Heat insulation blanket conductive recovery energy storage device

By embedding an energy conversion layer and conductive materials inside an aluminum insulation blanket, solar energy is converted into electrical energy and stored in an energy storage module, solving the problem of high cost of solar panels and achieving cost reduction and energy storage improvement.

CN120979335APending Publication Date: 2025-11-18YUANCHUANGXIANG (SUZHOU) NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202511017698.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-23
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

In existing technologies, the high price of solar panels increases the cost of energy recovery and storage devices, and the aluminum insulation blankets already installed on existing buildings cannot be effectively utilized to recover energy.

Method used

An intermediate energy conversion layer and flexible conductive material are embedded in the aluminum insulation blanket body. Solar energy is converted into electrical energy and stored in a detachable energy storage module. The existing aluminum insulation blanket has a large laying area, which reduces costs and increases energy storage.

Benefits of technology

By absorbing solar energy with existing aluminum insulation blankets and converting it into electrical energy for storage in energy storage modules, the cost of energy recovery and storage is reduced, while the energy storage capacity is increased.

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Abstract

The invention relates to the technical field of energy storage devices, and discloses a heat insulation blanket conductive recovery energy storage device which comprises an energy storage box and an aluminum heat insulation blanket body, a plurality of detachable energy storage modules used for electric energy storage are arranged in the energy storage box, and rotating discs are rotationally connected to the opposite side walls in the energy storage box. A plurality of horizontal storage frames are rotationally connected between the two rotating discs, the storage frames are used for storing a plurality of detachable energy storage modules, and a middle energy conversion layer and a flexible conductive material are embedded in the aluminum heat insulation blanket body; wherein the middle energy conversion layer and the flexible conductive material are used for absorbing solar energy, and the solar energy is converted into electric energy which is transmitted to the plurality of detachable energy storage modules for storage. According to the heat insulation blanket, the converted electric energy is transmitted into the detachable energy storage module through the middle energy conversion layer and the flexible conductive material to be stored, the cost for recycling and storing the electric energy is reduced, meanwhile, the laying area of the aluminum heat insulation blanket body is large, and the storage amount for recycling and storing the electric energy is increased.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of energy storage devices, in particular to a heat-insulating blanket conductive recycling energy storage device. BACKGROUND

[0002] An electric energy storage device stores electric energy by converting it into other forms of energy, and releases the stored energy as electricity when needed. The basic principle is to store energy in the form of chemicals, physics or mechanics in a device, and when energy is needed, the energy in the energy storage device is released through the reverse process to supply the load.

[0003] According to the search, a building energy recovery device is disclosed in the patent with the patent number CN221886371U, which includes a bottom plate, a load plate fixedly arranged on the upper end face of the bottom plate, a plurality of support columns fixedly arranged on the upper end face of the load plate and evenly distributed between the support columns, a support plate fixedly arranged on the other end of the plurality of support columns, a motor fixedly arranged on the load plate, a speed regulator fixedly arranged on the output end of the motor, a rotating shaft fixedly arranged on the output end of the speed regulator, and a connecting rod hingedly connected to the rotating shaft. The motor is started to rotate the rotating shaft fixedly arranged on the output end of the speed regulator, and the connecting rod can make circular motion in the horizontal direction. The wave-shaped slide rail arranged on the support plate enables the connecting rod to make up-down reciprocating motion. The collecting mechanism fixedly arranged on the other end of the connecting rod can keep perpendicular to the sunlight, ensuring that the collecting mechanism can maximize the conversion of solar energy.

[0004] The above-mentioned patent has obvious beneficial effects, but still has the following deficiencies in practical operation: In the above-mentioned comparative document, solar panels are used to absorb sunlight and convert it into electric energy, which is then transmitted to an electric energy storage device for storage. However, in reality, solar panels are expensive, and if a large amount of electric energy needs to be recovered through solar energy, the cost of the overall device will increase significantly. Existing buildings are usually equipped with aluminum heat-insulating blankets for thermal insulation, and the aluminum heat-insulating blankets are exposed to sunlight for a long time. Therefore, it is necessary to improve the energy storage device to solve the defects of the existing technology. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides a heat-insulating blanket conductive recycling energy storage device, which reduces the cost of electric energy recovery and storage, and increases the storage capacity of electric energy recovery and storage.

[0006] In order to achieve the above object, the present application provides the following technical scheme: a heat-insulating blanket conductive recycling energy storage device, comprising an energy storage box body and an aluminum heat-insulating blanket body, a plurality of detachable energy storage modules for storing electrical energy are arranged in the energy storage box body, rotating discs are rotatably connected to the opposite side walls in the energy storage box body, a plurality of horizontal storage frames are rotatably connected between the two rotating discs, the storage frames are used for storing a plurality of detachable energy storage modules, and the aluminum heat-insulating blanket body is embedded with an intermediate energy conversion layer and a flexible conductive material; The intermediate energy conversion layer and the flexible conductive material are used for absorbing solar energy, the solar energy is converted into electrical energy and is stored in the plurality of detachable energy storage modules, a box door is arranged on one side of the energy storage box body, the plurality of detachable energy storage modules can be quickly installed or detached from the storage frames, a main controller and a driving motor are arranged on one side of the energy storage box body, the driving motor is used for driving the rotating discs to rotate, and the plurality of storage frames are always in a horizontal state when the rotating discs rotate.

