not evenly heated, and the lower layer is usually dried, while the upper layer is still moist. The moist lentinus edodes is easy to deteriorate and turn yellow in the hot drying chamber, which affects the appearance of the lentinus edodes sold,

[0003] The existing lentinus edodes drying equipment cannot screen the lentinus edodes according to the size of the lentinus edodes, and the lentinus edodes is uniformly dried. At this time, the lentinus edodes that is too small is easy to be over-dried, which affects the production efficiency of the lentinus edodes. In order to make the lentinus edodes evenly heated, manual turning is usually required, which increases the labor and material input and reduces the production efficiency. UTILITY MODEL CONTENTS

[0004] In view of the above problems, the utility model aims to provide a draining and draining dryer, which solves the problem that the existing lentinus edodes drying equipment cannot screen the lentinus edodes according to the size of the lentinus edodes, and the lentinus edodes is uniformly dried. At this time, the lentinus edodes that is too small is easy to be over-dried, which affects the production efficiency of the lentinus edodes. In order to make the lentinus edodes evenly heated, manual turning is usually required, which increases the labor and material input and reduces the production efficiency.

[0005] To achieve the above purpose, the utility model adopts the technical scheme: a draining and draining dryer, which comprises a working box, an active cavity is formed in the upper part of the working box, and the bottom end of the active cavity is connected with a scattering cavity, the bottom end of the scattering cavity is connected with a drying cavity, one side of the inner wall of the active cavity is connected with one end of a feeding hopper in a penetrating manner, the feeding hopper is arranged on the top side of the working box, an electric telescopic rod two is arranged in the top part of the working box, one end of the electric telescopic rod two penetrates the top end of the active cavity and is connected with the active cavity in a sliding manner, one end of the electric telescopic rod two is fixedly connected with the top center of a pressing plate, the pressing plate is arranged in the active cavity in a sliding manner, a baffle one is arranged in the bottom end of the active cavity in a sliding manner, one end of the baffle one penetrates the other side of the working box and is connected with the working box in a sliding manner, one end of the baffle one is connected with a connecting seat, the connecting seat is arranged on the other side of the working box, an installation cavity is formed in the connecting seat, and a drying assembly is arranged in the installation cavity, the drying assembly is connected with one end of a plug-in board one, a plug-in board two and a plug-in board three, the other end of the plug-in board one, the plug-in board two and the plug-in board three penetrates the other side of the working box and is arranged in the drying cavity in a sliding manner, and the plug-in board one, the plug-in board two and the plug-in board three are all provided with a screening plate below, and an oscillation assembly is arranged at the bottom end of the drying cavity, and the oscillation assembly is connected with the screening plate.

[0006] The utility model discloses the beneficial effect is:

[0007] Through the controller starts heating resistance wire and fan, fan rotates and heat of heating resistance wire is blown to the inside of guide chamber two through flow hole, and the hot air in guide chamber two flows to the inside of flow chamber again, and the hot air is sprayed through the air-permeable hole, and the drying of lentinus edodes can be started, when the drying of small size lentinus edodes is completed, the electric telescopic plate of specified position can be started through the controller to prevent the hot air in guide chamber two from flowing to the plug-in board one or plug-in board two or plug-in board three.

[0008] Through the controller starts motor one, the movable block rotates in the recess, and the movable block is extruded upwards in the process of rotating, and three groups of sieving plates are guided by the guide plate, and the three groups of sieving plates are moved upwards in the drying cavity at the same time, the sliding block slides in the sliding groove, and the spring is in the elastic expansion state, when the movable block does not rotate to extrude the sieving plate upwards, the elastic potential of the spring makes the sieving plate slide downwards, and the sieving plate that slides up and down can better sieve the lentinus edodes of different sizes, and the lentinus edodes of different sizes can be dried at the same time, and the sieving plate can also oscillate to turn over the lentinus edodes and better dry the lentinus edodes in the process of drying, and the lentinus edodes above the sieving plate of the corresponding position in the drying cavity can be taken out by opening the box door.

