Sealed storage device for building waterproof materials

By introducing rollers and pushers into the sealed storage device for easy movement, and combining it with a sealed cylinder and a moisture-absorbing chamber, the problems of inconvenient movement and insufficient protection of existing devices are solved, thus realizing convenient movement and efficient moisture-proof effect of building waterproof materials.

CN224159283UActive Publication Date: 2026-04-24HENAN ANXINDA NEW MATERIAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN ANXINDA NEW MATERIAL TECHNOLOGY CO LTD
Filing Date
2025-06-19
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing sealed storage devices are bulky and inconvenient to move, and lack effective protection and moisture-proof measures, which makes building waterproofing materials prone to damage and clumping.

Method used

The storage plate is designed with rollers and a push handle, equipped with a sealed cylinder and a moisture-absorbing chamber. The rollers allow for easy movement, the sealed cylinder provides protection, and the moisture-absorbing chamber expands the coverage of the desiccant through moisture-absorbing holes, preventing material damage and clumping.

Benefits of technology

It enables convenient movement and effective protection of building waterproofing materials, prevents material damage and leakage, and improves moisture-proof effect by expanding the moisture absorption range of the desiccant.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sealed storage device for building waterproof materials, which comprises a storage plate, a plurality of rollers are mounted at the bottom of the storage plate, a pair of push handles is fixedly connected to the top of the storage plate, a grip is fixedly connected between the push handles, a plurality of storage grooves are formed in the top surface of the storage plate, and the storage grooves are communicated with the rollers. A positioning plate is installed at the top of the storage plate, a plurality of through holes are formed in the positioning plate, a plurality of sealing cylinders are fixedly connected to the top of the positioning plate, a moisture absorption bin is fixedly connected to the top of an inner cavity of each sealing cylinder, and a plurality of moisture absorption holes are formed in the side wall of each moisture absorption bin; and the top of the moisture absorption bin is open and is provided with a top cover. The building waterproof material storage box is convenient to move and carry and wide in application range, stored building waterproof materials can be protected to prevent leakage, the placing position of a drying agent can be reasonably planned to enable the drying agent to fully cover each building waterproof material, and the damp-proof effect is good.
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Description

Technical Field

[0001] This utility model belongs to the field of sealed storage technology, and in particular relates to a sealed storage device for building waterproof materials. Background Technology

[0002] Waterproofing materials are a special type of building material used to prevent water penetration or erosion of building structures. Their core function is to protect buildings from water damage and ensure durability and safety. Waterproofing materials can be classified into asphalt-based materials, polymer materials, cement-based materials, and metal waterproofing layers, among others.

[0003] Sealed storage of building waterproofing materials is a crucial step in ensuring their stable performance and extending their service life. A search revealed a humectant sealing device (publication number CN218737920U) on the Chinese Patent website. This device can be used for the sealed storage of building waterproofing materials, but it has some defects and shortcomings that need improvement: (1) Most existing sealing devices are large in size, making them inconvenient to move and transport, thus hindering the rapid transfer of stored building waterproofing materials to designated locations. Furthermore, some existing sealing devices lack effective external protection measures; when subjected to impacts such as collisions, the containers containing the building waterproofing materials are easily damaged, leading to leakage. (2) To prevent building waterproofing materials from clumping and failing due to moisture, desiccants are usually placed around the storage environment. However, due to structural design limitations, existing sealing devices often cannot properly plan the placement of desiccants. When storing a large quantity of building waterproofing materials, the desiccant's moisture absorption range often fails to fully cover each material, thus reducing the overall moisture-proof effect. Therefore, this utility model provides a sealing device for building waterproofing materials that addresses these issues. Utility Model Content

