Solar energy storage system
Technical Field
The invention relates to the technical field of solar light storage, in particular to a solar energy storage system.
Background
Energy and environment have become the most global concern at present, finding clean, renewable alternative energy has become a common understanding of the world today, and solar energy is one of the most eligible alternatives, a green renewable energy source that converts sunlight into electricity.
Patent publication number CN113054890B discloses a solar energy storage system, including the box with locate the mounting panel at box top, be equipped with the battery in the box, be equipped with the photovoltaic board on the mounting panel, the box top is equipped with the aqua storage tank, the below is equipped with first movable chamber in the aqua storage tank, be equipped with first connecting plate in the first movable chamber, be equipped with the head rod on the first connecting plate, the intussuseption of first movable chamber is filled with compressed air, be equipped with first connecting block on the mounting panel, be equipped with first water storage chamber on the head rod, be equipped with the water cavity on the head rod, be equipped with the water pump in the water cavity, still be equipped with the movable block on the mounting panel, when the head rod is upwards moved, the movable block is followed the photovoltaic board surface is upwards moved, when the head rod is down moved, the movable block is followed the photovoltaic board surface down.
However, the device has the defects that the temperature of the box body is monitored in real time through the arrangement of compressed air so as to avoid overhigh temperature of the box body, but the photovoltaic panel at the top of the device is difficult to change the illumination angle between the photovoltaic panel and the sun in time under the condition that the illumination angle of the sun is changed, so that the absorption and conversion effects of the photovoltaic panel with the fixed angle on the light energy are gradually reduced along with the east and west falling of the sun, the energy storage content of the energy storage mechanism is easily reduced, and the use benefit is poor.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides a solar energy storage system, which solves the problems in the background art.
The solar energy storage system comprises a protective box, an energy storage mechanism is arranged at the bottom of the inner wall of the protective box, a plurality of electric rotating rods are rotatably arranged on the front side and the back side of the protective box, a U-shaped rod is fixedly arranged on one side, far away from the protective box, of each electric rotating rod, a trapezoid block penetrates through the left end of each U-shaped rod and is fixedly arranged on the left end of each U-shaped rod, a photovoltaic plate is fixedly arranged on the inclined surface of each trapezoid block, a connecting rod penetrates through the side, close to the protective box, of each electric rotating rod, an elliptic plate is fixedly arranged on the side, far away from the electric rotating rod, of each connecting rod, a special-shaped frame penetrates through a spring and is slidably arranged on the inner wall of the protective box, an anti-erosion device for accelerating air circulation inside the protective box is arranged on the periphery of the special-shaped frame, a rotating roller is rotatably arranged inside two ends of each special-shaped frame, and a plurality of temperature detectors are fixedly arranged inside the special-shaped frame.
According to the technical scheme, a plurality of circulation grooves are formed in the front side and the back side of the protective box, the sliding grooves are formed in the corners of the inner portion of the protective box, the top of the protective box is provided with the protective top plate, when the electric rotating rod rotates, the photovoltaic plate is enabled to achieve semicircular rotation and reset to adjust the illumination angle, the photovoltaic plate converts light energy and inputs the light energy into the energy storage mechanism, and the temperature detector monitors whether the energy storage mechanism is overheated in real time.
According to the technical scheme, the inner wall of the special-shaped frame is in contact with the outer wall of the energy storage mechanism, the outer wall of the rotating roller is in contact with the bottom of the elliptic plate, a plurality of temperature detectors are circumferentially distributed in the special-shaped frame, along with the east-west falling of the sun, the electric rotating rod gradually starts to rotate in the outer wall of the protection box according to a set program, the U-shaped rod is driven to gradually move along the circumferential track when the electric rotating rod rotates, at the moment, the U-shaped rod drives the trapezoid block to synchronously move, the trapezoid block drives the photovoltaic plate to carry out circumferential track movement, the photovoltaic plate rotates to the right end of the protection box for sunset, after sunset, the electric rotating rod reversely rotates to enable the photovoltaic plate to reset, the connecting rod is driven to gradually rotate when the electric rotating rod rotates, the elliptic plate drives the elliptic plate to move along the arc track, limiting and pressing of the rotating roller are gradually released when the elliptic plate revolves, the rotating roller starts to be in the inner wall of the special-shaped frame through friction force generated when the electric rotating rod contacts with the outer wall of the elliptic plate, the two ends of the special-shaped frame gradually slide upwards by means of spring elasticity, the rotating roller is driven to always cling to the outer wall of the elliptic plate, and the temperature detectors move synchronously, namely the temperature detectors move upwards in the rotation mode.
