Container with ventilation function
By designing adjustable ventilation components and partition adjustment components on the container, stepless adjustment of the ventilation openings and flexible division of the internal space are achieved, solving the problem that traditional container ventilation openings cannot be dynamically adjusted, and improving the flexibility of ventilation adjustment and cargo safety during transportation.
Patent Information
- Application Number
- CN202621119293.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-23
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2036-07-23
AI Technical Summary
Traditional containers cannot dynamically adjust their ventilation holes, leading to oxidation, spoilage, or moisture damage to goods. Furthermore, they introduce moisture and salt in severe weather, lacking flexibility and adaptability, and failing to meet the diverse needs of transporting various types of goods.
An adjustable ventilation assembly and a partition adjustment assembly were designed. The sealing baffle is driven by an electric telescopic rod to achieve stepless adjustment of the ventilation opening. The partition assembly flexibly divides the internal space of the container to meet the environmental requirements of different goods.
It enables flexible control of the air exchange rate inside and outside the container, ensuring the flexibility and safety of ventilation adjustment during transportation, and adapting to different cargo properties and weather conditions.
Smart Images

Figure CN224676929U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of container technology, specifically to a container with ventilation function. Background Technology
[0002] As the core carrier of modern logistics transportation, the standardization and airtightness of containers greatly improve the efficiency and safety of cargo transfer. However, this highly enclosed structure also brings significant technical challenges in certain cargo transportation scenarios.
[0003] While some containers on the market are equipped with simple, fixed ventilation openings, the area and location of these openings are relatively fixed, making dynamic adjustments impossible based on the properties of the cargo, external weather conditions, or voyage duration. For example, when transporting goods requiring a low-oxygen environment, fixed ventilation openings can actually accelerate oxidation and deterioration; conversely, in stormy or high-saltwater environments, unclosable ventilation openings introduce large amounts of moisture and salt, corroding both the cargo and the container. This single "fully open" or "fully closed" mode severely lacks flexibility and adaptability, failing to meet the diverse needs of modern multi-category cargo transportation. Therefore, a container device capable of flexible ventilation adjustment based on different cargo properties is urgently needed. Utility Model Content
[0004] The purpose of this invention is to provide a container with ventilation function, solving the problems of traditional sealed containers that easily lead to moisture absorption of goods, accumulation of harmful gases, and temperature runaway. Existing fixed ventilation holes cannot be dynamically adjusted, accelerate oxidation during drought, and introduce moisture and salt in severe weather, lacking flexibility.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: This utility model is a container with ventilation function, including a logistics box assembly. The top of the logistics box assembly is equipped with a box cover assembly, the two outer walls of the logistics box assembly are equipped with adjustable ventilation assemblies, and the inside of the logistics box assembly is equipped with a partition adjustment assembly. The adjustable ventilation component includes ventilation slots, with two sets of ventilation slots symmetrically arranged on both outer walls of the logistics box component. Lifting rails are provided on both sides of the ventilation slots, and sealing baffles are provided on the outer sides of the ventilation slots. Limiting grooves are provided on the inner walls of both sides of the sealing baffles, and the limiting grooves are slidably arranged on the outer sides of the lifting rails. A linkage plate is installed on one outer wall of the sealing baffle, and the linkage plate is installed at the output end of the electric telescopic rod. The electric telescopic rod is installed on the outer wall of the logistics box component through a bracket.
[0006] Furthermore, the logistics box assembly includes a container, the bottom of which is equipped with a shock-absorbing base, and the top of both sides of the container are provided with lifting slots.
[0007] Furthermore, the box cover assembly includes an assembly cover plate, and a snap-on side plate is installed along the bottom edge of the assembly cover plate.
[0008] Furthermore, the snap-on side plate is positioned at the top of the container.
[0009] Furthermore, the ventilation slots are formed on both outer walls of the container, the lifting rails are respectively installed on both outer walls of the container, and the electric telescopic rods are installed on both outer walls of the container via brackets.
[0010] Furthermore, a limit slot strip is installed around the top of the container, and a guide rail is installed around the top of the inner wall of the container.
