A three-dimensional storage cabinet for preventing oxidation of finished feed additive products
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-28
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]鉴于上述问题,提出了本实用新型以便提供一种克服上述问题或者至少部分地解决上述问题的一种饲料添加剂成品防氧化立体存储柜,能够解决现有的存储柜中固定式设计的除湿盒和与集成风机的维护效率低下的问题
[0031]本实用新型的饲料添加剂成品防氧化立体存储柜中,利用除湿风机上多个连接件中的卡钩的位置的移动,使卡钩与卡槽实现卡合和脱离卡合的切换。其中第一弹性件施加卡紧过程中的持续作用力,实现可靠卡合。本实用新型的除湿组件从柜体外壁便捷拆卸,滤管内填充可更换的干燥剂,拆卸后可直接更换干燥剂或维护除湿风机,该设计实现了除湿组件的快速装拆与干燥剂更换,显著提升了设备维护效率,降低维护时间,确保柜体内持续低温低湿环境,有效防止饲料添加剂因吸湿导致的结块或氧化变质。
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Figure CN224612179U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of storage cabinets, and in particular to a three-dimensional storage cabinet for preventing oxidation of finished feed additive products. Background Technology
[0002] As a core raw material in modern animal husbandry, feed additives are susceptible to degradation and deterioration due to environmental humidity and oxygen. Especially during the finished product storage stage, high temperature and high humidity environments accelerate the oxidation and deactivation of sensitive components such as vitamins and enzymes, directly affecting feed quality.
[0003] Currently, most feed additive storage uses conventional sealed cabinets. Some equipment uses built-in fixed dehumidifier boxes to absorb moisture or uses integrated fans to force ventilation to reduce humidity inside the cabinet. Such dehumidification structures usually fasten the dehumidifier box and integrated fan to the inside of the cabinet with bolts. Tools are needed to disassemble the cabinet at the corresponding installation position in order to maintain the integrated fan and dehumidifier box. Furthermore, replacing the desiccant in the dehumidifier box requires disassembling the entire above-mentioned parts.
[0004] However, the aforementioned fixed design leads to low maintenance efficiency for the dehumidifier box and integrated fan. Replacing the desiccant or cleaning the fan requires disassembling multiple fasteners and removing the entire unit, which is time-consuming and prone to structural loosening due to frequent disassembly and reassembly. During maintenance of these components, feed additives inside the cabinet are exposed to a humid environment for extended periods, significantly increasing the risk of secondary moisture intrusion and failing to guarantee the continuous dryness and stability of the storage environment. Utility Model Content
[0005] In view of the above problems, this utility model is proposed to provide a three-dimensional anti-oxidation storage cabinet for finished feed additives that overcomes or at least partially solves the above problems, and can solve the problems of low maintenance efficiency of the fixed dehumidification box and integrated fan in existing storage cabinets.
[0006] Specifically, this utility model provides a three-dimensional storage cabinet for the anti-oxidation of finished feed additives, including a cabinet body, with multiple dehumidification channels running through the rear end of the cabinet body, and a dehumidification component installed in each dehumidification channel;
[0007] The dehumidification assembly includes a filter tube, a dehumidification fan, and multiple connectors;
[0008] The filter tube is disposed within the dehumidification channel and is used to hold the desiccant;
[0009] The dehumidifying fan is located on the outside of the dehumidifying channel and is used to supply air into the dehumidifying channel;
[0010] Multiple connectors are respectively disposed on the outside of the dehumidifier, and each connector includes a hook, a slot and a first elastic element;
[0011] The slot is located on the rear end face of the cabinet; the hook is slidably installed on the outer side wall of the dehumidifier and engages or disengages from the slot; one end of the first elastic member is connected to the hook and the other end is connected to the dehumidifier, configured to apply force to the hook to cause the hook to engage with the slot.
[0012] Optionally, it may also include multiple shelf partitions;
[0013] Two vertically extending mounting rails are respectively provided on the left and right sides of the cabinet body. The two mounting rails are arranged in parallel with a longitudinal interval. Each mounting rail has multiple mounting holes on the side wall facing the inside of the cabinet body.
[0014] The shelf partition is disposed between the mounting rails on the left and right sides, and mounting components are respectively provided at the left and right ends of the shelf partition. The mounting components include two mounting pins and two second elastic elements.