According to the technical scheme, prevent backlog device includes the closing plate, closing plate outer wall runs through and slidable mounting is at the protection box circulation inslot portion, protection roof bottom edge is located closing plate top motion trail, the closing plate is close to elliptic plate one side fixed mounting and has the L shaped plate, L shaped plate bottom fixed mounting has the U shaped plate, U shaped plate is close to elliptic plate one side fixed mounting in dysmorphism frame outer wall department, and dysmorphism frame drives U shaped plate when gradually upward movement, and the U shaped plate drives L shaped plate synchronous motion, and L shaped plate drives the closing plate and gradually upward moves in the protection box inside, and the shielding to the protection box circulation groove is opened to the closing plate this moment, and constantly rising closing plate can contact and the top moves the protection roof and rise, and the protection roof breaks away from the protection box top this moment, and produces the interval between the two, and after U shaped plate resets, the closing plate resets through L shaped plate, protection roof synchronous reset this moment.
According to the technical scheme, prevent backlog device still includes the gag lever post, gag lever post is close to oval board one end fixed mounting in protective housing outer wall department, the gag lever post outer wall runs through and slidable mounting has the filter screen shell, filter screen shell inner wall symmetry and fixed mounting have a plurality of telescopic links, telescopic link fixed mounting has square frame, square frame is close to oval board one side and closing plate outer wall contact.
According to the technical scheme, be provided with the spring between filter screen shell inside and the gag lever post, the filter screen shell is located the closing plate periphery, the filter screen shell is effective to prevent outside dirt to get into the protective housing inside through the circulation groove, the filter screen shell keeps stable and static under the spacing of gag lever post, the filter screen shell passes through self filtration pore, the dirt or the particulate matter that intercept the air carried, avoid causing impact and pollution to energy storage mechanism, the filter screen shell is spacing to the telescopic link simultaneously, the telescopic link makes square frame contact with the closing plate outer wall all the time, when the closing plate upward movement, square frame can strike off the steam and the tiny dirt on closing plate surface.
According to the technical scheme, anti-corrosion device includes a plurality of L shape piece, a plurality of L shape piece outer wall equal symmetry and fixed mounting are on the U-shaped board surface, L shape piece is kept away from filter screen shell one side and is rotated and install the friction pulley, the friction pulley runs through and fixed mounting near L shape piece one side and has reciprocating screw rod, reciprocating screw rod outer wall runs through and movable mounting has L shape longeron, L shape longeron is kept away from and is close to friction pulley one end slidable mounting and is on L shape piece surface, the filter screen shell is close to L shape longeron one side fixed mounting and has the conflict board.
According to the technical scheme, friction pulley outer wall and the contact of protective housing inner wall, reciprocating lead screw outer wall is the reciprocal helicla flute of non-auto-lock, and reciprocating lead screw stroke is shorter, L shape long board keeps away from friction pulley one end and runs through the protective housing spout inside, friction pulley one end contact is kept away from to conflict board outer wall and L shape long board, the U-shaped board drives L shape piece and rises, when L shape piece drive friction pulley along the upward movement of protective housing inner wall, friction pulley begins the rotation through the frictional force that produces with the protective housing inner wall, friction pulley drive reciprocating lead screw is rotatory, through the reciprocal helicla flute of self outer wall non-auto-lock during reciprocating lead screw rotation, drive L shape long board takes place shorter stroke horizontal slip and resets along L shape piece surface, L shape long board contact and top move conflict board this moment, conflict board produces horizontal movement's power, and conflict board drives the filter screen shell and carries out horizontal slip along the gag lever post outer wall, afterwards the filter screen shell resets through spring force, reciprocal so.
According to the technical scheme, the friction pulley is kept away from L shape longeron one side fixed mounting and is had the threaded rod, the non-self-locking thread groove has been seted up to the threaded rod outer wall, threaded rod outer wall runs through and movable mounting has the movable block, movable block outer wall slidable mounting is on U-shaped board surface, the inside humidity detector that is provided with of movable block, protective housing inner wall slidable mounting has the drying cabinet, drying cabinet bottom and movable block top contact, and the drying cabinet embeds there is drier granule, drives the threaded rod rotatory when the friction pulley rotates, and the threaded rod relies on self outer wall non-self-locking thread groove, and the drive movable block carries out horizontal slip along U-shaped board lateral wall surface, and the movable block realizes level and upward movement promptly, and the movable block drives the inside humidity detector synchronous motion of self simultaneously to the movable block can push up and move the drying cabinet along the upwards slip of protective housing inner wall, enlarges the movable range of drying cabinet from this.
