Self-cleaning fruit packaging box with destructive blanking mechanism

CN122607640APending Publication Date: 2026-08-21SOUTHEAST UNIV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202611039558.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-14
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

[0002]现有杨梅、桑葚等浆果类水果的包装往往功能单一,仅能起到基础的盛装作用,用户在食用前通常需要寻找额外的容器进行盐水浸泡,操作流程繁琐,且在户外或移动场景下难以实现,同时,传统的包装在开启方式上缺乏创新,多为翻盖或撕拉式,无法在开启的瞬时为用户提供新颖的交互体验,也无法解决干湿分离的清洗痛点

Benefits of technology

[0011]有益效果:本发明公开的一种具有破坏式落料机构的自清洁果品包装盒,将外观设计与功能结合紧密,通过“一拉即开”的破坏式逻辑为用户提供极具冲击力的视觉反馈,通过外围的所述包围环状物实现水果运输态的结构强度锁定,利用所述提手的瞬间拉拽动作诱导底部所述支撑部破坏,使果品垂直转移至下方的所述清洗箱区域,彻底解决了传统包装开启方式单一且无法原位清洗的痛点,均匀分布的所述通孔让注入的清水均匀流遍整个底部,不直接冲击所述盐块和所述可溶性膜,避免所述可溶性膜被水果直接压破,倒入所述清洗箱的液体水的冲击力被所述导流板化解,所述导流板使液体水平稳接触所述盐块用以保证盐均匀溶解,实现盐水的配置,实现了从“静态包装”到“动态洗涤器皿”的形态变更,具有极高的实用性。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122607640A_ABST
    Figure CN122607640A_ABST
Patent Text Reader

Abstract

The application discloses a self-cleaning fruit packaging box with a breaking material falling mechanism, and relates to the technical field of fruit packaging and auxiliary processing. The self-cleaning fruit packaging box comprises a storage assembly and a self-cleaning assembly. The storage assembly comprises a packaging main body, a surrounding ring and a handle. The handle is installed on the packaging main body. A supporting part is arranged at the bottom of the packaging main body. A weakening line is arranged on the surface of the supporting part. The surrounding ring is used for supporting the packaging main body to avoid the weakening line from being broken during transportation and carrying. When the surrounding ring is removed, the supporting part loses support. When the handle is pulled, the weakening line is broken. Fruits fall into the self-cleaning assembly below. The self-cleaning assembly is used for cleaning the fruits. The self-cleaning fruit packaging box has the functions of instant interaction opening and automatic salt dispensing and washing. The self-cleaning fruit packaging box realizes the change from a static packaging mode to a dynamic washing mode, and solves the problem that the traditional packaging opening mode is single and cannot be cleaned in situ.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention belongs to the field of fruit packaging and auxiliary processing technology, specifically a self-cleaning fruit packaging box with a destructive feeding mechanism. Background Technology

[0002] Existing packaging for berries such as bayberries and mulberries often has a single function, serving only a basic holding purpose. Users usually need to find an additional container to soak them in salt water before eating, which is a cumbersome process and difficult to implement outdoors or in mobile settings. At the same time, traditional packaging lacks innovation in its opening methods, mostly using flip-tops or tear-off mechanisms, which cannot provide users with a novel interactive experience at the moment of opening, nor can it solve the pain point of separating dry and wet cleaning. Summary of the Invention

[0003] The purpose of this invention is to overcome the defects in the prior art. The self-cleaning fruit packaging box with a destructive feeding mechanism provided by this invention combines mechanical destructive logic with chemical self-cleaning structure. It uses a preset weakening structure that can induce fracture to realize the change of packaging form and the instant preparation of brine, thereby meeting the form needs of instant cleaning and convenient consumption of fruit in different scenarios.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: a self-cleaning fruit packaging box with a destructive feeding mechanism, comprising:

[0005] A storage component includes a packaging body and an enclosing ring. The packaging body is used to hold fruit. The bottom of the packaging body is provided with a support part. The surface of the support part is provided with a weakening line. The weakening line is instantly broken when the force exceeds a threshold. The enclosing ring is fitted around the outer periphery of the packaging body and locks the support part. The enclosing ring is used to support the packaging body to prevent the weakening line from breaking during transportation and handling.

