Container

By setting an insect egg inhibition section in the container, and using photocatalytic particles or coatings to release active substances to inhibit insect egg hatching, the problem of waste caused by insect egg hatching in grains is solved, and pest control and safe storage are achieved.

CN223721665UActive Publication Date: 2025-12-26WUHAN SUPOR COOKWARE
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Patent Information

Application Number
CN202520263041.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-12-26
Estimated Expiration
2035-02-18

AI Technical Summary

Technical Problem

When grain is stored in existing containers, insect eggs can easily hatch and multiply rapidly, causing the grain to become hollowed out and resulting in waste.

Method used

An egg-inhibiting section is set in the main body of the container, and photocatalytic particles or coatings are used to release active substances such as hydroxyl radicals to inhibit the hatching of insect eggs.

Benefits of technology

It effectively reduces the breeding rate of pests in grains, avoids grain waste, ensures storage quality and safety, and prevents discomfort for consumers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a container. Wherein the containing container comprises a container main body and a worm egg inhibiting part, and the worm egg inhibiting part is arranged in the container main body and used for releasing active substances capable of inhibiting hatching of worm eggs. According to the container provided by the embodiment of the utility model, the worm egg inhibiting part is arranged in the container main body, so that the hatching of worm eggs in grains can be inhibited, the breeding rate of pests in the grains is greatly reduced, and the waste of the grains is avoided. In addition, the quality and safety of stored grains can be guaranteed, and discomfort of eaters is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to kitchen utensil technical field, concretely relates to a container. BACKGROUND

[0002] Grains have some eggs in itself, under the condition of suitable temperature and humidity, especially in the high temperature and high humidity environment of summer, the eggs are easy to hatch and breed in large quantities, resulting in the grain being seriously hollowed out, thereby causing waste.

[0003] There are containers with insecticidal substances in the prior art, the action object of the insecticidal substances is mainly the hatched insects, and these insects are killed in the container, which will cause the discomfort of the consumer to a great extent. Subsequently, containers with insect repellent substances emerge as the times require, although they mainly reduce insect pests by driving, but in some cases, they may still have a killing effect on insects, which will also cause the discomfort of the consumer. Therefore, it is necessary to provide a new insect-proof container. SUMMARY

[0004] Therefore, the purpose of the utility model is to provide a container, to solve the problem that the existing container causes the grain to be seriously hollowed out and waste when storing the grain.

[0005] According to the utility model, a container is provided, wherein the container comprises a container body and an egg inhibiting part, the egg inhibiting part is arranged in the container body, and the egg inhibiting part is used for releasing an active substance capable of inhibiting the hatching of eggs.

[0006] According to the container provided by the utility model embodiment, the egg inhibiting part is arranged in the container body, the hatching of eggs in the grain can be inhibited, the breeding rate of pests in the grain is greatly reduced, and the waste of grain is avoided.

[0007] In some embodiments, the container body has a containing cavity, and the egg inhibiting part is a plurality of egg inhibiting parts, and the plurality of egg inhibiting parts are arranged in the containing cavity of the container body respectively, so as to divide the containing cavity into a plurality of sub-cavities for storing grain.

[0008] In these embodiments, the containing cavity is divided into a plurality of sub-cavities for storing grain by the plurality of egg inhibiting parts, the egg inhibiting part can continuously act on all the grain in the container, not only the surface layer, thereby having a good inhibiting effect, the hatching of eggs of the grain stored in each part of the containing cavity can be inhibited, so as to further reduce the breeding rate of pests in the grain and avoid the waste of grain.

[0009] In some embodiments, the egg inhibiting part is a plurality of egg inhibiting plates, which is simple in structure and can ensure a larger storage space for the grain, so as to realize the function of inhibiting the hatching of the eggs without affecting the basic storage function of the container as much as possible.

[0010] In some embodiments, the plurality of egg inhibiting plates are arranged in a staggered manner to form a grid structure, or are arranged in multiple rows in the same direction. In this way, the released substances can continuously cover all the rice grains in the rice bucket, not just the surface layer, so as to improve the effect of inhibiting the hatching of the eggs.

