Storage device for food

Through the combined design of transmission components and anti-aggregation, anti-bacterial, anti-pollution and anti-erosion devices, the automation and aggregation problems of material cutting processing in food storage devices are solved, and automated packaging, disinfection and drying are realized, which improves storage efficiency and material quality.

CN120364481APending Publication Date: 2025-07-25SUZHOU XINGTU ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510698002.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

The existing food storage device requires manual participation when cutting and processing materials, making it difficult to achieve automated uninterrupted loading, and the materials are prone to sticking and aggregating, reducing the efficiency of storage pre-processing preparation.

Method used

The combination design of transmission components, anti-aggregation devices, anti-bacterial devices, anti-pollution devices and anti-erosion devices is adopted. Through pulley transmission, electric slide rails, fans, disinfection capsules and heating arc plates, the materials are automatically packaged, classified storage, disinfection and drying, and prevented aggregation and pollution.

Benefits of technology

It realizes automatic uninterrupted material discharge, ensures the cleanliness of materials and individual particle nature, improves storage efficiency and disinfection effect, prevents material aggregation and mold, and reduces manual labor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a food storage device, and relates to the technical field of storage. The device comprises a device main body, a transmission assembly is arranged on the right side of the top of the device main body, the transmission assembly is in transmission connection through an external belt pulley, a storage box is arranged at the bottom of the device main body, and the volume of the storage box is different, and the device further comprises an anti-gathering device arranged on the left side of the top of the device main body. The anti-gathering device comprises a material box, a filter plate and a funnel, the bottom of the material box is fixedly installed on the left side of the top of the device body, the outer wall of the filter plate is slidably installed in the material box, the bottom of the funnel is fixedly installed on the top of the material box, and the funnel is located on the left conveying track of the transmission assembly. The material slapping range of the elliptical sheets is expanded, the contact time of the materials and the elliptical sheets is prolonged, the aggregation phenomenon of the materials due to cloudy and rainy weather is avoided, and the individuality of material particles is guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of storage, and specifically to a storage device for food. Background Art

[0002] Food is a series of organic compounds that can provide trace nutrients required by organisms and need to be obtained through means such as diet.

[0003] A patent with the patent announcement number CN215854025U discloses a storage device for vitamin D soft capsules, including a screening box body, support legs, an air flow fan, a uniform feeding interface, a feeding hopper, a buffer discharging interface, a buffer assembly, a first limiting side plate, a second limiting side plate, a limiting guide post, a buffer spring, a fastening nut, a limiting guide hole, a vibration motor, a threaded connection steel ring, an exhaust air cloth bag, a storage hopper, a first baffle plate, a second baffle plate, and an internal thread interface. Support legs are respectively fixed at the four corners of the screening box body; an air flow fan is arranged on the screening box body; a threaded connection steel ring is threadedly connected to the screening box body; and an exhaust air cloth bag is fixed on the threaded connection steel ring. The beneficial effects of this patent are that it is convenient for installation and disassembly, has a buffering effect, and is convenient for use and operation.

[0004] However, this device still has deficiencies: when this device processes the feeding of materials, it requires the participation of staff, making it difficult to achieve an automated and uninterrupted feeding process. At the same time, the materials are prone to adhesion and aggregation and are difficult to disperse before storage, which increases the workload of the staff to a certain extent and reduces the efficiency of the pre-treatment preparation work for material storage. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a storage device for food, which solves the problems raised in the above background art that when processing the feeding of materials, it requires the participation of staff, making it difficult to achieve an automated and uninterrupted feeding process. At the same time, the materials are prone to adhesion and aggregation and are difficult to disperse before storage, which increases the workload of the staff to a certain extent and reduces the efficiency of the pre-treatment preparation work for material storage.

[0006] To achieve the above objectives, the present invention is realized through the following technical solutions: A storage device for food, including a device main body. A transmission component is provided on the right side of the top of the device main body, and the transmission component is connected by an external pulley. A storage box is provided at the bottom of the device main body, and the volume of the storage box is of different models. The transmission component is driven to operate by an external pulley, and the transmission component conveys the material to a funnel. Finally, the material is stored in different models of storage boxes according to different sizes and weights. It also includes an anti-aggregation device, an anti-bacterial device, an anti-pollution device, and an anti-corrosion device. The anti-aggregation device is provided on the left side of the top of the device main body, the anti-bacterial device is provided inside the device main body, the anti-pollution device is provided inside the anti-bacterial device, and the anti-corrosion device is provided inside the anti-aggregation device. The anti-aggregation device includes a material box, a filter plate, and a funnel. The bottom of the material box is fixedly installed on the left side of the top of the device main body. The outer wall of the filter plate is slidably installed inside the material box. Before the funnel drops the material into the material box, through the setting of the filter plate, the bottom of the funnel is fixedly installed on the top of the material box, and the funnel is located on the left conveying track of the transmission component, which shields the solid impurities carried in the material to a certain extent and ensures the cleanliness of the material product.