[0007] Preferably, a rotating shaft with one end fixedly installed on the output end of the driving motor penetrates through one side of the energy storage box body, the rotating shaft is fixedly installed at the center positions of the two rotating discs, rotating grooves adapted to the rotating discs are formed in the opposite side walls in the energy storage box body, first gears fixedly installed on the side surfaces of the rotating shaft are arranged on the inner side walls of the rotating grooves, connecting shafts penetrating through the rotating discs are fixedly installed on the opposite side surfaces of the storage frames, second gears adapted to the first gears are fixedly installed on the side surfaces of one end of the connecting shafts located on the rotating discs, a plurality of third gears are rotatably connected in the rotating discs, the third gears are engaged with the first gears and the second gears, and a taking and placing opening adapted to the storage frames is formed on one side of the box door.

[0008] Preferably, a plurality of movable bearing plates for limiting the detachable energy storage modules are arranged in the storage frames, a plurality of placing cavities adapted to the detachable energy storage modules are formed on one side of the storage frames close to the box door, connecting plugs for power transmission are fixedly installed in the placing cavities, connecting slots adapted to the connecting plugs are arranged on one side of the detachable energy storage modules, and wire holes adapted to the positions of the connecting plugs are formed on one side of the storage frames.

[0009] Preferably, a communication groove is formed in the lower part of the storage frame and the movable bearing plate, a cooling fan for heat dissipation is fixedly installed in the communication groove in the lower part of the movable bearing plate, a heat dissipation hole extending into the communication groove is formed in the upper part of the storage frame, a heat dissipation opening is formed in the upper part of the energy storage box body, a filter screen plate is fixedly installed in the heat dissipation opening, and an air inlet screen plate is arranged on one side of the energy storage box body.

[0010] Preferably, the heat dissipation opening is fixedly provided with an installation shaft body penetrating through the filter screen plate, the energy storage box body is internally and fixedly provided with a fourth gear matched with a rotary disc in position, the rotary disc is provided with a gear slot matched with the fourth gear on the side surface, the fourth gear is fixedly provided with a first connecting rod extending above the energy storage box body on the side, a second connecting rod is fixedly provided on the upper end side surface of the first connecting rod, a cleaning scraper is clamped on the upper end side surface of the installation shaft body, the cleaning scraper is matched with the filter screen plate and closely attached to the upper surface of the filter screen plate, and the second connecting rod and the cleaning scraper are rotationally connected with a third connecting rod.

[0011] Preferably, the lower side surface of the movable bearing plate is fixedly provided with a sliding plug plate, the storage frame is provided with a plurality of installation slots matched with the sliding plug plate on the side, a handle is fixedly provided on the side of the movable bearing plate, the upper surface of the movable bearing plate is provided with two long side positioning plates for fixing the detachable energy storage module, an arc-shaped protrusion with one end in arc shape is fixedly provided on the side surface of the movable bearing plate, and elastic clamping frames matched with the arc-shaped protrusions are fixedly provided on the opposite side surfaces of the placing cavity.

[0012] Preferably, the long side positioning plates are fixedly provided with short side fixed plates on the opposite side end portions, sliding blocks are fixedly provided on the lower side surface of the long side positioning plates, first sliding grooves matched with the sliding blocks are provided on the upper side surface of the movable bearing plate, a first adjusting screw rod extending into the first sliding groove is rotationally connected through the side of the movable bearing plate, a first limiting nut is threadedly connected on the side surface of the first adjusting screw rod, a short side movable plate is provided on the side surface of the long side positioning plate away from the short side fixed plate, a second sliding groove matched with the side surface of the short side movable plate is provided on the side of the long side positioning plate, and a second adjusting screw rod extending into the second sliding groove is rotationally connected through the one end of the long side positioning plate.

[0013] Preferably, a positioning bolt is threadedly connected on the upper end of the installation shaft body, two abutting rings matched with one end of the cleaning scraper are sleeved on the side surface of the positioning bolt, and a spring is arranged between the two abutting rings.

[0014] Preferably, a telescopic device with telescopic effect is fixedly provided on the side of the box door, a third sliding groove is provided in the inner side wall of the taking and placing opening, a sealing door plate matched with the taking and placing opening is slidingly connected in the third sliding groove, and the telescopic device is fixedly provided with the sealing door plate on the lower part.

[0015] Preferably, the intermediate energy conversion layer is located on the upper part of the flexible conductive material, the upper part of the intermediate energy conversion layer is sequentially provided with a corrosion-resistant coating and a super-hydrophobic self-cleaning coating in the upward direction, and the lower part of the flexible conductive material is sequentially provided with a heat-insulating reflective layer and a bearing substrate in the downward direction.