[0011] In some embodiments, the spacing between the adjacent egg inhibiting plates arranged in the same direction is 1-10 cm. Within this range, it can help to ensure that the grain between the egg inhibiting plates is fully protected and the possibility of hatching of the eggs is reduced, and the manufacturing cost can be controlled.

[0012] In some embodiments, the egg inhibiting plate comprises a substrate and photocatalyst particles dispersed in the substrate. These photocatalyst particles can radiate substances such as hydroxyl radicals for inhibiting the hatching of the eggs, so as to inhibit the hatching of the eggs. In addition, these photocatalyst particles are harmless to the human body and are suitable for use in the storage container for storing grain.

[0013] In some embodiments, the photocatalyst particles comprise nano-titanium oxide particles or nano-zinc oxide particles; and / or, the particle size of the photocatalyst particles is 40-80 nm, and the number of the photocatalyst particles in each square centimeter of the substrate is 500 million-5 billion. In this way, the amount of photocatalyst particles can be reduced to reduce the cost and ensure that the egg inhibiting part does not affect the overall structural strength while ensuring the inhibition of the hatching of the eggs.

[0014] In some embodiments, the egg inhibiting plate comprises a substrate and a photocatalyst coating formed on the surface of the substrate. These photocatalyst coatings can radiate substances such as hydroxyl radicals for inhibiting the hatching of the eggs, so as to inhibit the hatching of the eggs. In addition, these photocatalyst coatings are harmless to the human body and are suitable for use in the storage container for storing grain.

[0015] Specifically, the photocatalyst coating comprises a nano-titanium oxide layer or a nano-zinc oxide layer. When the photocatalyst coating is irradiated, the photocatalyst on the surface of the photocatalyst coating will absorb light energy and convert it into chemical energy, thereby exciting the generation of electron-hole pairs. These electron-hole pairs react with water or oxygen in the air to generate active substances such as hydroxyl radicals with strong oxidizing properties. These active substances can destroy the cell structure of the eggs, thereby inhibiting their hatching.

[0016] In some embodiments, the container body is a rice bucket, a wheat bucket, a corn bucket, an oat bucket, a barley bucket, a highland barley bucket, or a legume bucket. In this way, the user can store the corresponding food based on the needs, which is suitable for various occasions such as families, restaurants, food processing plants, etc.

[0017] In some embodiments, the inner side wall of the container body is provided with a step at a position close to the bottom wall, and a plurality of the egg inhibiting parts are arranged on the step.

[0018] In these embodiments, the step provides a stable support surface for the egg inhibiting part, so that the egg inhibiting part can be more firmly installed inside the container body, avoiding the shaking or displacement of the egg inhibiting part in the container, thereby ensuring its stability and reliability during long-term use. In addition, through the design of the step structure, the egg inhibiting part can be detachably combined with the container bottom wall, which facilitates the removal of accumulated debris or residues at the bottom of the container during cleaning and maintenance, ensuring the hygiene of the stored food. Furthermore, by the separation of the step, the egg inhibiting part can be arranged at a position close to the mouth of the container body to ensure the egg inhibiting function, and the outlet of the holding container can be arranged at a position close to the bottom wall of the container body to facilitate the removal of the stored food in the holding container. BRIEF DESCRIPTION OF DRAWINGS

[0019] The above and other objects and features of the present application will become more apparent from the following description of embodiments taken in conjunction with the accompanying drawings, in which:

[0020] Fig. 1 is a structural schematic view of a holding container according to an embodiment of the present application;

[0021] Fig. 2 is a cross-sectional structural schematic view of a holding container according to an embodiment of the present application;

[0022] Fig. 3 is a structural schematic view of one example of an egg inhibiting plate according to an embodiment of the present application.

