A raw material screening apparatus for fruit canning

By designing a composite mechanism and a processing mechanism, the problems of protecting and cleaning fruit screening equipment in fruit canning are solved, achieving efficient screening and cleaning, and extending the service life of the equipment.

CN119303836BActive Publication Date: 2025-11-28HANDAN XINGXIANG FOOD CO LTD
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Patent Information

Application Number
CN202411755218.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-11-28
Estimated Expiration
2044-12-03

AI Technical Summary

Technical Problem

Existing fruit canning raw material screening equipment is prone to causing fruit to be thrown out during the screening process, resulting in damage and waste. It also has low processing efficiency, simple structure, and cannot effectively protect the fruit surface and remove impurities.

Method used

A composite mechanism was designed, including an input mechanism, a cleaning mechanism, a stirring mechanism, and a processing mechanism. The central rotating shaft and the stirring mechanism are driven by a motor to control the material descent speed, reduce collisions, clean impurities on the surface of the fruit, and adsorb impurities on the inner wall by a fan. The curved tube and funnel tube structure are used to improve the cleaning efficiency.

Benefits of technology

It effectively protects the surface of fruits, reduces damage and bacterial infection, improves cleaning speed and internal cleanliness of equipment, extends equipment life, and ensures material quality and screening efficiency.

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    Figure CN119303836B_ABST
Patent Text Reader

Abstract

The application discloses a raw material screening device for fruit can processing and relates to the technical field of raw material screening, which comprises a composite mechanism. The raw material screening device for fruit can processing is designed through the composite mechanism. Fruits enter the composite shell from the input mechanism. On one hand, the device controls the descending flow of materials. On the other hand, the device slows down the descending speed of the fruits, reduces the collision between the fruits and the device, avoids the damage of the surface of the fruits, influences the edible taste and avoids bacterial infection. The first motor is started to drive the central shaft to rotate. The cleaning mechanism is used for rubbing the fruits to clean the impurities on the surface of the fruits, remove the soil and branches and leaves on the surface of the fruits and improve the cleanliness of the fruits. When the first motor is operated, the second motor is simultaneously operated. The second motor is used for driving the stirring mechanism to rotate and rotate and adapt to the cleaning mechanism. The stirring mechanism is used for driving the fruits to rotate, promotes the rubbing between the fruits and the cleaning mechanism, improves the cleaning speed of the fruits and improves the operation efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of raw material screening, in particular to a raw material screening device for fruit can processing. BACKGROUND

[0002] Fruit cans are named differently according to different materials. Generally, the raw materials of fruit cans are derived from fruits, including yellow peaches, apples, lychees, strawberries, and hawthorns. The products mainly include yellow peach cans, strawberry cans, and orange cans. Fruit cans are generally sterilized, sealed, and added with preservatives to prevent food spoilage, so as to achieve the purpose of long-term storage. Fruit cans need to be pre-screened during production to remove impurities such as mud blocks and small stones in the fruit. The existing screening devices mostly move the screening frame left and right to screen the mud blocks and small stones in the fruit. When the existing screening devices screen the fruit, the fruit or mud blocks and small stones may be thrown out from above the screening frame, which may cause harm to the workers. At the same time, the fruit thrown to the ground will also cause waste.

[0003] The existing raw material screening device for fruit can processing has a single structure, imperfect processing content, and low processing efficiency, so a new design is needed for this situation. SUMMARY

[0004] To achieve the above purpose, the present application is implemented by the following technical scheme: a raw material screening device for fruit can processing, comprising:

[0005] A composite mechanism for cleaning fruit raw materials;

[0006] A processing mechanism for cleaning the inside of the composite mechanism;

[0007] A frame for supporting the composite mechanism;

[0008] A screening device for sorting fruit raw materials;

[0009] The outer side of the composite mechanism is fixedly connected with the inner side of the frame, the bottom of the composite mechanism is fixedly connected with the top of the processing mechanism, and the top of the frame is fixedly connected with the outer side of the screening device;