[0016] In view of the deficiencies of the prior art, the present application provides a heat-insulating blanket conductive recycling energy storage device, which overcomes the deficiencies of the prior art, and has the beneficial effects of the present application. In the present application, by encapsulating the intermediate energy conversion layer and the flexible conductive material in the aluminum heat-insulating blanket body, when sunlight shines on the aluminum heat-insulating blanket body, the converted electrical energy is transmitted to the detachable energy storage module through the intermediate energy conversion layer and the flexible conductive material for storage, and a large amount of aluminum heat-insulating blanket body needs to be laid in the prior art to absorb solar energy and convert the solar energy into electrical energy for storage in the detachable energy storage module, achieving the effect of electrical energy recycling and energy storage, and the laying area of the aluminum heat-insulating blanket body is large, improving the storage capacity of electrical energy recycling and energy storage.

[0017] In the present application, the storage frame always maintains a horizontal state when the rotating disc is driven to rotate by the driving motor, and the storage frame is rotated to the taking and placing opening position, and the detachable energy storage module is taken and placed from the fixed taking and placing opening, which improves the capacity of the detachable energy storage module and does not need to take and place the detachable energy storage module at a high or low position, facilitating the operator to take and place the detachable energy storage module and store energy.

[0018] In the present application, the detachable energy storage module for energy storage is cooled through the cooling fan, the heat dissipation hole, the heat dissipation opening and the air inlet net plate, and the storage frame with a higher temperature can be driven close to the heat dissipation opening by the driving motor, improving the heat dissipation effect of the detachable energy storage module in the storage frame.

[0019] In the present application, when the rotating disc rotates, the first connecting rod and the third connecting rod cooperate to drive the cleaning scraper to clean the upper part of the filter screen plate, preventing the filter screen plate located on the upper part of the energy storage box from being blocked by floating objects, and improving the heat dissipation effect in the energy storage box.

[0020] In the present application, the lower abutting ring abuts on the upper side of one end of the cleaning scraper under the tension of the spring, ensuring that the lower side of the cleaning scraper always abuts on the upper surface of the filter screen plate, and ensuring the cleaning effect of the cleaning scraper on the filter screen plate.

[0021] In the present application, the first adjusting threaded rod can drive the two long side positioning plates to move towards or away from each other, and the second adjusting threaded rod can drive the short side movable plate to move, so that the detachable energy storage module of different sizes can be positioned, and the connecting slot and the connecting plug at the adaptive position are matched, so that the detachable energy storage module can be conveniently assembled and disassembled and stored energy.

[0022] In the present application, the hydrophobic self-cleaning coating is provided to improve the self-cleaning performance of the aluminum heat-insulating blanket body, and the corrosion-resistant coating is provided to improve the corrosion resistance of the aluminum heat-insulating blanket body without affecting the surface hardness and optical properties of the aluminum heat-insulating blanket body.

[0023] Additional features and advantages of the present application will be set forth in the description that follows, and in part will be apparent from the description, or can be learned by practice of the application. The objectives and other advantages of the present application will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings. BRIEF DESCRIPTION OF DRAWINGS

[0024] The accompanying drawings, which are incorporated herein and form a part of the specification, illustrate the present application and, together with the description, further serve to explain the principles of the application and to enable a person skilled in the pertinent art to make and use the application.

[0025] Figure 1 is a schematic structural view of the whole of the present application; Figure 2 is a schematic structural view of the section of the body of the aluminum heat-insulating blanket in the present application; Figure 3 is a schematic structural view of the section of the energy storage box in the present application; Figure 4 is a schematic structural view of the section of the energy storage box and the box door in the present application; Figure 5 is a schematic structural view of the second connecting rod and the cleaning scraper in the present application; Figure 6 is a schematic structural view of several storage frames in the present application; Figure 7 is a schematic structural view of the rotating disc in the present application; Figure 8 is a schematic structural view of the lower part of the storage frame in the present application; Figure 9 is a schematic structural view of the section of the storage frame in the present application; Figure 10 is a schematic structural view of the side of the section of the storage frame in the present application; Figure 11 is a schematic structural view of the moving bearing plate in the present application; Figure 12 is a schematic structural view of the section of the energy storage box in the present application; Figure 3 is a schematic structural view of the enlarged structure at A in the present application; Figure 13 is a schematic structural view of the enlarged structure at B in the present application; Figure 3 is a schematic structural view of the enlarged structure at C in the present application; Figure 14 Figure 4 is a schematic structural view of the enlarged structure at D in the present application; Figure 15 is a schematic structural view of the enlarged structure at E in the present application; Figure 9 is a schematic structural view of the enlarged structure at F in the present application; Figure 16 Figure 10 is a schematic structural view of the enlarged structure at G in the present application; Figure 17 is a schematic structural view of the enlarged structure at H in the present application;​​Figure 11 Enlarged structural schematic view at F; Figure 18 For Figure 11 Enlarged structural schematic view at G.

