Insulation storage device for impervious microcrystal waterproof agent
By designing an anti-seepage microcrystalline waterproofing agent insulation storage device with storage components and insulation components, the problem that the anti-seepage microcrystalline waterproofing agent is difficult to maintain constant temperature and be classified during storage is solved, a suitable storage environment is achieved, and performance degradation is prevented.
Patent Information
- Application Number
- CN202423102571.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-16
AI Technical Summary
The existing heat-insulating storage device for anti-seepage microcrystalline waterproofing agent is not convenient for constant temperature storage and rapid classification storage, and is easily affected by moisture, resulting in reduced performance.
A thermal insulation storage device for anti-seepage microcrystalline waterproofing agent is designed, which includes a storage component and a thermal insulation component. The storage component includes a storage box, support legs, support plates, door panels and a storage shell. The thermal insulation component includes an exhaust component, a humidity sensor, a heating device and a temperature sensor. These components are used to control temperature and humidity to ensure a suitable storage environment.
The classified storage and constant temperature storage of anti-seepage microcrystalline waterproofing agents are realized to prevent performance degradation and maintain the quality and effect of the materials.
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Figure CN223467597U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to waterproof agent technical field especially is a kind of anti-permeation microcrystalline waterproof agent heat storage device. BACKGROUND
[0002] Anti-permeation microcrystalline waterproof agent is a kind of chemical additive for improving the impermeability of concrete or other building materials. It usually enhances waterproof effect by adding special microcrystalline structure material, blocks the channel of water permeating into the concrete interior, thereby effectively improving the durability and service life of buildings.
[0003] The existing anti-permeation microcrystalline waterproof agent is generally placed in an open warehouse during storage, but the existing microcrystalline waterproof agent storage warehouse is open, and the microcrystalline waterproof agent is easily affected by moisture, and the anti-permeation microcrystalline waterproof agent stacked has different batches, which makes it inconvenient to classify during storage. SUMMARY
[0004] This section aims to outline some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract of the specification and the utility model name to avoid obscuring the purpose of this section, the abstract of the specification and the utility model name. Such simplifications or omissions cannot be used to limit the scope of the utility model.
[0005] In view of the above and / or existing problems in the anti-permeation microcrystalline waterproof agent heat storage device, the utility model is proposed.
[0006] Therefore, the problem to be solved by the utility model is that the existing anti-permeation microcrystalline waterproof agent heat storage device is not convenient for constant-temperature storage and rapid classification storage.
[0007] To solve the above technical problems, the utility model provides the following technical scheme: an anti-permeation microcrystalline waterproof agent heat storage device, which comprises a storage assembly, the storage assembly comprises a storage box, support legs, a support plate, a first door plate, a second door plate and a storage shell, the support legs are fixed to the four corners of the bottom of the storage box, the support plate is fixed to the bottom of the inner cavity of the storage box, the first door plate and the second door plate are respectively hinged to the two sides of one side of the storage box, the storage shell is arranged on the top of the support plate, and the number is three; and,
[0008] A heat preservation assembly is arranged in the interior of the storage box, comprising an exhaust assembly, a humidity sensor, a heating device and a temperature sensor, the exhaust assembly is arranged on both sides of the inner cavity of the storage box, the humidity sensor is fixed to one side of the storage box, the heating device is fixed to the back side of the inner cavity of the storage box, and the temperature sensor is fixed to the back side of the inner cavity of the storage box.
[0009] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises a discharge pipe and a valve, the discharge pipe is fixed to one side of the storage shell, and the valve is arranged on the surface of the discharge pipe.
[0010] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises an inclined plate, a threaded rod and a nut, the inclined plate is fixed to the top of the supporting plate and is slidably connected to the storage shell, the threaded rod is fixed to the bottom of the storage shell and penetrates to the outside of the storage box and is threadedly connected with the nut.
[0011] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises an inclined plate, a threaded rod and a nut, the inclined plate is fixed to the top of the supporting plate and is slidably connected to the storage shell, the threaded rod is fixed to the bottom of the storage shell and penetrates to the outside of the storage box and is threadedly connected with the nut.
[0012] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises an inclined plate, a threaded rod and a nut, the inclined plate is fixed to the top of the supporting plate and is slidably connected to the storage shell, the threaded rod is fixed to the bottom of the storage shell and penetrates to the outside of the storage box and is threadedly connected with the nut.
[0013] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises an inclined plate, a threaded rod and a nut, the inclined plate is fixed to the top of the supporting plate and is slidably connected to the storage shell, the threaded rod is fixed to the bottom of the storage shell and penetrates to the outside of the storage box and is threadedly connected with the nut.