[0009] In order to discharge most of the water in the lentinus edodes and increase the subsequent drying effect:

[0010] As a further improvement of the above technical solution: the inside of the baffle one is provided with a guide cavity one, and a plurality of water-permeable holes are formed in the top end of the guide cavity one and penetrate through the top of the baffle one, one end of the guide cavity one penetrates through the fixedly installed drain pipe, and the drain pipe penetrates through the connecting seat and is fixedly connected therewith.

[0011] The beneficial effect of the improvement is: when using the device, the lentinus edodes can be poured into the inside of the movable cavity through the feed hopper, the initial state of the baffle one separates the movable cavity and the scattering cavity into two independent spaces at this time, and the poured lentinus edodes falls on the top of the baffle one, the electric telescopic rod two is started through the controller at this time, the sliding pressure plate is extruded by the electric telescopic rod two, the water in its inside can be discharged through the water-permeable hole into the guide cavity one, and the excess water can be discharged through the drain pipe, and the pressure plate can discharge most of the water to increase the subsequent drying effect.

[0012] In order to insert a plurality of small holes on the surface of the lentinus edodes, increase the drying efficiency:

[0013] As a further improvement of the above technical solution: one side of the working box is fixedly provided with a motor two, and a sub-rotating shaft of the motor two penetrates through one side of the inner wall of the dispersing cavity and is rotationally connected thereto, one end of the sub-rotating shaft of the motor two is fixedly connected to the rotating rod, and the other end of the rotating rod is rotationally connected to the other side of the inner wall of the dispersing cavity, and a plurality of beating plates are fixedly arranged on the outer side of the rotating rod, and a plurality of needles are arranged on the two side surfaces of the beating plate.

[0014] The beneficial effects of the improvement are: when the water inside the shiitake mushrooms is squeezed out, the electric telescopic rod one is started by the controller, at this time the electric telescopic rod one is extended, driving the connecting seat to slide outward, at the same time the baffle one connected with the connecting seat will slide outward, so that the bottom end of the movable cavity is communicated with the top end of the dispersing cavity, at this time the squeezed shiitake mushrooms fall into the dispersing cavity, at this time the initial state of the baffle two is to separate the dispersing cavity from the drying cavity, so that the shiitake mushrooms fall on the baffle two, the motor two is started by the controller to drive the rotating rod to rotate the beating plate, the rotating beating plate beats the shiitake mushrooms, and the needles pierce a plurality of small holes on the surface of the shiitake mushrooms, increasing the drying efficiency.

[0015] In order to make the shiitake mushrooms fall into the drying cavity:

[0016] As a further improvement of the above technical solution: an installation groove is formed at the top end of one side of the working box, and a motor three is fixedly arranged in the installation groove, a sub-rotating shaft of the motor three is provided with a gear, and one side of the gear is meshingly connected with a toothed block, a plurality of toothed blocks are equidistantly fixedly arranged at the bottom end center of the baffle two, the baffle two is slidingly arranged at the bottom end of the dispersing cavity, and one end of the baffle two penetrates through one side of the working box and is slidingly connected thereto.

[0017] The beneficial effects of the improvement are: after the shiitake mushrooms are beaten, the motor three is started by the controller, at this time the gear connected with the sub-rotating shaft thereof is rotated, and the rotating gear can make the baffle two slide outward due to the meshing connection of the toothed block, at this time the beaten shiitake mushrooms will fall into the drying cavity.

[0018] In order to screen and shake the shiitake mushrooms:

[0019] As the further improvement of the above technical scheme: the sieve plate is provided with three groups, and the mesh size of the three groups of sieve plates gradually decreases from top to bottom, and the mesh of the lowermost sieve plate is solid, the center of the two ends of the sieve plate is fixedly provided with a sliding block, and the center of the sliding block is penetrated and slidably provided with a guide rod, the guide rod is fixedly provided in the sliding groove, and the sliding groove is provided with three groups of guide rods on the inner wall of the drying cavity, the outer side of the top end of the guide rod is sleeved and provided with a spring, and the two ends of the spring are respectively fixedly connected with the top surface of the sliding block and the inner top surface of the sliding groove, the sieve plate is connected by a plurality of guide plates, the oscillation assembly is composed of a motor and a movable block, a groove is formed in the center of the bottom end of the drying cavity, and a movable block is rotatably arranged in the groove, and one end of the movable block is fixedly connected with the sub-rotating shaft of the motor, the motor is fixedly arranged at the center of the bottom end of the front side of the working box, and the sub-rotating shaft of the motor penetrates through one side of the inner wall of the groove and is rotatably connected therewith, the movable block strikes the bottom end of the lowermost sieve plate, and three groups of material taking windows are formed in the front side of the drying cavity and the front side of the working box, and the box door is hingedly arranged.