[0007] According to the above technical solution, the anti-aggregation device further includes an electric slide rail, an electric rotating column, an elliptical piece, and an arc piece. The front of the electric slide rail is fixedly installed on the front inner wall of the funnel. When the electric slide rail and the electric rotating column are started, the electric slide rail drives the electric rotating column to move up and down. The front of the electric rotating column is slidably installed inside the electric slide rail, and the electric rotating column drives the elliptical piece to rotate and move up and down. The elliptical piece beats the material up and down, and the bottom of the elliptical piece is fixedly installed on the outer wall surface of the electric rotating column to expand the beating range of the material and extend the contact time between the material and the elliptical piece. The left and right sides of the arc piece are fixedly installed on the arc surface of the outer wall of the elliptical piece. The elliptical piece drives the arc piece to move synchronously. When the arc piece contracts, it weakens the beating force of the elliptical piece on the material to prevent the material from splashing out of the funnel.

[0008] According to the above technical solution, the anti-bacterial device includes a blower, an L-shaped telescopic rod, a sliding plate, and a corrugated plate. The back of the blower is fixedly installed on the back inner wall of the device main body. When the blower is started, the material is blown by the strong blowing force of the blower, and the material falls into the corresponding storage box from near to far by its own weight. The top back of the L-shaped telescopic rod is fixedly installed on the front edge of the blower shaft. The blower shaft drives the L-shaped telescopic rod to rotate. The bottom of the sliding plate is slidably installed on the bottom inner wall of the device main body, and a chute is provided at the top of the sliding plate. The L-shaped telescopic rod drives the sliding plate to slide left and right through the restriction of the chute. The chute at the top of the sliding plate is slidably connected to the bottom of the telescopic end of the L-shaped telescopic rod. The corrugated plate is fixedly installed on the top of the sliding plate. The sliding plate drives the corrugated plate to move synchronously. The corrugated plate disturbs the wind force of the blower through its own corrugated arc surface, promoting the dynamic circulation of the gas inside the device main body.

[0009] According to the above technical scheme, the antibacterial device also includes a twisting plate, a knocking column, a disinfection capsule and an atomizing gun. The twisting plate is fixedly installed between the left side of the sliding plate and the left side of the inner wall of the device body. The sliding plate squeezes the twisting plate to deform synchronously. When the twisting plate is deformed, it drives the knocking column away from the inner wall of the device body. The front side of the knocking column is fixedly installed on the concave surface of the twisting plate, and the back side of the knocking column contacts the back side of the inner wall of the device body. When the twisting plate is reset, it drives the knocking column to reset and knock on the inner wall of the device body to generate vibration, and the disturbance effect of the wave plate on the gas is improved by vibration. The bottom of the disinfection capsule is fixedly installed on the bottom of the inner wall of the device body, and the back side of the disinfection capsule contacts the convex surface of the twisting plate. When the twisting plate is deformed and restored, it resists the deformation restoration of the disinfection capsule to generate a spray force, and the disinfection capsule sprays the disinfectant through the atomizing gun. The back side of the atomizing gun is fixedly installed on the front side of the disinfection capsule. The wind force of the fan and the arc surface of the wave plate are used to increase the diffusion range and distance of the disinfectant, thereby improving the disinfection effect of the disinfectant on the material.

[0010] According to the above technical solution, the anti-pollution device includes a screw, a connecting rod slip ring and a hemispherical block. The left side of the screw passes through and is rotatably installed on the left side of the inner wall of the disinfection capsule. When the disinfection capsule is deformed, it drives the screw to slide to the right. When the screw slides, it moves along the inside of the connecting rod slip ring. The front side of the connecting rod slip ring is fixedly installed on the front side of the inner wall of the disinfection capsule, and the connecting rod slip ring slides inside and is sleeved on the outer wall surface of the screw. The screw is restricted by the spiral groove on the outer wall of the screw to generate a rotational force. The screw drives the hemispherical block to rotate. The left side of the hemispherical block is fixedly installed on the right side of the screw. The hemispherical block moves away from the atomizing gun to open the shield. At the same time, when the hemispherical block rotates, the spraying range of the disinfectant is increased by the design of larger on the left and smaller on the right.

[0011] According to the above technical scheme, the anti-pollution device also includes a rotating ball rod, a mesh plate, a spring sheet and a T-shaped pressure plate. The bottom of the rotating ball rod is fixedly installed on the outer wall surface of the screw rod, and the rotating ball rod is located inside the atomizing gun. The screw rod drives the rotating ball rod to rotate, and the rotating ball rod rotates and stirs the disinfectant flowing through the atomizing gun. The left side of the mesh plate is fixedly installed on the right side of the outer wall of the rotating ball rod. The rotating ball rod drives the mesh plate to rotate, and the mesh plate intercepts the precipitated powder in the disinfectant. The right side of the spring sheet is fixedly installed on the left side of the outer wall of the rotating ball rod. The liquid impact force causes the spring sheet to deform and restore, and the spring sheet drives the T-shaped pressure plate to slide up and down along the inner wall of the mesh plate. The front of the T-shaped pressure plate is fixedly installed on the arc surface of the spring sheet, and the right side of the T-shaped pressure plate contacts the right side of the inner wall of the mesh plate. When the T-shaped pressure plate slides, the precipitated powder is crushed and decomposed, thereby performing secondary mixing with the disinfectant.