[0014] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises an inclined plate, a threaded rod and a nut, the inclined plate is fixed to the top of the supporting plate and is slidably connected to the storage shell, the threaded rod is fixed to the bottom of the storage shell and penetrates to the outside of the storage box and is threadedly connected with the nut.
[0015] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises an inclined plate, a threaded rod and a nut, the inclined plate is fixed to the top of the supporting plate and is slidably connected to the storage shell, the threaded rod is fixed to the bottom of the storage shell and penetrates to the outside of the storage box and is threadedly connected with the nut.
[0016] As a preferred scheme of the anti-permeability microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises an inclined plate, a threaded rod and a nut, the inclined plate is fixed to the top of the supporting plate and is slidably connected to the storage shell, the threaded rod is fixed to the bottom of the storage shell and penetrates to the outside of the storage box and is threadedly connected with the nut.
[0017] As a preferred scheme of the anti-permeation microcrystalline waterproof agent heat preservation storage device, the storage assembly further comprises a buffer partition plate, the buffer partition plate is fixed to the top of the support plate, and the bottom is in abutment with the storage shell.
[0018] The utility model discloses beneficial effect is: through the storage assembly, it is convenient to the anti-permeation microcrystalline waterproof agent material classification and storage, through the heat preservation assembly, it is convenient to the air environment and temperature auxiliary control inside the storage box, guarantee the storage environment is suitable, prevent microcrystalline waterproof agent performance reduction. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be to the embodiment description needed to use the drawing briefly introduces, obviously, the following description in the drawing is only some embodiments of the utility model, for the ordinary skilled person in the art comes, under the premise of not paying the creativity labor intensity, can also obtain other drawings according to these drawings. Wherein:
[0020] Figure 1 It is the overall structure diagram of the anti-permeation microcrystalline waterproof agent heat preservation storage device.
[0021] Figure 2 It is the overall structure diagram of the anti-permeation microcrystalline waterproof agent heat preservation storage device.
[0022] Figure 3 It is the first door plate development structure diagram of the anti-permeation microcrystalline waterproof agent heat preservation storage device.
[0023] Figure 4 It is the exhaust component structure diagram of the anti-permeation microcrystalline waterproof agent heat preservation storage device.
[0024] Figure 5 It is the buffer partition plate cross section structure diagram of the anti-permeation microcrystalline waterproof agent heat preservation storage device.
[0025] Marked number in the drawing: 100, storage assembly;101, storage box;102, support leg;103, support plate;104, first door plate;105, second door plate;106, discharge pipe;107, valve;108, inclined plate;109, threaded rod;110, nut;111, plugboard;112, slot;113, plug shell;114, spring;115, plug rod;116, buckle;117, storage shell;118, buffer partition plate;119, storage shell;200, heat preservation assembly;201, exhaust component;202, humidity sensor;203, heating device;204, temperature sensor;205, dehumidification shell;206, dehumidifier;201a, positioning shell;201b, exhaust fan;201c, baffle;201d, reinforcing block;201e, positioning block;201f, filter screen. DETAILED DESCRIPTION
[0026] In order to make the above objectives, characteristics and advantages of the present application more apparent, concrete embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0027] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the connotation of the present application, therefore the present application is not limited by the specific embodiments disclosed below.
[0028] Secondly, the "one embodiment" or "embodiment" referred to herein means that a specific feature, structure or characteristic can be included in at least one implementation of the present application. In this specification, "in one embodiment" does not mean the same embodiment, nor is it an embodiment that is separate or alternative to other embodiments. EMBODIMENT
[0029] Reference Figures 1-5 For the first embodiment of the present application, the embodiment provides a kind of anti-permeation microcrystalline waterproof agent heat preservation storage device, anti-permeation microcrystalline waterproof agent heat preservation storage device includes storage component 100 and heat preservation component 200, by storage component 100, it is convenient to classify and store anti-permeation microcrystalline waterproof agent material, by heat preservation component, it is convenient to assist control the air environment and temperature in the inside of storage box 101, ensure that storage environment is suitable, prevent microcrystalline waterproof agent performance reduction.
[0030] Storage component 100, storage component 100 includes storage box 101, support leg 102, support plate 103, first door plate 104, second door plate 105 and storage shell 117, support leg 102 is fixed to the four corners of the bottom of storage box 101, support plate 103 is fixed to the bottom of the inner cavity of storage box 101, first door plate 104 and second door plate 105 are respectively hinged to two sides of one side of storage box 101, storage shell 117 is arranged on the top of support plate 103, and the number is three.
