A dehumidification protection device convenient to transport

The dehumidification and protection device, which is easy to transport, enables dehumidification and moisture protection of hydropower engineering equipment anytime and anywhere, solving the problem that existing devices cannot be used immediately, improving work efficiency and reducing resource waste.

CN115520252BActive Publication Date: 2026-03-27四川华能泸定水电有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-29
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing moisture-proofing devices for hydropower engineering equipment cannot be used immediately, resulting in a shortened equipment lifespan and wasted resources. Furthermore, the existing devices have low efficiency after multiple drying cycles.

Method used

Design a dehumidification and protection device that is easy to transport, including a dehumidification treatment unit and a transport unit. It can achieve rapid transfer through a substrate moving component and a drag protection component. Combined with a moisture absorption weight-increasing component and a hot air component, it can achieve dehumidification and moisture prevention anytime and anywhere and avoid repeated drying.

Benefits of technology

It improved work efficiency, reduced labor intensity, reduced energy and time waste, and extended equipment lifespan.

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Patent Text Reader

Abstract

The application discloses a dehumidification protection device convenient to transport, which comprises a dehumidification treatment unit for carrying out moisture-proof treatment on equipment for water and electricity engineering, and a transportation unit for transferring the dehumidification treatment unit to different working areas and protecting the dehumidification treatment unit during transportation. The dehumidification protection device has the beneficial effects that the dehumidification treatment unit can be quickly transferred to different working areas through the transportation unit, moisture-proof treatment can be carried out at any time, work efficiency is improved, and the labor intensity of workers is reduced; and the dehumidification treatment unit can be protected during transportation, so that normal use of the dehumidification treatment unit is ensured.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of water and electricity engineering, in particular to a dehumidification protection device convenient for transportation. BACKGROUND

[0002] Water and electricity engineering is a state that trains senior engineering and technical personnel with the knowledge of water and electricity engineering survey, planning, design, construction, scientific research and management, and can engage in planning, design, construction, scientific research and management in water and electricity departments.

[0003] With water and electricity engineering being one of the core of infrastructure projects, it plays a positive role in people's well-being, but the existing water and electricity engineering equipment has some shortcomings, when in use, the water and electricity engineering equipment is easy to be damp, thereby reducing the service life of the water and electricity engineering equipment, the existing moisture-proof treatment device is fixed in one place, and the equipment in different working areas needs to be pre-processed for moisture-proof treatment, which cannot be used and removed at the same time, and occupies working time. Moreover, the existing moisture-proof and dehumidification treatment device is through hot air in a closed space to dry the damp equipment, but most of the moisture will re-liquefy and drop on the equipment due to cold, resulting in repeated drying, wasting resources. In order to avoid the internal moisture of the water and electricity engineering equipment and prolong the service life of the water and electricity engineering equipment, a dehumidification protection device convenient for transportation is proposed to solve the above problems. SUMMARY

[0004] The purpose of this part is to summarize some aspects of the embodiments of the present application and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this part and the abstract and title of the specification to avoid obscuring the purpose of this part, the abstract and the title, and such simplifications or omissions cannot be used to limit the scope of the present application.

[0005] In view of the above or existing problems in the prior art, the present application is proposed.

[0006] Therefore, the purpose of the present application is to provide a dehumidification protection device convenient for transportation, which can dehumidify and prevent moisture at any time and any place and avoid repeated drying, thereby reducing the waste of energy and time.

[0007] To solve the above technical problems, the present application provides the following technical scheme: a dehumidification protection device convenient for transportation, which comprises a dehumidification treatment unit for moisture-proof treatment of water and electricity engineering equipment; a transportation unit for transferring the dehumidification treatment unit to different working areas and protecting during transportation.

[0008] As a preferred scheme of the dehumidification protection device convenient for transportation of the present application, the transportation unit comprises a base plate moving assembly, and a dragging protection assembly arranged above the base plate moving assembly.

[0009] As a preferred scheme of the moisture-proof device for easy transportation, the base plate moving assembly comprises a bearing plate, a main threaded hole arranged at one end of the bearing plate, auxiliary threaded holes arranged at both sides of the bearing plate, hinged seats arranged at four corners of the bottom of the bearing plate, and rollers connected with the hinged seats; the moisture treatment unit is provided with a main threaded plate matched with the main threaded hole, and two groups of auxiliary threaded plates matched with the two groups of auxiliary threaded holes respectively; a bolt is arranged between the main threaded hole and the main threaded plate, and a bolt is arranged between the auxiliary threaded hole and the auxiliary threaded plate.