[0004] This utility model provides a sealed storage device for building waterproofing materials. By gripping the handle and pushing the pusher, the device, along with the stored building waterproofing materials, can be quickly transferred to a designated location using the rolling action between the rollers and the ground. This effectively expands the device's application range. The sealed cylinder effectively protects the building waterproofing materials, preventing leakage caused by damage to the container or other packaging when the device is subjected to impacts or other external forces. By placing desiccant in each moisture-absorbing chamber, the desiccant absorbs moisture and humidity around the building waterproofing materials through the moisture-absorbing holes, thus preventing the materials from clumping and becoming ineffective due to moisture. When the desiccant is placed in each corresponding moisture-absorbing chamber, it is positioned directly above each piece of building waterproofing material. Simultaneously, the desiccant quickly diffuses into the interior of the sealed cylinder through multiple moisture-absorbing holes. The multiple moisture-absorbing chambers and holes effectively expand the desiccant's moisture absorption range, ensuring it fully covers each piece of building waterproofing material, thereby greatly improving the overall moisture-proof effect. In summary, this invention solves the problems in the prior art.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] This utility model discloses a sealed storage device for building waterproofing materials, comprising a storage plate, a plurality of rollers installed on the bottom of the storage plate, and a pair of push handles fixedly connected to the top of the storage plate. The push handles are L-shaped and a grip is fixedly connected between the pair of push handles. A plurality of storage slots are opened on the top surface of the storage plate, and a positioning plate is installed on the top of the storage plate. The positioning plate has a plurality of through holes and a plurality of sealing cylinders are fixedly connected to the top of the positioning plate. The sealing cylinders are circular, and a plurality of buffer blocks are fixedly connected to their outer cylinder walls. A moisture-absorbing chamber is fixedly connected to the top of the inner cavity of each sealing cylinder. A moisture-absorbing chamber has a plurality of moisture-absorbing holes on its side wall, and the top of the moisture-absorbing chamber is open and fitted with a top cover. A protrusion and a sealing block are fixedly connected to the top and bottom of the top cover, respectively.

[0007] Furthermore, the storage slot is circular and is equidistantly distributed linearly along the length and width of the storage plate. The number of through holes and sealing cylinders is the same as that of the storage slot, and their diameters are all equal. Moreover, the center of each through hole, sealing cylinder and storage slot is located on the same straight line.

[0008] Furthermore, the top of the storage plate is fixedly connected with several studs, and the studs are threaded with nuts that cooperate with them. The positioning plate is provided with several positioning holes, the number of which is the same as the number of studs, and the hole diameter is equal to the diameter of the studs. Moreover, the center of each positioning hole corresponds one-to-one with the center of each stud.

[0009] Furthermore, the bottom surface of the positioning plate is provided with a number of sealing rings, the number of which is the same as the number of through holes, the inner diameter of which corresponds to the diameter of the through holes, and the center of each sealing ring corresponds one-to-one with the center of each through hole.

[0010] Furthermore, the buffer block is annular with arc-shaped end faces on its sides, and each buffer block is equidistantly linearly distributed along the height direction of the sealing cylinder.

[0011] Furthermore, the moisture-absorbing chamber is cylindrical and located at the top center of the sealed cylinder, and the moisture-absorbing holes are distributed in an equidistant ring along the circumference of the moisture-absorbing chamber.

[0012] Furthermore, the sealing block is circular, and its diameter is equal to the inner diameter of the moisture absorption chamber.

[0013] The present invention has the following advantages over the prior art:

[0014] (1) When using the sealing storage device for building waterproof materials in this utility model, by holding the handle and pushing the pusher, the device together with the stored building waterproof materials can be quickly transferred to the designated position by the rolling between the roller and the ground, thereby effectively expanding the scope of use of the device. The sealing cylinder can effectively protect the building waterproof materials to prevent the packaging container such as the barrel containing the building waterproof materials from being damaged when the device is impacted by external forces such as collisions, thus preventing the leakage of the building waterproof materials inside.

[0015] (2) When the sealing storage device for building waterproof materials in this utility model is in use, the desiccant is placed in each moisture-absorbing chamber and can absorb the moisture and water around the building waterproof materials through the moisture-absorbing holes to play a role in moisture prevention. This can effectively prevent the building waterproof materials from clumping and failing due to moisture. When the desiccant is placed in each corresponding moisture-absorbing chamber, the desiccant can be distributed directly above each building waterproof material. At the same time, the desiccant can be quickly diffused into the interior of the sealing cylinder through multiple moisture-absorbing holes. At this time, the moisture absorption range of the desiccant can be effectively expanded through multiple moisture-absorbing chambers and multiple moisture-absorbing holes, so that it can fully cover each building waterproof material, thereby greatly improving the overall moisture-proof effect.