The invention provides a solar energy storage system. The beneficial effects are as follows:
(1) According to the solar energy storage device, the electric rotating rod, the U-shaped rod, the trapezoid block, the photovoltaic plate, the connecting rod, the elliptic plate, the special-shaped frame, the rotating roller and the temperature detector are matched, the photovoltaic plate is driven to conduct angle adjustment according to the movement track of the sun through the electric rotating rod, the photovoltaic plate is guaranteed to always receive sunlight irradiation through the largest contact surface, the effect of absorbing and converting light energy by the photovoltaic plate with a fixed angle due to east-west falling of the sun is prevented from being gradually reduced, the energy storage content of the energy storage mechanism is optimized, the use benefit is improved, the temperature detector is driven to displace through the special-shaped frame, namely whether the energy storage mechanism is overheated or not is gradually increased in the sunshine stage, and when the sunset temperature detector is reset through the special-shaped frame, heat energy data of the energy storage mechanism can be monitored and collected again, so that comprehensiveness and accuracy of the monitoring data are optimized, and whether the energy storage mechanism is overheated or not is timely known.
(2) According to the invention, through the arrangement of the anti-backlog device, the abnormal frame, the sealing plate, the L-shaped plate, the U-shaped plate, the limiting rod, the filter screen shell, the telescopic rod and the square frame are matched, and through the shielding of the sealing plate, dew entering the interior of the protective box at night and early morning is effectively avoided, so that the oxidation rate of the energy storage mechanism caused by water vapor is avoided, and meanwhile, the rising sealing plate and the protective top plate ensure that the photovoltaic plate and the energy storage mechanism can quickly circulate in the operation stage, the heat backlog can be prevented, the operation risk of the energy storage mechanism is increased, the sealing plate is effectively prevented from carrying water vapor or dirt entering the interior of the protective box through the scraping of the square frame, the oxidation risk in the interior of the protective box is reduced, meanwhile, lifting and blocking of the sealing plate caused by dirt solidification is prevented, and the abrasion between the sealing plate and the interior of the protective box is prevented.
(3) According to the invention, through the arrangement of the corrosion-resistant device, the U-shaped plate, the L-shaped block, the friction wheel, the reciprocating screw rod, the L-shaped long plate, the abutting plate, the threaded rod, the moving block and the drying box are matched, and the L-shaped long plate is abutted to enable the filter screen shell to slide and reset horizontally along the outer wall of the limiting rod, so that dirt attached to the inside of a filter hole of the filter screen shell can be removed in the movement process of the filter screen shell, the filter hole is prevented from blocking, the circulation rate of the inside of the protection box and outside air is reduced, the energy storage mechanism is ensured to operate at a proper temperature, the moving block effectively expands the moving range of the drying box, the coverage of drying gas to the inside of the protection box is improved, the dryness of the inside of the protection box is ensured, the energy storage mechanism is prevented from being corroded continuously by excessive humidity, the damage risk of the energy storage mechanism is reduced, and meanwhile, the moving block increases the detection range of the humidity detector, namely, the humidity detector can perform accurate humidity detection, moisture residue is avoided, and protection of the energy storage mechanism is optimized when the equipment starts and ends operation.
Drawings
FIG. 1 is a schematic diagram of the overall invention;
FIG. 2 is a schematic cross-sectional view of the entirety of the present invention;
FIG. 3 shows a protective case according to the present invention a schematic diagram of a peripheral structure;
FIG. 4 is a right side view of the perimeter structure of the protective case of the present invention;
FIG. 5 is an enlarged schematic view of the structure A in FIG. 4 according to the present invention;
FIG. 6 is a schematic diagram of an anti-backlog apparatus of the present invention;
FIG. 7 is a schematic diagram showing an overall anti-backlog apparatus according to the present invention;
FIG. 8 is a schematic view of an erosion prevention apparatus according to the present invention;
FIG. 9 is a right side view of the corrosion protection device of the present invention.
The device comprises a protection box 1, a protection top plate 2, an energy storage mechanism 3, an electric rotating rod 4, a U-shaped rod 5, a trapezoid block 6, a photovoltaic plate 7, a connecting rod 8, a 9, an elliptic plate 10, a special-shaped frame 11, a rotating roller 12, a temperature detector 13, an anti-backlog device 131, a sealing plate 132, an L-shaped plate 133, a U-shaped plate 134, a limiting rod 135, a filter screen shell 136, a telescopic rod 137, a square frame 14, an anti-corrosion device 141, an L-shaped block 142, a friction wheel 143, a reciprocating screw rod 144, an L-shaped long plate 145, a collision plate 146, a threaded rod 147, a moving block 148 and a drying box.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments.