[0010] As a preferred scheme of the moisture-proof device for easy transportation, the dragging protection assembly comprises two groups of positioning rods symmetrically arranged at both sides of the base plate moving assembly, intermittent sleeve rods sleeved with the positioning rods, first movable sleeves arranged at intermittent positions of the intermittent sleeve rods and movably connected with the positioning rods, dragging plates connected with the first movable sleeves, second movable sleeves arranged on the intermittent sleeve rods, height-limiting plug-in plates connected with the second movable sleeves, and U-shaped sockets respectively plugged with the two groups of height-limiting plug-in plates.

[0011] As a preferred scheme of the moisture-proof device for easy transportation, the moisture treatment unit comprises a treatment chamber assembly, a rotating platform assembly arranged in the treatment chamber assembly, a hot air assembly partially arranged in the treatment chamber assembly and outwardly extending at one end, a horizontal cavity storage assembly arranged above the treatment chamber assembly, a moisture absorption and weight increasing assembly arranged in the horizontal cavity storage assembly, and a self-locking ejection assembly arranged at one side of the moisture absorption and weight increasing assembly and in the horizontal cavity storage assembly; the treatment chamber assembly and the horizontal cavity storage assembly are both provided with containing spaces.

[0012] As a preferred scheme of the moisture-proof device for easy transportation, the horizontal cavity storage assembly comprises two groups of limiting grooves symmetrically arranged in the inner walls at both sides of the horizontal cavity storage assembly, lifting rods limiting the lifting of the top cover of the horizontal cavity storage assembly and plugged with the limiting grooves, pressure plates arranged at the top of the lifting rods, first springs respectively connected with the bottom of the pressure plates and the top of the top cover of the horizontal cavity storage assembly, a horizontal locking block connected with the bottom of the lifting rod, a first rotating shaft hinged with the inner wall of the horizontal cavity storage assembly, a long pushing plate connected with one side of the first rotating shaft, and arc-shaped springs respectively connected with the upper surface of the long pushing plate and the bottom surface of the top cover of the horizontal cavity storage assembly; the horizontal cavity storage assembly is provided with a through hole at the connecting part with the treatment chamber assembly, and support strips are arranged at both sides of the horizontal cavity storage assembly to support the moisture absorption and weight increasing assembly and the self-locking ejection assembly.

[0013] As a preferred scheme of the moisture removal protection device convenient for transportation, the moisture absorption and weight increasing assembly comprises a hollow support seat arranged on the horizontal cavity accommodating assembly, telescopic rods arranged at four corners of the hollow support seat, a first hollow clamping seat connected with the top of the telescopic rods, a second hollow clamping seat arranged above the first hollow clamping seat, a moisture absorption material arranged between the first hollow clamping seat and the second hollow clamping seat, a lifting sealing channel connected with the bottom of the inner wall of the first hollow clamping seat, a horizontal pushing strip arranged at one side of the lifting sealing channel, a second spring arranged outside the telescopic rods and connected with the bottom of the first hollow clamping seat and the surface of the hollow support seat respectively, a shielding plate arranged outside the hollow support seat, and a rack plate arranged at one side of the shielding plate.

[0014] As a preferred scheme of the moisture removal protection device convenient for transportation, the hot air assembly comprises a small hot air machine, a sleeve ring arranged on the small hot air machine, an outer edge hinge shaft connected with the sleeve ring and hinged with the inner wall of the processing chamber assembly, and a gear arranged at the end of the outer edge hinge shaft.

[0015] As a preferred scheme of the moisture removal protection device convenient for transportation, the self-locking ejection assembly comprises a clamping push head, a closing plate connected with the clamping push head, two groups of straight limiting blocks symmetrically arranged at two sides of the closing plate, a vertical pushing strip arranged at one end of the closing plate, a bottom groove locking block arranged at the other end of the closing plate, and a speed reduction spring arranged at one side of the closing plate and connected with the inner wall of the horizontal cavity accommodating assembly.

[0016] As a preferred scheme of the moisture removal protection device convenient for transportation, the processing chamber assembly comprises a switch door arranged at one side thereof, and a handle connected with the switch door; and the rotating platform assembly comprises a support disc arranged below the moisture absorption and weight increasing assembly, and a motor connected with the bottom of the support disc.