[0015] Each of the mounting pins is slidably mounted laterally on one end of the shelf partition and can be inserted into the mounting hole on the corresponding side; each of the second elastic elements is disposed laterally in the shelf partition, with one end connected to the mounting pin and the other end connected to the shelf partition, configured to apply force to the mounting pin to cause the mounting pin to be inserted into the mounting hole.
[0016] Optionally, mounting grooves are provided on the left and right sides of the lower end of the shelf partition;
[0017] The mounting assembly also includes a support rod;
[0018] The support rod extends longitudinally and is slidably installed in the mounting groove; the mounting pins on the corresponding sides are respectively installed at the front and rear ends of the support rod.
[0019] Optionally, a push handle is mounted on the lower side of the support rod, and the push handle extends to the lower side of the mounting groove.
[0020] Optionally, the card slot has a first slot and a second slot, the first slot and the second slot are vertically connected, the first slot extends longitudinally and is disposed at the rear end of the cabinet; the second slot extends vertically and is disposed inside the cabinet.
[0021] The hook has a hook body that is inserted along the first groove and enters the second groove to engage.
[0022] Optionally, the hook also has a connecting rod and a drive handle;
[0023] One end of the connecting rod is connected to the hook body, and the other end is connected to the drive handle. The hook body and the drive handle are installed on the same side of the connecting rod.
[0024] The connecting rod is slidably installed on the outside of the dehumidifier; the end of the drive handle is provided with a smooth curved surface.
[0025] Optionally, the dehumidifier has a housing, and mounting blocks are respectively installed on the left and right sides of the housing, with each mounting block having a plurality of rectangular holes spaced apart.
[0026] Each of the connecting rods is vertically slidably installed within the rectangular hole; the mounting block can be inserted between the hook body and the drive handle;
[0027] The first elastic element is vertically arranged, with one end connected to the connecting rod and the other end connected to the mounting block.
[0028] Optionally, filter screens are installed at both ends of the filter tube.
[0029] Optionally, a baffle is installed at the rear end of the filter tube, and the filter screen is installed inside the baffle. The baffle is placed between the dehumidifying fan and the rear end of the cabinet to restrict the tube from moving into the cabinet.
[0030] Optionally, the front end of the cabinet is provided with a cabinet door, and the cabinet door is provided with multiple heat-insulating and light-blocking glass panes.
[0031] In this utility model of a three-dimensional storage cabinet for finished feed additives to prevent oxidation, the movement of hooks in multiple connectors on the dehumidifier fan allows for switching between engagement and disengagement of the hooks and slots. The first elastic element applies a continuous force during the locking process, ensuring reliable engagement. The dehumidifier assembly is easily detachable from the outer wall of the cabinet. The filter tube is filled with replaceable desiccant, allowing for direct replacement of the desiccant or maintenance of the dehumidifier fan after disassembly. This design enables rapid assembly and disassembly of the dehumidifier assembly and desiccant replacement, significantly improving equipment maintenance efficiency, reducing maintenance time, and ensuring a continuously low-temperature, low-humidity environment inside the cabinet, effectively preventing feed additives from clumping or oxidizing due to moisture absorption.
[0032] Furthermore, in this utility model's three-dimensional storage cabinet for finished feed additive products, the height of the partition is adjusted and reliably installed by utilizing the mounting pins at both ends of the partition and the mounting holes in the mounting rails on the cabinet body. The elastic force of the second elastic element automatically and reliably inserts the mounting pins into the mounting holes, preventing them from easily dislodging, thus completing the fixed installation of the partition. This structure facilitates height adjustment of the partition, adapts to different specifications of feed additive packaging, optimizes the utilization of three-dimensional storage space, and ensures a stable and reliable engagement.
