A roasting and separating device for nut production

By designing a stir-frying separation device, the automatic separation of stir-fried sand and nuts and the stir-frying uniformity are achieved, which solves the problems of complicated operation and low efficiency in the existing technology and improves the efficiency and quality of nut production.

CN119769745BActive Publication Date: 2025-10-14ANHUI ZHANSHI FOOD
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Patent Information

Application Number
CN202510026873.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-10-14
Estimated Expiration
2045-01-08

AI Technical Summary

Technical Problem

In the existing nut production and processing, the mixed stir-frying operation of roasting sand and nuts is cumbersome and time-consuming, resulting in low production efficiency.

Method used

A stir-frying and separation device for nut production was designed. The motor-driven threaded shaft and sliding plate drove the circular shell to move, realizing the automatic separation of stir-frying sand and nuts. The coordinated rotation of the stir-frying plate and the auxiliary plate ensured the stir-frying uniformity. At the same time, the vibrating ball and the annular cleaning plate were used to improve the stir-frying efficiency and effect.

Benefits of technology

The separation steps of roasted sand and nuts are simplified, the stir-frying efficiency and uniformity are improved, the operation complexity is reduced, and the processing quality and production efficiency of nuts are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to nut production processing technical field, specifically for a kind of nut production is stirred and separated device, including box;The inner wall of the box one side is slidably connected with sliding plate, and the outer wall top of box is open;The outer wall of the box one side is equipped with arc through slot;The outer wall of the sliding plate one side is equipped with circular shell, and the outer wall one end of circular shell is open, and circular shell is matched with arc through slot;The present application is rotated by first motor driving screw thread rotating shaft, the rotation of screw thread rotating shaft drives sliding plate and circular shell to move up and down, when circular shell is lowered to certain position, roast sand will be contacted with nut raw materials by entering into circular shell through separating hole on circular shell, when nut raw materials are stirred and finished, first motor is reversed, so that circular shell moves up, at this time, roast sand will be dropped from separating hole on circular shell, complete nut raw materials and roast sand separation, simplify the step that nut is stirred, so that the effect of nut is stirred is higher.
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Description

Technical Field

[0001] The invention relates to the technical field of nut production and processing, in particular to a stir-frying and separating device for nut production. Background Art

[0002] Nuts are a food with a better taste. Not only are they delicious, but the unsaturated fatty acids, high-quality proteins, amino acids, calcium, phosphorus, iron and other substances in nuts are beneficial to brain development, cardiovascular, bone and blood health. Nuts can also help prevent cancer, vascular disease and other diseases. This makes them not only delicious but also nutritious, making them one of the foods that people often eat.

[0003] In the prior art, when nuts are produced and processed, roasted sand and raw nuts need to be mixed and stir-fried in proportion. Since roasted sand needs to be placed when the nuts are stir-fried, a separation mechanism needs to be used to separate the roasted sand from the nuts after the nuts are stir-fried, and then the nuts need to be taken out. When the nuts are stir-fried, not only the nuts need to be placed and taken out, but also the roasted sand needs to be placed in proportion, and then the roasted sand needs to be taken out. When the nuts are stir-fried, not only the operation is cumbersome, but also too time-consuming, which reduces the production and processing efficiency of the nuts. Summary of the Invention

[0004] The purpose of the present invention is to solve the problem that when nuts are produced and processed, fried sand and raw nuts need to be mixed and fried in proportion. Since fried sand needs to be placed when the nuts are fried, a separation mechanism needs to be used to separate the fried sand from the nuts after the nuts are fried, and then the nuts are taken out. When the nuts are fried, not only the nuts need to be placed and taken out, but also the fried sand needs to be placed in proportion, and then the fried sand needs to be taken out. When the nuts are fried, not only the operation is cumbersome, but also too time-consuming, which reduces the production and processing efficiency of the nuts. A frying and separation device for nut production is proposed.

[0005] The purpose of the present invention can be achieved through the following technical solutions:

[0006] A stir-frying and separation device for nut production, comprising a box body; a sliding plate is slidably connected to one side of the inner wall of the box body, and the top end of the outer wall of the box body is open; an arc-shaped through-slot is opened on one side of the outer wall of the box body; a circular shell is provided on one side of the outer wall of the sliding plate, and one end of the outer wall of the circular shell is open, and the circular shell matches the arc-shaped through-slot; a group of separation holes are opened on the outer wall of the circular shell; a first motor is fixedly connected to the top end of the outer wall of the box body; a threaded shaft is provided at the output end of the first motor, and the bottom end of the outer wall of the threaded shaft passes through the sliding plate; the threaded shaft is threadedly connected to the sliding plate; a stir-frying part is provided in the circular shell; the stir-frying part includes a stir-frying plate; the bottom end of the outer wall of the sliding plate is triangular in shape; a group of circular through-slots are opened on the top end of the outer wall of the sliding plate; one end of the outer wall of the circular shell contacts one side of the inner wall of the box body.

[0007] As a preferred embodiment of the present application, the outer wall of the sliding plate is provided with a placing groove; the inner side wall of the placing groove is fixedly connected with a second motor; the output end of the second motor is provided with a rotating shaft, and the outer wall of one end of the rotating shaft penetrates through the outer wall of one side of the circular shell and is located in the circular shell; the outer wall of one end of a group of the turning plates is fixedly connected with the outer side wall of one end of the rotating shaft located in the circular shell; a group of the turning plates are vertically placed; the outer side wall of one end of the rotating shaft located in the circular shell is fixedly connected with a group of auxiliary plates, and the auxiliary plates and the turning plates are staggered; the auxiliary plates are horizontally placed.

[0008] As a preferred embodiment of the present application, the outer wall of the sliding plate is provided with a square groove; the inner wall of one side of the square groove is rotatably connected with a rotating rod; the outer wall of one end of the circular shell is rotatably connected with the outer wall of one side of the sliding plate; the outer side wall of the circular shell is fixedly connected with a first annular rack; the outer wall of one end of the rotating rod is fixedly connected with a first gear, and the first gear is meshed with the first annular rack; the outer side walls of the rotating rod and the rotating shaft are fixedly connected with a pair of first sprockets, and the pair of first sprockets are connected through a first chain.

[0009] As a preferred embodiment of the present application, the turning plates and the auxiliary plates all comprise a square shell and a square plate; the outer side wall of the square plate is slidably connected with the inner side wall of the square shell; the inner wall of one side of the square shell is fixedly connected with a first spring, and the outer wall of one end of the first spring is fixedly connected with the outer wall of one side of the square plate; the outer wall of one end of the square plate located outside the square shell is provided with a first inclined surface at both side corners.