[0017] The moisture removal protection device convenient for transportation has the following beneficial effects: the moisture removal processing unit can be quickly transported to different working areas by the transportation unit, and the moisture removal processing unit can be removed as needed to improve the working efficiency and reduce the labor intensity of the workers; and the moisture removal processing unit can be protected during transportation to ensure normal use. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative labor. Among them:

[0019] Figure 1 The overall structure diagram of the transportation unit of the moisture removal protection device convenient for transportation.

[0020] Figure 2 Another perspective view of the transport unit of the dehumidification protection device for convenient transportation.

[0021] Figure 3 A use scenario diagram of the transport unit of the dehumidification protection device for convenient transportation.

[0022] Figure 4 A schematic diagram of the dehumidification processing unit of the dehumidification protection device for convenient transportation.

[0023] Figure 5 A schematic diagram of the internal structure of the dehumidification processing unit of the dehumidification protection device for convenient transportation.

[0024] Figure 6 A schematic diagram of the moisture absorption and weight increasing assembly structure of the dehumidification protection device for convenient transportation.

[0025] Figure 7 Another perspective view of the moisture absorption and weight increasing assembly structure of the dehumidification protection device for convenient transportation.

[0026] Figure 8 A schematic diagram of the moisture absorption and weight increasing assembly of the dehumidification protection device for convenient transportation. Figure 4 A schematic diagram of the moisture absorption and weight increasing assembly of the dehumidification protection device for convenient transportation.

[0027] Figure 9 A schematic diagram of the structure of the dehumidification protection device for convenient transportation. Figure 8 A schematic diagram of the structure of the dehumidification protection device for convenient transportation. DETAILED DESCRIPTION

[0028] In order to make the above objectives, features and advantages of the present application more obvious and understandable, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0029] In the following description, a lot of specific details are set forth in order to give 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 concept of the present application, so the present application is not limited to the specific embodiments disclosed below.

[0030] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an independent or alternative embodiment that excludes other embodiments.

[0031] Embodiment 1

[0032] Referring to Figures 1 to 9For the first embodiment of the present application, the embodiment provides a dehumidification protection device convenient for transportation, which can dehumidify and protect the equipment for water and electricity engineering at any time and any place, and avoid repeated drying, thereby reducing the waste of energy and time.

[0033] Specifically, the dehumidification treatment unit 100 is used for dehumidification treatment of the equipment for water and electricity engineering.

[0034] The transportation unit 200 is used for transporting the dehumidification treatment unit 100 to different working areas and protecting during transportation.

[0035] Further, the transportation unit 200 includes a base plate moving assembly 201 and a dragging protection assembly 202 arranged above the base plate moving assembly 201.

[0036] Further, the base plate moving assembly 201 includes a bearing plate 201a, a main threaded hole 201b arranged at one end of the bearing plate 201a, auxiliary threaded holes 201c arranged on both sides of the bearing plate 201a, hinged seats 201d arranged at the bottom corners of the bearing plate 201a, and rollers 201e connected with the hinged seats 201d.

[0037] Preferably, the dehumidification treatment unit 100 is provided with a main threaded plate 1 matched with the main threaded hole 201b, and two groups of auxiliary threaded plates 2 matched with the two groups of auxiliary threaded holes 201c respectively; a bolt is arranged between the main threaded hole 201b and the main threaded plate 1, and a bolt is arranged between the auxiliary threaded hole 201c and the auxiliary threaded plate 2.

[0038] Further, the dragging protection assembly 202 includes two groups of positioning rods 202a symmetrically arranged on both sides of the base plate moving assembly 201, intermittent sleeve rods 202b sleeved with the positioning rods 202a, first movable sleeves 202c arranged at the intermittent positions of the intermittent sleeve rods 202b and movably connected with the positioning rods 202a, dragging plates 202d connected with the first movable sleeves 202c, second movable sleeves 202e arranged on the intermittent sleeve rods 202b, height limiting plug-in plates 202f connected with the second movable sleeves 202e, and U-shaped sockets 202g plugged with the two groups of height limiting plug-in plates 202f respectively.