[0011] Furthermore, the partition adjustment assembly includes a first sliding partition, the top of both sides of the first sliding partition being slidably disposed between guide rails on both sides via a first sliding slider. A guide rail is installed on the top of one outer wall of the first sliding partition, and a second sliding slider is slidably disposed on the outer side of the guide rail. An elastic latch is installed on the top of one end of the first sliding partition, and the first elastic latch is limited to the inner side of the top groove of the limiting slot strip. There are two sets of the second sliding slider, and the second sliding slider is slidably disposed on the outer side of the guide rail on one side of the inner wall of the container. The second sliding slider is respectively installed on the two ends of the second sliding partition and the extended partition. The second sliding partition and the extended partition are slidably connected by a tension sliding condition. An elastic latch is installed on the top of the end of the extended partition, and the second elastic latch is limited to the groove of the limiting slot strip.
[0012] This utility model has the following beneficial effects: (1) By installing an adjustable ventilation component on the outside of the device, this utility model allows for the adjustment of ventilation requirements for transporting objects with different properties during transportation, thus ensuring the flexibility of ventilation adjustment during transportation.
[0013] (2) By installing a partition adjustment component inside the device, this utility model allows the device to be used to adjust the size of the partition according to the current needs when storing objects, thus ensuring the convenience of using the device.
[0014] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 This is a schematic diagram of the overall structure of the device; Figure 2 This is a schematic diagram showing the disassembled structure of the logistics box assembly and the box lid assembly in the device; Figure 3 This is a schematic diagram of the structure of the ventilation adjustment component in the device; Figure 4 This is a schematic diagram of the diaphragm adjustment assembly in the device; Figure 5 This is a schematic diagram of the limiting connection structure between the partition adjustment component and the logistics box component in the device; The attached diagram lists the components represented by each number as follows: In the diagram: 1. Logistics box assembly; 2. Box lid assembly; 3. Adjustable ventilation assembly; 4. Partition adjustment assembly; 101. Container; 102. Shock-absorbing base; 103. Lifting groove; 201. Assembled cover plate; 202. Snap-on side plate; 301. Ventilation slot; 302. Sealing baffle; 303. Limiting slide groove; 304. Lifting rail; 305. Linkage plate; 306. Electric telescopic rod; 401. Horizontal partition one; 402. Horizontal slider one; 403. Elastic lock one; 404. Horizontal partition two; 405. Extension slide condition; 406. Extension partition; 407. Horizontal slider two; 408. Elastic lock two; 1011. Limiting slot strip; 1012. Guide rail. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Please see Figures 1-5 As shown, this utility model is a container with ventilation function, including a logistics box assembly 1, a box cover assembly 2 installed on the top of the logistics box assembly 1, adjustable ventilation assemblies 3 installed on the two outer walls of the logistics box assembly 1, and a partition adjustment assembly 4 installed inside the logistics box assembly 1. The ventilation adjustment component 3 includes a ventilation slot 301. There are two sets of ventilation slots 301, which are symmetrically opened on both outer walls of the logistics box component 1. Lifting rails 304 are provided on both sides of the ventilation slots 301. Sealing baffles 302 are provided on the outer side of the ventilation slots 301. Limiting grooves 303 are opened on both inner walls of the sealing baffles 302. The limiting grooves 303 are slidably arranged on the outer side of the lifting rails 304. A linkage plate 305 is installed on one outer wall of the sealing baffles 302. The linkage plate 305 is installed at the output end of the electric telescopic rod 306. The electric telescopic rod 306 is installed on the outer wall of the logistics box component 1 through a bracket.
[0019] By installing an adjustable ventilation component 3 on the outside of the device, the device can be used to adjust the ventilation according to the different properties of the objects during transportation, ensuring the flexibility of ventilation adjustment during transportation.
[0020] The logistics box assembly 1 includes a container 101, a shock-absorbing base 102 installed at the bottom of the container 101, and lifting slots 103 opened on the top of both sides of the container 101.
[0021] The box cover assembly 2 includes an assembly cover plate 201, and a snap-on side plate 202 is installed along the bottom edge of the assembly cover plate 201.