[0023] SYMBOL EXPLANATION

[0024] 10, container body;

[0025] 20, egg inhibiting part. DETAILED DESCRIPTION

[0026] The following detailed description is presented to aid the reader in gaining a comprehensive understanding of the methods, apparatuses, and / or systems described herein. However, various changes, modifications, and equivalents can be used, and thus particular embodiments described herein are not intended as being limiting as there are many different ways to implement the methods, apparatuses, and / or systems described herein. For example, the order in which operations are described is not intended to be limiting unless otherwise specified. Moreover, descriptions of features in terms of being performed in serial order are not intended to be limiting as parallel order can be possible unless specifically stated otherwise. Additionally, descriptions of features in terms of being performed or produced in a specific order are not intended to be limiting unless otherwise claimed. For example, acts can be performed in serial order, in parallel, or in some other order.

[0027] Features described herein can be implemented in different ways, and should not be construed as being limited to the examples described herein. Rather, these examples are provided as illustrative of only a few of many possible implementations of the methods, apparatuses, and / or systems described herein.

[0028] As used herein, the term “and / or” includes any one of the associated listed items, as well as any combination of any two or more of the associated listed items.

[0029] Although terms such as “first,” “second,” and “third” can be used herein to describe various elements, components, regions, layers, or sections, these elements, components, regions, layers, or sections should not be limited by these terms. Rather, these terms are only used to distinguish one element, component, region, layer, or section from another element, component, region, layer, or section. Thus, a first element, component, region, layer, or section referred to in the examples described herein can also be referred to as a second element, component, region, layer, or section without departing from the teachings of the examples.

[0030] In the description, when an element such as a layer, a region, or a substrate is referred to as being “on” another element, “connected to” or “mounted to” another element, it can be directly on the other element, directly connected to or mounted to the other element, or one or more other elements can be interposed therebetween. In contrast, when an element is referred to as being “directly on” another element, “directly connected to” or “directly mounted to” another element, there are no other elements interposed therebetween.

[0031] The terminology used herein is for describing various examples only and is not intended to limit the invention. Unless the context clearly indicates otherwise, the singular form is intended to include the plural form as well. The terms “comprising,” “including,” and “having” indicate the presence of the described features, quantities, operations, components, elements, and / or combinations thereof, but do not exclude the presence or addition of one or more other features, quantities, operations, components, elements, and / or combinations thereof. The term “a plurality” represents any quantity of two or more.

[0032] The directional terms "upper," "lower," "inner," and "outer" used in this invention are all based on the orientation of the container when it is in normal use. This definition helps ensure that readers or users can clearly understand the relative positional relationships of the various components and functions, and should not be construed as a limitation of this invention.

[0033] Unless otherwise defined, all terms used herein, including technical and scientific terms, shall have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains after understanding the invention. Unless expressly defined herein, terms such as those defined in a general dictionary shall be interpreted as having a meaning consistent with their meaning in the context of the relevant field and in this invention, and shall not be interpreted in an idealized or overly formalistic manner.

[0034] Furthermore, in the description of the examples, detailed descriptions of well-known related components or functions will be omitted when it is believed that such detailed descriptions would lead to a vague interpretation of the present invention.

[0035] The following will combine Figs. 1-3 The present invention will now be described in the form of a container provided by an embodiment of the present invention.

[0036] An embodiment of this utility model provides a container for holding grains such as rice, wheat, corn, oats, barley, highland barley, or beans. The container has an insect-repellent effect, specifically by inhibiting the hatching of insect eggs in the grains. Figs. 1-3 As shown, the container includes a container body 10 with a receiving cavity and an egg-inhibiting part 20, wherein the egg-inhibiting part 20 is a component for inhibiting the hatching of insect eggs and is disposed in the container body 10. Specifically, the egg-inhibiting part 20 is disposed inside the container body 10 and is used to release active substances that can inhibit the hatching of insect eggs.

[0037] According to the storage container provided by the embodiment of the utility model, the insect egg inhibiting part 20 is arranged in the container body 10, the insect egg inhibiting part 20 is used for releasing active substances, the hatching of insect eggs in the grain can be inhibited, the breeding rate of pests in the grain is greatly reduced, and the waste of grain is avoided.In addition, the quality and safety of the stored grain can be ensured, and the discomfort of the consumer is avoided.