[0010] The composite mechanism includes a composite shell, the top of the composite shell is fixedly connected with an input mechanism, fruits enter the composite shell from the input mechanism, the input mechanism controls the descending flow of materials on one hand and slows down the descending speed of fruits on the other hand, reduces the collision between fruits and the equipment, avoids the damage of the surface of fruits, affects the taste of food and avoids bacterial infection, the top of the composite shell is fixedly connected with a first motor on one side close to the input mechanism, the first motor drives the rotation of the central shaft, the cleaning mechanism rubs the fruits, the surface of the fruits is cleaned, the dirt and leaves on the surface of the fruits are removed, the cleanliness of the fruits is improved, the output end of the first motor is fixedly connected with the central shaft, the cleaning mechanism is fixedly connected on the outer side of the central shaft away from the first motor, the second motor works at the same time when the first motor works, the stirring mechanism is driven to rotate by the second motor and is matched with the rotation of the cleaning mechanism, the fruits are driven to rotate by the stirring mechanism, the fruits are rubbed with the cleaning mechanism, the cleaning speed of the fruits is improved, the working efficiency is improved, the speed of the dirt on the surface of the fruits is accelerated, the middle of the inner wall of the composite shell is fixedly connected with a receiving plate, the dirt is discharged from the bottom of the composite shell, the receiving plate is rotatably connected with the stirring mechanism on one side close to the input mechanism, the outer side of the receiving plate away from the stirring mechanism is fixedly connected with a second motor, the outer side of the composite shell close to the screening device is fixedly connected with a gate, the gate is opened, the stirring mechanism pushes the fruits to move to the screening device, and the screening effect of the fruits is achieved.

[0011] Preferably, the input mechanism includes an input shell, the bottom of the input shell is fixedly connected with the top of the composite shell, the inner side of the input shell is fixedly connected with a connecting bracket, the inner side of the connecting bracket is fixedly connected with a connecting rod, the outer side of the connecting rod is slidably connected with a ring-shaped shell, the fruits are put into the top of the input shell, the fruits collide with the ring-shaped shell, the ring-shaped shell extrudes the spring strip, the damping and buffering effect is achieved, the surface of the fruits is protected, the quality of the materials is improved, and the abrasion of the materials is reduced, one side of the outer side of the ring-shaped shell is fixedly connected with a latex tube, the materials enter the latex tube and rub the surface of the latex tube, the friction between the materials and the latex tube is increased, the descending speed of the materials is slowed down, the flow of the materials is controlled, and the kinetic energy of the falling materials is reduced, the spring strip is sleeved on one side of the connecting rod close to the latex tube.

[0012] Preferably, the cleaning mechanism includes a connecting column that rotates with the central rotating shaft, and the brush block rubs against the surface of the material to clean the surface of impurities and prevent the impurities from polluting the material. The inner side of the connecting column is fixedly connected to the outer side of the central rotating shaft, the outer side of the connecting column is fixedly connected with a cylindrical shell, the inner side of the cylindrical shell is provided with a spring block, and when the brush block rubs against the material, the sliding rod slides in the inner side of the cylindrical shell to press the spring block, thereby achieving the effect of shock absorption and buffering, improving the stability of the component during operation, protecting the component, prolonging the service life of the equipment, the inner wall of the cylindrical shell is slidingly connected with a sliding rod, the side of the sliding rod away from the spring block is fixedly connected with a connecting frame, and the outer side of the connecting frame is fixedly connected with a brush block.

[0013] Preferably, the stirring mechanism includes a rotating block that is driven by the second motor to rotate, and the arc-shaped wiper rubs against the inner wall of the equipment to clean the impurities in the equipment, keep the equipment clean, prevent the impurities from polluting the material, and the bottom of the rotating block is rotatably connected to the inner side of the receiving plate, the outer side of the rotating block is fixedly connected with a square frame, the bottom of the rotating block is fixedly connected to the output end of the second motor, the outer side of the square frame away from the rotating block is fixedly connected with an arc-shaped wiper, and the outer side of the arc-shaped wiper is provided with a square groove. By opening the square groove, the contact area is increased, and the friction cleaning effect is improved.

[0014] Preferably, the square frame and the arc-shaped wiper are fixedly connected between the opposite surfaces of the square frame and the arc-shaped wiper, and the spring piece is made of elastic material. When the material enters from the top of the input mechanism, the spring piece collides with the material to slow down the pressure of the falling material, protect the material, improve the fruit integrity, and the outer side of the spring piece away from the square frame is fixedly connected with a silica gel block.