[0010] As a preferred embodiment of the present application, the outer wall of one side of the circular shell is rotatably connected with a reciprocating rotating rod; the outer wall of one end of the reciprocating rotating rod penetrates through the outer wall of one side of the circular shell and is located in the circular shell; the outer side wall of one end of the reciprocating rotating rod located in the circular shell is provided with an annular cleaning plate, and the outer side wall of the annular cleaning plate is in contact with the inner side wall of the circular shell; the outer side wall of one end of the annular cleaning plate is provided with a second inclined surface; the annular cleaning plate is matched with the first inclined surface; the outer wall of one end of the reciprocating rotating rod located outside the circular shell is fixedly connected with a second gear; the outer wall of one side of the sliding plate is provided with an annular groove; the inner side wall of the annular groove is fixedly connected with a second annular rack; the second annular rack is meshed with the second gear; the second gear is located in the annular groove.

[0011] As a preferred embodiment of the present application, the outer wall of one end of the first gear is fixedly connected with a circular rod; the outer side wall of the circular rod is fixedly connected with a group of first circular shells; the inner wall of one side of the first circular shell is fixedly connected with a first circular rod through a second spring, and the outer side wall of the first circular rod is slidably connected with the inner side wall of the first circular shell; the outer wall of one end of the first circular rod is fixedly connected with a vibrating ball, and the vibrating ball is matched with the circular shell.

[0012] As a preferred embodiment of the present application, the outer wall of the box is provided with a placement plate; the outer wall top end of the placement plate is slidably provided with a collection shell, and the collection shell is located below the arc-shaped through slot; the outer wall top end of the placement plate is fixedly connected with a fixed plate; the outer wall top end of the placement plate is slidably connected with a clamping plate; and the outer wall top end of the placement plate is threadedly connected with a first threaded rod through a first square plate, and the outer wall one end of the first threaded rod is rotatably connected to the outer wall one side of the clamping plate.

[0013] As a preferred embodiment of the present application, the collection shell comprises a first square shell and a second square shell; the outer wall bottom end of the first square shell is fixedly connected with a back-shaped block, and the back-shaped block is matched with the inner side wall of the second square shell; a group of screening holes are formed in the inner wall bottom end of the first square shell; the outer side wall of the back-shaped block is slidably placed on the inner side wall of the second square shell; and the first square shell is matched with the arc-shaped through slot.

[0014] As a preferred embodiment of the present application, the outer wall one side of the placement plate is slidably connected to the outer wall one side of the box; the outer wall one side of the box is fixedly connected with a connecting plate; the outer wall one side of the connecting plate is rotatably connected with a first rotating rod, and the outer wall one end of the first rotating rod penetrates through the connecting plate; the outer wall bottom end of the placement plate is fixedly connected with a pair of poking plates, and the pair of poking plates are obliquely placed and symmetrically arranged about the center line of the placement plate; one end of the first rotating rod penetrating through the connecting plate is fixedly connected with a pair of poking rods on the outer side wall, and the pair of poking rods are matched with the pair of poking plates; the outer wall one side of the connecting plate is rotatably connected with a second rotating rod, and the outer wall one end of the second rotating rod penetrates through the connecting plate; the outer wall one end of the second rotating rod penetrating through the connecting plate is fixedly connected with a linkage block, and the linkage block is located in the arc-shaped through slot; the outer wall one end of the rotating shaft is provided with a first circular groove; the inner wall one side of the first circular groove is fixedly connected with a fifth circular rod through a fourth spring, and the outer side wall of the fifth circular rod is slidably connected to the inner side wall of the first circular groove; the outer wall one end of the fifth circular rod is fixedly connected with a circular truncated cone block, and the front end of the circular truncated cone block is located in the arc-shaped through slot; the circular truncated cone block is matched with the linkage block; the outer side wall of the circular truncated cone block is fixedly connected with a clamping block; a group of clamping grooves are formed in the inner side wall of the linkage block; and the outer wall one end of the first rotating rod and the second rotating rod are fixedly connected with a second sprocket, and the pair of second sprockets are connected through a second chain.

[0015] Compared with the prior art, the present application has the following advantages:

[0016] 1、Through the second motor drives the rotation axis rotation, make the rotation of the rotation axis drive a group of stir-frying plate and auxiliary plate rotation, when the nut raw materials are stir-fried, the stir-frying plate and the auxiliary plate can assist the nut raw materials to stir-fry, the effect and efficiency of the nut raw materials stir-frying are better, and through the position of the stir-frying plate and the auxiliary plate, when the stir-frying plate drives the nut raw materials to stir-fry, the nut raw materials under the auxiliary plate will be moved to the below of the stir-frying plate because the nut raw materials of the stir-frying plate position are driven by the stir-frying plate, and the nut raw materials under the stir-frying plate will also be moved to the below of the auxiliary plate when the auxiliary plate stirs, so that the nut raw materials move back and forth when the nut raw materials are stir-fried, the nut raw materials are more uniform when the nut raw materials are stir-fried, and the quality of the nut after processing is higher.

[0017] 2、Through the rotation of the first gear drives the circular rod rotation, make the circular rod drive the first circular shell and the first circular rod and the vibration ball rotation, when the vibration ball does not contact with the circular shell, the second spring is in the extension state, when the vibration ball contacts with the circular shell through rotation, the vibration ball will knock on the circular shell, at this time, the second spring contracts, and the circular shell generates vibration, the vibration can not only make the nut raw materials more uniform when the nut raw materials are stir-fried, but also further improve the effect and efficiency of the stir-frying, and the nut raw materials and the fried sand are not easy to adhere together when the vibration, and the vibration can prevent the nut raw materials and the fried sand from adhering to the inner side wall of the circular shell, and when the nut raw materials are discharged, the vibration can assist the discharge. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to facilitate the understanding of those skilled in the art, the present application will be further described below in conjunction with the drawings.

[0019] Figure 1 The main structure diagram of the present application;

[0020] Figure 2 The partial structure diagram of the main body of the present application;

[0021] Figure 3 The structure diagram of the sliding plate, the first motor and the threaded rotating shaft of the present application;

[0022] Figure 4 The structure diagram of the circular shell, the second motor, the circular rod and the vibration ball of the present application;

[0023] Figure 5 The exploded structure diagram of the first circular shell and the first circular rod of the present application;

[0024] Figure 6 The structure diagram of the second motor, the rotating shaft, the annular cleaning plate and the stir-frying plate of the present application;

[0025] Figure 7 The exploded structure diagram of the square shell and the square plate of the present application;

[0026] Figure 8 It is the exploded structural drawing of the rotating shaft and the fifth round rod of the application;

[0027] Figure 9 It is the structural drawing of the placing plate, the collecting shell and the linkage block of the application;

[0028] Figure 10 It is the exploded structural drawing of the first square shell and the second square shell of the application;

[0029] Figure 11 It is the exploded structural drawing of the placing plate and the connecting plate of the application;

[0030] Figure 12 It is the structural drawing of the linkage block of the application;