[0038] According to the application, the insect egg inhibiting part 20 is multiple, and the multiple insect egg inhibiting parts 20 are arranged in the containing cavity of the container body 10 respectively, so as to divide the containing cavity into multiple sub-cavities for storing grain. In this way, a certain effect of inhibiting the hatching of insect eggs can be achieved.

[0039] In these embodiments, the containing cavity is divided into multiple sub-cavities for storing grain by the multiple insect egg inhibiting parts, the insect egg inhibiting part can continuously act on all the grain in the storage container, not only the surface layer, so as to have a better inhibiting effect, the hatching of insect eggs in each part of the grain stored in the containing cavity can be inhibited, so as to further reduce the breeding rate of pests in the grain and avoid the waste of grain.

[0040] In addition, the containing cavity is divided into multiple sub-cavities for storing grain by the multiple insect egg inhibiting parts. This division helps to reduce the spread range of pests in the grain, so that even if a certain sub-cavity is invaded, the grain in other sub-cavities can remain relatively safe.

[0041] According to the utility model, the insect egg inhibiting part is used for inhibiting or preventing the hatching of insect eggs in the grain. Since the release material in the insect egg inhibiting part 20 is limited, the coverage (radiation) is limited, so the structure of the rice bucket needs to be improved to match the coverage of the hydroxyl radical released by the photocatalyst material.

[0042] According to the application, the insect egg inhibiting part 20 is multiple insect egg inhibiting plates. It should be noted that the insect egg inhibiting part 20 can not only be in the form of a plate, but also in other forms, such as a mesh structure or a columnar structure. In the preferred embodiment, the insect egg inhibiting part 20 can be in the form of a plate, which is simple in structure and can ensure a larger grain storage space to achieve the function of inhibiting the hatching of insect eggs without affecting the basic storage function of the container as much as possible. The combination of the multiple insect egg inhibiting plates and the container body 10 can be detachable or fixed as a whole.

[0043] In some embodiments, the insect egg inhibiting part 20 is multiple insect egg inhibiting plates, wherein the multiple insect egg inhibiting plates are arranged staggeredly to form a grid structure, so that the released material can continuously cover all the rice grains in the rice bucket, not only the surface layer, to improve the effect of inhibiting the hatching of insect eggs.

[0044] In these embodiments, the plurality of insect egg inhibiting plates are arranged in an interleaved manner, forming a grid-like structure. This arrangement can ensure that each sub-cavity (a region divided by the insect egg inhibiting plates) can effectively inhibit insect eggs. In addition, the grid-like structure can also increase the difficulty of insect transmission in the food, so that even if a sub-cavity is invaded, the food in other sub-cavities can remain relatively safe.

[0045] In other embodiments, the insect egg inhibiting part 20 is an insect egg inhibiting plate, wherein a plurality of insect egg inhibiting plates are arranged in multiple rows in the same direction with intervals. Specifically, the inner side wall of the container body 10 has a slot extending in the height direction, and the plurality of insect egg inhibiting plates are inserted into the corresponding slots to be detachably combined.

[0046] In these embodiments, the plurality of insect egg inhibiting plates are arranged in multiple rows in the same direction with intervals. This arrangement can simplify the structural design of the storage container, while ensuring that each sub-cavity can have a certain degree of insect egg inhibiting effect. By adjusting the spacing between the insect egg inhibiting plates, the effect of preventing insect eggs from hatching can be further optimized to adapt to different types and quantities of food storage needs.

[0047] According to the present application, the spacing between adjacent insect egg inhibiting plates arranged in the same direction can be reasonably set to further optimize the effect of preventing insect eggs from hatching. If the spacing is too small, it may increase the structural complexity of the container and increase the manufacturing cost; if the spacing is too large, it may reduce the insect prevention effect of the insect egg inhibiting plate. As an example, the spacing between adjacent insect egg inhibiting plates arranged in the same direction is 1cm-10cm, and in a preferred embodiment, the spacing between adjacent insect egg inhibiting plates arranged in the same direction is 6cm-10cm. Within this range, it can help to ensure that the food between the insect egg inhibiting plates is adequately protected and the likelihood of insect egg hatching is reduced, while controlling the manufacturing cost.