[0006] The self-cleaning component includes a cleaning tank and a soluble film. The soluble film is placed inside the cleaning tank, which is located below the main packaging body. The soluble film is a food-grade polyvinyl alcohol film. A salt block is placed under the soluble film. The soluble film wraps around the surface of the salt block to form a sealing layer to isolate the salt block from moisture in the outside air. When the surrounding ring is removed, the supporting part loses its support, the weakening line of the main packaging body breaks when it is lifted, and the fruit falls into the cleaning tank below. Liquid water is poured into the cleaning tank, and the soluble film undergoes physical dissolution induced by the liquid water to release the salt from the salt block, thus cleaning the fruit with salt water.

[0007] Preferably, the cleaning tank is made of food-grade polypropylene material to ensure that the material strength of the cavity remains constant in a humid environment after water is injected, without physical softening or deformation, and to ensure that the material strength of the cleaning tank does not decrease in a humid environment.

[0008] Preferably, the top of the packaging body is provided with a handle. Lifting the handle moves the packaging body upward, and the axial pulling force of the handle triggers the non-reverse breakage of the weakening line, connecting the space between the packaging body and the washing box. After the weakening line is torn open, the fruit automatically falls into the washing box. The structural strength of the transport state is locked by the surrounding ring. The instantaneous pulling action of the handle induces the bottom support to break, allowing the fruit to be vertically transferred to the washing box area below.

[0009] Preferably, a flow guide plate is installed inside the cleaning tank. The surface of the flow guide plate is evenly provided with through holes. The flow guide plate is placed on the upper side of the soluble membrane. The evenly distributed through holes allow the injected clean water to flow evenly throughout the entire bottom, without directly impacting the salt block and the soluble membrane, thus preventing the soluble membrane from being directly crushed by the fruit. The impact force of the liquid water poured into the cleaning tank is neutralized by the flow guide plate, allowing the liquid water to smoothly contact the salt block to ensure uniform salt dissolution. Combined with the integrated flow guide and salt distribution method, brine is prepared, thereby achieving efficient cleaning and greatly enriching the product's interactive experience and practical value.

[0010] Preferably, the bottom of the cleaning tank is provided with a drainage component, which is a plug-in sealing plug structure. The drainage component includes a drain outlet and a sealing plug. The drain outlet is located at the bottom of the cleaning tank, and the sealing plug is inserted into the drain outlet. The sealing plug is used for drainage of the cleaning tank after being pulled out.

[0011] Beneficial Effects: This invention discloses a self-cleaning fruit packaging box with a destructive material-discharging mechanism, which closely integrates appearance design with function. The "pull-to-open" destructive logic provides users with a highly impactful visual feedback. The surrounding ring-shaped structure locks in the structural strength of the fruit during transport. The instantaneous pulling action of the handle induces the destruction of the bottom support, allowing the fruit to be vertically transferred to the washing tank area below. This completely solves the pain points of traditional packaging's single opening method and inability to clean in situ. The evenly distributed through holes allow injected water to flow evenly throughout the bottom, without directly impacting the salt block and the soluble film, preventing the soluble film from being directly crushed by the fruit. The impact force of the liquid water poured into the washing tank is mitigated by the guide plate, which ensures the liquid water smoothly contacts the salt block to guarantee uniform salt dissolution and salt solution preparation. This realizes a transformation from "static packaging" to "dynamic washing vessel," exhibiting extremely high practicality. Attached Figure Description

[0012] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0013] In the attached diagram:

[0014] Figure 1 This is a schematic diagram of the self-cleaning fruit packaging box of the destructive feeding mechanism of the present invention;

[0015] Figure 2 This is a schematic diagram of the packaging body of the present invention in a destructive opening state;

[0016] Figure 3 This is an exploded view of the fruit packaging box of the present invention.

[0017] The following are labeled in the diagram: 1. Main packaging body; 2. Enclosing ring; 3. Washing tank; 4. Handle; 5. Deflector plate; 6. Salt block; 7. Soluble film; 8. Weakening line; 9. Drainage assembly; 10. Through hole. Detailed Implementation

[0018] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. The following text is only used to describe an embodiment of a self-cleaning fruit packaging box with a destructive feeding mechanism of the present invention, and does not strictly limit the scope of protection specifically claimed by the present invention.