[0031] In the figure: 1, box; 2, sliding plate; 3, arc-shaped through slot; 4, round shell; 5, separation hole; 6, first motor; 7, threaded rotating shaft; 8, stir-frying plate; 9, round through slot; 10, placing groove; 11, second motor; 12, rotating shaft; 13, auxiliary plate; 14, square groove; 15, rotating rod; 16, first annular rack; 17, first gear; 18, first sprocket; 19, first chain; 801, square shell; 802, square plate; 20, reciprocating rotating rod; 21, annular cleaning plate; 22, second gear; 23, annular groove; 24, second annular rack; 25, round rod; 26, first round shell; 27, first round rod; 28, vibrating ball; 29, placing plate; 30, collecting shell; 31, fixed plate; 32, clamping plate; 33, first threaded rod; 301, first square shell; 302, second square shell; 34, back-shaped block; 35, screening hole; 36, connecting plate; 37, first rotating rod; 38, poking plate; 39, poking rod; 40, second rotating rod; 41, linkage block; 42, first round groove; 43, fifth round rod; 44, round table block; 45, clamping block; 46, clamping groove; 47, second sprocket; 48, second chain. DETAILED DESCRIPTION

[0032] The technical solutions of the application will be described clearly and completely below in combination with the embodiments. Obviously, the described embodiments are only a part of the embodiments of the application, rather than all the embodiments. Based on the embodiments in the application, all the other embodiments obtained by those skilled in the art without creative work belong to the protection scope of the application.

[0033] Embodiment 1:

[0034] Please refer to Figures 1-11As shown, a nut production is shown, a roasting and separating device, including box 1; the inner wall of box 1 side sliding plate 2 is slidably connected, and the outer wall of box 1 top is open; The outer wall of box 1 is provided with an arc-shaped through slot 3; The outer wall of the sliding plate 2 is provided with a circular shell 4, and the outer wall of the circular shell 4 is open at one end, and the circular shell 4 is matched with the arc-shaped through slot 3; A group of separation holes 5 are formed in the outer wall of the circular shell 4; The outer wall of the box 1 is fixedly connected with a first motor 6; The output end of the first motor 6 is provided with a threaded shaft 7, and the outer wall of the threaded shaft 7 penetrates the sliding plate 2; The threaded shaft 7 is threadedly connected with the sliding plate 2; The circular shell 4 is provided with a roasting element; The roasting element comprises a roasting plate 8; The outer wall of the sliding plate 2 is triangular; A group of circular through slots 9 are formed in the outer wall of the sliding plate 2; The outer wall of the circular shell 4 is in contact with the inner wall of the box 1, and the roasting sand is placed in the box 1, when the nuts need to be baked and roasted, the threaded shaft 7 is driven to rotate by the first motor 6, because the threaded shaft 7 is threadedly connected with the sliding plate 2, the rotation of the threaded shaft 7 drives the sliding plate 2 and the circular shell 4 to move up and down, when the circular shell 4 moves to a certain position, the nuts are placed in the circular shell 4 through the arc-shaped through slot 3 on the box 1, then the first motor 6 continues to rotate, the circular shell 4 is lowered, when the circular shell 4 is lowered to a certain position, the roasting sand enters the circular shell 4 through the separation hole 5 on the circular shell 4 and contacts the nut raw materials, at this time, the circular shell 4 can be lowered to the appropriate position by rotating the first motor 6, so that the appropriate amount of roasting sand enters the circular shell 4 and is roasted with the nut raw materials, when the nut raw materials are roasted, the first motor 6 is reversed, the circular shell 4 is moved up, at this time, the roasting sand falls from the separation hole 5 on the circular shell 4, the separation of the nut raw materials and the roasting sand is completed, so that the device does not need to place and take the roasting sand, and the roasting sand is separated from the nut raw materials at the same time, and when the circular shell 4 moves to the arc-shaped through slot 3 position, the nut raw materials can be taken out through the arc-shaped through slot 3, and the amount of roasting sand entering the circular shell 4 can be adjusted according to the descending height of the circular shell 4, thereby simplifying the roasting steps of the nuts, and the roasting effect of the nuts is higher.

[0035] The outer wall of the sliding plate 2 is provided with a placing groove 10; the inner side wall of the placing groove 10 is fixedly connected with a second motor 11; the output end of the second motor 11 is provided with a rotating shaft 12, and one end of the outer wall of the rotating shaft 12 penetrates through one side of the outer wall of the circular shell 4 and is located in the circular shell 4; one end of the outer wall of the rotating shaft 12 located in the circular shell 4 is fixedly connected with the outer side wall of one end of a group of turning plates 8; the group of turning plates 8 are vertically placed; the outer side wall of one end of the rotating shaft 12 located in the circular shell 4 is fixedly connected with a group of auxiliary plates 13, and the group of auxiliary plates 13 are staggered with the group of turning plates 8; the auxiliary plates 13 are horizontally placed; the rotating shaft 12 is driven to rotate by the second motor 11, so that the rotation of the rotating shaft 12 drives the group of turning plates 8 and the auxiliary plates 13 to rotate, and the turning plates 8 and the auxiliary plates 13 can assist the nut raw materials to be turned over when the nut raw materials are turned over, so that the effect and efficiency of turning over of the nut raw materials are better, and the position of the turning plates 8 and the auxiliary plates 13 makes the nut raw materials located below the auxiliary plates 13 be moved to below the turning plates 8 when the nut raw materials are turned over by the turning plates 8, and the nut raw materials below the turning plates 8 are also moved to below the auxiliary plates 13 when the auxiliary plates 13 are turned over, so that the nut raw materials move back and forth when the nut raw materials are turned over, the nut raw materials are turned over more uniformly when the nut raw materials are turned over, and the quality of the processed nuts is higher.

[0036] The turning plates 8 and the auxiliary plates 13 each include a square shell 801 and a square plate 802; the outer side wall of the square plate 802 is slidingly connected to the inner side wall of the square shell 801; a first spring is fixedly connected to one side of the inner wall of the square shell 801, and one end of the outer wall of the first spring is fixedly connected to one side of the outer wall of the square plate 802; first inclined surfaces are formed at both side corners of the outer wall of one end of the square plate 802 located outside the square shell 801, so that the turning plates 8 and the auxiliary plates 13 have the function of stretching and contracting when the turning plates 8 and the auxiliary plates 13 are turned over, so that the square plate 802 is still in contact with the inner side wall of the circular shell 4 through the elastic force of the first spring when the turning plates 8 and the auxiliary plates 13 are worn out after long-term use, so that the turning plates 8 and the auxiliary plates 13 can not only turn over the nut raw materials, but also clean the inner side wall of the circular shell 4 through the rotation of the turning plates 8 and the auxiliary plates 13, and can prevent the nut raw materials from adhering to the inner side wall of the circular shell 4, thereby reducing the waste of the nut raw materials and improving the turning effect and efficiency of the auxiliary plates 13 and the turning plates 8.