[0015] Preferably, the processing mechanism includes a processing shell, the outer side of the processing shell is fixedly connected with a curved pipe, the curved pipe adopts a curved structure, plays a guiding role on the gas, improves the operation efficiency, the outer side of the curved pipe away from the processing shell is fixedly connected with a fan, wind power is generated through the fan, the impurities and dust on the inner wall of the equipment are adsorbed, the internal impurity cleaning speed is improved, the impurity residue is reduced, the bottom of the processing shell is fixedly connected with a funnel pipe, the rotating mechanism is rotated through the wind power, the mud blocks and branches and leaves are crushed, the accumulation in the structure is prevented, and the normal operation of the equipment is affected.

[0016] Preferably, the rotating mechanism includes a fixed frame, the outer side of the fixed frame is fixedly connected with the inner side of the processing shell, the opposite surfaces of the fixed frame are rotatably connected with a cylindrical block, the outer side of the cylindrical block is fixedly connected with a square plate, and the outer side of the square plate is fixedly connected with a crushing block. The wind power generated by the fan drives the square plate to rotate, the contact area with the airflow is increased through the square plate, the rotating efficiency is improved, and the crushing block is driven to rotate, so that the crushing effect on the solid impurities is achieved. The crushing of impurities avoids the accumulation of impurities and affects the discharge effect.

[0017] Preferably, a square notch is formed in the outer side of the square plate away from the cylindrical block, the square plate is rotated to drive the friction block to rotate, the inner wall of the processing shell is scraped through the friction column, the surface impurity deposition is reduced, the equipment inside is prevented from being corroded by impurities, and the service life of the equipment is prolonged. The inner side of the square notch is rotatably connected with a friction block, the outer side of the friction block is fixedly connected with a rhombus block, the rhombus block is arranged on the surface of the friction block, the scraping effect on the inner wall is increased through the triangular structure design, the impurity removal intensity is improved, and the side of the square plate close to the friction block is fixedly connected with a wiping mechanism.

[0018] Preferably, the wiping mechanism includes a trapezoidal block, the trapezoidal block is rotated when the friction column rubs against the impurities, and is frictionally matched with the surface of the trapezoidal block, so that the cleaning effect of the component is achieved, the impurities on the surface of the component are reduced, and the subsequent cleaning effect is prevented from being affected. A block surface notch is formed in one side of the outer side of the trapezoidal block, the block surface notch is formed, the chip removal effect is increased through the recess, the flowability of the impurities on the surface of the component is improved, the impurities are simultaneously reduced, and a certain heat dissipation effect is achieved through the slot, the performance of the component is protected, and the side of the outer side of the trapezoidal block away from the block surface notch is fixedly connected with a telescopic rod. The outer side of the telescopic rod is sleeved with a metal strip, the metal strip adopts a spring structure, has a certain buffering effect, and the stability of the component is achieved.

[0019] The fruit can processing raw material screening equipment provided by the application has the following beneficial effects:

[0020] I. The raw material screening device for canned fruit processing, through the design of the composite mechanism, the fruit enters the composite housing from the input mechanism, which controls the material flow and slows down the fruit descending speed, reduces the collision between the fruit and the equipment, avoids the damage of the fruit surface, affects the taste of the food, avoids bacterial infection, starts the first motor to drive the central shaft to rotate, and the cleaning mechanism rubs the fruit to clean the impurities on the surface of the fruit, and the fruit surface soil and leaves are separated, improving the cleanliness of the fruit. The second motor operates simultaneously with the first motor, and the stirring mechanism rotates and rotates with the cleaning mechanism. The fruit is rotated by the stirring mechanism, so as to promote the friction between the fruit and the cleaning mechanism, improve the cleaning speed of the fruit, improve the operation efficiency, speed up the separation speed of the impurities on the surface of the fruit, and then open the gate to make the stirring mechanism push the fruit to the screening device, so as to achieve the screening effect of the fruit.