[0022] The snap-fit side plate 202 is positioned at the top of the container 101. The assembly cover plate 201 of the container cover assembly 2 is snapped into the top of the container 101 by the bottom snap-fit side plate 202, achieving quick sealing. The bottom of the container 101 is equipped with a shock-absorbing base 102 to buffer transportation vibrations, and lifting grooves 103 are provided on both sides for easy lifting. The limiting groove strip 1011 installed at the top provides a locking position for the partition, and the guide rail 1012 installed on the inner wall provides guidance for the movement of the partition, together ensuring structural stability and functional coordination.
[0023] Ventilation slots 301 are formed on both outer walls of container 101. Lifting rails 304 are respectively installed on both outer walls of container 101. Electric telescopic rods 306 are installed on both outer walls of container 101 via brackets. This assembly uses electric telescopic rods 306 as a power source, and drives sealing baffles 302 to move up and down along lifting rails 304 via connecting plate 305. Limiting grooves 303 cooperate with lifting rails 304 to provide guidance. By precisely controlling the relative position of sealing baffles 302 and ventilation slots 301, stepless adjustment of the ventilation opening from fully closed to fully open can be achieved, flexibly controlling the air exchange rate inside and outside container 101 to meet the ventilation needs of different goods and weather conditions.
[0024] The top of container 101 is equipped with a limit slot strip 1011, and the top of the inner wall of container 101 is equipped with a guide rail 1012.
[0025] The partition adjustment assembly 4 includes a first sliding partition 401. The tops of both sides of the first sliding partition 401 are slidably disposed between guide rails 1012 via first sliding sliders 402. A guide rail is installed on the top of one outer wall of the first sliding partition 401, and a second sliding slider 407 is slidably disposed on the outer side of the guide rail. An elastic latch 403 is installed on the top of one end of the first sliding partition 401. The elastic latch 403 is limited and disposed inside the top groove of the limiting slot strip 1011. Two sets of second sliding sliders 407 are provided. The other side of the second sliding slider 407 is slidably disposed on one side of the inner wall of the container 101. On the outside of the guide rail 1012, two translation sliders 407 are respectively installed at the ends of the translation partition 404 and the extension partition 406. The translation partition 404 and the extension partition 406 are slidably connected by a tension sliding condition 405. An elastic latch 408 is installed at the top end of the extension partition 406. The elastic latch 408 is limited in the slot of the limiting slot strip 1011. This component slides along the guide rail 1012 via the translation partition 401 and the translation slider 402, and is locked in place by the elastic latch 403 into the limiting slot strip 1011. When a larger partition is needed, the extension partition 406, which is suspended by the translation slider 407 and slidably connected to the translation partition 404 via the tension sliding condition 405, can be pulled out and fixed by the elastic latch 408 into the limiting slot strip 1011, so as to achieve flexible division and stable locking of the internal space of the container 101.
[0026] This device works in conjunction with the electrically controlled lifting and adjusting ventilation component 3 and the flexibly space-dividing partition adjustment component 4 to meet the environmental requirements of different goods. In the specific workflow, before loading, the operator first plans the internal layout of the container according to the type of goods. If partitioned storage is required, the sliding partition 401 can be pushed so that it slides along the guide rail 1012 to the designated position via the sliding slider 402, and the elastic latch 403 is locked into the top slot of the limiting slot 1011. If the required partition space is too long, the extension partition 406, which is suspended by the sliding slider 407 and slidably connected to the sliding partition 404 via the tension sliding condition 405, can be further pulled out, adjusted to the appropriate length, and then the elastic latch 408 is locked into the slot of the limiting slot 1011, thereby flexibly dividing the internal space of the container 101 into multiple independent areas to prevent goods from shifting during transportation. After the cargo is loaded, the container 101 and its bottom shock-absorbing base 102 are hoisted onto the transport vehicle using the lifting equipment hooking onto the lifting channel 103. Then, the assembly cover plate 201 is placed on top, with its bottom snap-fit side plate 202 locking into the top of the container 101, completing the sealing process. During transport, the ventilation component 3 is activated according to the cargo's ventilation requirements: the electric telescopic rod 306 is retracted, causing the sealing baffle 302 to move upwards along the lifting track 304 via the connecting plate 305. At this time, the limiting grooves 303 on both sides of the inner wall of the sealing baffle 302 slide and guide on the outside of the lifting track 304. As the baffle rises, the ventilation slots 301 on both sides of the outer wall of the container 101 are gradually exposed, achieving air convection between the inside and outside. The ventilation principle utilizes the electric telescopic rod 306 as a power source to precisely change the relative position of the sealing baffle 302 and the ventilation slots 301, thereby achieving stepless adjustment of the ventilation opening size and effectively controlling the air exchange rate inside and outside the container. In case of severe weather or if a sealed environment needs to be maintained, the electric telescopic rod 306 can be extended to completely cover the ventilation slot 301 with the sealing baffle 302, thereby blocking the airflow and external moisture from entering and ensuring the flexibility of ventilation adjustment and the safety of goods during transportation.