[0039] It should be noted that the above description is made with reference to the accompanying drawings. Figure 3The top of the height-limiting plug-in plate 202f is in contact with the lower surface of the first hollow clamping seat 105c, which is used to limit the height of the first hollow clamping seat 105c, so as to avoid the risk of invalidation of the dehumidification treatment unit 100 due to downward vibration of the first hollow clamping seat 105c during transportation. A gap should be left between the inner wall of the height-limiting plug-in plate 202f and the inner wall of the first hollow clamping seat 105c to avoid the failure of the height-limiting plug-in plate 202f to rotate when passing through the second movable sleeve 202e.

[0040] When the transportation unit 200 is in use, the worker needs to carry or place the dehumidification treatment unit 100 on the bearing plate 201a through a traction device, and then fix and connect the main threaded hole 201b and the main threaded plate 1 through a plurality of bolts, and fix and connect the auxiliary threaded hole 201c and the auxiliary threaded plate 2, so as to install the dehumidification treatment unit 100 on the transportation unit 200. Then the worker inserts the second movable sleeve 202e into the positioning rod 202a and places it above the intermittent sleeve rod 202b, and then only needs to rotate the second movable sleeve 202e to deflect the height-limiting plug-in plate 202f to the bottom of the first hollow clamping seat 105c. At this time, the height-limiting plug-in plate 202f can avoid the downward vibration of the first hollow clamping seat 105c, and the two groups of height-limiting plug-in plates 202f are inserted through the U-shaped socket 202g, so that the height-limiting plug-in plate 202f cannot rotate and remains stable. The first movable sleeve 202c is movably arranged at the intermittent position of the intermittent sleeve rod 202b, and the dragging plate 202d can be adjusted to a certain angle by rotation, which is convenient for the worker to drag, and under the action of the four universal wheels, it can be quickly transported to different areas.

[0041] Therefore, the dehumidification treatment unit can be quickly transported to different working areas by the transportation unit 200, which is convenient for immediate treatment and improves work efficiency and reduces the labor intensity of workers; and the dehumidification treatment unit can be protected during transportation to ensure its normal use.

[0042] Further, the dehumidification treatment unit 100 comprises a treatment chamber assembly 101, a rotating platform assembly 102 arranged in the treatment chamber assembly 101, a hot air assembly 103 partially arranged in the treatment chamber assembly 101 and outwardly extending at one end, a horizontal cavity storage assembly 104 arranged above the treatment chamber assembly 101, a moisture absorption and weight increasing assembly 105 arranged in the horizontal cavity storage assembly 104, and a self-locking ejection assembly 106 arranged at one side of the moisture absorption and weight increasing assembly 105 and in the horizontal cavity storage assembly 104.

[0043] The treatment chamber assembly 101 and the horizontal cavity storage assembly 104 are both internally provided with accommodation spaces.

[0044] Further, the horizontal cavity receiving assembly 104 comprises two sets of limiting grooves 104a symmetrically arranged on the inner walls of both sides thereof, a lifting rod 104b limiting the insertion of the top cover of the horizontal cavity receiving assembly 104, a pressure plate 104c arranged on the top of the lifting rod 104b, a first spring 104d connected to the bottom of the pressure plate 104c and the top of the top cover of the horizontal cavity receiving assembly 104 respectively, a horizontal locking block 104e connected to the bottom of the lifting rod 104b, a first rotating shaft 104f hinged to the inner walls of the horizontal cavity receiving assembly 104, a long pushing plate 104g connected to one side of the first rotating shaft 104f, and an arc spring 104h connected to the upper surface of the long pushing plate 104g and the bottom surface of the top cover of the horizontal cavity receiving assembly 104 respectively.

[0045] The connecting part of the horizontal cavity receiving assembly 104 and the processing chamber assembly 101 is provided with a through hole A, and both sides of the horizontal cavity receiving assembly 104 are provided with support strips B supporting the moisture absorption and weight increasing assembly 105 and the self-locking and ejecting assembly 106.