[0020] The beneficial effects of the improvement are: the controller starts the motor, at this time the movable block rotates in the groove, and the movable block extrudes the lowermost sieve plate upward during rotation, and the three groups of sieve plates are connected by guide plates, so that the three groups of sieve plates move upward in the drying cavity at the same time, at this time the sliding block slides in the sliding groove, and the spring is in elastic expansion state, when the movable block does not provide upward force to the sieve plate, the elastic potential energy of the spring makes the sieve plate slide downward, and the sieve plate that slides up and down can better separate different sizes of shiitake mushrooms, that is, different sizes of shiitake mushrooms can be dried, and the sieve plate can also oscillate to turn over the shiitake mushrooms during drying, so that the shiitake mushrooms can be better dried, and the shiitake mushrooms above the corresponding position of the sieve plate in the drying cavity can be taken out by opening the box door.

[0021] In order to prevent the hot gas in the guide cavity from flowing into the plugboard one or the plugboard two or the plugboard three:

[0022] As a further improvement of the above technical solution: the drying assembly is composed of a second flow guide cavity, an electric telescopic plate, a heating resistance wire, a fan, and air holes, the fan is arranged in the mounting cavity, and a mounting groove is formed in the inner wall of the mounting cavity, the heating resistance wire is arranged in the mounting groove, a second flow guide cavity is formed in the inner part of the connecting seat and arranged on one side of the mounting cavity, a plurality of flow holes are formed in the inner wall of the one side of the second flow guide cavity and penetrate the inner wall of the mounting cavity, three groups of electric telescopic plates are arranged in the inner part of the connecting seat, one end of each electric telescopic plate penetrates the inner wall of the second flow guide cavity and is connected with the inner wall in a sliding manner, one end of the electric telescopic plate arranged in the middle is fixedly provided with a blocking plate, a flow cavity is formed in the inner part of each of the plug-in plate one, the plug-in plate two and the plug-in plate three, and a plurality of air holes are formed in the lower part of each of the plug-in plate one, the plug-in plate two and the plug-in plate three and penetrate the flow cavity, one end of the flow cavity penetrates the second flow guide cavity, and one end of the flow cavity arranged in the plug-in plate two is connected with the blocking plate in a fitting manner.

[0023] The improved device has the beneficial effects that: the heating resistance wire and the fan are started by the controller, at this time, the fan rotates to blow the hot air of the heating resistance wire into the second flow guide cavity through the flow holes, the hot air in the second flow guide cavity flows into the flow cavity, and the hot air is sprayed out through the air holes, so that the drying of the shiitake mushrooms can be started, and when the drying of the shiitake mushrooms of small specifications is completed, the electric telescopic plate at the specified position is started by the controller, so that the flow of the hot air in the second flow guide cavity to the plug-in plate one, the plug-in plate two or the plug-in plate three is prevented.

[0024] In order to control the device uniformly,

[0025] As a further improvement of the above technical solution: the front side of the working box is provided with a controller, and the controller is electrically connected with the motor two, the electric telescopic rod one, the heating resistance wire, the fan, the electric telescopic rod two, the motor three and the motor one.

[0026] The improved device has the beneficial effects that: the device is controlled uniformly.