[0012] According to the above technical solution, the anti-erosion device includes an electric telescopic column, a receiving plate, and a heating arc plate. The bottom of the electric telescopic column is fixedly installed at the edge of the inner wall of the material box through a fixing plate. The telescopic end of the electric telescopic column drives the filter plate to slide up and down. When the filter plate slides, it speeds up the dropping speed of the material. The front and back sides of the receiving plate are fixedly installed on the outer wall of the electric telescopic column. When the filter plate slides up and down, through the supporting force of the receiving plate, the heating arc plate is extruded to deform and recover reciprocally. The heating arc plate is fixedly installed between the top of the receiving plate and the bottom plate of the filter plate. When the heating arc plate deforms and recovers, it expands the heat distribution range, thereby improving the drying effect on the material.

[0013] According to the above technical solution, the anti-erosion device further includes a transmission plate, an adhesion wheel, an arc rod, and a semi-arc plate. The bottom of the transmission plate is hinged to the top of the receiving plate. When the filter plate moves downward, it touches the adhesion wheel and moves the adhesion wheel toward the center of the filter plate. The adhesion wheel drives the transmission plate to move synchronously. The front side of the adhesion wheel is rotatably installed on the back side of the transmission plate, and the outer wall of the adhesion wheel contacts the bottom of the filter plate. The adhesion wheel is driven to rotate by the frictional resistance, and the adhesion wheel rotates to remove the residual material attached to the bottom of the filter plate due to moisture. The right side of the arc rod is fixedly installed on the left side of the transmission plate. The transmission plate drives the arc rod to move synchronously toward the center of the filter plate. The arc rod extrudes the semi-arc plate to deform and bulge. The right side of the semi-arc plate is fixedly installed on the left side of the arc rod. When the semi-arc plate deforms and bulges, it causes the material to disperse evenly to both sides through the arc surface, making the material closer to the heating arc plate to improve the dehumidification effect.

[0014] The present invention provides a storage device for food. It has the following beneficial effects: Through the setting of the anti-aggregation device in the present invention, with the cooperation of the material box, the filter plate, and the funnel, before the funnel drops the material into the interior of the material box, through the setting of the filter plate, to a certain extent, the solid impurities carried in the material are blocked, ensuring the cleanliness of the material product; through the cooperation of the electric slide rail, the electric rotating column, the elliptical piece, and the arc-shaped piece, the elliptical piece expands the slapping range of the material, prolongs the contact time between the material and the elliptical piece, and avoids the aggregation phenomenon of the material due to rainy weather, ensuring the individuality of the material particles; at the same time, when the arc-shaped piece contracts, it weakens the slapping force of the elliptical piece on the material, avoids the material splashing out of the funnel, and further improves the dispersion effect of the material and the filtering effect of the filter plate on the material.

[0015] Through the setting of the antibacterial device, the present invention cooperates with a fan, an L-shaped telescopic rod, a sliding plate and a corrugated plate. The fan blows powerfully to blow the materials, and the materials fall into the corresponding storage boxes from near to far due to their own weight, completing the classified storage of the materials. At the same time, the corrugated plate disturbs the wind force of the fan through its own corrugated arc surface, promoting the dynamic circulation of the gas inside the device main body and improving the drying effect inside the device main body. Through the cooperation of the torsion piece, the knocking column, the disinfection bag and the atomizing gun, the torsion piece drives the knocking column to knock the inner wall of the device main body to generate vibration, and the disturbance effect of the corrugated plate on the gas is improved through the vibration. At the same time, the disinfection bag sprays the disinfectant through the atomizing gun, and the diffusion range and distance of the disinfectant are increased through the wind force of the fan and the arc surface of the corrugated plate, improving the disinfection effect of the disinfectant on the materials and avoiding the attachment of bacteria on the outer wall of the materials, shortening the storage time and increasing the usage risk of the users.