[0037] The outer wall of the first gear 17 is fixedly connected with a circular rod 25 at one end; the outer side wall of the circular rod 25 is fixedly connected with a group of first circular shells 26; the inner wall of the first circular shell 26 is fixedly connected with a first circular rod 27 at one side through a second spring, and the outer side wall of the first circular rod 27 is slidingly connected to the inner side wall of the first circular shell 26; the outer wall of the first circular rod 27 is fixedly connected with a vibrating ball 28 at one end, and the vibrating ball 28 matches the circular shell 4; when the rotating rod 15 drives the first gear 17 to rotate, the rotation of the first gear 17 drives the circular rod 25 to rotate, so that the circular rod 25 drives the first circular shell 26, the first circular rod 27 and the vibrating ball 28 to rotate; when the vibrating ball 28 is not in contact with the circular shell 4, the second spring is in an extended state; when the vibrating ball 28 is in contact with the circular shell 4 through rotation, the vibrating ball 28 will knock on the circular shell 4, at which time the second spring is contracted, so that the circular shell 4 vibrates; the vibration not only makes the roasting of the nut raw materials more uniform, but also further improves the effect and efficiency of roasting; in addition, the nut raw materials and the roasting sand are not easy to adhere together when vibrating, and the vibration can prevent the nut raw materials and the roasting sand from adhering to the inner side wall of the circular shell 4; and when the nut raw materials are discharged, the vibration can assist in discharging.

[0038] The outer wall of the sliding plate 2 is provided with a square groove 14 at one side; the inner wall of the square groove 14 is rotatably connected with a rotating rod 15 at one side; the outer wall of the circular shell 4 is rotatably connected to the outer wall of the sliding plate 2 at one end; the outer side wall of the circular shell 4 is fixedly connected with a first annular rack 16; the outer wall of the rotating rod 15 is fixedly connected with a first gear 17 at one end, and the first gear 17 is meshed with the first annular rack 16; the outer side walls of the rotating rod 15 and the rotating shaft 12 are fixedly connected with a first sprocket 18, and a pair of first sprockets 18 are connected through a first chain 19; when the rotating shaft 12 rotates, because the outer side walls of the rotating rod 15 and the rotating shaft 12 are fixedly connected with the first sprocket 18, and a pair of first sprockets 18 are connected through the first chain 19, the rotation of the rotating shaft 12 drives the rotating rod 15 to rotate through the first sprocket 18 and the first chain 19, so that the rotating rod 15 drives the first gear 17 to rotate; because the outer side wall of the circular shell 4 is fixedly connected with the first annular rack 16 and the first gear 17 is meshed with the first annular rack 16, the rotation of the first gear 17 drives the first annular rack 16 to rotate, so that the first annular rack 16 drives the circular shell 4 to rotate, and the rotation of the circular shell 4 cooperates with the rotation of the roasting plate 8 and the auxiliary plate 13, so that the roasting of the nut raw materials is more uniform, and the effect and efficiency of roasting are further improved; in addition, the structure linkage of the device makes the rotating directions of the circular shell 4 and the roasting plate 8 opposite, so that the roasting effect is better.

[0039] The outer wall of the box body 1 is provided with a placing plate 29; the outer wall top end of the placing plate 29 is slidably provided with a collecting shell 30, and the collecting shell 30 is located below the arc-shaped through slot 3; the outer wall top end of the placing plate 29 is fixedly connected with a fixed plate 31; the outer wall top end of the placing plate 29 is slidably connected with a clamping plate 32; the outer wall top end of the placing plate 29 is connected with a first threaded rod 33 through a first square plate screw connection, and one end of the outer wall of the first threaded rod 33 is rotatably connected to one side of the outer wall of the clamping plate 32; by placing the collecting shell 30 on the placing plate 29, and then rotating the first threaded rod 33, the first threaded rod 33 drives the clamping plate 32 to move, so that the clamping plate 32 cooperates with the fixed plate 31 to fix the collecting shell 30, so that the nut raw material is completed by the annular cleaning plate 21, the stir-frying plate 8, the auxiliary plate 13 and the vibration discharge, the nut raw material falls into the collecting shell 30 through the arc-shaped through slot 3, thereby completing the collection of the nut raw material, and the stirring, separation and collection of the nut raw material are automatically completed without manual assistance, so that the device is more intelligent, and the stirring, separation and collection of the nut raw material are more simple and convenient,

[0040] The collecting shell 30 comprises a first square shell 301 and a second square shell 302; the outer wall bottom end of the first square shell 301 is fixedly connected with a back-shaped block 34, and the back-shaped block 34 is matched with the inner side wall of the second square shell 302; a group of screening holes 35 are formed in the inner wall bottom end of the first square shell 301; the outer side wall of the back-shaped block 34 is slidably placed on the inner side wall of the second square shell 302; the first square shell 301 is matched with the arc-shaped through slot 3; by comprising the first square shell 301 and the second square shell 302, the collecting shell 30 is placed, the second square shell 302 is placed on the placing plate 29 first, then the first square shell 301 is placed on the second square shell 302, the back-shaped block 34 on the first square shell 301 is clamped into the second square shell 302, so that the first square shell 301 and the second square shell 302 are fixed, and then the first square shell 301 and the second square shell 302 are fixed by the clamping plate 32 and the fixed plate 31, so that the device can screen and classify the nut raw material according to the size of the nut raw material while collecting the nut raw material, thereby simplifying the screening operation after the nut is stirred, reducing the time required for nut production and processing, and further improving the efficiency of nut production and processing