[0026] In the figure: 1, energy storage box body; 2, aluminum heat insulation blanket body; 3, detachable energy storage module; 4, box door; 5, rotating disc; 6, storage frame; 7, intermediate energy conversion layer; 8, flexible conductive material; 9, main controller; 10, driving motor; 11, rotating shaft; 12, rotating groove; 13, first gear; 14, connecting shaft; 15, second gear; 16, third gear; 17, taking and placing opening; 18, moving bearing plate; 19, placing cavity; 20, connecting plug; 21, connecting slot; 22, wiring hole; 23, communication groove; 24, cooling fan; 25, heat dissipation hole; 26, heat dissipation opening; 27, filter screen; 28, mounting shaft body; 29, fourth gear; 30, gear slot; 31, first connecting rod; 32, second connecting rod; 33, cleaning scraper; 34, third connecting rod; 35, air inlet screen; 36, sliding plugboard; 37, mounting slot; 38, handle; 39, long side positioning plate; 40, short side fixed plate; 41, sliding block; 42, first sliding groove; 43, first adjusting screw rod; 44, first limiting nut; 45, short side movable plate; 46, second sliding groove; 47, second adjusting screw rod; 48, second limiting nut; 49, positioning bolt; 50, abutting ring; 51, spring; 52, telescopic device; 53, sealing door plate; 54, third sliding groove; 55, arc-shaped protrusion; 56, elastic clamping frame; 57, super-hydrophobic self-cleaning coating; 58, corrosion-resistant coating; 59, heat insulation reflection layer; 60, bearing substrate. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor are within the scope of protection of the present application.

[0028] Please refer to Figures 1-18The utility model provides a kind of insulating blanket conductive recovery energy storage device, including energy storage box 1 and aluminum insulating blanket body 2, energy storage box 1 is equipped with several detachable energy storage modules 3 for electrical energy storage, the opposite side wall in energy storage box 1 is rotatably connected with rotating disc 5, several horizontal storage frame 6 are rotatably connected between two rotating discs 5, and storage frame 6 is used to store several detachable energy storage modules 3, and aluminum insulating blanket body 2 is embedded with intermediate energy conversion layer 7 and flexible conductive material 8;Wherein, intermediate energy conversion layer 7 and flexible conductive material 8 are used to absorb solar energy, solar energy is converted into electrical energy and is stored in several detachable energy storage modules 3, and energy storage box 1 side is equipped with box door 4, and several detachable energy storage modules 3 can be quickly installed or disassembled with storage frame 6, and energy storage box 1 side is equipped with main controller 9 and drive motor 10, and drive motor 10 is used to drive rotating disc 5 rotation, and several storage frames 6 are always horizontal when rotating disc 5 rotates, and energy storage box 1 side is penetrated with rotating shaft 11, one end of rotating shaft 11 is fixedly installed with drive motor 10 output end, and rotating shaft 11 is fixedly installed with the center position of two rotating discs 5, and the opposite side wall in energy storage box 1 is equipped with rotating groove 12 adapted with rotating disc 5, and the inner side wall of rotating groove 12 is fixedly installed with first gear 13 sleeved in the side of rotating shaft 11, and the opposite side of storage frame 6 is fixedly installed with connecting shaft 14 penetrating rotating disc 5, and the side of one end of connecting shaft 14 located in rotating disc 5 is fixedly installed with second gear 15 adapted with first gear 13, and rotating disc 5 is rotatably connected with several third gears 16, and third gear 16 is engaged with first gear 13 and second gear 15, and the side of box door 4 is equipped with taking and placing opening 17 adapted with storage frame 6, and storage frame 6 is equipped with several mobile bearing plates 18 for limiting detachable energy storage modules 3, and the side of storage frame 6 close to box door 4 is equipped with several placing cavities 19 adapted with detachable energy storage modules 3, and placing cavity 19 is fixedly installed with connecting plug 20 for power transmission, and the side of detachable energy storage modules 3 is equipped with connecting slot 21 adapted with connecting plug 20, and the side of storage frame 6 is equipped with wiring hole 22 adapted with the position of connecting plug 20, and the lower part of storage frame 6 and mobile bearing plate 18 are equipped with communication groove 23, and the communication groove 23 in the lower part of mobile bearing plate 18 is fixedly installed with cooling fan 24 for heat dissipation, and the upper part of storage frame 6 is equipped with heat dissipation hole 25 extending into communication groove 23, and the upper part of energy storage box 1 is penetrated and equipped with heat dissipation opening 26, and heat dissipation opening 26 is fixedly installed with filter screen plate 27, and the side of energy storage box 1 is equipped with air inlet screen plate 35.