[0016] Through the setting of the anti-pollution device, the present invention cooperates with a disinfection bag, a lead screw, a connecting rod slip ring and a hemispherical block, so that the lead screw drives the hemispherical block to rotate, and the hemispherical block opens to block the atomizing gun, increasing the spraying range of the disinfectant; the hemispherical block resets to block the atomizing gun to prevent external dirt from entering the atomizing gun. Through the cooperation of the rotating ball rod, the mesh plate, the elastic sheet and the T-shaped pressing plate, the rotating ball rod rotates and stirs the disinfectant, and at the same time the rotating ball rotates, further improving the fineness of the stirring of the disinfectant and promoting the timely volatilization of the efficacy of the disinfectant. The mesh plate also intercepts the precipitated powder in the disinfectant to avoid the powder adhering to the surface of the materials when the medicine powder is sprayed, preventing the materials from being polluted and reducing the quality. At the same time, when the T-shaped pressing plate slides, it rolls and decomposes the precipitated powder and mixes it with the disinfectant for the second time to avoid the reduction of the disinfection effect of the disinfectant.

[0017] Through the setting of the anti-corrosion device, the present invention cooperates with an electric telescopic column, a bearing plate and a heating arc plate, so that the telescopic end of the electric telescopic column drives the filter plate to slide up and down to accelerate the falling speed of the materials and improve the storage efficiency. When the heating arc plate deforms and restores, the heat distribution range is expanded, thereby improving the drying effect on the materials and avoiding the mildew phenomenon of the materials carrying moisture. Through the cooperation of the transmission plate, the adhesion wheel, the arc rod and the semi-arc plate, the adhesion wheel rotates to remove the residual materials at the bottom of the filter plate, avoiding the blockage of the filter plate and the waste of raw materials caused by excessive adhesion and aggregation of the materials. At the same time, the semi-arc plate surface promotes the materials to disperse evenly to both sides, making the materials closer to the heating arc plate to improve the dehumidification effect, and at the same time avoiding the reduction of the blowing effect of the fan due to the too large density of the materials when they fall in the middle. Description of the Drawings

[0018] Figure 1 is a schematic diagram of the whole of the present invention; Figure 2 is a schematic diagram of the internal structure of the whole of the present invention; Figure 3 is a schematic diagram of the anti-aggregation device of the present invention; Figure 4 Schematic diagram of the bottom view of the anti-aggregation device of the present invention; Figure 5 Schematic diagram of the anti-bacterial device of the present invention; Figure 6 Schematic diagram of the left view of the anti-bacterial device of the present invention; Figure 7 Schematic diagram of the anti-pollution device of the present invention; Figure 8 Enlarged schematic diagram of a partial structure of the anti-pollution device of the present invention; Figure 9 Schematic diagram of the anti-corrosion device of the present invention.

[0019] In the figure: 1, device main body; 2, transmission component; 3, storage box; 4, anti-aggregation device; 41, material box; 42, filter plate; 43, funnel; 44, electric slide rail; 45, electric rotating column; 46, elliptical plate; 47, arc plate; 5, anti-bacterial device; 51, fan; 52, L-shaped telescopic rod; 53, sliding plate; 54, corrugated plate; 55, torsion piece; 56, knocking column; 57, disinfection capsule; 58, atomizing gun; 6, anti-pollution device; 61, lead screw; 62, connecting rod sliding ring; 63, hemispherical block; 64, rotating ball rod; 65, mesh plate; 66, elastic piece; 67, T-shaped pressing plate; 7, anti-corrosion device; 71, electric telescopic column; 72, receiving plate; 73, heating arc plate; 74, transmission plate; 75, adhesion wheel; 76, arc rod; 77, semi-arc plate. Specific implementation manners

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0021] Please refer to Figures 1-9, an embodiment of the present invention is: a storage device for food, including a device main body 1. A transmission component 2 is arranged on the right side of the top of the device main body 1, and the transmission component 2 is connected by an external pulley. A storage box 3 is arranged at the bottom of the device main body 1, and the storage box 3 has different models in volume. It also includes an anti-aggregation device 4 and an anti-bacterial device 5. The anti-aggregation device 4 is arranged on the left side of the top of the device main body 1, and the anti-bacterial device 5 is arranged inside the device main body 1. The anti-aggregation device 4 includes a material box 41, a filter plate 42 and a funnel 43. The bottom of the material box 41 is fixedly installed on the left side of the top of the device main body 1. The outer wall of the filter plate 42 is slidably installed inside the material box 41. The bottom of the funnel 43 is fixedly installed on the top of the material box 41, and the funnel 43 is located on the left conveying track of the transmission component 2. The transmission component 2 is driven to operate by an external pulley. The transmission component 2 conveys the material into the funnel 43. Finally, the materials are stored separately in different models of storage boxes 3 according to different sizes and weights. Before the funnel 43 drops the material into the material box 41, through the setting of the filter plate 42, the solid impurities carried in the material are blocked to a certain extent, ensuring the cleanliness of the material product.