[0048] According to the present application, the structure of the insect egg inhibiting plate has multiple types, which is not limited by the present application. In some embodiments, the insect egg inhibiting plate includes a substrate and photocatalyst particles dispersed in the substrate. In other embodiments, the insect egg inhibiting plate includes a substrate and a photocatalyst coating formed on the surface of the substrate. Here, the substrate can be plate-shaped, the photocatalyst particles are particles of photocatalyst material, and the photocatalyst coating is a layer formed of photocatalyst material. These photocatalyst particles and photocatalyst coatings can themselves emit substances that can inhibit insect egg hatching, such as hydroxyl radicals, thereby inhibiting insect egg hatching.

[0049] According to the utility model, the insect egg inhibiting plate comprises a substrate and photocatalyst particles dispersed in the substrate. In some embodiments, the photocatalyst particles comprise nano-titanium oxide particles or nano-zinc oxide particles, preferably nano-zinc oxide particles. These photocatalyst particles can radiate substances such as hydroxyl radicals for inhibiting the hatching of insect eggs, thereby being capable of inhibiting the hatching of insect eggs. In addition, these photocatalyst particles are harmless to the human body and are suitable for being used in a storage container for storing grain.

[0050] Specifically, the particle size of the photocatalyst particles is 40-80 nanometers, and the number of the photocatalyst particles in each square centimeter of the substrate is 500 million-5 billion. In this way, the addition amount of the photocatalyst particles can be reduced under the condition of ensuring the inhibition of the hatching of insect eggs, the cost can be reduced, and the overall structural strength of the insect egg inhibiting part 20 can be ensured.

[0051] Specifically, the substrate is made of PP, PE or PVC, has certain strength, can be used as a carrier of the photocatalyst particles and the photocatalyst coating, and the cost is controllable.

[0052] According to the utility model, the insect egg inhibiting plate comprises a substrate and photocatalyst particles dispersed in the substrate. In some embodiments, the photocatalyst particles comprise nano-titanium oxide particles or nano-zinc oxide particles, preferably nano-zinc oxide particles. These photocatalyst particles can radiate substances such as hydroxyl radicals for inhibiting the hatching of insect eggs, thereby being capable of inhibiting the hatching of insect eggs. In addition, these photocatalyst particles are harmless to the human body and are suitable for being used in a storage container for storing grain.

[0053] In these embodiments, the photocatalyst coating can radiate substances such as hydroxyl radicals for inhibiting the hatching of insect eggs, thereby being capable of inhibiting the hatching of insect eggs. In addition, these photocatalyst coatings are harmless to the human body and are suitable for being used in a storage container for storing grain.

[0054] Specifically, the photocatalyst coating comprises a nano-titanium oxide layer or a nano-zinc oxide layer. When the photocatalyst coating is irradiated, the photocatalyst on the surface of the photocatalyst coating can absorb light energy and convert it into chemical energy, thereby exciting the generation of electron-hole pairs. These electron-hole pairs react with water or oxygen in the air to generate active substances such as hydroxyl radicals with strong oxidizing properties. These active substances can destroy the cell structure of insect eggs, thereby inhibiting the hatching of insect eggs.

[0055] In some embodiments, the container body 10 is made of PP, PE or PVC, and the material of the container body 10 is diversified, so that various types of storage containers can be manufactured to meet the needs of different users.

[0056] In some embodiments, the container body 10 can be used to hold various grains, such as rice, wheat, corn, oat, barley, highland barley, or beans, and accordingly, the container body 10 can also be referred to as a rice bucket, a wheat bucket, a corn bucket, an oat bucket, a barley bucket, a highland barley bucket, or a bean bucket, so as to facilitate the user to store the corresponding grain based on the demand, and is suitable for various occasions such as family, restaurant, food processing plant, etc.