[0029] Specifically, the aluminum thermal blanket body 2 is installed on the building, the intermediate energy conversion layer 7 and the flexible conductive material 8 are embedded in the aluminum thermal blanket body 2 during production, the intermediate energy conversion layer 7 can be bismuth telluride or a flexible thermoelectric film, etc., used for conversion of light energy, the flexible conductive material 8 is silver nanowire, graphene ink or silver-plated fabric, etc., and the flexible conductive material 8 is electrically connected with the detachable energy storage module 3 in the energy storage box 1, sunlight is irradiated on the aluminum thermal blanket body 2, and the converted electrical energy is transmitted to the detachable energy storage module 3 in the energy storage box 1 for storage through the intermediate energy conversion layer 7 and the flexible conductive material 8, a large number of aluminum thermal blanket bodies 2 which need to be laid in the prior art are used to absorb solar energy, convert the solar energy into electrical energy, and deliver the electrical energy to the detachable energy storage module 3 for storage, so that the effect of electrical energy recovery and energy storage is realized, since the aluminum thermal blanket body 2 needs to be laid on the building, the cost of electrical energy recovery and energy storage is reduced, and the laying area of the aluminum thermal blanket body 2 is large, so that the reserve amount of electrical energy recovery and energy storage is improved; The detachable energy storage module 3 can be a lithium battery and a lead-acid battery, which is used for battery replacement in a battery replacement station, when the detachable energy storage module 3 needs to be installed or taken out, the driving motor 10 is started, the output end of the driving motor 10 drives the rotating shaft 11 to rotate, the rotating shaft 11 drives the rotating disc 5 to rotate in the rotating groove 12, the plurality of storage frames 6 rotate along the axis of the rotating shaft 11, the rotating disc 5 drives the second gear 15 and the third gear 16 to rotate along the axis of the rotating shaft 11, and since the first gear 13 is fixedly installed, when the second gear 15 and the third gear 16 revolve around the rotating shaft 11, the third gear 16 meshes with the first gear 13, so that the third gear 16 rotates, the third gear 16 drives the second gear 15 to rotate, the second gear 15 rotates reversely with the rotating disc 5, the second gear 15 drives the storage frame 6 to rotate along the axis of the connecting shaft 14 through the connecting shaft 14, so that the horizontal state of the storage frame 6 is always maintained, when the position of the placing cavity 19 on one side of the storage frame 6 is matched with the position of the taking and placing opening 17 on the box door 4, the movable bearing plate 18 in the placing cavity 19 is pulled out, and the detachable energy storage module 3 is taken out, the detachable energy storage module 3 which needs to be stored is inserted into the placing cavity 19 through the movable bearing plate 18, and the connecting slot 21 on the side of the detachable energy storage module 3 is inserted into the connecting plug 20 on the side, so that the detachable energy storage module 3 is stored, the plurality of storage frames 6 can reciprocate in the energy storage box 1, which not only improves the capacity of the detachable energy storage module 3, but also does not need to take and place the detachable energy storage module 3 at a high or low position, so that the operator can easily take and place the detachable energy storage module 3 and store energy, and the wiring hole 22 is used for connecting the wires of the connecting plug 20; When the detachable energy storage module 3 is stored, a plurality of cooling fans 24 located at the lower part of the storage frame 6 are turned on, cooperating with the heat dissipation hole 25, the heat dissipation port 26 and the air inlet net plate 35, the heat dissipation of the energy storage detachable energy storage module 3 is carried out, and through the rotatable storage frame 6, when the temperature of the detachable energy storage module 3 in a certain storage frame 6 is too high, the storage frame 6 with higher temperature can be driven by the driving motor 10 to be close to the heat dissipation port 26, so as to improve the heat dissipation effect of the detachable energy storage module 3 in the storage frame 6, and the filter screen plate 27 and the air inlet net plate 35 are used to prevent impurities from entering the energy storage box 1.

[0030] As a technical optimization scheme of the present application, the heat dissipation port 26 is fixedly installed with an installation shaft body 28 penetrating through the filter screen plate 27, one side of the energy storage box 1 is fixedly installed with a fourth gear 29 matched with the position of one rotating disc 5, one side surface of the rotating disc 5 is provided with a gear slot 30 matched with the fourth gear 29, the fourth gear 29 is fixedly installed with a first connecting rod 31 extending to the upper part of the energy storage box 1, the first connecting rod 31 is fixedly installed with a second connecting rod 32 on the upper end side surface, the installation shaft body 28 is clamped with a cleaning scraper 33 on the upper end side surface, the cleaning scraper 33 is matched with the filter screen plate 27 and the lower side surface thereof is tightly attached to the upper surface of the filter screen plate 27, and the second connecting rod 32 and the cleaning scraper 33 are rotationally connected with a third connecting rod 34.

[0031] Specifically, when the rotating disc 5 rotates, the fourth gear 29 is driven to rotate through the gear slot 30, the first connecting rod 31 is driven to rotate through the fourth gear 29, the third connecting rod 34 is driven to move through the first connecting rod 31, the other end of the third connecting rod 34 drives the cleaning scraper 33 to rotate along the axis of the installation shaft body 28, the lower side surface of the cleaning scraper 33 is a cleaning brush, the rotating cleaning scraper 33 cleans the upper part of the filter screen plate 27, prevents the filter screen plate 27 located at the upper part of the energy storage box 1 from being blocked by floating objects, and improves the heat dissipation effect in the energy storage box 1.