[0031] By support leg 102, it is convenient to support storage box 101, by support plate 103, it is convenient to support storage shell 117, by first door plate 104 cooperates with second door plate 105, it is convenient to close and seal storage box 101.
[0032] The insulation component 200 is arranged inside the preservation box 101, and includes an exhaust component 201, a humidity sensor 202, a heating device 203 and a temperature sensor 204. The exhaust component 201 is arranged on both sides of the inner cavity of the preservation box 101, the humidity sensor 202 is fixed on one side of the preservation box 101, the heating device 203 is fixed on the back side of the inner cavity of the preservation box 101, and the temperature sensor 204 is fixed on the back side of the inner cavity of the preservation box 101.
[0033] The exhaust assembly 201 facilitates ventilation of the interior of the preservation box 101 to prevent the material from clumping or deteriorating due to moisture or lack of air circulation. The humidity sensor 202 facilitates monitoring of the moisture inside the preservation box 101. The heating device 203 is electrically connected to the temperature sensor 204. When the temperature inside the preservation box 101 is low, the heating device 203 can be turned on to dry the interior. Example
[0034] Reference Figure 2 、 Figure 3 、 Figure 4 and Figure 5 , which is the second embodiment of the present utility model, and this embodiment is based on the previous embodiment.
[0035] Specifically, the storage assembly 100 further includes a discharge pipe 106 and a valve 107 . The discharge pipe 106 is fixed to one side of the storage shell 117 , and the valve 107 is disposed on the surface of the discharge pipe 106 .
[0036] The material inside the storage shell 117 can be directly discharged through the discharge pipe 106 and the valve 107.
[0037] Specifically, the storage assembly 100 also includes an inclined plate 108, a threaded rod 109 and a nut 110. The inclined plate 108 is fixed to the top of the support plate 103, and the top is slidingly connected to the storage shell 117. The threaded rod 109 is fixed to the bottom of the storage shell 117, and the bottom passes through the outside of the storage box 101 and is threadedly connected to the nut 110.
[0038] The inclined plate 108 facilitates the storage shell 117 to be stored obliquely for easy pouring out of the material, and the inclined plate 108 cooperates with the nut 110 to facilitate the installation of the storage shell 117 inside the preservation box 101.
[0039] Specifically, the storage assembly 100 further includes an inserting plate 111 and a slot 112 . The inserting plate 111 is fixed to both sides of the bottom of the storage shell 117 , and the slot 112 is opened inside the inclined plate 108 .
[0040] The insertion plate 111 cooperates with the slot 112 to improve the installation stability of the storage shell 117 .
[0041] Specifically, the storage assembly 100 further comprises an insertion shell 113, a spring 114, an insertion rod 115 and a buckle 116, the insertion shell 113 is fixed to one side of the second door plate 105, the spring 114 is fixed to one side of the inner cavity of the insertion shell 113, and one side is fixedly connected with the insertion rod 115, and the buckle 116 is fixed to one side of the first door plate 104.
[0042] By pulling the insertion rod 115 to stretch the spring 114, the insertion rod 115 is conveniently separated from the inside of the insertion shell 113, so that the first door plate 104 and the second door plate 105 are conveniently opened.
[0043] Specifically, the heat preservation assembly 200 further comprises a dehumidification shell 205 and a dehumidification agent 206, the dehumidification shell 205 is fixed to both sides of the rear side of the inner cavity of the storage box 101, and the dehumidification agent 206 is arranged in the inside of the dehumidification shell 205.
[0044] By cooperating the dehumidification shell 205 with the dehumidification agent 206, the inside of the storage box 101 is conveniently dried and dehumidified.
[0045] Specifically, the air exhaust assembly 201 comprises a positioning shell 201a, an air exhaust fan 201b and a baffle 201c, the positioning shell 201a is fixed to both sides of the storage box 101, the air exhaust fan 201b is fixed to the inside of the positioning shell 201a respectively, and the two air exhaust fans 201b are arranged in a positive leaf and a negative leaf respectively, and the baffle 201c is inserted into the inside of the positioning shell 201a.
[0046] The positioning shell 201a is convenient for installing the air exhaust fan 201b, the air exhaust fan 201b is convenient for ventilating the inside of the storage box 101, and the baffle 201c is convenient for closing the air exhaust fan 201b when not in use. Embodiment
[0047] Reference Figure 5 For the third embodiment of the utility model, the embodiment is based on the previous two embodiments.