[0016] 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

[0017] 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.

[0018] Figure 1 This is a structural schematic diagram of a sealed storage device for building waterproofing materials according to the present invention;

[0019] Figure 2 This is a schematic diagram of the structure of the storage plate in this utility model;

[0020] Figure 3 This is a schematic diagram of the top and bottom structures of the positioning plate in this utility model;

[0021] Figure 4 This is a schematic diagram of the top and bottom structures of the sealing cylinder in this utility model;

[0022] Figure 5 This is a front sectional view of the sealing cylinder in this utility model;

[0023] Figure 6 This is a schematic diagram of the top cover in this utility model.

[0024] The attached diagram lists the components represented by each number as follows:

[0025] 1. Storage plate; 2. Roller; 3. Push handle; 4. Grip; 5. Storage slot; 6. Positioning plate; 7. Through hole; 8. Sealing cylinder; 9. Buffer block; 10. Moisture absorption chamber; 11. Moisture absorption hole; 12. Top cover; 13. Protrusion; 14. Sealing block; 15. Stud; 16. Nut; 17. Positioning hole; 18. Sealing ring. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. 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 skilled in the art without creative effort are within the protection scope of the present utility model.

[0027] In the description of this utility model, it should be understood that the terms "relative", "one end", "inner", "lateral", "end", "both ends", "both sides", "front", "one end face", "the other end face", etc., which indicate orientation or positional relationship, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0028] Please see Figure 1-6As shown, this utility model discloses a sealed storage device for building waterproofing materials, comprising a storage plate 1. Several rollers 2 are installed at the bottom of the storage plate 1, and a pair of push handles 3 are fixedly connected to the top of the storage plate 1. The push handles 3 are L-shaped, and a handle 4 is fixedly connected between the pair of push handles 3. Several storage slots 5 are formed on the top surface of the storage plate 1, each slot 5 being used to store building waterproofing materials. By gripping the handle 4 and pushing the push handles 3, the device, along with the stored building waterproofing materials, can be quickly transferred to a designated location by utilizing the rolling motion between the rollers 2 and the ground, thereby effectively expanding the application range of the device. A positioning plate 6 is installed on the top of the storage plate 1, and several through holes 7 are formed on the positioning plate 6. Several sealing cylinders 8 are fixedly connected to the top of the positioning plate 6. The sealing cylinders 8 are circular, and their outer walls... Several buffer blocks 9 are fixedly connected, and a moisture-absorbing chamber 10 is fixedly connected to the top of the inner cavity of each sealing cylinder 8. Several moisture-absorbing holes 11 are opened on the side wall of the moisture-absorbing chamber 10, and the top of the moisture-absorbing chamber 10 is open and equipped with a top cover 12. The top and bottom of the top cover 12 are fixedly connected with protrusions 13 and sealing blocks 14, respectively. When the top cover 12 is opened, desiccant can be put into the moisture-absorbing chamber 10. After the desiccant is put in, the top cover 12 can be placed on the top of the moisture-absorbing chamber 10 to seal it. At this time, the desiccant can absorb the moisture and water around the building waterproof material through the moisture-absorbing holes 11 to play a role in moisture prevention, thereby effectively preventing the building waterproof material from clumping and failing due to moisture. The top cover 12 can be opened by pinching the protrusions 13 so that the desiccant in each moisture-absorbing chamber 10 can be replenished or replaced.

[0029] The storage trough 5 is circular and is equidistantly distributed along the length and width of the storage plate 1. The number of through holes 7 and sealing cylinders 8 is the same as that of the storage trough 5, and their diameters are all equal. The centers of each through hole 7, sealing cylinder 8 and storage trough 5 are all located on the same straight line. When the positioning plate 6 is installed on the storage plate 1, the building waterproofing material stored in each storage trough 5 can pass through the corresponding through hole 7 and extend into the sealing cylinder 8. At this time, each sealing cylinder 8 can cover the building waterproofing material to isolate it from the external environment, thereby achieving the purpose of sealed storage. At the same time, the sealing cylinder 8 can also effectively protect the building waterproofing material to prevent the packaging container containing the building waterproofing material from being damaged when the device is impacted by external forces such as collisions, which could lead to leakage of the building waterproofing material. In addition, the cooperation of multiple through holes 7, sealing cylinders 8 and storage trough 5 can separate the building waterproofing material to prevent collisions and compression between the building waterproofing materials due to excessive concentration of storage.