[0032] As a technical optimization scheme of the present application, the lower side surface of the movable bearing plate 18 is fixedly installed with a sliding plug plate 36, the one side of the storage frame 6 is provided with a plurality of installation insertion grooves 37 matched with the sliding plug plate 36, the one side of the movable bearing plate 18 is fixedly installed with a handle 38, the upper surface of the movable bearing plate 18 is provided with two long side positioning plates 39 for fixing the detachable energy storage module 3, the one side surface of the movable bearing plate 18 is fixedly installed with an arc-shaped protrusion 55 with one end in an arc shape, and the opposite side surfaces of the placing cavity 19 are fixedly installed with elastic clamping frames 56 with elasticity and matched with the arc-shaped protrusion 55.

[0033] Specifically, the mobile carrier plate 18 is taken out from the placing cavity 19 by the pull handle 38, the detachable energy storage module 3 is positioned between the two long side positioning plates 39, the mobile carrier plate 18 is inserted into the placing cavity 19 again by sliding the sliding plate 36 in the mounting slot 37, the mobile carrier plate 18 is pressed into the placing cavity 19 when the arc-shaped lugs 55 contact the elastic clamping frames 56, the elastic clamping frames 56 are deformed by the pressing, the arc-shaped lugs 55 are clamped on one side of the elastic clamping frames 56, and the mobile carrier plate 18 is limited and fixed, thereby facilitating the limiting and fixing of the mobile carrier plate 18.

[0034] As a technical optimization scheme of the present application, the two long side positioning plates 39 are fixedly provided with short side fixed plates 40 at opposite side ends, sliding blocks 41 are fixedly arranged on lower sides of the long side positioning plates 39, first sliding grooves 42 adapted to the sliding blocks 41 are formed in upper sides of the mobile carrier plate 18, first adjusting threaded rods 43 extending into the first sliding grooves 42 are rotatably arranged on one side of the mobile carrier plate 18, first limiting nuts 44 are threadedly connected to side surfaces of the first adjusting threaded rods 43, short side movable plates 45 are arranged on one end sides of the long side positioning plates 39 away from the short side fixed plates 40, second sliding grooves 46 adapted to one side of the short side movable plates 45 are formed in one side of the long side positioning plate 39, and second adjusting threaded rods 47 extending into the second sliding grooves 46 are rotatably arranged on one end of the long side positioning plate 39, the second adjusting threaded rods 47 are threadedly connected to the short side movable plates 45, and second limiting nuts 48 are threadedly connected to side surfaces of one ends of the second adjusting threaded rods 47.

[0035] Specifically, one side of the detachable energy storage module 3 abuts against side surfaces of the two short side fixed plates 40, the first adjusting threaded rods 43 are rotated, the side surfaces of the first adjusting threaded rods 43 inside the first sliding grooves 42 are symmetrical and reverse, the first adjusting threaded rods 43 are driven to move towards each other when being rotated, the two long side positioning plates 39 are located on opposite long sides of the detachable energy storage module 3, the second adjusting threaded rods 47 are rotated, the short side movable plates 45 are driven to slide on the side surfaces of the long side positioning plates 39 when the second adjusting threaded rods 47 are rotated, the long side positioning plates 39 abut against short sides of the detachable energy storage module 3, then the first adjusting threaded rods 43 and the second adjusting threaded rods 47 are locked, and the first limiting nuts 44 and the second limiting nuts 48 are locked, the detachable energy storage module 3 is clamped and positioned, displacement of the detachable energy storage module 3 is prevented, and detachable energy storage modules 3 of different sizes can be clamped and positioned.

[0036] As a technical optimization scheme of the present application, the mounting shaft body 28 is threadedly connected with a positioning bolt 49 at an upper end, two abutting rings 50 adapted to one end of the cleaning scraper 33 are arranged on a side surface of the positioning bolt 49, and springs 51 are arranged between the two abutting rings 50.

[0037] Specifically, the upper end side of the mounting shaft body 28 is polygonal, one end of the cleaning scraper 33 is clamped on the upper end side of the mounting shaft body 28, one end of the positioning bolt 49 is threadedly connected to the upper end of the mounting shaft body 28, and the lower abutting ring 50 is abutted on the upper side of one end of the cleaning scraper 33 through the tension of the spring 51, so that the lower side of the cleaning scraper 33 is always abutted on the upper surface of the filter screen plate 27, and the cleaning effect of the cleaning scraper 33 on the filter screen plate 27 is ensured.

[0038] As a technical optimization scheme of the present application, the box door 4 is fixedly installed on one side with a telescopic device 52 having a telescopic effect, a third sliding groove 54 is formed in the inner side wall of the taking and placing opening 17, a sealing door plate 53 adapted to the taking and placing opening 17 is slidably connected in the third sliding groove 54, and the telescopic device 52 is fixedly installed on the upper end of the sealing door plate 53.

[0039] Specifically, the telescopic device 52 is controlled by the main controller 9, the telescopic end of the telescopic device 52 drives the sealing door plate 53 to move up and down, and when the detachable energy storage module 3 does not need to be installed or disassembled, the taking and placing opening 17 is completely covered by the sealing door plate 53, the inside of the energy storage box body 1 is protected, and the detachable energy storage module 3 is convenient to take and place.