[0033] The above and other objects, advantages and features of this utility model will become more apparent to those skilled in the art from the following detailed description of specific embodiments of this utility model in conjunction with the accompanying drawings. Attached Figure Description
[0034] The following sections will describe some specific embodiments of the present invention in a detailed manner by way of example and not limitation, with reference to the accompanying drawings. The same reference numerals in the drawings denote the same or similar parts or components. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:
[0035] Figure 1 This is a schematic three-dimensional structural diagram of a three-dimensional storage cabinet for preventing oxidation of finished feed additives, according to the present invention. (View 1)
[0036] Figure 2 This is a schematic three-dimensional structural diagram, perspective two, of a three-dimensional storage cabinet for preventing oxidation of finished feed additives according to this utility model;
[0037] Figure 3 This is a schematic three-dimensional structural diagram of a feed additive finished product anti-oxidation three-dimensional storage cabinet with some shelf partitions removed, according to the present utility model;
[0038] Figure 4 yes Figure 2 A schematic enlarged view of point A in the diagram;
[0039] Figure 5 yes Figure 3 A schematic enlarged view of point B in the diagram. Detailed Implementation
[0040] The following reference Figures 1 to 5 This invention describes a three-dimensional storage cabinet for preventing oxidation of finished feed additives, according to embodiments of the present invention. In this description, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature, that is, include one or more of that feature. In the description of the present invention, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified. When a feature "includes or contains" one or more of the features it encompasses, unless otherwise specifically described, this indicates that other features are not excluded and may be further included.
[0041] Unless otherwise expressly specified and limited, the terms "set," "install," "connect," "link," "fix," and "couple" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art should be able to understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0042] Furthermore, in the description of this embodiment, "above" or "below" the second feature can include direct contact between the first and second features, or it can include contact between the first and second features through another feature between them. That is, in the description of this embodiment, "above," "over," and "on top" of the second feature includes the first feature being directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," or "below" of the second feature can mean the first feature is directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0043] In the description of this embodiment, the terms "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this utility model. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0044] Figure 1 This is a three-dimensional schematic structural diagram according to an embodiment of the present utility model, such as... Figure 1 As shown, and refer to Figures 2 to 5 This utility model embodiment provides a three-dimensional storage cabinet for the oxidation prevention of finished feed additives, including a cabinet body 1. Multiple dehumidification channels are provided through the rear end of the cabinet body 1, and each dehumidification channel is equipped with a dehumidification component 2. Specifically, the cabinet body 1 serves as the main frame, providing a sealed storage space and effectively isolating external moisture and light. The dehumidification channels are arranged through the cabinet body 1, connecting the interior of the cabinet body 1 with the outside environment.
[0045] The dehumidification assembly 2 includes a filter tube 3, a dehumidifying fan 4, and multiple connectors 5. The filter tube 3 is located within the dehumidification channel and is used to hold a desiccant. Specifically, the desiccant in the filter tube 3 is used to actively control the air humidity inside the cabinet 1, preventing the additives from absorbing moisture and deteriorating. The dehumidifying fan 4 is located outside the dehumidification channel and is used to supply air into the dehumidification channel. Specifically, the dehumidifying fan 4 introduces external airflow into the cabinet 1 through the dehumidification channel, forcing airflow circulation. Because the filter tube 3 carries a desiccant, it can adsorb moisture from the airflow entering the cabinet 1, allowing the dried airflow to directly enter the storage area inside the cabinet 1, improving dehumidification efficiency and ensuring a dry storage environment inside the cabinet 1.
[0046] Multiple connectors 5 are respectively disposed on the outer side of the dehumidifier 4. Each connector 5 includes a hook 6, a slot 7, and a first elastic element 8. The slot 7 is disposed on the rear end face of the cabinet 1. The hook 6 is slidably installed on the outer side wall of the dehumidifier 4 and engages or disengages with the slot 7. Specifically, the hook 6 is slidably disposed along the extension direction of the outer side wall of the dehumidifier 4. By changing the position of the hook 6 on the corresponding side wall, the two working positions of locking and releasing the hook 6 with the corresponding side slot 7 can be changed at different locations.
[0047] The first elastic element 8 is connected at one end to the hook 6 and at the other end to the dehumidifier fan 4. It is configured to apply force to the hook 6, causing it to engage with the slot 7. Specifically, the first elastic element 8 provides the hook 6 with the ability to move, ensuring it is reliably locked in the locking position. During locking, compression of the first elastic element 8 can disengage the hook 6 from the slot 7, thus unlocking the device.