[0041] The outer wall of the circular shell 4 is rotatably connected with a reciprocating rotating rod 20. The outer wall of one end of the reciprocating rotating rod 20 penetrates the outer wall of the circular shell 4 and is located in the circular shell 4. The outer wall of one end of the reciprocating rotating rod 20 located in the circular shell 4 is provided with an annular cleaning plate 21, and the outer wall of the annular cleaning plate 21 is in contact with the inner wall of the circular shell 4. A second inclined surface is formed in the outer wall of one end of the annular cleaning plate 21. The annular cleaning plate 21 is matched with the first inclined surface. The outer wall of one end of the reciprocating rotating rod 20 located outside the circular shell 4 is fixedly connected with a second gear 22. An annular groove 23 is formed in the outer wall of the sliding plate 2. A second annular gear rack 24 is fixedly connected to the inner wall of the annular groove 23. The second annular gear rack 24 is meshed with the second gear 22. The second gear 22 is located in the annular groove 23. When the circular shell 4 rotates, the rotation of the circular shell 4 will drive the reciprocating rotating rod 20 to rotate. The outer wall of one end of the reciprocating rotating rod 20 located outside the circular shell 4 is fixedly connected with the second gear 22. An annular groove 23 is formed in the outer wall of the sliding plate 2. A second annular gear rack 24 is fixedly connected to the inner wall of the annular groove 23. The second annular gear rack 24 is meshed with the second gear 22, so that the rotation of the reciprocating rotating rod 20 drives the second gear 22 to rotate, and the second gear 22 moves circularly on the inner wall of the second annular gear rack 24. Because the second annular gear rack 24 is in a fixed and accurate state, and the second gear 22 is in a moving state, the second gear 22 rotates while moving on the second annular gear rack 24, and the rotation of the second gear 22 drives the reciprocating rotating rod 20 to rotate. When the reciprocating rotating rod 20 rotates, the annular cleaning plate 21 will reciprocate back and forth due to the rotation of the reciprocating rotating rod 20, so that the reciprocating movement of the annular cleaning plate 21 can clean the inner wall of the circular shell 4. The annular cleaning plate 21 reciprocates and meets the auxiliary plate 13 or the first inclined surface on the tumbling plate 8, so that the annular cleaning plate 21 can extrude the square plate 802 on the auxiliary plate 13 or the tumbling plate 8 through the first inclined surface, so that the square plate 802 shrinks, so that the reciprocating movement of the annular cleaning plate 21 does not affect the movement of the auxiliary plate 13 and the tumbling plate 8. When the nut raw materials are finished and need to be unloaded, the reciprocating movement of the annular cleaning plate 21 can push the nut raw materials, so that the nut raw materials move to the position of the arc-shaped through groove 3, thereby assisting unloading, and the unloading of the nut raw materials is faster and more convenient. The second inclined surface is formed in the outer wall of one end of the annular cleaning plate 21, so that when the annular cleaning plate 21 moves to the end of the circular shell 4 without opening, the second inclined surface meets the nut raw materials, and the nut raw materials move to the other side of the annular cleaning plate 21 along the second inclined surface, so that the nut raw materials are not extruded and broken by the annular cleaning plate 21, and the quality and integrity of the nut raw materials are guaranteed

[0042] Example 2:

[0043] Please refer to Figures 8-9 and Figures 11-12As shown, the outer wall side of the placing plate 29 is slidably connected to the outer wall side of the box body 1; the outer wall side of the box body 1 is fixedly connected with a connecting plate 36; the outer wall side of the connecting plate 36 is rotatably connected with a first rotating rod 37, and one end of the outer wall of the first rotating rod 37 penetrates through the connecting plate 36; the outer wall bottom end of the placing plate 29 is fixedly connected with a pair of poking plates 38, and the pair of poking plates 38 are placed obliquely and symmetrically about the center line of the placing plate 29; one end of the first rotating rod 37 penetrating through the connecting plate 36 is fixedly connected with a pair of poking rods 39, and the pair of poking rods 39 are matched with the pair of poking plates 38; the outer wall side of the connecting plate 36 is rotatably connected with a second rotating rod 40, and one end of the outer wall of the second rotating rod 40 penetrates through the connecting plate 36; the outer wall end of the second rotating rod 40 penetrating through the connecting plate 36 is fixedly connected with a linkage block 41, and the linkage block 41 is located in the arc-shaped through groove 3; the outer wall end of the rotating shaft 12 is provided with a first circular groove 42; the inner wall side of the first circular groove 42 is fixedly connected with a fifth circular rod 43 through a fourth spring, and the outer side wall of the fifth circular rod 43 is slidably connected to the inner side wall of the first circular groove 42; the outer wall end of the fifth circular rod 43 is fixedly connected with a circular truncated cone block 44, and the front end of the circular truncated cone block 44 is located in the arc-shaped through groove 3; the circular truncated cone block 44 is matched with the linkage block 41; the outer side wall of the circular truncated cone block 44 is fixedly connected with a clamping block 45; the inner side wall of the linkage block 41 is provided with a group of clamping grooves 46;The outer wall of the first rotating rod 37 and the second rotating rod 40 is fixedly connected with a second sprocket 47 at one end, and a pair of second sprockets 47 are connected through a second chain 48. When the first motor 6 and the threaded rotating shaft 7 rotate to drive the inner side wall bottom end of the circular shell 4 to be flush with the inner side wall bottom end of the arc-shaped through slot 3, at this time the second motor 11 drives the rotating shaft 12 to rotate, so that the turnover plate 8, the auxiliary plate 13 and the annular cleaning plate 21 assist in unloading, the fifth circular rod 43 is popped out through the fourth spring because of the block of the box 1, at this time the circular platform block 44 on the fifth circular rod 43 is popped out, at this time part of the circular platform block 44 is located in the box 1 and part of the circular platform block 44 is located in the arc-shaped through slot 3, at this time the circular platform block 44 will move on the rotating shaft 12 and the circular shell 4 at the same time and encounter the linkage block 41, because the contact surface of the circular platform block 44 and the linkage block 41 is inclined, when the circular platform block 44 contacts the linkage block 41, it will shrink, when the circular shell 4 moves to the specified position, the circular platform block 44 will be popped into the linkage block 41 due to the elastic force of the fourth spring, so that the rotating shaft 12 rotates, the rotating shaft 12 drives the fifth circular rod 43 and the circular platform block 44 to rotate, when the circular platform block 44 rotates, the clamping block 45 on the circular platform block 44 encounters the clamping groove 46 on the linkage block 41, the clamping block 45 is clamped into the clamping groove 46, so that the rotation of the circular platform block 44 drives the linkage block 41 to rotate, the linkage block 41 drives the first rotating rod 37 to rotate, because the outer wall of the first rotating rod 37 and the second rotating rod 40 is fixedly connected with the second sprocket 47 at one end, and a pair of second sprockets 47 are connected through the second chain 48, so that the rotation of the first rotating rod 37 drives the second rotating rod 40 to rotate through the second sprocket 47 and the second chain 48, so that the second rotating rod 40 drives the push rod 39 to rotate, when one of a pair of push rods 39 encounters the push plate 38, the rotation of the push rod 39 moves the push plate 38, so that the push plate 38 drives the placement plate 29 to move, when the push rod 39 leaves the push plate 38, the other push rod 39 will contact the push plate 38, so that the push plate 38 moves in the other direction, so that the placement plate 29 will shake back and forth, so that the shaking of the placement plate 29 drives the collection shell 30 to shake, so that the force generated by the shaking makes the nut raw materials in the collection shell 30 shake back and forth, so that the nut raw materials are not easy to accumulate, so that the nut raw materials are not easy to overflow in the collection shell 30, and also make the nut raw materials placed in the collection shell 30 more evenly, when the nut raw materials are collected, the first motor 6 drives the rotating shaft 12 to move down, at this time the inclined surface of the circular platform block 44 will contact the inclined surface of the linkage block 41, at this time the circular platform block 44 will shrink, and when the circular platform block 44 encounters the inner wall bottom end of the arc-shaped through slot 3, it will also shrink, so that the circular platform block 44 will only pop out to drive the linkage block 41 to rotate when needed, and the circular platform block 44 will not affect the operation of other mechanisms when not needed.