[0030] The storage plate 1 has several studs 15 fixedly connected to its top, and nuts 16 are threaded onto the studs 15. The positioning plate 6 has several positioning holes 17, the number of which is the same as the number of studs 15. The diameter of the holes is equal to the diameter of the studs 15, and the center of each positioning hole 17 corresponds to the center of each stud 15. When the positioning plate 6 is placed on the storage plate 1, each stud 15 can be aligned and pass through the corresponding positioning hole 17. At this time, the nuts 16 are threaded onto each stud 15 and tightened. The positioning plate 6 can be positioned by the mutual cooperation between the studs 15, the positioning holes 17, and the nuts 16, so as to fix the positioning plate 6 together with each sealing cylinder 8 on the storage plate 1, thereby preventing it from loosening.

[0031] The bottom surface of the positioning plate 6 is provided with several sealing rings 18. The number of sealing rings 18 is the same as that of the through holes 7, and their inner diameters correspond to the diameters of the through holes 7. The center of each sealing ring 18 corresponds to the center of each through hole 7. The sealing rings 18 can be made of elastic materials such as rubber and are fixed by adhesives. When the positioning plate 6 is fixed on the storage plate 1, each sealing ring 18 can be attached to the top surface of the storage plate 1. At this time, the sealing performance of the sealing cylinder 8 can be improved by using the sealing rings 18 to prevent external moisture and water from entering the sealing cylinder 8 through the gaps.

[0032] Among them, the buffer block 9 is ring-shaped with arc-shaped end faces on its sides, and each buffer block 9 is equidistantly linearly distributed along the height direction of the sealing cylinder 8. When the sealing cylinder 8 is subjected to external force impact such as collision, the multiple buffer blocks 9 can effectively decompose the external force impact to play a role in buffering and absorbing energy, thereby effectively improving the structural strength of the sealing cylinder 8 and preventing it from deforming after being subjected to external force impact, thus affecting its service life.

[0033] The moisture-absorbing chamber 10 is cylindrical and located at the top center of the sealing cylinder 8. The moisture-absorbing holes 11 are distributed in an equidistant ring along the circumference of the moisture-absorbing chamber 10. When the desiccant is placed in each corresponding moisture-absorbing chamber 10, the desiccant can be distributed directly above each building waterproofing material. At the same time, the desiccant can quickly diffuse into the interior of the sealing cylinder 8 through multiple moisture-absorbing holes 11. At this time, the moisture-absorbing range of the desiccant can be effectively expanded through multiple moisture-absorbing chambers 10 and multiple moisture-absorbing holes 11, so that it can fully cover each building waterproofing material, thereby greatly improving the overall moisture-proof effect.

[0034] The sealing block 14 is circular, and its diameter is equal to the inner diameter of the moisture absorption chamber 10. When the top cover 12 is placed on top of the moisture absorption chamber 10, the sealing block 14 can fit against the inner wall of the moisture absorption chamber 10 to play a positioning role, thereby preventing the top cover 12 from shifting and affecting its sealing effect.

[0035] All standard parts used in the application documents can be purchased from the market. All components in this application documents can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art.