[0048] Specifically, the air exhaust assembly 201 further comprises a reinforcing block 201d, the reinforcing block 201d is fixed to the front and rear sides of the positioning shell 201a, and one side is fixedly connected with the storage box 101.
[0049] Through the fixed connection of the reinforcing block 201d and the storage box 101, the connection strength between the positioning shell 201a and the storage box 101 can be improved.
[0050] Specifically, the air exhaust assembly 201 further comprises a positioning block 201e and a filter screen 201f, the positioning block 201e is fixed to the inside of one of the positioning shells 201a, and the filter screen 201f is inserted into the inside of the positioning shell 201a.
[0051] The positioning block 201e is convenient for limiting the filter screen 201f, and the filter screen 201f is convenient for filtering the air drawn in to avoid dust or pollutants in the outside from entering the box.
[0052] Specifically, the storage assembly 100 further comprises a buffer partition plate 118, which is fixed to the top of the support plate 103 and abuts against the storage shell 117 at the bottom.
[0053] The buffer partition plate 118 is convenient for protecting the bottom of the storage shell 117.
[0054] In use, when the storage is used, the anti-permeation microcrystalline waterproof agent can be poured into the inside of the storage shell 117, and the three storage shells 117 are convenient for storing anti-permeation microcrystalline waterproof agents of different specifications. If ventilation is not needed during the storage, the baffle 201c can be inserted into the positioning shell 201a, and if it is needed to be used, the humidity sensor 202 is electrically connected with the heating device 203 and the exhaust fan 201b, so that the inside of the storage box 101 is ventilated, the heating device 203 dries the inside of the storage box 101 to prevent moisture, and the filter screen 201f can ensure that the dust in the air at the air inlet is filtered.
[0055] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, but not limit the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalent, without departing from the spirit and scope of the technical solutions of the present application. They should be covered in the scope of the claims of the present application.
Claims
1. A heat preservation storage device for anti-seepage microcrystalline waterproofing agent, characterized by: Including, The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110).
2. The anti-infiltration microcrystal waterproofing agent storage device of claim 1, wherein: The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110).
3. The anti-infiltration microcrystal waterproofing agent storage device of claim 1, wherein: The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110).
4. The anti-infiltration microcrystal waterproofing agent storage device of claim 3, wherein the anti-infiltration microcrystal waterproofing agent storage device is characterized by: The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110).
5. The anti-osmotic microcrystalline waterproofing agent storage device according to claim 1, characterized in that: The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110).
6. The anti-osmotic microcrystalline waterproofing agent storage device of claim 1, wherein the anti-osmotic microcrystalline waterproofing agent storage device is characterized by: The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) further includes an inclined plate (108), a threaded rod (109) and a nut (110), the inclined plate (108) is fixed to the top of the support plate (103), and the top is in sliding connection with the storage shell (117), the threaded rod (109) is fixed to the bottom of the storage shell (117), and the bottom penetrates to the outside of the storage box (101) and is in threaded connection with the nut (110). The storage assembly (100) 7. The anti-osmotic microcrystalline waterproofing agent storage device of claim 1, wherein the anti-osmotic microcrystalline waterproofing agent storage device is characterized by: The exhaust assembly (201) comprises positioning shells (201a), exhaust fans (201b) and baffles (201c), the positioning shells (201a) are fixed to the two sides of the storage box (101), the exhaust fans (201b) are fixed to the interiors of the positioning shells (201a) respectively, one of the two exhaust fans (201b) is provided as a positive blade and the other is provided as a negative blade, and the baffle (201c) is inserted into the interior of the positioning shell (201a).
8. The anti-osmotic microcrystalline waterproofing agent storage device of claim 7, wherein the anti-osmotic microcrystalline waterproofing agent storage device is characterized by: The exhaust assembly (201) further comprises reinforcing blocks (201d), the reinforcing blocks (201d) are fixed to the front and back sides of the positioning shell (201a), and one side is fixedly connected with the storage box (101).
9. The anti-osmotic microcrystalline waterproofing agent storage device according to claim 8, characterized in that: The exhaust assembly (201) further comprises a positioning block (201e) and a filter screen (201f), the positioning block (201e) is fixed to the interior of one of the positioning shells (201a), and the filter screen (201f) is inserted into the interior of the positioning shell (201a).
10. The anti-osmotic microcrystalline waterproofing agent storage device according to claim 1, characterized in that: The storage assembly (100) further comprises a buffer partition (118), the buffer partition (118) is fixed to the top of the supporting plate (103), and the bottom is abutted against the storage shell (117).