[0048] In this embodiment, the feed additive finished product anti-oxidation three-dimensional storage cabinet is used by placing the feed additive in the storage cabinet and turning on the dehumidifier fan 4. The dehumidifier fan 4 introduces external airflow into the cabinet 1 through the dehumidification channel. The desiccant in the filter tube 3 can adsorb moisture from the airflow entering the cabinet 1, allowing the dried airflow to directly enter the storage area inside the cabinet 1. When it is necessary to replace the desiccant in the filter tube 3 or maintain the dehumidifier fan 4, the force of the first elastic element 8 is overcome, and the hook 6 is pushed along the outer wall of the dehumidifier fan 4, thereby disengaging the hook 6 from the slot 7 and unlocking it. After the hooks 6 on multiple connectors 5 on the same dehumidifier fan 4 disengage from the slot 7, the dehumidifier fan 4 can be removed from the cabinet 1 for maintenance, or after removing the dehumidifier fan 4, the filter tube 3 can be removed from the dehumidification channel and the desiccant can be replaced. During installation, align the hook 6 with the slot 7, and then use the force of the first elastic element 8 to push the hook 6 into the slot 7 to achieve snap-fit installation.
[0049] In this embodiment of the invention, the movement of the hooks 6 among the multiple connectors 5 on the dehumidifier fan 4 allows the hooks 6 to switch between engaging and disengaging with the slots 7. The first elastic element 8 applies a continuous force during the engaging process, ensuring reliable engagement. In this embodiment, the dehumidifier assembly 2 can be easily disassembled from the outer wall of the cabinet 1. The filter tube 3 is filled with replaceable desiccant, allowing for direct replacement of the desiccant or maintenance of the dehumidifier fan 4 after disassembly. This design enables rapid assembly and disassembly of the dehumidifier assembly 2 and desiccant replacement, significantly improving equipment maintenance efficiency, reducing maintenance time, ensuring a continuous low-temperature and low-humidity environment inside the cabinet 1, and effectively preventing feed additives from clumping or oxidizing due to moisture absorption.
[0050] In some embodiments of this utility model, such as Figure 3 , 5 As shown, two vertically extending mounting rails 9 are respectively provided on the left and right sides of the cabinet 1. The two mounting rails 9 are arranged parallel to each other longitudinally, and each mounting rail 9 has multiple mounting holes 10 on its side wall facing the inside of the cabinet 1. Specifically, the mounting holes 10 are evenly spaced along the vertical direction, serving as positioning nodes for height adjustment, facilitating subsequent height adjustment. The three-dimensional storage cabinet of this embodiment also includes multiple shelf partitions 11. The shelf partitions 11 can divide the interior of the cabinet 1 into multiple storage spaces, optimizing the space utilization of the cabinet 1. Each storage space can be equipped with a dehumidification component 2.
[0051] A shelf partition 11 is positioned between mounting rails 9 on both the left and right sides. Mounting components 12 are respectively installed at both ends of the shelf partition 11. Each mounting component 12 includes two mounting pins 13 and two second elastic members 14. Specifically, the mounting components 12 can mount the shelf partition 11 onto the mounting rails 9, with each mounting component 12 on one side engaging with the corresponding mounting rail 9. The mounting pins 13 and second elastic members 14 in each mounting component 12 form a set and engage with one of the corresponding mounting rails 9.
[0052] Each mounting pin 13 is slidably mounted laterally at one end of the shelf partition 11 and can be inserted into the mounting hole 10 on the corresponding side. Specifically, the mounting pin 13 is slidably mounted laterally, allowing it to extend from the shelf partition 11 and insert into the mounting hole 10 of one of the two mounting rails 9 on the left or right side. Each second elastic member 14 is laterally disposed within the shelf partition 11, with one end connected to the mounting pin 13 and the other end connected to the shelf partition 11. It is configured to apply force to the mounting pin 13, causing it to insert into the mounting hole 10. Specifically, the second elastic member 14 ensures that the mounting pin 13 is always inserted into the mounting hole 10 under its elastic force, thereby achieving reliable installation. During the compression of the second elastic member 14, the mounting pin 13 can disengage from the mounting hole 10 and retract into the shelf partition 11, unlocking it and facilitating installation after the shelf partition 11 has been height adjusted. Specifically, the mounting components 12 on both sides of the shelf partition 11 serve to support the shelf partition 11. Therefore, the mounting pins 13 can be slid laterally in the through holes provided on both sides of the shelf partition 11 to ensure the reliability of the shelf partition 11 after installation.
[0053] When using the feed additive finished product anti-oxidation three-dimensional storage cabinet of this embodiment, in order to adjust the storage space, the user compresses the second elastic element 14 to disengage the mounting pin 13 from the mounting hole 10 and retract it into the shelf partition 11. At this time, the shelf partition 11 can move freely up and down. After adjusting the height position, the second elastic element 14 is released. Under the action of elastic force, the mounting pin 13 is pushed into the mounting hole 10 to achieve stable installation of height adjustment, thereby realizing the adjustment of storage space.