[0036] The working principle of this utility model is as follows:

[0037] In use, this utility model allows building waterproofing materials to be placed in various storage slots 5. Then, positioning plates 6, along with various sealing cylinders 8, are placed on storage plate 1. The positioning plates 6 and sealing cylinders 8 are positioned using the interlocking of studs 15, positioning holes 17, and nuts 16. When the positioning plates 6 are installed on storage plate 1, the building waterproofing materials stored in each storage slot 5 can pass through the corresponding through holes 7 and extend into the sealing cylinders 8. At this time, each sealing cylinder 8 can cover the building waterproofing materials, isolating them from the external environment and achieving sealed storage. Simultaneously, the sealing cylinders 8 effectively protect the building waterproofing materials, preventing leakage caused by damage to the packaging containers such as barrels containing the materials when the device is subjected to impacts or other external forces. Furthermore, the interlocking of multiple through holes 7, sealing cylinders 8, and storage slots 5 separates the building waterproofing materials, preventing collisions and compression due to overly concentrated storage. Desiccant can be placed inside each moisture-absorbing chamber 10 by opening the top cover 12. After placing the desiccant, the top cover 12 can be placed on top of the moisture-absorbing chamber 10 to seal it. At this time, the desiccant can absorb the moisture and water around the building waterproofing material through the moisture-absorbing holes 11 to play a role in moisture prevention. This can effectively prevent the building waterproofing material from clumping and failing due to moisture. When the desiccant is placed in each corresponding moisture-absorbing chamber 10, the desiccant can be distributed directly above each building waterproofing material. At the same time, the desiccant can quickly diffuse into the interior of the sealed cylinder 8 through multiple moisture-absorbing holes 11. At this time, the moisture-absorbing range of the desiccant can be effectively expanded through multiple moisture-absorbing chambers 10 and multiple moisture-absorbing holes 11, so that it can fully cover each building waterproofing material, thereby greatly improving the overall moisture-proof effect. When it is necessary to move and transport the device, by holding the handle 4 and pushing the pusher 3, the device along with the stored building waterproofing material can be quickly transferred to the designated location by the rolling between the roller 2 and the ground, thereby effectively expanding the application range of the device.

[0038] 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 sealed storage device for building waterproofing materials, characterized in that, The device includes a storage plate with several rollers mounted on its bottom and a pair of L-shaped pushers fixedly connected to its top. A handle is fixedly connected between the two pushers. Several storage slots are formed on the top surface of the storage plate, and a positioning plate with several through holes is mounted on the top of the storage plate. Several sealing cylinders are fixedly connected to the top of the positioning plate. The sealing cylinders are circular, and several buffer blocks are fixedly connected to their outer walls. A moisture-absorbing chamber is fixedly connected to the top of the inner cavity of each sealing cylinder. Several moisture-absorbing holes are formed on the side walls of the moisture-absorbing chambers, and the top of the moisture-absorbing chambers is open and fitted with a top cover. A protrusion and a sealing block are fixedly connected to the top and bottom of the top cover, respectively.

2. The sealed storage device for building waterproofing materials according to claim 1, characterized in that, The storage slots are circular and are equidistantly distributed along the length and width of the storage plate. The number of through holes and sealing cylinders is the same as that of the storage slots, and their diameters are all equal. Furthermore, the centers of each through hole, sealing cylinder, and storage slot are located on the same straight line.

3. The sealed storage device for building waterproofing materials according to claim 1, characterized in that, The top of the storage plate is fixedly connected with several studs, and each stud is threaded with a nut that matches it. The positioning plate is provided with several positioning holes, the number of which is the same as the number of studs. The diameter of the positioning holes corresponds to the diameter of the studs, and the center of each positioning hole corresponds one-to-one with the center of each stud.

4. A sealed storage device for building waterproofing materials according to claim 1, characterized in that, The bottom surface of the positioning plate is provided with a number of sealing rings, the number of which is the same as the number of through holes, the inner diameter of which corresponds to the diameter of the through holes, and the center of each sealing ring corresponds one-to-one with the center of each through hole.

5. A sealed storage device for building waterproofing materials according to claim 1, characterized in that, The buffer block is ring-shaped with arc-shaped end faces on its sides, and each buffer block is equidistantly linearly distributed along the height direction of the sealing cylinder.

6. A sealed storage device for building waterproofing materials according to claim 1, characterized in that, The moisture-absorbing chamber is cylindrical and located at the center of the top of the sealed cylinder. The moisture-absorbing holes are distributed in an equidistant ring along the circumference of the moisture-absorbing chamber.

7. A sealed storage device for building waterproofing materials according to claim 1, characterized in that, The sealing block is circular, and its diameter is equal to the inner diameter of the moisture absorption chamber.