[0040] As a technical optimization scheme of the present application, the intermediate energy conversion layer 7 is located on the upper part of the flexible conductive material 8, the upper part of the intermediate energy conversion layer 7 is sequentially provided with a corrosion-resistant coating 58 and a super-hydrophobic self-cleaning coating 57 in the upward direction, and the lower part of the flexible conductive material 8 is sequentially provided with a heat-insulating reflective layer 59 and a load-bearing substrate 60 in the downward direction.

[0041] Specifically, the super-hydrophobic self-cleaning coating 57 is a nano-titanium dioxide layer, the main effect of the nano-titanium dioxide layer is reflected in its photocatalytic activity, under visible light irradiation, the nano-titanium dioxide can decompose organic pollutants attached to the surface of the aluminum heat-insulating blanket body 2, the nano-titanium dioxide layer improves the overall self-cleaning performance, the corrosion-resistant coating 58 is a perfluorosilane layer, the effect of the perfluorosilane layer is its excellent antifouling property and corrosion resistance, the perfluorosilane (such as perfluorodecyltrimethoxysilane) as a super-thin film coating does not affect the surface hardness and optical properties of the aluminum heat-insulating blanket body 2, and at the same time has excellent corrosion resistance, the heat-insulating reflective layer 59 is a high-reflectivity aluminum foil or ceramic coating, which reflects external heat radiation and reduces heat penetration, and the load-bearing substrate 60 is polyester fiber or polyethylene foam, etc.

[0042] Among them, all the above-mentioned electric appliances can be purchased in the market, which belong to mature technology and have been fully disclosed, therefore, the specification will not be repeated, all the above-mentioned electric appliances are provided with power connection lines, and they are electrically connected with the main controller 9 and 220V phase voltage (or 380V line voltage) through the power lines, and the main controller 9 can be a conventional known device such as a computer which can play a control role.

[0043] Finally, it should be noted that in the description of the present application, it should be noted that the terms "vertical", "upper", "lower", "horizontal" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0044] In the description of the present application, it should also be noted that unless otherwise specified and limited, the terms "set", "mount", "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0045] The above is only the preferred embodiment of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can modify the technical solutions recorded in the foregoing embodiments or make equivalent replacements to some technical features. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A thermally insulated blanket electrically conductive recovery energy storage device, characterized by, The utility model relates to an energy storage box body (1) and aluminium heat insulation blanket body (2) are included, be equipped with a plurality of detachable energy storage module (3) for electric energy energy storage in energy storage box body (1), the opposite side wall in energy storage box body (1) is rotatably connected with rotating disc (5), and a plurality of horizontal storage frame (6) are rotatably connected between two rotating discs (5), and the storage frame (6) is used for storing a plurality of detachable energy storage module (3), and aluminium heat insulation blanket body (2) is embedded with intermediate energy conversion layer (7) and flexible conductive material (8), Wherein, intermediate energy conversion layer (7) and flexible conductive material (8) are used to absorb solar energy, and the solar energy is converted into electric energy and is stored in a plurality of detachable energy storage module (3), one side of energy storage box body (1) is provided with a box door (4), a plurality of detachable energy storage module (3) can be quickly installed or disassembled with storage frame (6), one side of energy storage box body (1) is provided with a main controller (9) and a drive motor (10), the drive motor (10) is used to drive rotating disc (5) to rotate, and a plurality of storage frames (6) are always horizontal when rotating disc (5) rotates.

2. A thermally insulated blanket electrically conductive recovery energy storage device according to claim 1, wherein, One side of energy storage box body (1) penetrates a rotating shaft (11) with one end fixedly installed with the output end of drive motor (10), the rotating shaft (11) is fixedly installed with the center position of two rotating discs (5), the opposite side wall in energy storage box body (1) is provided with rotating groove (12) suitable for rotating disc (5), the inner side wall of rotating groove (12) is fixedly installed with first gear (13) sleeved on the side surface of rotating shaft (11), the opposite side surface of storage frame (6) is fixedly installed with connecting shaft (14) penetrating rotating disc (5), one end side surface of connecting shaft (14) located in rotating disc (5) is fixedly installed with second gear (15) suitable for first gear (13), a plurality of third gears (16) are rotatably connected in rotating disc (5), and the third gear (16) is engaged with first gear (13) and second gear (15), and the side of box door (4) is provided with taking and placing opening (17) suitable for storage frame (6).

3. The insulated blanket electrically conductive recycled energy storage device of claim 1, wherein, A plurality of movable bearing plates (18) for limiting detachable energy storage module (3) are arranged in storage frame (6), a plurality of placing cavities (19) suitable for detachable energy storage module (3) are arranged on one side of storage frame (6) close to box door (4), connecting plug-in components (20) for power transmission are fixedly installed in placing cavities (19), detachable energy storage module (3) is provided with connecting plug-in groove (21) suitable for connecting plug-in components (20), and wire hole (22) suitable for the position of connecting plug-in components (20) is formed in one side of storage frame (6).