[0054] In this embodiment of the invention, the height adjustment and reliable installation of the cargo partition 28 are achieved by utilizing the mounting pins 13 at both ends of the cargo partition 28 and the mounting holes 10 in the mounting rails 9 on the cabinet 1. The elastic force of the second elastic element 14 causes the mounting pins 13 to automatically and reliably insert into the mounting holes 10, preventing them from easily dislodging, thereby completing the fixed installation of the shelf partition 11. This structure facilitates the height adjustment of the cargo partition 28, can accommodate different specifications of feed additive packaging, optimizes the utilization of three-dimensional storage space, and provides a stable and reliable engagement.
[0055] In some embodiments of this utility model, such as Figure 5 As shown, mounting slots 15 are provided on the left and right sides of the lower end of the shelf partition 11.
[0056] Mounting assembly 12 also includes a support rod 16. The support rod 16 extends longitudinally and is laterally slidably installed within the mounting groove 15. Mounting pins 13 are installed at both the front and rear ends of the support rod 16. Specifically, the support rod 16 further supports the shelf partition 11, improving the stability of the shelf partition 11 installation. The support rod 16 not only provides a certain degree of support and stability, but also allows for adjustment of the lateral position of the mounting pins 13 by moving the support rod 16 laterally within the mounting groove 15, enabling the two mounting pins 13 on the same side to extend and retract synchronously, achieving a locking effect.
[0057] In some embodiments of this utility model, such as Figure 5 As shown, a push handle 17 is installed on the lower side of the support rod 16, and the push handle 17 extends to the lower end of the mounting groove 15. Specifically, the push handle 17 is designed to facilitate the lateral movement of the support rod 16 by the lower end of the shelf partition 11 during use, making it easier for the user to operate.
[0058] In some embodiments of this utility model, such as Figure 5 As shown, the second elastic element 14 is a spring, with one end of the spring connected to the mounting pin 13 and the other end connected to the inside of the shelf partition 11.
[0059] In some embodiments of this utility model, such as Figure 4 As shown, the slot 7 has a first slot 18 and a second slot 19, which are vertically connected. The first slot 18 extends longitudinally and is located at the rear end of the cabinet 1; the second slot 19 extends vertically and is located inside the cabinet 1. Specifically, the first slot 18 extends longitudinally forward from the rear end face of the cabinet 1 and connects to the second slot 19 at its end. The second slot 19 is vertically arranged, and the direction of the vertical arrangement of the second slot 19 is consistent with the direction of the elastic force of the first elastic member 8. The rear end face inside the second slot 19 is a stop surface, which can act as a locking hook 6.
[0060] The hook 6 has a hook body 20, which is inserted into the first groove 18 and then into the second groove 19 for engagement. Specifically, the hook body 20 can be trapezoidal or rectangular. The height of the first groove 18 must allow the hook body 20 to be inserted longitudinally. After insertion, the vertical movement of the hook body 20 can enter the second groove 19, and the plane at the rear end of the hook body 20 cooperates with the stop surface in the second groove 19 to achieve locking.
[0061] In this embodiment of the utility model, the hook body 20 has an L-shaped structure that cooperates with the L-shaped structure formed by the first groove 18 and the second groove 19. Only a simple insertion action is needed to achieve the engagement between the hook body 20 and the slot 7. The structure is simple and reliable.
[0062] In some embodiments of this utility model, such as Figure 4 As shown, the hook 6 also has a connecting rod 21 and a driving handle 22. One end of the connecting rod 21 is connected to the hook body 20, and the other end is connected to the driving handle 22. The hook body 20 and the driving handle 22 are mounted on the same side of the connecting rod 21. Specifically, the hook body 20 and the driving handle 22 are located on the same side, which facilitates the user to move the hook on the same side.
[0063] The connecting rod 21 is slidably installed on the outside of the dehumidifier 4; the end of the drive handle 22 is provided with a smooth curved surface 23. Specifically, the connecting rod 21 is slidably installed along the setting direction of the outer wall of the dehumidifier 4. The installation method can be to open a T-shaped groove in the side wall of the dehumidifier 4, and set a matching T-shaped block on the connecting rod 21, so that it can only move along the direction of the outer wall of the dehumidifier 4.