[0046] Further, the moisture absorption and weight increasing assembly 105 comprises a hollow support seat 105a arranged on the horizontal cavity receiving assembly 104, an extension rod 105b arranged on the four corners of the hollow support seat 105a, a first hollow clamping seat 105c connected to the top of the extension rod 105b, a second hollow clamping seat 105d arranged above the first hollow clamping seat 105c, a moisture absorption material 105e arranged between the first hollow clamping seat 105c and the second hollow clamping seat 105d, a lifting sealing channel 105f connected to the bottom of the inner wall of the first hollow clamping seat 105c, a horizontal pushing strip 105g arranged on one side of the lifting sealing channel 105f, a second spring 105h arranged on the outer side of the extension rod 105b and connected to the bottom of the first hollow clamping seat 105c and the surface of the hollow support seat 105a respectively, a shielding plate 105i arranged on the outer side of the hollow support seat 105a, and a rack plate 105j arranged on one side of the shielding plate 105i.

[0047] Further, the hot air assembly 103 comprises a small hot air blower 103a, a sleeve ring 103b arranged on the small hot air blower 103a, an outer edge hinge shaft 103c connected to the sleeve ring 103b and hinged to the inner walls of the processing chamber assembly 101, and a gear wheel 103d arranged at the end of the outer edge hinge shaft 103c.

[0048] Further, the self-locking ejection assembly 106 comprises a clamping push head 106a, a closing plate 106b connected with the clamping push head 106a, two groups of straight limiting blocks 106c symmetrically arranged on both sides of the closing plate 106b, a vertical pushing bar 106d arranged at one end of the closing plate 106b, a bottom groove locking block 106e arranged at the other end of the closing plate 106b, and a speed reduction spring 106f arranged on one side of the closing plate 106b and connected with the inner wall of the horizontal cavity storage assembly 104. The recovery speed of the speed reduction spring 106f is smaller than that of the other springs.

[0049] Further, the processing chamber assembly 101 comprises a switch door 101a arranged on one side thereof, and a handle 101b connected with the switch door 101a. The rotating platform assembly 102 comprises a support disc 102a arranged below the moisture absorption and weight increasing assembly 105, and a motor 102b connected with the bottom of the support disc 102a.

[0050] Preferably, one end of the outer edge hinge shaft 103c protrudes out of the processing chamber assembly 101, and the gear 103d is arranged at the protruding end of the outer edge hinge shaft 103c and engages with the rack plate 105j. The first hollow clamping seat 105c and the second hollow clamping seat 105d are structurally identical, and the first hollow clamping seat 105c is in the shape of a soil-shaped pagoda. The first hollow clamping seat 105c and the second hollow clamping seat 105d can be fixed by bolts. The outer wall of the lifting sealing channel 105f is arranged in the inner wall of the hollow support seat 105a.

[0051] It should be noted that the horizontal pushing bar 105g is arranged above one end of the pushing long plate 104g, and the vertical pushing bar 106d is arranged below the other end of the pushing long plate 104g. The height of the top of the vertical pushing bar 106d is smaller than the height of the bottom of the pushing long plate 104g. The straight limiting blocks 106c are adaptively limited and supported by the limiting grooves 104a. The moisture absorption material 105e adopts existing technology, can absorb moisture and water, and can be reused in a dry environment. The thickness and size of the moisture absorption material 105e are only schematic in the figure, and can be adaptively adjusted to increase the absorption capacity. The small hot air blower 103a adopts existing technology, is connected with the power supply by a line to provide energy for work. The line should have a certain margin to avoid being too tight during turning and causing the device to fail.

[0052] When the moisture removal processing unit 100 is in use, the overall use links of the moisture removal processing unit 100 can be divided into three processes according to time points, which are equipment moisture-proof processing, moisture absorption and weight increasing assembly self-maintenance and recycling, and storage and recovery.

[0053] In the process of moisture-proofing the device, the worker needs to pull the switch door 101a on one side of the processing chamber assembly 101 by the handle 101b, then place the device on the support disc 102a, and then start the small hot air blower 103a and the motor 102b. At this time, the air outlet of the small hot air blower 103a is horizontally arranged and opposite to the upper side of the support disc 102a; when the motor 102b works, it controls the rotation of the support disc 102a, so that the device above the support disc 102a rotates with it, and finally the small hot air blower 103a can uniformly dehumidify the device. The moisture generated in this process will enter the lifting sealing channel 105f through the through hole A, contact the moisture absorbing material 105e, and be absorbed by it, avoiding the liquefaction and dripping of the moisture, so that the device is not re-moistened, thereby avoiding multiple and long-time dehumidification, saving energy and time. At this time, one end of the through hole A is covered by the shielding plate 105i to avoid the leakage of moisture affecting the operation of the remaining devices.