[0044] The application is used, the fried sand is placed in the box 1, when the nuts need to be baked and fried, the threaded shaft 7 is driven to rotate by the first motor 6, the threaded shaft 7 is connected with the sliding plate 2 through thread, the rotation of the threaded shaft 7 drives the sliding plate 2 and the circular shell 4 to move up and down, when the circular shell 4 moves to a certain position, the nut raw materials are put into the circular shell 4 through the arc-shaped through slot 3 on the box 1, then the first motor 6 continues to rotate, the circular shell 4 is lowered, when the circular shell 4 is lowered to a certain position, the fried sand enters the circular shell 4 through the separation hole 5 on the circular shell 4 and contacts with the nut raw materials, at this time, the circular shell 4 can be lowered to the appropriate position through the rotation of the first motor 6, so that the appropriate amount of fried sand enters the circular shell 4 and the nut raw materials are fried, when the nut raw materials are fried, the first motor 6 is reversed, the circular shell 4 is moved up, at this time, the fried sand falls from the separation hole 5 on the circular shell 4, the separation of the nut raw materials and the fried sand is completed, so that the device does not need to place and take the fried sand, the fried sand is separated from the nut raw materials at the same time, when the circular shell 4 moves to the arc-shaped through slot 3 position, the nut raw materials can be taken out through the arc-shaped through slot 3, and the amount of fried sand entering the circular shell 4 can be adjusted according to the lowering height of the circular shell 4, so that the steps of frying the nuts are simplified, the effect of frying the nuts is higher, the rotation shaft 12 is driven to rotate by the second motor 11, the rotation of the rotation shaft 12 drives a group of frying plates 8 and auxiliary plates 13 to rotate, so that the nut raw materials are fried, the frying plates 8 and the auxiliary plates 13 can assist the nut raw materials to be fried, the effect and efficiency of frying the nut raw materials are better, the nut raw materials are moved to the lower side of the frying plates 8 when the nut raw materials below the auxiliary plates 13 are driven by the frying plates 8 due to the position of the nut raw materials on the frying plates 8, and the nut raw materials below the frying plates 8 are also moved to the lower side of the auxiliary plates 13 when the auxiliary plates 13 are fried, so that the nut raw materials move back and forth when the nut raw materials are fried, the nut raw materials are fried more uniformly when the nut raw materials are fried, the quality of the processed nuts is higher, when the rotation shaft 12 rotates, the first sprocket 18 is fixedly connected to the outer side wall of the rotation rod 15 and the rotation shaft 12, a pair of first sprockets 18 are connected through the first chain 19, the rotation of the rotation shaft 12 drives the rotation rod 15 to rotate through the first sprocket 18 and the first chain 19, the first gear 17 is driven to rotate by the rotation rod 15, the first annular rack 16 is fixedly connected to the outer side wall of the circular shell 4, the first gear 17 and the first annular rack 16 are engaged with each other, the rotation of the first gear 17 drives the first annular rack 16 to rotate, the first annular rack 16 drives the circular shell 4 to rotate, the rotation of the circular shell 4 matches the rotation of the frying plates 8 and the auxiliary plates 13, so that the nut raw materials are fried more uniformly, the effect and efficiency of frying are further improved, and the rotation directions of the circular shell 4 and the frying plates 8 are opposite through the structure linkage of the device.Thus, the effect of the stir-frying is better, and the stir-frying plate 8 and the auxiliary plate 13 include the square shell 801 and the square plate 802, so that the stir-frying plate 8 and the auxiliary plate 13 have the telescopic function when they are stirred, so that when the stir-frying plate 8 and the auxiliary plate 13 are worn after long-term use, the square plate 802 is still in contact with the inner side wall of the circular shell 4 through the elastic force of the first spring, so that the stir-frying plate 8 and the auxiliary plate 13 can not only stir the nut raw materials, but also the rotation of the stir-frying plate 8 and the auxiliary plate 13 can clean the inner side wall of the circular shell 4, and can prevent the nut raw materials from adhering to the inner side wall of the circular shell 4, thereby reducing the waste of the nut raw materials, and the stir-frying effect and efficiency of the auxiliary plate 13 and the stir-frying plate 8 are better, and when the circular shell 4 rotates, the rotation of the circular shell 4 drives the reciprocating rotating rod 20 to rotate, because the reciprocating rotating rod 20 is fixedly connected with the second gear 22 at one end of the outer wall outside the circular shell 4; the outer wall of the sliding plate 2 is provided with an annular groove 23; the inner side wall of the annular groove 23 is fixedly connected with a second annular gear rack 24; the second annular gear rack 24 and the second gear 22 are in meshing relationship, so that the rotation of the reciprocating rotating rod 20 drives the second gear 22 to rotate, and the second gear 22 moves circularly on the inner wall of the second annular gear rack 24, because the second annular gear rack 24 is in a fixed and accurate state, and the second gear 22 is in a moving state, so that the second gear 22 rotates while moving on the second annular gear rack 24, and the rotation of the second gear 22 drives the reciprocating rotating rod 20 to rotate, when the reciprocating rotating rod 20 rotates, the annular cleaning plate 21 moves back and forth due to the rotation of the reciprocating rotating rod 20, so that the reciprocating movement of the annular cleaning plate 21 can clean the inner side wall of the circular shell 4, and the annular cleaning plate 21 reciprocating movement meets the auxiliary plate 13 or the stir-frying plate 8 through the matching of the first inclined surface on the auxiliary plate 13 and the stir-frying plate 8, so that the annular cleaning plate 21 extrudes the square plate 802 on the auxiliary plate 13 or the stir-frying plate 8 through the first inclined surface, so that the square plate 802 shrinks, so that the reciprocating movement of the annular cleaning plate 21 does not affect the movement of the auxiliary plate 13 and the stir-frying plate 8, and when the nut raw materials are finished and need to be unloaded, the reciprocating movement of the annular cleaning plate 21 can push the nut raw materials, so that the nut raw materials move to the position of the arc-shaped through groove 3, thereby assisting unloading, and the unloading of the nut raw materials is