[0021] II. The raw material screening device for canned fruit processing, through the design of the input mechanism, the fruit raw material enters from the top of the input housing, and the fruit collides with the annular housing to extrude the spring strip, so as to achieve the effect of shock absorption and buffering, thereby protecting the fruit skin, improving the material quality, reducing the material wear, and at the same time, the material enters the latex tube from the annular housing and rubs the surface of the latex tube. The friction between the material and the latex material increases the friction force, so as to slow down the material descending speed, thereby controlling the material flow and reducing the kinetic energy of the material falling.

[0022] III. The raw material screening device for canned fruit processing, through the design of the cleaning mechanism, the connecting column rotates with the central shaft, and the brush block rubs the surface of the material to clean the surface impurities and avoid the pollution of the impurities to the material. When the brush block rubs the material, the sliding rod slides in the cylindrical housing to extrude the spring block, so as to achieve the effect of shock absorption and buffering, improve the stability of the component operation, and have a certain protection effect on the component, prolong the service life of the equipment.

[0023] IV. The raw material screening device for canned fruit processing, through the design of the stirring mechanism, the rotating block is driven by the second motor to rotate, and the arc-shaped rubbing block rubs the inner wall of the equipment to clean the inner wall impurities, reduce the impurities in the equipment, keep the equipment clean, prevent the impurities from polluting the material, and increase the contact area by opening the square groove. The spring piece is made of elastic material, which can reduce the pressure of the material falling and protect the material, improve the fruit integrity, and prolong the service life of the equipment.

[0024] Five, the raw material screening equipment for canned fruit processing, through the design of the processing mechanism, the wind power generated by the fan is used to adsorb the impurities and dust on the inner wall of the equipment, improve the internal impurity cleaning speed, reduce the impurity residue, the curved tube adopts a curved structure, which plays a guiding role on the gas, improves the work efficiency, the rotating mechanism is driven to rotate by the wind power, which plays a crushing role on the mud blocks and leaves, prevents the accumulation in the structure, affects the normal operation of the equipment, the funnel pipe adopts a structure of wide at one end and narrow at the other end, according to Bernoulli's principle, the object flow speed is improved by compressing the pipeline diameter. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is an external structure schematic view of the raw material screening equipment for canned fruit processing.

[0026] Figure 2 It is a cross-sectional structure schematic view of the raw material screening equipment for canned fruit processing.

[0027] Figure 3 It is a cross-sectional structure schematic view of the composite mechanism.

[0028] Figure 4 It is a cross-sectional structure schematic view of the input mechanism.

[0029] Figure 5 It is a cross-sectional structure schematic view of the cleaning mechanism.

[0030] Figure 6 It is a structure schematic view of the stirring mechanism.

[0031] Figure 7 It is a cross-sectional structure schematic view of the processing mechanism.

[0032] Figure 8 It is a structure schematic view of the rotating mechanism.

[0033] Figure 9 It is a structure schematic view of the wiping mechanism.

[0034] In the figure: 1, composite mechanism; 2, processing mechanism; 3, frame; 4, screening device; 11, composite housing; 12, input mechanism; 13, first motor; 14, center shaft; 15, cleaning mechanism; 16, receiving plate; 17, second motor; 18, stirring mechanism; 19, gate; 121, input housing; 122, connecting bracket; 123, connecting rod; 124, spring bar; 125, annular housing; 126, latex tube; 151, adapter column; 152, cylindrical housing; 153, spring block; 154, sliding rod; 155, connecting frame; 156, brush block; 181, rotating block; 182, square frame; 183, arc-shaped wiping block; 184, square groove; 185, reed; 186, silica gel block; 21, processing housing; 22, curved tube; 23, fan; 24, funnel tube; 25, rotating mechanism; 251, fixed frame; 252, cylindrical block; 253, square plate; 254, breaking block; 255, square notch; 256, friction block; 257, diamond block; 258, wiping mechanism; 2581, trapezoidal block; 2582, block surface notch; 2583, telescopic rod; 2584, metal strip. DETAILED DESCRIPTION

[0035] The application will be further described below in conjunction with the drawings and specific embodiments. The embodiments of the application are given for illustrative and descriptive purposes only and are not exhaustive or limiting of the application. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments were chosen and described in order to best explain the principles of the application and its practical application and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