[0054] In the self-maintenance recycling process of the hygroscopic weight increasing assembly, the process is to solve the problem that the staff cannot accurately grasp whether the hygroscopic material 105e reaches the maximum absorption capacity, and cannot replace the hygroscopic material 105e in time, which leads to the repeated drying of the existing dehumidification device. In this process, the hygroscopic material 105e absorbs water and gradually increases in weight, the overall weight of the first and second hollow clamping seats 105c and 105d for clamping the hygroscopic material 105e increases, and then the second spring 105h is pressed to compress the four groups of second springs 105h, so that the upper half of the hygroscopic weight increasing assembly 105 can only move downward in a straight line under the action of the telescopic rod 105b, thereby ensuring the stability of the device, and the lifting sealing channel 105f moves downward with the first hollow clamping seat 105c, thereby ensuring the sealing of the device. The lifting sealing channel 105f moves downward at the same time, and the lateral pushing bar 105g on the side of the lifting sealing channel 105f also moves downward in a vertical direction. The pushing long plate 104g in contact with the bottom of the lateral pushing bar 105g is pushed by the lateral pushing bar 105g to rotate around the first rotating shaft 104f and stretch the arc-shaped spring 104h. The contact between the lateral pushing bar 105g and the pushing long plate 104g during the downward movement of the lateral pushing bar 105g will gradually tend to the end of the pushing long plate 104g. When the lateral pushing bar 105g reaches the lowermost point, the pushing long plate 104g rotates to the maximum angle and is separated from the pushing long plate 104g, and is returned to the corresponding maximum angle under the action of the arc-shaped spring 104h. During the rotation of the pushing long plate 104g to the maximum angle, the pushing long plate 104g will contact the vertical pushing bar 106d above the closing plate 106b and push the vertical pushing bar 106d to move the self-locking pop-up assembly 106 by a certain distance. When the pushing long plate 104g rotates to the maximum angle, the bottom groove locking block 106e moves inward to the maximum distance, so that the horizontal locking block 104e is separated from the bottom groove of the bottom groove locking block 106e, and is lifted to the upper side of the bottom groove locking block 106e under the action of the first spring 104d. At this time, the self-locking pop-up assembly 106 is unlocked, and slowly pops out under the action of the slow spring 106f, so that the clamping push head 106a at one end of the self-locking pop-up assembly 106 pushes the hygroscopic weight increasing assembly 105 to move outward. The hygroscopic weight increasing assembly 105 moves from the first through hole A2 to above the second through hole A1. In this process, the shielding plate 105i at the outer end of the hygroscopic weight increasing assembly 105 is unlocked and moves to the outer end of the processing chamber assembly 101, the rack plate 105j on the side of the shielding plate 105i rotates the control gear 103d, and finally makes the outer edge hinge shaft 103c control the small air heater 103a to turn 90°, so that the air outlet of the small air heater 103a is vertically upward, and the hygroscopic material 105e reaching the maximum absorption capacity is dried, which is convenient for recycling. The closing plate 106b moves to the first through hole A2 to close it.By the space dislocation between the moisture absorption and weight increasing assembly 105 and the rotating platform assembly 102, the backflow of moisture can be effectively avoided. To prevent the water vapor generated during the drying of the moisture absorption material 105e from affecting the remaining equipment, an existing water collection cover can be installed on the top of the moisture absorption and weight increasing assembly 105 for easy collection.

[0055] In the storage recovery, after the moisture absorption material 105e is dried, the upper half of the moisture absorption and weight increasing assembly 105 is lifted, and then the staff pushes the moisture absorption and weight increasing assembly 105 into the horizontal cavity storage assembly 104 until the outer edge surface C of the shielding plate 105i contacts the outer wall of the horizontal cavity storage assembly 104. Then, the horizontal locking block 104e is lowered again to the side of the bottom groove locking block 106e while the pressing platen 104c is kept pressed, and then the moisture absorption and weight increasing assembly 105 is released. The bottom groove locking block 106e is ejected under the action of the slow spring 106f and re-engages with the horizontal locking block 104e. Since the lifting rod 104b is inserted into the top cover of the horizontal cavity storage assembly 104 for limiting, the self-locking ejection assembly 106 is fixed in position. The device can be used repeatedly, reducing production costs and improving work efficiency.