faster and more convenient, and the outer side wall of one end of the annular cleaning plate 21 is provided with a second inclined surface, so that when the annular cleaning plate 21 moves to the end of the circular shell 4 without opening, the second inclined surface meets the nut raw materials, and the nut raw materials move to the other side of the annular cleaning plate 21 along the second inclined surface, so that the nut raw materials are not extruded and broken by the annular cleaning plate 21, thereby ensuring the quality and integrity of the nut raw materials, and when the rotating rod 15 drives the first gear 17 to rotate, the rotation of the first gear 17 drives the circular rod 25 to rotate, so that the circular rod 25 drives the first circular shell 26, the first circular rod 27 and the vibrating ball 28 to rotate, when the vibrating ball 28 does not contact the circular shell 4, the second spring is in an extended state, when the vibrating ball 28 contacts the circular shell 4 through rotation,The vibrating ball 28 will knock on the circular shell 4, at this time the second spring contracts, making the circular shell 4 vibrate, which not only makes the roasting of nut raw materials more uniform, but also further improves the effect and efficiency of roasting, and the vibration prevents the nut raw materials and the frying sand from adhering together, and the vibration can prevent the nut raw materials and the frying sand from adhering to the inner side wall of the circular shell 4, and when the nut raw materials are discharged, through vibration, it can assist in unloading, and by placing the collection shell 30 on the placement plate 29, and then rotating the first threaded rod 33, the first threaded rod 33 drives the clamping plate 32 to move, and the clamping plate 32 cooperates with the fixed plate 31 to fix the collection shell 30, so that the nut raw materials are roasted and discharged through the annular cleaning plate 21, the roasting plate 8, the auxiliary plate 13 and the vibration, the nut raw materials fall into the collection shell 30 through the arc-shaped through slot 3, thereby completing the collection of the nut raw materials, and the roasting, separation and collection of the nut raw materials are automatically completed without manual assistance, making the device more intelligent, and the roasting, separation and collection of the nut raw materials are more simple and convenient, and through the collection shell 30 including the first square shell 301 and the second square shell 302, the collection shell 30 is placed, the second square shell 302 is placed on the placement plate 29 first, then the first square shell 301 is placed on the second square shell 302, the first square shell 301 is clamped into the second square shell 302 through the back-shaped block 34, and the first square shell 301 and the second square shell 302 are fixed, and then the first square shell 301 and the second square shell 302 are fixed through the clamping plate 32 and the fixed plate 31, so that the device can screen the nut raw materials while collecting the nut raw materials, thereby classifying the nut raw materials according to their size, thereby simplifying the screening operation after roasting the nuts, thereby reducing the time required for nut production and processing, and further improving the efficiency of nut production and processing, and when the rotation of the first motor 6 and the threaded shaft 7 drives the inner side wall bottom of the circular shell 4 to be flush with the inner side wall bottom of the arc-shaped through slot 3, at this time the second motor 11 drives the rotating shaft 12 to rotate, so that the roasting plate 8, the auxiliary plate 13 and the annular cleaning plate 21 assist in unloading, the fifth circular rod 43 will be ejected through the fourth spring without the obstruction of the box 1, at this time the circular platform block 44 on the fifth circular rod 43 will be ejected, at this time part of the circular platform block 44 is located in the box 1 and part of the circular platform block 44 is located in the arc-shaped through slot 3, at this time the circular platform block 44 will move on the rotating shaft 12 and the circular shell 4 while encountering the linkage block 41, because the contact surface between the circular platform block 44 and the linkage block 41 is inclined, so that when the circular platform block 44 contacts the linkage block 41, it will contract, when the circular shell 4 moves to the specified position, the circular platform block 44 will be ejected into the linkage block 41 due to the elastic force of the fourth spring, so that when the rotating shaft 12 rotates, the rotating shaft 12 will drive the fifth circular rod 43 and the circular platform block 44 to rotate, when the circular platform block 44 rotates, the clamping block 45 on the circular platform block 44 encounters the clamping groove 46 on the linkage block 41, the clamping block 45 will be clamped into the clamping groove 46, so that the rotation of the circular platform block 44 drives the linkage block 41 to rotate,The linkage block 41 drives the first rotating rod 37 to rotate, because the outer wall of the first rotating rod 37 and the second rotating rod 40 is fixed with the second sprocket 47, and a pair of second sprockets 47 are connected through the second chain 48, so that the rotation of the first rotating rod 37 drives the second rotating rod 40 to rotate through the second sprocket 47 and the second chain 48, so that the second rotating rod 40 drives the push rod 39 to rotate, when one of the pair of push rods 39 encounters the push plate 38, the rotation of the push rod 39 will make the push plate 38 move, so that the push plate 38 drives the placement plate 29 to move, when the push rod 39 leaves the push plate 38, the other push rod 39 will contact the push plate 38, so that the push plate 38 moves in the other direction, so that the placement plate 29 will shake back and forth, so that the shaking of the placement plate 29 drives the collection shell 30 to shake, so that the force generated by the shaking makes the nut raw materials in the collection shell 30 shake back and forth, so that the nut raw materials are not easy to accumulate, so that the nut raw materials in the collection shell 30 are not easy to overflow, also makes the nut raw materials placed in the collection shell 30 more evenly, when the nut raw materials are collected, the first motor 6 drives the rotating shaft 12 to move down, at this time the inclined surface of the circular block 44 will contact the inclined surface of the linkage block 41, at this time the circular block 44 will shrink, and when the circular block 44 encounters the inner wall bottom end of the arc-shaped through slot 3, it will also shrink, so that the circular block 44 will only drive the linkage block 41 to rotate when needed, and when not needed, the circular block 44 will not affect the operation of other mechanisms.