[0027] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a cross-sectional structure schematic view of the device;

[0029] Figure 2 It is a plug-in plate one, a plug-in plate two and a plug-in plate three structure schematic view of the device;

[0030] Figure 3 It is a beating plate structure schematic view of the device;

[0031] Figure 4 It is a gear structure schematic view of the device;

[0032] Figure 5 The utility model discloses a slider structure schematic view;

[0033] In the drawing: 1, working box, 2, baffle one, 3, flow guide chamber one, 4, drain pipe, 5, connecting seat, 6, movable cavity, 7, scattering chamber, 8, motor two, 9, beating plate, 10, stop plate, 11, baffle two, 12, plugboard one, 13, plugboard two, 14, plugboard three, 15, sliding slot, 16, sieve plate, 17, movable block, 18, electric telescopic rod one, 19, flow guide chamber two, 20, installation cavity, 21, electric telescopic plate, 22, heating resistance wire, 23, fan, 24, electric telescopic rod two, 25, air hole, 26, lancet, 27, gear, 28, tooth block, 29, motor three, 30, slider, 31, guide plate. DETAILED DESCRIPTION

[0034] In order to make the person skilled in the art better understand the technical scheme of the utility model, the utility model is described in detail below in conjunction with the drawings, and the description in this part is only exemplary and explanatory, and should not have any limiting effect on the protection scope of the utility model.

[0035] As Figures 1-5 As shown in a kind of water draining dryer, including working box 1, the upper inside of the working box 1 is equipped with movable cavity 6, and the bottom end of movable cavity 6 is connected through scattering cavity 7, the bottom end of scattering cavity 7 is connected through drying cavity, one side inner wall of movable cavity 6 is fixedly connected with the one end of feed hopper, and the feed hopper is arranged in the top side of working box 1, the top inside of the working box 1 is equipped with electric telescopic rod two 24, and the one end of electric telescopic rod two 24 is connected through the top of movable cavity 6 and is slidably connected with it, the one end of electric telescopic rod two 24 is fixedly connected with the top center of pressing plate, the pressing plate is slidably arranged in the inside of movable cavity 6, the bottom end of movable cavity 6 is slidably arranged with baffle one 2, the one end of baffle one 2 is connected through the other side of working box 1 and is slidably connected with it, and the one end of baffle one 2 is connected with connecting seat 5, the connecting seat 5 is arranged in the other side of working box 1, the inside of the connecting seat 5 is equipped with installation cavity 20, and drying assembly is arranged in installation cavity 20, the one end of the drying assembly is connected with plugboard one 12, plugboard two 13, plugboard three 14, the other end of plugboard one 12, plugboard two 13, plugboard three 14 is slidably arranged in drying cavity through the other side of working box 1, and the lower of plugboard one 12, plugboard two 13, plugboard three 14 is all provided with sieve plate 16, the bottom end of drying cavity is provided with oscillation assembly, and the oscillation assembly is connected with sieve plate 16.

[0036] The inside of the baffle 2 is provided with a flow guide cavity 3, and the top end of the flow guide cavity 3 is provided with a plurality of water holes penetrating through the upper side of the baffle 2, one end of the flow guide cavity 3 is provided with a drain pipe 4 penetrating through and fixedly connected with the connecting seat 5; when using the device, the shiitake mushrooms can be poured into the inside of the movable cavity 6 through the feed hopper, at this time the initial state of the baffle 2 separates the movable cavity 6 and the scattering cavity 7 into two independent spaces, and the poured shiitake mushrooms fall on the upper side of the baffle 2, the controller starts the electric telescopic rod 2, at this time the electric telescopic rod 2 drives the pressing plate to slide downward, the sliding pressing plate extrudes the shiitake mushrooms, and the water in the shiitake mushrooms can be discharged through the water holes into the flow guide cavity 3, at this time the excess water can be discharged through the drain pipe 4, and the pressing plate can discharge most of the water to increase the subsequent drying effect.

[0037] One side of the working box 1 is fixedly provided with a motor 2, and the sub-rotating shaft of the motor 2 penetrates through and is rotatably connected with one side of the inner wall of the scattering cavity 7, one end of the sub-rotating shaft of the motor 2 is fixedly connected with the rotating rod, and the other end of the rotating rod is rotatably connected with the other side of the inner wall of the scattering cavity 7, and a plurality of beating plates 9 are fixedly arranged on the outer side of the rotating rod, and a plurality of needles 26 are arranged on the two side surfaces of the beating plate 9; after the water in the shiitake mushrooms is extruded and discharged, the controller starts the electric telescopic rod 1, at this time the electric telescopic rod 1 extends, drives the connecting seat 5 to slide outward, and the baffle 2 connected with the connecting seat 5 slides outward, so that the bottom end of the movable cavity 6 is communicated with the top end of the scattering cavity 7, at this time the extruded shiitake mushrooms fall into the scattering cavity 7, at this time the initial state of the baffle 2 separates the scattering cavity 7 and the drying cavity, so that the shiitake mushrooms fall on the baffle 2, the controller starts the motor 2 to drive the rotating rod to rotate the beating plate 9, the rotating beating plate 9 beats the shiitake mushrooms, and the needles 26 pierce a plurality of small holes on the surface of the shiitake mushrooms to increase the drying efficiency.