[0036] The first embodiment, as shown in the figure, the application provides a technical scheme: a raw material screening device for fruit can processing, comprising a composite mechanism 1, the composite mechanism 1 is used for cleaning fruit raw materials; Figures 1 to 3 A processing mechanism 2 is used for cleaning the inside of the composite mechanism 1;

[0037] A frame 3 is used for supporting the composite mechanism 1;

[0038] A screening device 4 is used for sorting fruit raw materials;

[0039] The outer side of the composite mechanism 1 is fixedly connected with the inner side of the frame 3, the bottom of the composite mechanism 1 is fixedly connected with the top of the processing mechanism 2, and the top of the frame 3 is fixedly connected with the outer side of the screening device 4;

[0040]

[0041] ​The composite mechanism 1 comprises a composite shell 11, the top of the composite shell 11 is fixedly connected with an input mechanism 12, the top of the composite shell 11 is fixedly connected with a first motor 13 on one side close to the input mechanism 12, the output end of the first motor 13 is fixedly connected with a central rotating shaft 14, the outer side of the central rotating shaft 14 is fixedly connected with a cleaning mechanism 15 away from the first motor 13, the middle of the inner wall of the composite shell 11 is fixedly connected with a receiving plate 16, the receiving plate 16 is rotatably connected with a stirring mechanism 18 on one side close to the input mechanism 12, the outer side of the receiving plate 16 is fixedly connected with a second motor 17 away from the stirring mechanism 18, and the outer side of the composite shell 11 is fixedly connected with a gate 19 close to the screening device 4. The fruits enter the composite shell 11 from the input mechanism 12, the input mechanism 12 controls the descending flow of the materials on one hand and slows down the descending speed of the fruits on the other hand, reduces the collision between the fruits and the equipment, avoids the damage of the surface of the fruits, affects the edible taste, avoids bacterial infection, starts the first motor 13 to drive the central rotating shaft 14 to rotate, makes the cleaning mechanism 15 rub the fruits, achieves the effect of cleaning the impurities on the surface of the fruits, falls off the soil and leaves on the surface of the fruits, improves the cleanliness of the fruits, the second motor 17 operates at the same time when the first motor 13 operates, drives the stirring mechanism 18 to rotate and adapt to the rotation of the cleaning mechanism 15 through the second motor 17, drives the fruits to rotate through the stirring mechanism 18, so as to make the fruits rub the cleaning mechanism 15, improve the cleaning speed of the fruits, improve the operation efficiency, speed up the separation speed of the impurities on the surface of the fruits, and then the impurities are discharged from the bottom of the composite shell 11, and then the gate 19 is opened, so as to make the stirring mechanism 18 push the fruits to move to the screening device 4, so as to achieve the screening effect of the fruits.

[0042] The second embodiment is based on the first embodiment, please refer to Figures 4 to 6 As shown in the first embodiment, the input mechanism 12 comprises an input shell 121, the bottom of the input shell 121 is fixedly connected with the top of the composite shell 11, the inner side of the input shell 121 is fixedly connected with a connecting bracket 122, the inner side of the connecting bracket 122 is fixedly connected with a connecting rod 123, the outer side of the connecting rod 123 is slidably connected with a ring-shaped shell 125, the outer side of the ring-shaped shell 125 is fixedly connected with a latex tube 126, and the side of the connecting rod 123 close to the latex tube 126 is sleeved with a spring strip 124. The fruits are put into the top of the input shell 121, the fruits collide with the ring-shaped shell 125, the ring-shaped shell 125 extrudes the spring strip 124, so as to achieve the effect of shock absorption and buffering, so as to protect the surface of the fruits, improve the quality of the materials, reduce the abrasion of the materials, and at the same time, the materials enter the latex tube 126 from the ring-shaped shell 125, rub the surface of the latex tube 126, increase the friction force between the materials through the latex material, so as to slow down the descending speed of the materials, control the flow of the materials, and reduce the kinetic energy of the materials falling.