[0045] The preferred embodiments of the application disclosed above are only used to help explain the application. The preferred embodiments do not describe all the details, nor limit the application to the specific embodiments. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and describes these embodiments in order to better explain the principles and practical applications of the application, so that those skilled in the art can well understand and utilize the application. The application is limited by the claims and their entire scope and equivalents.

Claims

1. A stir-frying and separation device for nut production, comprising a box body (1); a sliding plate (2) is slidably connected to one side of the inner wall of the box body (1), and the top end of the outer wall of the box body (1) is open; an arc-shaped through groove (3) is opened on one side of the outer wall of the box body (1); a circular shell (4) is provided on one side of the outer wall of the sliding plate (2), and one end of the outer wall of the circular shell (4) is open, and the circular shell (4) matches the arc-shaped through groove (3); a group of separation holes (5) are opened on the outer wall of the circular shell (4); characterized in that A first motor (6) is fixedly connected to the top end of the outer wall of the box body (1); a threaded shaft (7) is provided at the output end of the first motor (6), and the bottom end of the outer wall of the threaded shaft (7) passes through the sliding plate (2); the threaded shaft (7) is threadedly connected to the sliding plate (2); a stir-frying member is provided in the circular shell (4); the stir-frying member includes a stir-frying plate (8); the bottom end of the outer wall of the sliding plate (2) is triangular; a group of circular through grooves (9) are provided at the top end of the outer wall of the sliding plate (2); one end of the outer wall of the circular shell (4) contacts one side of the inner wall of the box body (1); A placement groove (10) is provided on one side of the outer wall of the sliding plate (2); a second motor (11) is fixedly connected to the inner side wall of the placement groove (10); a rotating shaft (12) is provided at the output end of the second motor (11), and one end of the outer wall of the rotating shaft (12) passes through one side of the outer wall of the circular shell (4) and is located inside the circular shell (4); one end of the outer wall of a group of the stir-frying plates (8) is fixedly connected to the outer side wall of the rotating shaft (12) located inside the circular shell (4); a group of the stir-frying plates (8) is placed vertically; a group of auxiliary plates (13) is fixedly connected to the outer side wall of the rotating shaft (12) located inside the circular shell (4), and the group of auxiliary plates (13) and the group of stir-frying plates (8) are staggered; the auxiliary plates (13) are placed horizontally; The stir-fry plate (8) and the auxiliary plate (13) both comprise a square shell (801) and a square plate (802); the outer wall of the square plate (802) is slidably connected to the inner wall of the square shell (801); a first spring is fixedly connected to one side of the inner wall of the square shell (801), and one end of the outer wall of the first spring is fixedly connected to one side of the outer wall of the square plate (802); first inclined surfaces are provided at both side corners of one end of the outer wall of the square plate (802) outside the square shell (801); A reciprocating rod (20) is rotatably connected to one side of the outer wall of the circular shell (4); one end of the outer wall of the reciprocating rod (20) passes through one side of the outer wall of the circular shell (4) and is located in the circular shell (4); an annular cleaning plate (21) is provided on the outer side wall of one end of the reciprocating rod (20) located in the circular shell (4), and the outer side wall of the annular cleaning plate (21) contacts the inner side wall of the circular shell (4); a second inclined surface is provided on the outer side wall of one end of the annular cleaning plate (21); the annular cleaning plate (21) matches the first inclined surface; a second gear (22) is fixedly connected to one end of the outer wall of the reciprocating rod (20) located outside the circular shell (4); an annular groove (23) is provided on one side of the outer wall of the sliding plate (2); a second annular rack (24) is fixedly connected to the inner side wall of the annular groove (23); the second annular rack (24) and the second gear (22) are meshed with each other; the second gear (22) is located in the annular groove (23).

2. A stir-frying and separating device for nut production according to claim 1, characterized in that: A square groove (14) is provided on one side of the outer wall of the sliding plate (2); a rotating rod (15) is rotatably connected to one side of the inner wall of the square groove (14); one end of the outer wall of the circular shell (4) is rotatably connected to one side of the outer wall of the sliding plate (2); a first annular rack (16) is fixedly connected to the outer wall of the circular shell (4); a first gear (17) is fixedly connected to one end of the outer wall of the rotating rod (15), and the first gear (17) and the first annular rack (16) are meshed with each other; the outer walls of the rotating rod (15) and the rotating shaft (12) are both fixedly connected to a first sprocket (18), and the pair of first sprockets (18) are connected by a first chain (19).

3. A stir-frying and separating device for nut production according to claim 2, characterized in that: A circular rod (25) is fixedly connected to one end of the outer wall of the first gear (17); a group of first circular shells (26) are fixedly connected to the outer wall of the circular rod (25); a first circular rod (27) is fixedly connected to one side of the inner wall of the first circular shell (26) via a second spring, and the outer wall of the first circular rod (27) is slidably connected to the inner wall of the first circular shell (26); a vibration ball (28) is fixedly connected to one end of the outer wall of the first circular rod (27), and the vibration ball (28) matches the circular shell (4).

4. A stir-frying and separating device for nut production according to claim 3, characterized in that: A placement plate (29) is provided on one side of the outer wall of the box body (1); a collection shell (30) is slidably placed on the top end of the outer wall of the placement plate (29), and the collection shell (30) is located below the arc-shaped through groove (3); a fixing plate (31) is fixedly connected to the top end of the outer wall of the placement plate (29); a clamping plate (32) is slidably connected to the top end of the outer wall of the placement plate (29); a first threaded rod (33) is threadedly connected to the top end of the outer wall of the placement plate (29) through a first square plate, and one end of the outer wall of the first threaded rod (33) is rotatably connected to one side of the outer wall of the clamping plate (32).

5. The stir-frying and separating device for nut production according to claim 4, characterized in that: The collecting shell (30) comprises a first square shell (301) and a second square shell (302); a circular block (34) is fixedly connected to the bottom end of the outer wall of the first square shell (301), and the circular block (34) matches the inner wall of the second square shell (302); a group of screening holes (35) are opened at the bottom end of the inner wall of the first square shell (301); the outer wall of the circular block (34) is slidably placed on the inner wall of the second square shell (302); the first square shell (301) matches the arc-shaped through groove (3).

6. The stir-frying and separating device for nut production according to claim 5, characterized in that: One side of the outer wall of the placement plate (29) is slidably connected to one side of the outer wall of the box body (1); one side of the outer wall of the box body (1) is fixedly connected to a connecting plate (36); one side of the outer wall of the connecting plate (36) is rotatably connected to a first rotating rod (37), and one end of the outer wall of the first rotating rod (37) passes through the connecting plate (36); a pair of toggle plates (38) are fixedly connected to the bottom end of the outer wall of the placement plate (29), and the pair of toggle plates (38) are tilted and symmetrical about the center line of the placement plate (29); the first rotating rod (37) passes through the outer side wall of one end of the connecting plate (36) and is fixedly connected to a pair of toggle rods (39), and the pair of toggle rods (39) match the pair of toggle plates (38); one side of the outer wall of the connecting plate (36) is rotatably connected to a second rotating rod (40), and one end of the outer wall of the second rotating rod (40) passes through the connecting plate (36); the second rotating rod (40) passes through the connecting plate (36) One end of the outer wall of the rotating shaft (12) is fixedly connected to a linkage block (41), and the linkage block (41) is located in the arc-shaped through groove (3); one end of the outer wall of the rotating shaft (12) is provided with a first circular groove (42); one side of the inner wall of the first circular groove (42) is fixedly connected to a fifth circular rod (43) through a fourth spring, and the outer wall of the fifth circular rod (43) is slidably connected to the inner wall of the first circular groove (42); one end of the outer wall of the fifth circular rod (43) is fixedly connected to a truncated cone block (44), and The front end of the truncated cone block (44) is located in the arc-shaped through groove (3); the truncated cone block (44) matches the linkage block (41); a positioning block (45) is fixedly connected to the outer wall of the truncated cone block (44); a group of positioning grooves (46) are opened on the inner wall of the linkage block (41); one end of the outer wall of the first rotating rod (37) and the second rotating rod (40) are fixedly connected to a second sprocket (47), and the pair of second sprockets (47) are connected by a second chain (48).

Citation Information

Patent Citations

  • Nut stir-frying equipment

    CN220157541U

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    CN221690006U