[0064] In this embodiment of the utility model, the drive handle 22 and the hook body 20 are located on the same side, which makes it convenient for the user to press and drive, and facilitates disassembly and installation.
[0065] In some embodiments of this utility model, such as Figure 4 As shown, the dehumidifier 4 has a housing 24, with mounting blocks 25 installed on both the left and right sides of the housing 24. Each mounting block 25 has multiple rectangular holes 26 spaced apart. Specifically, the housing 24 structure is provided on the outer side of the dehumidifier 4 for easy disassembly and installation. The housing 24 structure is rectangular, with a circular channel in the middle for installing the fan blades. The circular channel is roughly the same size as the dehumidification channel, and the housing 24 can cover the outer cabinet 1 of the dehumidification channel. The multiple rectangular holes 26 match multiple connectors 5 installed on the same side.
[0066] Each connecting rod 21 is vertically slidably installed within the rectangular hole 26. A mounting block 25 can be inserted between the hook body 20 and the drive handle 22. Specifically, the hook body 20 and the drive handle 22 are located on the same side, forming a locking space between them. The mounting block 25 is inserted into this locking space to restrict the longitudinal movement of the connecting rod 21. The width of the connecting rod 21 is consistent with the width of the rectangular hole 26 to restrict the lateral relative movement of the connecting rod 21.
[0067] The first elastic element 8 is vertically arranged, with one end connected to the connecting rod 21 and the other end connected to the mounting block 25. Specifically, the first elastic element 8 is installed in a receiving groove opened on one side wall of the rectangular hole 26, and the other end is connected to the connecting rod 21. Generally, there are two rectangular holes 26, and the two hooks 6 on the same mounting block 25 are arranged opposite each other and move and engage in opposite directions.
[0068] In this embodiment of the utility model, by setting the structure of the outer shell 24 and the mounting block 25, the reliable sliding installation of the hook 6 structure is facilitated, and the reliability and stability of the connection are improved. At the same time, the two hook 6 structures on the left and right sides make the operation more convenient and quick during use.
[0069] In some embodiments of this utility model, such as Figure 4 As shown, the first elastic element 8 is a spring, with one end connected to the connecting rod 21 and the other end housed within the mounting block 25. The spring features a long service life and excellent elastic deformation.
[0070] In some embodiments of this utility model, such as Figure 4 As shown, filter screens 27 are installed at both ends of the filter tube 3. Specifically, the filter screens 27 are used to filter the incoming air. During maintenance, the filter tube 3 can be removed from the dehumidification channel for easy and quick replacement.
[0071] In a preferred embodiment of this example, one end of the filter screen 27 can be designed to be removable. During maintenance, only one end of the filter screen 27 needs to be opened to replace the desiccant, which is more convenient and quick.
[0072] In some embodiments of this utility model, the desiccant can be a bagged desiccant or a desiccant particle with a larger particle size for drying.
[0073] In some embodiments of this utility model, such as Figure 4 As shown, a partition 28 is installed on the outer side of the rear end of the filter tube 3, and the filter screen 27 is installed inside the partition 28. The partition 28 is positioned between the dehumidifying fan 4 and the rear end of the cabinet 1 to restrict the movement of the tube into the cabinet 1. Specifically, the partition 28 can be rectangular and larger than the dehumidification channel. In this embodiment, the partition 28 is positioned between the dehumidifying fan 4 and the rear end of the cabinet 1, and the outer casing 24 of the dehumidifying fan 4 covers the partition 28. This restricts the inward movement of the filter tube 3 under the action of the dehumidifying fan 4 and facilitates the disassembly of the entire filter tube 3 structure.
[0074] In some embodiments of this utility model, the dehumidification channel is configured as a stepped channel, with the diameter of the outer channel being larger than that of the inner channel. Simultaneously, a groove is provided at the front section of the outer casing 24, and a partition 28 is disposed within the stepped channel at the outer end and within the groove. This provides some support for the dehumidification fan 4 and reduces the impact of vibration from the dehumidification fan 4.
[0075] In some embodiments of this utility model, such as Figure 1 As shown, a cabinet door 29 is provided at the front of the cabinet body 1, and multiple heat-insulating and light-blocking glass panes 30 are installed on the cabinet door 29. This allows for convenient viewing of the material status while preventing oxidation from light.