[0043] The cleaning mechanism 15 comprises a connecting column 151, the inner side of the connecting column 151 is fixedly connected with the outer side of the central rotating shaft 14, the outer side of the connecting column 151 is fixedly connected with a cylindrical shell 152, the inner side of the cylindrical shell 152 is provided with a spring block 153, the inner wall of the cylindrical shell 152 is slidingly connected with a sliding rod 154, the side, away from the spring block 153, of the sliding rod 154 is fixedly connected with a connecting frame 155, and the side, outside the connecting frame 155, is fixedly connected with a brush block 156. The connecting column 151 rotates with the central rotating shaft 14, so that the brush block 156 rubs against the surface of the material, thereby achieving the effect of cleaning the surface impurities and avoiding the pollution of the impurities to the material. When the brush block 156 rubs against the material, the sliding rod 154 slides in the cylindrical shell 152 to press the spring block 153, thereby achieving the effect of shock absorption and buffering, improving the stability of the component during operation, protecting the component to a certain extent, and prolonging the service life of the equipment.

[0044] The stirring mechanism 18 comprises a rotating block 181, the bottom of the rotating block 181 is rotationally connected with the inner side of the receiving plate 16, the outer side of the rotating block 181 is fixedly connected with a square frame 182, the bottom of the rotating block 181 is fixedly connected with the output end of the second motor 17, the side, outside the square frame 182 and away from the rotating block 181, is fixedly connected with an arc-shaped rubbing block 183, and the side, outside the arc-shaped rubbing block 183, is provided with a square recess 184. The second motor 17 drives the rotating block 181 to rotate, so that the arc-shaped rubbing block 183 rubs against the inner wall of the equipment, thereby achieving the effect of cleaning the inner wall impurities, reducing the impurities inside the equipment, keeping the inside of the equipment clean, preventing the impurities from polluting the material, and increasing the contact area by slotting to improve the friction cleaning effect.

[0045] The opposite faces of the square frame 182 and the arc-shaped rubbing block 183 are fixedly connected with a reed 185, and the side, outside the reed 185 and away from the square frame 182, is fixedly connected with a silica gel block 186. The reed 185 is made of elastic material, and when the material falls from the top of the input mechanism 12, it collides with the reed 185, thereby achieving the effect of reducing the falling pressure of the material, protecting the material to a certain extent, improving the fruit integrity, and further improving the buffering effect by the silica gel material of the silica gel block 186, thereby prolonging the service life of the equipment.

[0046] The third embodiment is based on the first and second embodiments, and please refer to Figures 7 to 9As shown, the processing mechanism 2 comprises a processing shell 21, the outer side of the processing shell 21 is fixedly connected with a curved pipe 22, the outer side of the curved pipe 22 is fixedly connected with a fan 23 away from the processing shell 21, the bottom of the processing shell 21 is fixedly connected with a funnel pipe 24, and the inner wall of the processing shell 21 is fixedly connected with a rotating mechanism 25. The fan 23 generates wind power to adsorb impurities and dust on the inner wall of the equipment, improves the cleaning speed of the impurities inside, reduces the residue of the impurities, the curved pipe 22 adopts a curved structure to guide the gas and improve the operation efficiency, the rotating mechanism 25 is driven to rotate by the wind power to crush the mud and leaves and prevent the accumulation in the structure to affect the normal operation of the equipment, and the funnel pipe 24 adopts a structure that one end is wide and the other end is narrow, according to Bernoulli's principle, the diameter of the pipeline is compressed to improve the flow speed of the object.

[0047] The rotating mechanism 25 comprises a fixed frame 251, the outer side of the fixed frame 251 is fixedly connected with the inner side of the processing shell 21, the opposite surfaces of the fixed frame 251 are rotatably connected with a cylindrical block 252, the outer side of the cylindrical block 252 is fixedly connected with a square plate 253, and the outer side of the square plate 253 is fixedly connected with a crushing block 254. The wind power generated by the fan 23 drives the square plate 253 to rotate, the contact area with the airflow is increased through the square plate 253 to improve the rotation efficiency, and the crushing block 254 is driven to rotate to crush the solid impurities, and the crushing of the impurities avoids the accumulation of the impurities to affect the discharge effect.