[0019] Furthermore, the technical solutions of the various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this invention.

[0020] Example 1: As Figures 1-3 As shown, this invention discloses a self-cleaning fruit packaging box with a destructive feeding mechanism, comprising:

[0021] Storage components, such as Figure 1 As shown, the storage component includes a packaging body 1 and an enclosing ring 2. The packaging body 1 is used to hold fruit. The bottom of the packaging body 1 is provided with a support portion, and the surface of the support portion is provided with weakening lines 8, such as... Figure 2 As shown, the weakening line 8 is instantly destroyed when the force exceeds the threshold. The surrounding ring 2 is sleeved on the outer periphery of the packaging body 1 and locks the support part. The surrounding ring 2 is used to support the packaging body 1 to prevent the weakening line 8 from breaking during transportation and handling.

[0022] Self-cleaning components, such as Figure 3 As shown, the self-cleaning component includes a cleaning tank 3 and a soluble film 7. The soluble film 7 is placed inside the cleaning tank 3, which is located below the packaging body 1. The soluble film 7 is a food-grade polyvinyl alcohol film. A salt block 6 is provided below the soluble film 7. The soluble film 7 wraps around the surface of the salt block 6 to form a sealing layer to isolate the salt block 6 from moisture in the outside air. When the surrounding ring 2 is removed, the support part loses radial support, and the weakening line 8 of the packaging body 1 is broken when the packaging body 1 is lifted. The fruit falls into the cleaning tank 3 below. Liquid water is poured into the cleaning tank 3, and the soluble film 7 undergoes physical dissolution induced by the liquid water to release the salt in the salt block 6. The fruit is cleaned with salt water.

[0023] In Example 1, as Figure 1 As shown, the cleaning tank 3 is made of food-grade polypropylene material, which ensures that the material strength of the cavity remains constant in a humid environment after water is injected, and that there is no physical softening or deformation, thus ensuring that the material strength of the cleaning tank 3 does not decrease in a humid environment.

[0024] In Example 1, as Figure 1 As shown, the top of the packaging body 1 is provided with a handle 4. Lifting the handle 4 causes the packaging body 1 to move upward. The axial pulling force of the handle 4 triggers the non-reverse breakage of the weakening line 8, connecting the space between the packaging body 1 and the washing box 3. After the fruit is torn open by the weakening line 8, it automatically falls into the washing box 3. The structural strength of the transport state is locked by the surrounding ring 2. The instantaneous pulling action of the handle 4 induces the bottom support to break, so that the fruit is vertically transferred to the washing box 3 area below.

[0025] Example 2: Figure 3 As shown, a guide plate 5 is installed inside the cleaning tank 3. The surface of the guide plate 5 is evenly provided with through holes 10. The guide plate 5 is placed on the upper side of the soluble membrane 7. The evenly distributed through holes 10 allow the injected clean water to flow evenly throughout the entire bottom, without directly impacting the salt block 6 and the soluble membrane 7, thus preventing the soluble membrane 7 from being directly crushed by the fruit. The impact force of the liquid water poured into the cleaning tank 3 is dissolved by the guide plate 5, allowing the liquid water to smoothly contact the salt block 6 to ensure uniform salt dissolution. Combined with the integrated guide and salt distribution method, the brine is prepared, thereby achieving efficient cleaning and greatly enriching the product's interactive experience and practical value.

[0026] In Example 2, as Figure 3As shown, the bottom of the cleaning tank 3 is provided with a drainage component 9. The drainage component 9 is a plug-in sealing plug structure. The drainage component 9 includes a drain outlet and a sealing plug. The drain outlet is opened at the bottom of the cleaning tank 3, and the sealing plug is inserted into the drain outlet. After the sealing plug is pulled out, it is used for drainage of the cleaning tank 3.