[0038] The top end of one side of the working box 1 is provided with a mounting groove, and a motor 3 is fixedly arranged in the mounting groove, a gear 27 is arranged at the sub-rotating shaft of the motor 3, and one side of the gear 27 is meshingly connected with a toothed block 28, and a plurality of toothed blocks 28 are equidistantly fixedly arranged at the bottom end center of the baffle 2, the baffle 2 is slidingly arranged at the bottom end of the scattering cavity 7, and one end of the baffle 2 penetrates through one side of the working box 1 and is slidingly connected therewith; after the shiitake mushrooms are beaten, the controller starts the motor 3, at this time the gear 27 connected with the sub-rotating shaft of the motor 3 rotates, and the rotating gear 27 can drive the baffle 2 to slide outward due to the meshing connection of the toothed block 28, at this time the beaten shiitake mushrooms fall into the drying cavity.

[0039] The sifting plate 16 is provided with three groups, and the mesh size of the three groups of sifting plate 16 is gradually decreased from top to bottom, and the lowermost sifting plate 16 is solid. The center of both ends of the sifting plate 16 is fixedly provided with a sliding block 30, and the center of the sliding block 30 is slidably provided with a guide rod. The guide rod is fixedly arranged in the sliding groove 15, and the sliding groove 15 is provided with three groups of guide rods in the inner wall of the drying cavity. The top end of the guide rod is provided with a spring outside, and the two ends of the spring are fixedly connected with the top surface of the sliding block 30 and the inner top surface of the sliding groove 15. The sifting plate 16 is connected by a plurality of guide plates 31. The oscillation assembly is composed of a motor and a movable block 17. The bottom center of the drying cavity is provided with a groove, and the movable block 17 is rotatably arranged in the groove. One end of the movable block 17 is fixedly connected with the sub-rotating shaft of the motor. The motor is fixedly arranged at the bottom center of the front side of the working box 1, and the sub-rotating shaft of the motor penetrates through one side of the inner wall of the groove and is rotatably connected with it. The movable block 17 strikes the bottom end of the lowermost sifting plate 16. The front side of the drying cavity is provided with three groups of material taking windows penetrating through the front side of the working box 1, and the material taking windows are hingedly provided with box doors. The controller starts the motor, and at this time the movable block 17 rotates in the groove, and the movable block 17 extrudes the lowermost sifting plate 16 upward during rotation. The three groups of sifting plate 16 are connected by the guide plate 31, and the three groups of sifting plate 16 move upward in the drying cavity at the same time. At this time, the sliding block 30 slides in the sliding groove 15, and the spring is in an elastic expansion state. When the movable block 17 does not extrude the sifting plate 16 upward, the elastic potential energy of the spring makes the sifting plate 16 slide downward, and the sifting plate 16 can better screen different sizes of shiitake mushrooms. The sifting plate 16 can be used for drying shiitake mushrooms of different sizes, and the sifting plate 16 can be oscillated to turn over the shiitake mushrooms during drying. The shiitake mushrooms above the sifting plate 16 in the corresponding position of the drying cavity can be taken out by opening the box door.