[0048] A square notch 255 is formed in the outer side of the square plate 253 away from the cylindrical block 252, the inner side of the square notch 255 is rotatably connected with a friction block 256, the outer side of the friction block 256 is fixedly connected with a rhombic block 257, and the side of the square plate 253 close to the friction block 256 is fixedly connected with a wiping mechanism 258. The square plate 253 drives the friction block 256 to rotate when rotating, the inner wall of the processing shell 21 is scraped through the friction block 256 to reduce the deposition of the surface impurities, prevent the impurities from corroding the inside of the equipment, prolong the service life of the equipment, the rhombic block 257 is arranged on the surface of the friction block 256, the scraping effect on the inner wall is increased through the triangular structure design to improve the removal degree of the impurities.

[0049] The wiping mechanism 258 comprises a trapezoidal block 2581, a block surface cutout 2582 is formed on one side of the outer side of the trapezoidal block 2581, a telescopic rod 2583 is fixedly connected to the side of the outer side of the trapezoidal block 2581 away from the block surface cutout 2582, and a metal strip 2584 is sleeved on the outer side of the telescopic rod 2583. When the friction block 256 rotates by friction with impurities, the trapezoidal block 2581 surface is rubbed to achieve the effect of cleaning the components, reducing the impurities on the surface of the components, preventing the subsequent cleaning effect from being affected, and increasing the chip removal effect by forming the block surface cutout 2582 and the groove, improving the flowability of the impurities on the surface of the components, reducing the adhesion of the impurities, and at the same time, the groove plays a certain heat dissipation effect, protects the performance of the components, and the metal strip 2584 adopts a spring structure to play a certain buffering effect, so as to achieve the stability of the components.

[0050] In use, the staff puts the fruit raw materials into the input mechanism 12 at the top of the composite mechanism 1, the input mechanism 12 limits the flow speed of the materials to prevent blockage and slow down the descending speed of the materials, which protects the materials to a certain extent, prevents the surface of the materials from being damaged, and affects the taste of the fruit, after the fruit raw materials enter the composite mechanism 1, the first motor 13 drives the cleaning mechanism 15 to rotate, the second motor 17 drives the stirring mechanism 18 to rotate, when the materials descend into the composite shell 11, collide with the stirring mechanism 18, the impact of the materials is slowed down by the stirring mechanism 18, which protects the quality of the materials, at the same time, the stirring mechanism 18 rotates, drives the materials to rotate, and the cleaning mechanism 15 rubs and cleans the surface of the fruit raw materials, reduces the impurities on the surface of the materials, prevents the materials from being infected with impurities, and avoids food safety problems, the impurities on the surface of the materials move to the bottom of the composite shell 11 through the receiving plate 16, and finally are discharged from the inside of the processing mechanism 2, the materials move to the screening device 4 by the rotation of the stirring mechanism 18 through the opening of the gate 19, and move outward from small to large through the rotating spacing between the screening devices 4, so as to achieve the screening effect of the fruit materials.

[0051] The fan 23 is arranged in the processing mechanism 2, the impurities in the composite mechanism 1 are discharged outward by the wind power generated by the fan 23, so as to keep the inside of the equipment clean, prevent the juice and impurities of the materials from corroding and polluting the equipment, and prolong the service life of the equipment.

[0052] Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art and related fields without creative work shall belong to the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application, such as without special description and limitation, are implemented according to the conventional means in the art.