[0056] In summary, by improving the existing moisture-proof treatment device, the moisture absorption and weight increasing assembly is set to absorb and store the moisture generated during the dehumidification process. When the maximum absorption capacity is reached, it automatically moves away from the water and power equipment and is dried. In this process, the hot air dryer changes from drying the equipment to drying the moisture absorption and weight increasing assembly. By circulating and sharing the same hot air dryer, resources are fully utilized, costs are saved, repeated drying is avoided, energy consumption is reduced, and work efficiency is improved.

[0057] It is important to note that the construction and arrangement of the application shown in the various exemplary embodiments is illustrative only. Although only a few embodiments have been described in detail in this disclosure, those skilled in the art who review the present disclosure will readily appreciate that many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters, mounting arrangements, use of materials, colors, orientations, etc.) without materially departing from the novel teachings and advantages of the subject matter described herein. For example, elements shown as integrally formed can be constructed of multiple parts or elements, the position of elements can be reversed or otherwise varied, and the nature or number of elements or positions can be altered or varied. Thus, the foregoing description is by way of example only, and is not intended to be limiting. The application is limited only as defined in the following claims and equivalents thereto. The sequence of any process or method steps, or the order in which they are carried out, can be altered or re-ordered without departing from the scope of the application. Any "articles of manufacture" or "manufacturing" as described herein are intended to encompass structures constructed of a multitude of different physical elements or components. In the claims, any means-plus-function clause is intended to cover the structures described herein as performing the recited function and also cover structures yet to be invented which perform the recited function but operate in a different manner. Other substitutions, modifications, changes and omissions can be made in the design, operating conditions and arrangement of the exemplary embodiments without departing from the scope of the application as expressed in the appended claims.

[0058] Also, to provide a concise description of the exemplary embodiments, not all features of an actual implementation can be described (that is, not all implementations can include all of the features described or optional implementations can include only a subset of the features described).

[0059] It should be appreciated that in the development of any actual implementation, as in any engineering or design project, numerous implementation-specific decisions can be made. Such development efforts might be complex and time-consuming, but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure.

[0060] It should be noted that the above-mentioned embodiments are only used to illustrate the technical solutions of the present application but not to limit the present application, and although the present application is 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 equivalent replaced without departing from the spirit and scope of the present application, and all should be covered in the scope of the claims of the present application.

Claims

1. A dehumidification protection device for ease of transportation, characterized by: The utility model relates to a kind of water and electricity engineering equipment dehumidification treatment device, including, Dehumidification treatment unit (100) for water conservancy and electricity engineering equipment is carried out moisture-proof treatment; Transport unit (200) for transporting the dehumidification treatment unit (100) to different work areas and protecting during transportation; The dehumidification treatment unit (100) includes a processing chamber assembly (101), a rotating platform assembly (102) disposed in the processing chamber assembly (101), a hot air assembly (103) partially disposed in the processing chamber assembly (101) and outwardly extending at one end, a horizontal cavity storage assembly (104) disposed above the processing chamber assembly (101), a moisture absorption and weight increasing assembly (105) disposed in the horizontal cavity storage assembly (104), and a self-locking ejection assembly (106) disposed on one side of the moisture absorption and weight increasing assembly (105) and disposed in the horizontal cavity storage assembly (104);The processing chamber assembly (101) and the horizontal cavity storage assembly (104) are both provided with a receiving space inside; The horizontal cavity storage assembly (104) includes two sets of limiting grooves (104a) symmetrically disposed in the inner walls of its two sides, a lifting rod (104b) limiting the insertion of the top cover of the horizontal cavity storage assembly (104), a pressure plate (104c) disposed on the top of the lifting rod (104b), a first spring (104d) connected to the bottom of the pressure plate (104c) and the top of the top cover of the horizontal cavity storage assembly (104) respectively, a horizontal locking block (104e) connected to the bottom of the lifting rod (104b), a first rotating shaft (104f) hinged to the inner wall of the horizontal cavity storage assembly (104), a long plate (104g) connected to one side of the first rotating shaft (104f), and an arc spring (104h) connected to the upper surface of the long plate (104g) and the bottom surface of the top cover of the horizontal cavity storage assembly (104) respectively. The connecting part of the horizontal cavity storage assembly (104) and the processing chamber assembly (101) is provided with a through hole (A), and the two sides of the horizontal cavity storage assembly (104) are provided with support strips (B) supporting the moisture absorption and weight increasing assembly (105) and the self-locking ejection assembly (106).