[0027] When in use, this device achieves static locking of the packaging body 1 during fruit transportation by radially constraining the outer surrounding ring 2, thus locking the structural strength of the fruit during transportation. When fruit needs to be washed, the instantaneous pulling action of the handle 4 induces the bottom support to break, allowing the fruit to be vertically transferred to the washing tank 3 area below. This completely solves the pain points of traditional packaging's single opening method and inability to wash in place. The evenly distributed through holes 10 allow the injected water to flow evenly throughout the entire bottom, without directly impacting the salt block 6 and the soluble film 7, preventing the soluble film 7 from being directly crushed by the fruit. The impact force of the liquid water poured into the washing tank 3 is neutralized by the guide plate 5, which ensures that the liquid water smoothly contacts the salt block 6 to ensure uniform salt dissolution and realize the preparation of brine. This realizes the transformation from "static packaging" to "dynamic washing vessel," thereby meeting the needs of different scenarios for immediate fruit washing and convenient consumption.

[0028] The above description only describes the present invention and its embodiments. This description is not restrictive. Those skilled in the art will realize that the embodiments described herein are to help readers understand the principles of the present invention and should be understood as not limiting the scope of protection of the present invention to such specific statements and embodiments. Those skilled in the art can make various other specific modifications and combinations without departing from the essence of the present invention based on the technical teachings disclosed in the present invention, and these modifications and combinations are still within the scope of protection of the present invention.

Claims

1. A self-cleaning fruit packaging box with a destructive feeding mechanism, characterized in that, include: A storage component includes a packaging body and an enclosing ring. The packaging body is used to hold fruit. The bottom of the packaging body is provided with a support part. The surface of the support part is provided with a weakening line. The weakening line is instantly broken when the force exceeds a threshold. The enclosing ring is fitted around the outer periphery of the packaging body and locks the support part. The enclosing ring is used to support the packaging body to prevent the weakening line from breaking during transportation and handling. The self-cleaning component includes a cleaning tank and a soluble film. The soluble film is placed inside the cleaning tank, which is located below the main packaging body. The soluble film is a food-grade polyvinyl alcohol film. A salt block is placed under the soluble film. The soluble film wraps around the surface of the salt block to form a sealing layer to isolate the salt block from moisture in the outside air. When the surrounding ring is removed, the supporting part loses its support, the weakening line of the main packaging body breaks when lifted, and the fruit falls into the cleaning tank below. Liquid water is poured into the cleaning tank, and the soluble film undergoes physical dissolution induced by the liquid water to release the salt from the salt block. The salt water cleans the fruit.

2. The self-cleaning fruit packaging box with a destructive feeding mechanism according to claim 1, characterized in that: The cleaning tank is made of food-grade polypropylene material, ensuring that the material strength of the chamber remains constant in a humid environment after water is injected, and that it does not undergo physical softening or deformation.

3. The self-cleaning fruit packaging box with a destructive feeding mechanism according to claim 1, characterized in that: The packaging body is equipped with a handle at the top. Lifting the handle moves the packaging body upward, and the axial pulling force of the handle triggers the non-reverse breakage of the weakening line, connecting the space between the packaging body and the washing box. After the weakening line is torn open, the fruit automatically falls into the washing box.

4. The self-cleaning fruit packaging box with a destructive feeding mechanism according to claim 1, characterized in that: A flow guide plate is installed inside the washing tank. The surface of the flow guide plate is evenly provided with through holes. The flow guide plate is placed on the upper side of the soluble membrane. The evenly distributed through holes allow the injected clean water to flow evenly throughout the entire bottom, without directly impacting the salt block and the soluble membrane, thus preventing the soluble membrane from being directly crushed by the fruit. The impact force of the liquid water poured into the washing tank is neutralized by the flow guide plate, allowing the liquid water to contact the salt block smoothly to ensure that the salt dissolves evenly.

5. A self-cleaning fruit packaging box with a destructive feeding mechanism according to claim 1, characterized in that: The bottom of the cleaning tank is provided with a drainage component, which is a plug-in sealing plug structure. The drainage component includes a drain outlet and a sealing plug. The drain outlet is located at the bottom of the cleaning tank, and the sealing plug is inserted into the drain outlet. The sealing plug is used to drain the cleaning tank after it is pulled out.