[0040] The drying assembly is composed of the second flow guide cavity 19, the electric telescopic plate 21, the heating resistance wire 22, the fan 23 and the air permeable hole 25. The fan 23 is arranged in the mounting cavity 20, and the inner wall of the mounting cavity 20 is provided with a mounting groove. The heating resistance wire 22 is arranged in the mounting groove. The inside of the connecting seat 5 is provided with the second flow guide cavity 19, and the second flow guide cavity 19 is arranged on one side of the mounting cavity 20. A plurality of flow holes are formed through the inner wall of the mounting cavity 20 on one side of the second flow guide cavity 19. The inside of the connecting seat 5 is provided with three groups of electric telescopic plates 21. One end of the electric telescopic plate 21 penetrates the inner wall of the second flow guide cavity 19 and is slidably connected with the same. One end of the electric telescopic plate 21 arranged in the middle is fixedly provided with the blocking plate 10. The inside of the plug-in plate one 12, the plug-in plate two 13 and the plug-in plate three 14 is provided with a flow cavity. A plurality of air permeable holes 25 are formed through the lower part of the plug-in plate one 12, the plug-in plate two 13 and the plug-in plate three 14. One end of the flow cavity penetrates the second flow guide cavity 19. One end of the flow cavity arranged in the plug-in plate two 13 is embeddedly connected with the blocking plate 10. The heating resistance wire 22 and the fan 23 are started by the controller. At this time, the fan 23 rotates to blow the hot air of the heating resistance wire 22 into the second flow guide cavity 19 through the flow hole. The hot air in the second flow guide cavity 19 flows into the flow cavity, and the hot air is sprayed out of the air permeable holes 25 to start drying the shiitake mushrooms. When the drying of the small-sized shiitake mushrooms is completed, the electric telescopic plate 21 at the specified position is started by the controller to prevent the hot air in the second flow guide cavity 19 from flowing into the plug-in plate one 12 or the plug-in plate two 13 or the plug-in plate three 14.

[0041] The controller is arranged on the front side of the working box 1. The controller is electrically connected with the motor two 8, the electric telescopic rod one 18, the heating resistance wire 22, the fan 23, the electric telescopic rod two 24, the motor three 29 and the motor one.

[0042] The utility model discloses a working principle and use flow: when using this device, can first pour shiitake through feed hopper into the inside of movable cavity 6, the initial state of baffle no.The shiitake mushrooms above the sieving plate 16 at the corresponding position in the drying cavity can be taken out by opening the box door.

Claims

1. A draining and draining dryer, characterized by: Including work box (1), the upper inside of work box (1) is opened with movable cavity (6), and the bottom of movable cavity (6) is connected through scattering cavity (7), the bottom of scattering cavity (7) is connected through drying cavity, one side inner wall of movable cavity (6) is fixedly connected with the one end of feed hopper, and the feed hopper is arranged on the top of work box (1) one side, the top of work box (1) is internally provided with electric telescopic rod two (24), and one end of electric telescopic rod two (24) is connected through the top of movable cavity (6) and is slidably connected with it, one end of electric telescopic rod two (24) is fixedly connected with the top center of pressing plate, the pressing plate is slidably arranged in the inside of movable cavity (6), the bottom of movable cavity (6) is slidably provided with baffle one (2), one end of baffle one (2) is connected through the other side of work box (1) and is slidably connected with it, and one end of baffle one (2) is connected with connecting seat (5), connecting seat (5) is arranged on the other side of work box (1), mounting cavity (20) is formed in the inside of connecting seat (5), and drying assembly is arranged in mounting cavity (20), the drying assembly is connected with one end of plugboard one (12), plugboard two (13) and plugboard three (14), the other end of plugboard one (12), plugboard two (13) and plugboard three (14) is slidably arranged in drying cavity through the other side of work box (1), and the lower of plugboard one (12), plugboard two (13) and plugboard three (14) is provided with sieve plate (16), the bottom of drying cavity is provided with oscillation assembly, and the oscillation assembly is connected with sieve plate (16).

2. A drip draining dryer according to claim 1, wherein: The inside of baffle one (2) is provided with flow guide cavity one (3), and a plurality of water holes are formed in the top of flow guide cavity one (3) through the upper side of baffle one (2), one end of flow guide cavity one (3) is fixedly provided with drain pipe (4), and drain pipe (4) is connected through connecting seat (5) and is fixedly connected with it.