[0076] In some embodiments of this utility model, such as Figure 1 As shown, the cabinet door 29 is a symmetrically arranged pivot door structure, with locks installed between the door bodies to ensure the safety and environmental sealing during storage.
[0077] Therefore, those skilled in the art should recognize that although many exemplary embodiments of the present invention have been shown and described in detail herein, many other variations or modifications conforming to the principles of the present invention can be directly determined or derived from the disclosure of the present invention without departing from the spirit and scope of the present invention. Therefore, the scope of the present invention should be understood and recognized as covering all such other variations or modifications.
Claims
1. A three-dimensional storage cabinet for preventing oxidation of finished feed additives, comprising a cabinet body, characterized in that, The rear end of the cabinet is provided with multiple dehumidification channels, and each dehumidification channel is provided with a dehumidification component. The dehumidification assembly includes a filter tube, a dehumidification fan, and multiple connectors; The filter tube is disposed within the dehumidification channel and is used to hold the desiccant; The dehumidifying fan is located on the outside of the dehumidifying channel and is used to supply air into the dehumidifying channel; Multiple connectors are respectively disposed on the outside of the dehumidifier, and each connector includes a hook, a slot and a first elastic element; The slot is located on the rear end face of the cabinet; the hook is slidably installed on the outer side wall of the dehumidifier and engages or disengages from the slot; one end of the first elastic member is connected to the hook and the other end is connected to the dehumidifier, configured to apply force to the hook to cause the hook to engage with the slot.
2. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 1, characterized in that, It also includes multiple shelf partitions; Two vertically extending mounting rails are respectively provided on the left and right sides of the cabinet body. The two mounting rails are arranged in parallel with a longitudinal interval. Each mounting rail has multiple mounting holes on the side wall facing the inside of the cabinet body. The shelf partition is disposed between the mounting rails on the left and right sides, and mounting components are respectively provided at the left and right ends of the shelf partition. The mounting components include two mounting pins and two second elastic elements. Each of the mounting pins is slidably mounted laterally on one end of the shelf partition and can be inserted into the mounting hole on the corresponding side; each of the second elastic elements is disposed laterally in the shelf partition, with one end connected to the mounting pin and the other end connected to the shelf partition, configured to apply force to the mounting pin to cause the mounting pin to be inserted into the mounting hole.
3. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 2, characterized in that, The shelf partition has mounting grooves on the left and right sides at the bottom. The mounting assembly also includes a support rod; The support rod extends longitudinally and is slidably installed in the mounting groove; the mounting pins on the corresponding sides are respectively installed at the front and rear ends of the support rod.
4. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 3, characterized in that, A push handle is installed on the lower side of the support rod, and the push handle extends to the lower side of the mounting groove.
5. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 1, characterized in that, The card slot has a first slot and a second slot, which are vertically connected. The first slot extends longitudinally and is located at the rear end of the cabinet; the second slot extends vertically and is located inside the cabinet. The hook has a hook body that is inserted along the first groove and enters the second groove to engage.
6. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 5, characterized in that, The hook also has a connecting rod and a drive handle; One end of the connecting rod is connected to the hook body, and the other end is connected to the drive handle. The hook body and the drive handle are installed on the same side of the connecting rod. The connecting rod is slidably installed on the outside of the dehumidifier; the end of the drive handle is provided with a smooth curved surface.
7. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 6, characterized in that, The dehumidifier has a housing, and mounting blocks are installed on the left and right sides of the housing, with each mounting block having multiple rectangular holes spaced apart. Each of the connecting rods is vertically slidably installed within the rectangular hole; the mounting block can be inserted between the hook body and the drive handle; The first elastic element is vertically arranged, with one end connected to the connecting rod and the other end connected to the mounting block.
8. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 1, characterized in that, Filter screens are installed at both ends of the filter tube.
9. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 8, characterized in that, A baffle is installed at the rear end of the filter tube, and the filter screen is installed inside the baffle. The baffle is placed between the dehumidifying fan and the rear end of the cabinet to restrict the tube from moving into the cabinet.
10. The three-dimensional storage cabinet for preventing oxidation of finished feed additives according to claim 1, characterized in that, The cabinet body is provided with a cabinet door at the front end, and the cabinet door is provided with multiple heat-insulating and light-blocking glass panels.