2. The dehumidification shelter of claim 1, wherein: The transport unit (200) includes a base plate moving assembly (201), and a drag protection assembly (202) disposed above the base plate moving assembly (201).

3. The dehumidification shelter of claim 2, wherein: The base plate moving assembly (201) includes a carrier plate (201a), a main threaded hole (201b) disposed at one end of the carrier plate (201a), an auxiliary threaded hole (201c) disposed on both sides of the carrier plate (201a), a hinged seat (201d) disposed at the bottom of the carrier plate (201a), and a roller (201e) connected to the hinged seat (201d). The dehumidification treatment unit (100) is provided with a main threaded plate (1) matched with the main threaded hole (201b), and two groups of auxiliary threaded plates (2) matched with two groups of auxiliary threaded holes (201c) respectively; a bolt is arranged between the main threaded hole (201b) and the main threaded plate (1), and a bolt is arranged between the auxiliary threaded hole (201c) and the auxiliary threaded plate (2).

4. The dehumidification shelter of claim 3, wherein: The drag protection assembly (202) includes two groups of positioning rods (202a) symmetrically arranged on both sides of the base plate moving assembly (201), an intermittent sleeve rod (202b) sleeved with the positioning rod (202a), a first movable sleeve (202c) arranged at the intermittent position of the intermittent sleeve rod (202b) and movably connected with the positioning rod (202a), a drag plate (202d) connected with the first movable sleeve (202c), a second movable sleeve (202e) arranged on the intermittent sleeve rod (202b), a height limiting plug-in plate (202f) connected with the second movable sleeve (202e), and a U-shaped socket (202g) plugged with two groups of height limiting plug-in plates (202f) respectively.

5. The dehumidification shelter of claim 4, wherein: The moisture absorption and weight increasing assembly (105) includes a hollow support seat (105a) arranged on the horizontal cavity containing assembly (104), a telescopic rod (105b) arranged at four corners of the hollow support seat (105a), a first hollow clamping seat (105c) connected with the top of the telescopic rod (105b), a second hollow clamping seat (105d) arranged above the first hollow clamping seat (105c), a moisture absorption material (105e) arranged between the first hollow clamping seat (105c) and the second hollow clamping seat (105d), a lifting sealing channel (105f) connected with the bottom of the inner wall of the first hollow clamping seat (105c), a horizontal pushing bar (105g) arranged on one side of the lifting sealing channel (105f), a second spring (105h) arranged outside the telescopic rod (105b) and connected with the bottom of the first hollow clamping seat (105c) and the surface of the hollow support seat (105a) respectively, a shielding plate (105i) arranged outside the hollow support seat (105a), and a rack plate (105j) arranged on one side of the shielding plate (105i).

6. The dehumidification shelter of claim 5, wherein: The hot air assembly (103) includes a small hot air machine (103a), a sleeve ring (103b) arranged on the small hot air machine (103a), an outer edge hinge shaft (103c) connected with the sleeve ring (103b) and hinged with the inner wall of the treatment chamber assembly (101), and a gear (103d) arranged at the end of the outer edge hinge shaft (103c).

7. The dehumidification shelter of claim 6, wherein: The self-locking pop-up assembly (106) comprises a clamping push head (106a), a closing plate (106b) connected with the clamping push head (106a), two groups of straight limiting blocks (106c) symmetrically arranged on both sides of the closing plate (106b), a vertical poking bar (106d) arranged at one end of the closing plate (106b), a bottom groove locking block (106e) arranged at the other end of the closing plate (106b), and a speed reduction spring (106f) arranged on one side of the closing plate (106b) and connected with the inner wall of the horizontal cavity containing assembly (104).

8. The dehumidification shelter of claim 7, wherein: The processing chamber assembly (101) comprises a switch door (101a) arranged on one side thereof, and a handle (101b) connected with the switch door (101a); the rotating platform assembly (102) comprises a supporting disc (102a) arranged below the moisture absorption and weight increasing assembly (105), and a motor (102b) connected with the bottom of the supporting disc (102a).

Citation Information

Patent Citations

  • Automobile part drying oven convenient to carry

    CN215002591U

  • Moisture-proof treatment equipment for water conservancy and hydropower engineering

    CN215598006U