4. A thermally insulated blanket electrically conductive recovery energy storage device according to claim 3, wherein, The lower part of storage frame (6) and movable bearing plate (18) are provided with communication grooves (23), and cooling fans (24) for heat dissipation are fixedly installed in the communication grooves (23) of the lower part of movable bearing plate (18), and the upper part of storage frame (6) is provided with heat dissipation holes (25) extending into the communication grooves (23), the upper part of energy storage box body (1) is provided with heat dissipation opening (26), and filter screen plate (27) is fixedly installed in heat dissipation opening (26), and air inlet screen plate (35) is arranged on one side of energy storage box body (1).

5. A thermally insulated blanket electrically conductive recovery energy storage device according to claim 4, wherein, The heat dissipation port (26) is fixedly provided with an installation shaft body (28) penetrating through a filter screen plate (27), a fourth gear (29) is fixedly arranged inside the energy storage box (1) and is matched with a rotating disc (5), a tooth groove (30) is arranged on the side surface of the rotating disc (5) and is matched with the fourth gear (29), a first connecting rod (31) is fixedly arranged on one side of the fourth gear (29) and extends to the upper side of the energy storage box (1), a second connecting rod (32) is fixedly arranged on the upper end side surface of the first connecting rod (31), a cleaning scraper (33) is connected to the upper end side surface of the installation shaft body (28), the cleaning scraper (33) is matched with the filter screen plate (27) and is tightly arranged on the lower side surface of the filter screen plate (27), and a third connecting rod (34) is rotatably arranged between the second connecting rod (32) and the cleaning scraper (33).

6. A thermally insulated blanket electrically conductive recovery energy storage device according to claim 3, wherein, A sliding plug (36) is fixedly arranged on the lower side surface of the movable bearing plate (18), a plurality of installation slots (37) are arranged on one side of the storage frame (6) and are matched with the sliding plug (36), a handle (38) is fixedly arranged on one side of the movable bearing plate (18), two long side positioning plates (39) for fixing the detachable energy storage module (3) are arranged on the upper surface of the movable bearing plate (18), an arc-shaped protrusion (55) with one end in an arc shape is fixedly arranged on the side surface of the movable bearing plate (18), and elastic clamping frames (56) with elasticity are fixedly arranged on the opposite side surfaces in the placing cavity (19) and are matched with the arc-shaped protrusion (55).

7. A thermally insulated blanket electrically conductive recovery energy storage device according to claim 6, wherein, Short side fixed plates (40) are fixedly arranged on the opposite side surfaces of the two long side positioning plates (39), sliding blocks (41) are fixedly arranged on the lower side surfaces of the long side positioning plates (39), first sliding grooves (42) are arranged on the upper side surface of the movable bearing plate (18) and are matched with the sliding blocks (41), a first adjusting screw rod (43) extends to the first sliding groove (42) and is rotatably arranged on one side of the movable bearing plate (18), a first limiting nut (44) is threadedly connected to the side surface of the first adjusting screw rod (43), short side movable plates (45) are arranged on the side surfaces of the long side positioning plates (39) away from the short side fixed plates (40), second sliding grooves (46) are arranged on one side of the long side positioning plates (39) and are matched with the short side movable plates (45), a second adjusting screw rod (47) extends to the second sliding groove (46) and is rotatably arranged on one end of the long side positioning plate (39), the second adjusting screw rod (47) penetrates through the short side movable plate (45) and is threadedly connected thereto, and a second limiting nut (48) is threadedly connected to the side surface of one end of the second adjusting screw rod (47).

8. The insulated blanket electrically conductive recycled energy storage device of claim 5, wherein, A positioning bolt (49) is threadedly connected to the upper end of the installation shaft body (28), two abutting rings (50) are arranged on the side surface of the positioning bolt (49) and are matched with one end of the cleaning scraper (33), and a spring (51) is arranged between the two abutting rings (50).

9. The insulated blanket conductive recovery energy storage device of claim 2, wherein, The box door (4) is fixedly provided with a telescopic device (52) with telescopic effect on one side, a third sliding groove (54) is formed in the inner side wall of the taking and placing opening (17), a sealing door plate (53) matched with the taking and placing opening (17) is slidably connected in the third sliding groove (54), and the telescopic device (52) is fixedly connected with the lower part of the sealing door plate (53) at the upper end.

10. The insulated blanket conductive recovery energy storage device of claim 1, wherein, The intermediate energy conversion layer (7) is located on the upper part of the flexible conductive material (8), the upper part of the intermediate energy conversion layer (7) is sequentially provided with a corrosion-resistant coating (58) and a super-hydrophobic self-cleaning coating (57) in the upward direction, and the lower part of the flexible conductive material (8) is sequentially provided with a heat-insulating reflective layer (59) and a bearing substrate (60) in the downward direction.

Citation Information

Patent Citations

  • Building energy recovery device

    CN221886371U