[0057] According to the present application, the user can choose different types and specifications of grain buckets according to his own needs and preferences, and the present application does not make too many limitations.

[0058] According to the present application, the container body 10 and the plurality of egg inhibiting parts 20 can be integrally formed or separately arranged, and the present application does not make too many limitations.

[0059] In some embodiments, the container body 10 and the plurality of egg inhibiting parts 20 are separately arranged, and the inner side wall of the container body 10 is provided with a step at a position close to the bottom wall for supporting and fixing the plurality of egg inhibiting parts 20.

[0060] In these embodiments, the step provides a stable support surface for the egg inhibiting part 20, so that the egg inhibiting part 20 can be more firmly installed inside the container body 10, avoiding the shaking or displacement of the egg inhibiting part 20 in the container, thereby ensuring its stability and reliability during long-term use. In addition, through the design of the step structure, the egg inhibiting part 20 can be detachably combined with the container bottom wall, so as to facilitate the removal of accumulated debris or residues at the bottom of the container during cleaning and maintenance, and ensure the hygiene of the stored grain.

[0061] In addition, the egg inhibiting part can also be arranged at a position close to the mouth of the container body through the separation of the step to ensure the egg inhibiting function, and the outlet of the holding container is arranged at a position close to the bottom wall of the container body, so as to facilitate the removal of the stored grain in the holding container. In some embodiments, the container body 10 includes an upper space located above the step and a lower space located below the step, the upper space and the lower space are in communication, the plurality of egg inhibiting parts 20 are arranged in the upper space, and the holding container further includes an outlet (not shown in the present application), which is arranged in the lower space and is relatively close to the bottom wall of the container body 10.

[0062] In these embodiments, the plurality of sub-cavities are respectively in communication with the lower space, so that the grain can flow smoothly from the upper space to the lower space for removal during use.

[0063] Although the embodiments of the present application have been described in detail above, those skilled in the art can make various modifications and variations to the embodiments of the present application without departing from the spirit and scope of the present application. However, it should be understood that these modifications and variations will still fall within the spirit and scope of the embodiments of the present application defined by the claims.

Claims

1. A holding container, characterized by, The storage container comprises: a container body (10); an insect egg inhibiting part (20) arranged in the container body (10) for releasing an active substance capable of inhibiting insect egg hatching.

2. The container according to claim 1, characterized in that The container body (10) has a containing cavity, and the insect egg inhibiting part (20) is in plurality, and the plurality of insect egg inhibiting parts (20) are respectively arranged in the containing cavity of the container body (10) to divide the containing cavity into a plurality of sub-cavities for storing grain.

3. The container according to claim 2, wherein The plurality of insect egg inhibiting parts (20) are insect egg inhibiting plates.

4. The container according to claim 3, wherein The plurality of insect egg inhibiting plates are arranged in a staggered manner to form a grid structure, or the plurality of insect egg inhibiting plates are arranged in multiple rows in the same direction at intervals.

5. The container according to claim 4, wherein The interval between adjacent insect egg inhibiting plates arranged in the same direction is 1-10 cm.

6. The container of claim 3, wherein The insect egg inhibiting plate comprises a substrate and photocatalyst particles dispersed in the substrate.

7. The container according to claim 6, wherein The photocatalyst particles comprise nano-titanium oxide particles or nano-zinc oxide particles; and / or the particle size of the photocatalyst particles is 40-80 nm, and the number of the photocatalyst particles in each square centimeter of the substrate is 500 million-5 billion.

8. The containment vessel of claim 3, wherein, The insect egg inhibiting plate comprises a substrate and a photocatalyst coating formed on the surface of the substrate.

9. The container of claim 8, wherein The photocatalyst coating comprises a nano-titanium oxide layer or a nano-zinc oxide layer.

10. The containment vessel of any one of claims 1 to 9, wherein, The inner side wall of the container body (10) is provided with a step near the bottom wall, and the plurality of insect egg inhibiting parts (20) are arranged on the step.