Claims

1. A fruit canning raw material screening apparatus characterized by comprising: a fruit feeding device; a fruit receiving device; a fruit conveying device; a fruit sorting device; a fruit discharging device; and a fruit sorting control device. Include: The composite mechanism (1) is used for cleaning fruit raw materials; The processing mechanism (2) is used for cleaning inside the composite mechanism (1); The frame body (3) is used for supporting the composite mechanism (1); The screening device (4) is used for sorting fruit raw materials; The outside of the composite mechanism (1) is fixedly connected with the inside of the frame body (3), the bottom of the composite mechanism (1) is fixedly connected with the top of the processing mechanism (2), and the top of the frame body (3) is fixedly connected with the outside of the screening device (4); Wherein, the composite mechanism (1) includes a composite shell (11), the top of the composite shell (11) is fixedly connected with an input mechanism (12), the side of the composite shell (11) close to the input mechanism (12) is fixedly connected with a first motor (13), the output end of the first motor (13) is fixedly connected with a center shaft (14), the side of the center shaft (14) away from the first motor (13) is fixedly connected with a cleaning mechanism (15), the middle of the inner wall of the composite shell (11) is fixedly connected with a receiving plate (16), the side of the receiving plate (16) close to the input mechanism (12) is rotatably connected with an agitating mechanism (18), the side of the receiving plate (16) away from the agitating mechanism (18) is fixedly connected with a second motor (17), and the side of the composite shell (11) close to the screening device (4) is fixedly connected with a gate (19); The input mechanism (12) includes an input shell (121), the bottom of the input shell (121) is fixedly connected with the top of the composite shell (11), the inside of the input shell (121) is fixedly connected with a connecting bracket (122), the inside of the connecting bracket (122) is fixedly connected with a connecting rod (123), the outside of the connecting rod (123) is slidably connected with a ring-shaped shell (125), the side of the ring-shaped shell (125) away from the connecting rod (123) is fixedly connected with a latex tube (126), and the side of the connecting rod (123) close to the latex tube (126) is sleeved with a spring strip (124); The agitating mechanism (18) includes a rotating block (181), the bottom of the rotating block (181) is rotatably connected with the inside of the receiving plate (16), the outside of the rotating block (181) is fixedly connected with a square frame (182), the bottom of the rotating block (181) is fixedly connected with the output end of the second motor (17), the side of the square frame (182) away from the rotating block (181) is fixedly connected with an arc-shaped rubbing block (183), and the side of the arc-shaped rubbing block (183) is provided with a square groove (184); The opposite surfaces of the square frame (182) and the arc-shaped rubbing block (183) are fixedly connected with a reed (185), and the side of the reed (185) away from the square frame (182) is fixedly connected with a silica gel block (186).

2. A fruit canning raw material screening apparatus according to claim 1, characterized by: The cleaning mechanism (15) includes a connecting column (151), the inner side of the connecting column (151) is fixedly connected with the outer side of the center rotating shaft (14), the outer side of the connecting column (151) is fixedly connected with a cylindrical shell (152), the inner side of the cylindrical shell (152) is provided with a spring block (153), the inner wall of the cylindrical shell (152) is slidably connected with a sliding rod (154), the side, away from the spring block (153), of the sliding rod (154) is fixedly connected with a connecting frame (155), one side, outside the connecting frame (155), is fixedly connected with a brush block (156).

3. A fruit canning raw material screening apparatus according to claim 1, characterized in that: The processing mechanism (2) includes a processing shell (21), the outer side of the processing shell (21) is fixedly connected with a curved pipe (22), one side, outside the curved pipe (22), away from the processing shell (21), is fixedly connected with a fan (23), the bottom of the processing shell (21) is fixedly connected with a funnel pipe (24), the inner wall of the processing shell (21) is fixedly connected with a rotating mechanism (25).

4. A fruit canning raw material screening apparatus according to claim 3, characterized in that: The rotating mechanism (25) includes a fixed frame (251), the outer side of the fixed frame (251) is fixedly connected with the inner side of the processing shell (21), the opposite sides of the fixed frame (251) are rotatably connected with a cylindrical block (252), the outer side of the cylindrical block (252) is fixedly connected with a square plate (253), the outer side of the square plate (253) is fixedly connected with a crushing block (254).

5. A fruit canning raw material screening apparatus according to claim 4, characterized in that: The outer side, away from the cylindrical block (252), of the square plate (253) is provided with a square notch (255), the inner side of the square notch (255) is rotatably connected with a friction block (256), the outer side of the friction block (256) is fixedly connected with a rhombus block (257), one side, close to the friction block (256), of the square plate (253) is fixedly connected with a wiping mechanism (258).

6. A fruit canning raw material screening apparatus according to claim 5, characterized in that: The wiping mechanism (258) includes a trapezoidal block (2581), one side, outside the trapezoidal block (2581), is provided with a block surface notch (2582), the outer side, away from the block surface notch (2582), of the trapezoidal block (2581) is fixedly connected with an extension rod (2583), the outer side of the extension rod (2583) is sleeved with a metal strip (2584).

Citation Information

Patent Citations

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