[0022] The anti-aggregation device 4 further includes an electric slide rail 44, an electric rotating column 45, an elliptical plate 46 and an arc-shaped plate 47. The front of the electric slide rail 44 is fixedly installed on the front inner wall of the funnel 43. The front of the electric rotating column 45 is slidably installed inside the electric slide rail 44. The bottom of the elliptical plate 46 is fixedly installed on the outer wall surface of the electric rotating column 45. The left and right sides of the arc-shaped plate 47 are fixedly installed at the arc surface of the outer wall of the elliptical plate 46. The electric slide rail 44 and the electric rotating column 45 are started. The electric slide rail 44 drives the electric rotating column 45 to move up and down. The electric rotating column 45 drives the elliptical plate 46 to rotate and move up and down. The elliptical plate 46 slaps the material up and down, expanding the slapping range of the material and prolonging the contact time between the material and the elliptical plate 46. The elliptical plate 46 drives the arc-shaped plate 47 to move synchronously. When the arc-shaped plate 47 contracts, it weakens the slapping force of the elliptical plate 46 on the material, avoiding the material from splashing out of the funnel 43.

[0023] The antibacterial device 5 includes a fan 51, an L-shaped telescopic rod 52, a sliding plate 53 and a wave plate 54. The back of the fan 51 is fixedly installed on the back of the inner wall of the device body 1, the top back of the L-shaped telescopic rod 52 is fixedly installed on the front edge of the fan 51 shaft, the bottom of the sliding plate 53 is slidably installed on the bottom of the inner wall of the device body 1, and a slide groove is opened on the top of the sliding plate 53. The slide groove on the top of the sliding plate 53 is slidably connected with the bottom of the telescopic end of the L-shaped telescopic rod 52. The bottom of the wave plate 54 is fixedly installed on the top of the sliding plate 53. The fan 51 is started, and the material is blown by the strong blowing force of the fan 51. The material falls into the corresponding storage box 3 from near to far due to its own weight. The fan 51 shaft drives the L-shaped telescopic rod 52 to rotate. The L-shaped telescopic rod 52 drives the sliding plate 53 to slide left and right through the restriction of the sliding plate 53 by the slide groove. The sliding plate 53 drives the wave plate 54 to move synchronously. The wave plate 54 disturbs the wind force of the fan 51 through its own wave arc surface, thereby promoting the dynamic circulation of gas inside the device body 1.

[0024] The antibacterial device 5 also includes a twisting piece 55, a knocking column 56, a disinfection capsule 57 and an atomizing gun 58. The twisting piece 55 is fixedly installed between the left side of the sliding plate 53 and the left side of the inner wall of the device body 1. The front of the knocking column 56 is fixedly installed at the concave surface of the twisting piece 55, and the back of the knocking column 56 contacts the back of the inner wall of the device body 1. The bottom of the disinfection capsule 57 is fixedly installed at the bottom of the inner wall of the device body 1, and the back of the disinfection capsule 57 contacts the convex surface of the twisting piece 55. The back of the atomizing gun 58 is fixedly installed on the front of the disinfection capsule 57. The sliding plate 53 squeezes the twisting piece 55 deforms synchronously. When the torsion piece 55 is deformed, it drives the knocking column 56 away from the inner wall of the device body 1. When the torsion piece 55 is reset, it drives the knocking column 56 to reset and knock on the inner wall of the device body 1 to generate vibration. The vibration enhances the disturbance effect of the wave plate 54 on the gas. When the torsion piece 55 is deformed and restored, it resists the disinfection capsule 57 and generates a spray force. The disinfection capsule 57 sprays the disinfectant through the atomizing gun 58. The wind force of the fan 51 and the arc surface of the wave plate 54 increase the diffusion range and distance of the disinfectant, thereby enhancing the disinfection effect of the disinfectant on the material.

[0025] When in use, the transmission component 2 is driven to operate through the external pulley, and the transmission component 2 conveys the material to the funnel 43, and finally the material is packaged and stored in storage boxes 3 of different models according to different sizes and weights, so as to realize automatic and uninterrupted material unloading and reduce manual participation; before the funnel 43 drops the material into the material box 41, the filter plate 42 is set to block the solid impurities carried in the material to a certain extent, so as to ensure the cleanliness of the finished material; the electric slide rail 44 and the electric rotating column 45 are started, and the electric slide rail 44 drives the electric rotating column 45 to move up and down, and the electric rotating column 45 drives the elliptical sheet 46 to rotate and move up The elliptical piece 46 moves downward, and the elliptical piece 46 rotates and hits the material up and down, thereby expanding the hitting range of the material, prolonging the contact time between the material and the elliptical piece 46, avoiding the aggregation of the material due to rainy weather, and ensuring the individuality of the material particles; the elliptical piece 46 drives the arc piece 47 to move synchronously, and the arc piece 47 automatically shrinks when the resistance force is generated when contacting the material through its own arc surface, and then automatically recovers through its own elasticity. When the arc piece 47 shrinks, the hitting force of the elliptical piece 46 on the material is weakened, avoiding the material from splashing out of the funnel 43, and at the same time further improving the dispersion effect of the material, and improving the filtering effect of the filter plate 42 on the material.