3. A drip draining dryer according to claim 1, wherein: One side of work box (1) is fixedly provided with motor two (8), and the sub-rotating shaft of motor two (8) is rotatably connected with one side inner wall of scattering cavity (7) through the sub-rotating shaft, the sub-rotating shaft of motor two (8) is fixedly connected with one end of rotating rod, and the other end of rotating rod is rotatably connected with the other side inner wall of scattering cavity (7), a plurality of beating plates (9) are fixedly arranged on the outer side of rotating rod, and a plurality of needles (26) are arranged on the surface of beating plate (9).

4. The draining and drying machine according to claim 1, characterized in that: The top of one side of work box (1) is provided with mounting groove, and motor three (29) is fixedly arranged in the mounting groove, gear (27) is arranged at the sub-rotating shaft of motor three (29), and one side of gear (27) is engagedly connected with toothed block (28), a plurality of toothed blocks (28) are equidistantly fixedly arranged at the bottom center of baffle two (11), baffle two (11) is slidably arranged at the bottom of scattering cavity (7), and one end of baffle two (11) is connected through one side of work box (1) and is slidably connected with it.

5. The draining and drying machine according to claim 1, characterized in that: The sifting plate (16) is provided with three groups, and the mesh sizes of the three groups of sifting plates (16) are gradually reduced from top to bottom, and the mesh of the lowermost sifting plate (16) is solid, both ends of the sifting plate (16) are fixedly provided with a sliding block (30), and the center of the sliding block (30) is penetrated by a guide rod, the guide rod is fixedly arranged in the sliding groove (15), and the sliding groove (15) is provided with three groups of sliding grooves on the inner wall of the drying cavity, the outer side of the top end of the guide rod is sleeved with a spring, and the two ends of the spring are fixedly connected with the top surface of the sliding block (30) and the inner top surface of the sliding groove (15), the sifting plate (16) is connected by a plurality of guide plates (31), the oscillation assembly is composed of a motor one and a movable block (17), a recess is formed in the center of the bottom end of the drying cavity, and the movable block (17) is rotatably arranged in the recess, one end of the movable block (17) is fixedly connected with the sub-rotating shaft of the motor one, the motor one is fixedly arranged at the center of the bottom end of the front side of the working box (1), and the sub-rotating shaft of the motor one penetrates through one side of the inner wall of the recess and is rotatably connected therewith, the movable block (17) strikes the bottom end of the lowermost sifting plate (16), and three material taking windows are formed in the front side of the drying cavity and penetrate through the front side of the working box (1), and the material taking windows are hingedly provided with box doors.

6. A drip draining dryer according to claim 1, wherein: The drying assembly is composed of a flow guide cavity two (19), an electric telescopic plate (21), a heating resistance wire (22), a fan (23) and a ventilation hole (25), the fan (23) is arranged in the mounting cavity (20), and a mounting groove is formed in the inner wall of the mounting cavity (20), the heating resistance wire (22) is arranged in the mounting groove, the inside of the connecting seat (5) is provided with a flow guide cavity two (19), and the flow guide cavity two (19) is arranged on one side of the mounting cavity (20), a plurality of flow holes are formed in the inner wall of one side of the flow guide cavity two (19) and penetrate through the inner wall of the mounting cavity (20), the inside of the connecting seat (5) is provided with three groups of electric telescopic plates (21), one end of the electric telescopic plate (21) penetrates through the inner wall of the flow guide cavity two (19) and is slidably connected therewith, one end of the electric telescopic plate (21) arranged in the middle is fixedly provided with a blocking plate (10), the inside of the plug-in plate one (12), the plug-in plate two (13) and the plug-in plate three (14) is provided with a flow cavity, and a plurality of ventilation holes (25) are formed in the lower part of the plug-in plate one (12), the plug-in plate two (13) and the plug-in plate three (14) and penetrate through the flow cavity, one end of the flow cavity is connected with the flow guide cavity two (19), and one end of the flow cavity arranged in the plug-in plate two (13) is embeddedly connected with the blocking plate (10).

7. A drip draining dryer according to claim 1, wherein: The front side of the working box (1) is provided with a controller, and the controller is electrically connected with the motor two (8), the electric telescopic rod one (18), the heating resistance wire (22), the fan (23), the electric telescopic rod two (24), the motor three (29) and the motor one.