[0027] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A container with ventilation function, comprising a logistics container assembly (1), wherein a container cover assembly (2) is mounted on the top of the logistics container assembly (1), characterized in that: The logistics box assembly (1) is equipped with adjustable ventilation components (3) on both outer walls and a partition adjustment component (4) is installed inside the logistics box assembly (1). The ventilation adjustment assembly (3) includes a ventilation slot (301). There are two sets of ventilation slots (301), which are symmetrically opened on both sides of the outer wall of the logistics box assembly (1). Lifting rails (304) are provided on both sides of the ventilation slots (301). Sealing baffles (302) are provided on the outer side of the ventilation slots (301). Limiting grooves (303) are opened on both sides of the inner wall of the sealing baffles (302). The limiting grooves (303) are slidably arranged on the outer side of the lifting rails (304). A linkage plate (305) is installed on one side of the outer wall of the sealing baffles (302). The linkage plate (305) is installed at the output end of the electric telescopic rod (306). The electric telescopic rod (306) is installed on the outer wall of the logistics box assembly (1) through a bracket.
2. A container with ventilation function according to claim 1, characterized in that: The logistics box assembly (1) includes a container (101), a shock-absorbing base (102) is installed at the bottom of the container (101), and lifting slots (103) are provided on the top of both sides of the container (101).
3. A container with ventilation function according to claim 2, characterized in that: The box cover assembly (2) includes an assembly cover plate (201), and a snap-on side plate (202) is installed along the bottom edge of the assembly cover plate (201).
4. A container with ventilation function according to claim 3, characterized in that: The snap-on side plate (202) is positioned on the top of the container (101).
5. A container with ventilation function according to claim 2, characterized in that: The ventilation slots (301) are opened on both sides of the outer wall of the container (101), the lifting rails (304) are respectively installed on both sides of the outer wall of the container (101), and the electric telescopic rods (306) are installed on both sides of the outer wall of the container (101) by means of brackets.
6. A container with ventilation function according to claim 2, characterized in that: The top circumference of the container (101) is equipped with a limit slot strip (1011), and the top circumference of the inner wall of the container (101) is equipped with a guide rail (1012).
7. A container with ventilation function according to claim 6, characterized in that: The partition adjustment assembly (4) includes a first translation partition (401). The tops of both sides of the first translation partition (401) are slidably disposed between the two guide rails (1012) via a first translation slider (402). A guide rail is installed on the top of one outer wall of the first translation partition (401), and a second translation slider (407) is slidably disposed on the outside of the guide rail. An elastic latch (403) is installed on the top of one end of the first translation partition (401). The first elastic latch (403) is limited to the inside of the top groove of the limiting slot strip (1011). The second translation slider (407) has a total of Two sets are provided. The other side translation slider two (407) is slidably disposed on the outside of the guide rail (1012) on one side of the inner wall of the container (101). The translation slider two (407) is respectively installed on the two ends of the translation partition two (404) and the extension partition (406). The translation partition two (404) and the extension partition (406) are slidably connected by the tension sliding condition (405). The top end of the extension partition (406) is equipped with an elastic buckle two (408). The elastic buckle two (408) is limited in the groove of the limiting groove strip (1011).