[0026] When the material falls into the device body 1 through the material box 41, the fan 51 is started, and the material is blown by the strong blowing force of the fan 51, and the material falls into the corresponding storage box 3 from near to far by its own weight, so that the classified storage of the material is completed; the fan 51 shaft drives the L-shaped telescopic rod 52 to rotate, and the L-shaped telescopic rod 52 drives the sliding plate 53 to slide left and right through the restriction of the sliding groove on the sliding plate 53, and the sliding plate 53 drives the wave plate 54 to move synchronously, and the wave plate 54 disturbs the wind force of the fan 51 through its own wave arc surface, so as to promote the dynamic circulation of the gas inside the device body 1 and improve the drying effect inside the device body 1; the sliding plate 53 squeezes the torsion plate 55 to deform synchronously When the twisting piece 55 is deformed, it drives the knocking column 56 away from the inner wall of the device body 1. When the twisting piece 55 is reset, it drives the knocking column 56 to reset and knock on the inner wall of the device body 1 to generate vibration. The vibration enhances the disturbance effect of the wave plate 54 on the gas, and further enhances the ventilation and drying effect inside the device body 1. When the twisting piece 55 is deformed and restored, it resists the deformation recovery of the disinfection capsule 57 to generate a spray force. The disinfection capsule 57 sprays the disinfectant through the atomizing gun 58. The wind force of the fan 51 and the arc surface of the wave plate 54 increase the diffusion range and distance of the disinfectant, thereby improving the disinfection effect of the disinfectant on the material, avoiding the attachment of bacteria to the outer wall of the material to shorten the storage time and increase the risk of use for users.

[0027] See also Figures 1-9 On the basis of the above embodiment, another embodiment of the present invention further includes an anti-pollution device 6 and an anti-erosion device 7, the anti-pollution device 6 is arranged inside the anti-bacteria device 5, and the anti-erosion device 7 is arranged inside the anti-aggregation device 4; The anti-pollution device 6 includes a lead screw 61, a connecting rod sliding ring 62 and a hemispherical block 63. The left side of the lead screw 61 penetrates and is rotatably installed on the left side of the inner wall of the disinfection capsule 57. The front surface of the connecting rod sliding ring 62 is fixedly installed on the front surface of the inner wall of the disinfection capsule 57, and the connecting rod sliding ring 62 is slidably sleeved on the outer wall surface of the lead screw 61. The left side of the hemispherical block 63 is fixedly installed on the right side of the lead screw 61. When the disinfection capsule 57 deforms, it drives the lead screw 61 to slide to the right. When the lead screw 61 slides, it moves along the inside of the connecting rod sliding ring 62. The spiral groove on the outer wall of the lead screw 61 restricts the lead screw 61 to generate a rotational force. The lead screw 61 drives the hemispherical block 63 to rotate, and the hemispherical block 63 moves away from the atomizing gun 58 to open the block. At the same time, when the hemispherical block 63 rotates, the spraying range of the disinfectant is increased through the design of being larger on the left and smaller on the right.

[0028] The anti-pollution device 6 further includes a rotating ball rod 64, a net plate 65, a spring piece 66 and a T-shaped pressing plate 67. The bottom of the rotating ball rod 64 is fixedly installed on the outer wall surface of the lead screw 61, and the rotating ball rod 64 is located inside the atomizing gun 58. The left side of the net plate 65 is fixedly installed on the right side of the outer wall of the rotating ball rod 64. The right side of the spring piece 66 is fixedly installed on the left side of the outer wall of the rotating ball rod 64. The front surface of the T-shaped pressing plate 67 is fixedly installed at the arc surface of the spring piece 66, and the right side of the T-shaped pressing plate 67 is in contact with the right side of the inner wall of the net plate 65. The lead screw 61 drives the rotating ball rod 64 to rotate. The rotating ball rod 64 rotates and stirs the disinfectant flowing through the atomizing gun 58. The rotating ball rod 64 drives the net plate 65 to rotate. The net plate 65 intercepts the precipitated powder in the disinfectant. The spring piece 66 deforms and restores due to the liquid impact force. The spring piece 66 drives the T-shaped pressing plate 67 to slide up and down along the inner wall of the net plate 65. When the T-shaped pressing plate 67 slides, it rolls and decomposes the precipitated powder, so as to be secondarily mixed with the disinfectant.

[0029] The anti-corrosion device 7 includes an electric telescopic column 71, a bearing plate 72 and a heating arc plate 73. The bottom of the electric telescopic column 71 is fixedly installed at the edge of the inner wall of the material box 41 through a fixing plate. The front and back sides of the bearing plate 72 are fixedly installed on the outer wall of the electric telescopic column 71. The heating arc plate 73 is fixedly installed between the top of the bearing plate 72 and the bottom plate of the filter plate 42. The telescopic end of the electric telescopic column 71 drives the filter plate 42 to slide up and down. When the filter plate 42 slides, it speeds up the falling speed of the material. When the filter plate 42 slides up and down, through the supporting force of the bearing plate 72, it squeezes the heating arc plate 73 to deform and restore reciprocally. When the heating arc plate 73 deforms and restores, it expands the heat distribution range, thereby improving the drying effect of the material.

[0030] The anti-corrosion device 7 also includes a transmission plate 74, an adhesion wheel 75, an arc rod 76 and a semi-arc plate 77. The bottom of the transmission plate 74 is hinged on the top of the receiving plate 72. The front of the adhesion wheel 75 is rotatably mounted on the back of the transmission plate 74, and the outer wall of the adhesion wheel 75 contacts the bottom of the filter plate 42. The right side of the arc rod 76 is fixedly mounted on the left side of the transmission plate 74, and the right side of the semi-arc plate 77 is fixedly mounted on the left side of the arc rod 76. When the filter plate 42 moves downward, it resists the adhesion wheel 75 and moves toward the center of the filter plate 42. The adhesion wheel 75 drives the transmission plate 74 to move synchronously, and the friction resistance causes the adhesion wheel 75 to rotate. The adhesion wheel 75 rotates and removes the residual material attached to the bottom of the filter plate 42 due to moisture. The transmission plate 74 drives the arc rod 76 to move synchronously toward the center of the filter plate 42. The arc rod 76 squeezes the semi-arc plate 77 to deform and bulge. When the semi-arc plate 77 is deformed and bulged, the arc surface causes the material to be evenly dispersed to both sides, so that the material is closer to the heating arc plate 73 to improve the dehumidification effect.

[0031] When in use, the deformation of the disinfection capsule 57 drives the screw rod 61 to slide to the right, and the screw rod 61 moves along the inside of the connecting rod sliding ring 62 when sliding. The limitation of the spiral groove on the outer wall of the screw rod 61 causes the screw rod 61 to generate a rotational force, and the screw rod 61 drives the hemispherical block 63 to rotate. At this time, the hemispherical block 63 moves away from the atomizing gun 58 to open the shielding. At the same time, when the hemispherical block 63 rotates, the design of larger on the left and smaller on the right increases the spraying range of the disinfectant; when the disinfection capsule 57 is reset, the screw rod 61 is pulled to reset, and the screw rod 61 drives the hemispherical block 63 to reset to shield the atomizing gun 58 to prevent external dirt from entering the inside of the atomizing gun 58; the screw rod 61 drives the rotating ball rod 64 to rotate, and the rotating ball rod 64 rotates and stirs the disinfectant flowing through the atomizing gun 58 The ball-turning rod 64 causes the ball to rotate by the centrifugal force, thereby further improving the stirring and refinement of the disinfectant, promoting the timely volatilization of the disinfectant's efficacy, and ensuring the uniformity of the spraying of the atomizer 58; the ball-turning rod 64 drives the mesh plate 65 to rotate, and the mesh plate 65 intercepts the precipitated powder in the disinfectant to prevent the powder from adhering to the surface of the material when it is sprayed out, thereby preventing the material from being contaminated and reducing its quality; the liquid impact force causes the spring piece 66 to deform and restore, and the spring piece 66 drives the T-shaped pressing plate 67 to slide up and down along the inner wall of the mesh plate 65. When the T-shaped pressing plate 67 slides, it crushes and decomposes the precipitated powder, thereby performing secondary mixing with the disinfectant, thereby preventing the disinfection effect of the disinfectant from being reduced and preventing the bacteria from breeding inside the device body 1.

[0032] The electric telescopic column 71 is started, and the telescopic end of the electric telescopic column 71 drives the filter plate 42 to slide up and down. When the filter plate 42 slides, the speed of the material falling is accelerated, thereby improving the storage efficiency; when the filter plate 42 slides up and down, the supporting force of the receiving plate 72 squeezes the heating arc plate 73 to reciprocate and recover, and when the heating arc plate 73 recovers, the heat distribution range is expanded, thereby improving the drying effect of the material and preventing the material from carrying moisture and mildew; when the filter plate 42 moves downward, it resists the adhesion wheel 75 and moves toward the center of the filter plate 42, and the adhesion wheel 75 drives the transmission plate 74 to move synchronously, and at the same time, the friction resistance is used to promote The adhesion wheel 75 rotates to remove the residual material attached to the bottom of the filter plate 42 due to moisture, so as to avoid excessive adhesion and aggregation of materials, resulting in blockage of the filter plate 42 and waste of raw materials; the transmission plate 74 drives the arc rod 76 to move toward the center of the filter plate 42 synchronously, and the arc rod 76 squeezes the semi-arc plate 77 to deform and bulge. When the semi-arc plate 77 is deformed and bulged, the arc surface is used to promote the material to be evenly dispersed to both sides, so that the material is closer to the heating arc plate 73 to enhance the dehumidification effect, and at the same time, it is avoided that the density of the material is too large when it falls in the middle, resulting in a reduction in the blowing effect of the fan 51, thereby avoiding a reduction in the classification and storage effect of the material.

[0033] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A storage device for food, comprising a device main body, a transmission component is arranged on the right side of the top of the device main body, and the transmission component is connected by an external pulley drive, a storage box is arranged at the bottom of the device main body, and the storage box has different models in volume, and is characterized in that: It also includes an anti-aggregation device, an anti-bacterial device, an anti-pollution device and an anti-corrosion device. The anti-aggregation device is arranged on the left side of the top of the device main body. The anti-bacterial device is arranged inside the device main body. The anti-pollution device is arranged inside the anti-bacterial device. The anti-corrosion device is arranged inside the anti-aggregation device. The anti-aggregation device includes a material box, a filter plate and a funnel. The bottom of the material box is fixedly installed on the left side of the top of the device main body. The outer wall of the filter plate is slidably installed inside the material box. The bottom of the funnel is fixedly installed on the top of the material box, and the funnel is located on the left conveying track of the transmission assembly.

2. The storage device for food according to claim 1, characterized in that: The anti-aggregation device further includes an electric slide rail, an electric rotating column, an elliptical plate and an arc-shaped plate. The front of the electric slide rail is fixedly installed on the front inner wall of the funnel. The front of the electric rotating column is slidably installed inside the electric slide rail. The bottom of the elliptical plate is fixedly installed on the outer wall surface of the electric rotating column. The left sides of both sides of the arc-shaped plate are fixedly installed on the arc surface of the outer wall of the elliptical plate.

3. The storage device for food according to claim 2, characterized in that: The anti-bacterial device includes a fan, an L-shaped telescopic rod, a sliding plate and a corrugated plate. The back of the fan is fixedly installed on the back inner wall of the device main body. The back of the top of the L-shaped telescopic rod is fixedly installed at the front edge of the rotating shaft of the fan. The bottom of the sliding plate is slidably installed on the bottom inner wall of the device main body, and a chute is opened at the top of the sliding plate. The chute at the top of the sliding plate is slidably connected to the bottom of the telescopic end of the L-shaped telescopic rod. The bottom of the corrugated plate is fixedly installed on the top of the sliding plate.

4. The storage device for food according to claim 3, wherein: The anti-bacterial device further includes a torsion piece, a knocking column, a disinfection capsule and an atomizing gun. The torsion piece is fixedly installed between the left side of the sliding plate and the left inner wall of the device main body. The front of the knocking column is fixedly installed at the concave surface of the torsion piece, and the back of the knocking column contacts the back inner wall of the device main body. The bottom of the disinfection capsule is fixedly installed on the bottom inner wall of the device main body, and the back of the disinfection capsule contacts the convex surface of the torsion piece. The back of the atomizing gun is fixedly installed on the front of the disinfection capsule.

5. The storage device for food according to claim 4, characterized in that: The anti-pollution device includes a lead screw, a connecting rod sliding ring and a hemispherical block. The left side of the lead screw penetrates and is rotatably installed on the left inner wall of the disinfection capsule. The front of the connecting rod sliding ring is fixedly installed on the front inner wall of the disinfection capsule, and the inside of the connecting rod sliding ring slides and sleeves on the outer wall surface of the lead screw. The left side of the hemispherical block is fixedly installed on the right side of the lead screw.

6. The storage device for food according to claim 5, wherein: The anti-pollution device further includes a rotating ball rod, a net plate, an elastic piece and a T-shaped pressing plate. The bottom of the rotating ball rod is fixedly installed on the outer wall surface of the lead screw, and the rotating ball rod is located inside the atomizing gun. The left side of the net plate is fixedly installed on the right side of the outer wall of the rotating ball rod. The right side of the elastic piece is fixedly installed on the left side of the outer wall of the rotating ball rod. The front of the T-shaped pressing plate is fixedly installed on the arc surface of the elastic piece, and the right side of the T-shaped pressing plate contacts the right inner wall of the net plate.

7. The storage device for food according to claim 6, wherein: The anti-corrosion device includes an electric telescopic column, a bearing plate and a heating arc plate. The bottom of the electric telescopic column is fixedly installed at the edge of the inner wall of the material box through a fixing plate. The front and back sides of the bearing plate are fixedly installed on the outer wall of the electric telescopic column. The heating arc plate is fixedly installed between the top of the bearing plate and the bottom plate of the filter plate.

8. A storage device for food according to claim 7, characterized in that: The anti-erosion device further includes a transmission plate, an adhesion wheel, an arc rod, and a semi-arc plate. The bottom of the transmission plate is hinged to the top of the receiving plate. The front of the adhesion wheel is rotatably installed on the back of the transmission plate, and the outer wall of the adhesion wheel contacts the bottom of the filter plate. The right side of the arc rod is fixedly installed on the left side of the transmission plate, and the right side of the semi-arc plate is fixedly installed on the left side of the arc rod.

Citation Information

Patent Citations

  • Storage device for vitamin D soft capsules

    CN215854025U