Referring to fig. 1-9, an embodiment of the invention is a solar energy storage system, which comprises a protection box 1, wherein an energy storage mechanism 3 is arranged at the bottom of the inner wall of the protection box 1, a plurality of electric rotating rods 4 are rotatably arranged at the front side and the back side of the protection box 1, a U-shaped rod 5 is fixedly arranged at one side of the plurality of electric rotating rods 4 far away from the protection box 1, a trapezoid block 6 is fixedly arranged at the left end of the U-shaped rod 5 in a penetrating way, a photovoltaic plate 7 is fixedly arranged at the inclined surface of the trapezoid block 6, an elliptic plate 9 is fixedly arranged at one side of the electric rotating rod 4 close to the protection box 1 in a penetrating way, an abnormal frame 10 is fixedly arranged at one side of the connecting rod 8 far away from the electric rotating rod 4, an anti-backrush device 13 for accelerating the circulation of air inside the protection box 1 is arranged at the periphery of the abnormal frame 10, a rotating roller 11 is rotatably arranged at the periphery of the anti-backrush device 13, and a plurality of temperature detectors 12 are fixedly arranged inside the abnormal frame 10.
A plurality of circulation grooves are formed in the front side and the back side of the protective box 1, a sliding groove is formed in the corner of the interior of the protective box 1, a protective top plate 2 is arranged at the top of the protective box 1, when the electric rotating rod 4 rotates, the photovoltaic panel 7 is enabled to achieve semicircular rotation and reset to adjust the illumination angle, the photovoltaic panel 7 converts light energy and inputs the light energy into the energy storage mechanism 3, and the temperature detector 12 monitors whether the energy storage mechanism 3 is overheated or not in real time.
The inner wall of the special-shaped frame 10 is contacted with the outer wall of the energy storage mechanism 3, the outer wall of the rotating roller 11 is contacted with the bottom of the elliptical plate 9, and a plurality of temperature detectors 12 are circumferentially distributed in the special-shaped frame 10.
The electric rotating rod 4 is used for promoting the photovoltaic panel 7 to conduct angle adjustment according to the movement track of the sun, ensuring that the photovoltaic panel 7 always receives sunlight irradiation with the largest contact surface, avoiding gradual reduction of the absorption and conversion effects of the photovoltaic panel 7 with fixed angle on light energy due to east-west falling of the sun, optimizing the energy storage content of the energy storage mechanism 3, improving the use benefit, driving the temperature detector 12 to conduct displacement through the special-shaped frame 10, namely gradually rising in the sunshine stage and monitoring whether the energy storage mechanism 3 is overheated, and when the sunset temperature detector 12 resets through the special-shaped frame 10, monitoring and collecting the heat energy data of the energy storage mechanism 3 again, further optimizing the comprehensiveness and accuracy of the monitoring data and timely knowing whether the energy storage mechanism 3 is overheated.
When the solar energy storage device is used, the electric rotating rod 4 gradually starts to rotate on the outer wall of the protective box 1 according to the movement track of the sun through a set program, the U-shaped rod 5 is driven to gradually move in a circular track when the electric rotating rod 4 rotates, the trapezoid block 6 is driven to synchronously move by the U-shaped rod 5, the trapezoid block 6 drives the photovoltaic panel 7 to move in the circular track, the photovoltaic panel 7 rotates to the right end of the protective box 1 and is sunset, after sunset, the electric rotating rod 4 reversely rotates to enable the photovoltaic panel 7 to reset, the solar energy storage device repeatedly starts every day, the connecting rod 8 is driven to gradually rotate when the electric rotating rod 4 rotates, the connecting rod 8 drives the elliptic panel 9 to move in an arc track, the limiting and pressing of the rotating roller 11 are gradually released when the elliptic panel 9 revolves, the rotating roller 11 starts to rotate in the special-shaped frame 10 through the friction force generated when the elliptic panel 9 contacts with the outer wall of the elliptic panel 9, the two ends of the special-shaped frame 10 slide upwards gradually along the inner wall of the protective box 1 by means of spring force, the rotating the special-shaped frame 10 always clings to the outer wall of the elliptic panel 9, and the special-shaped frame 10 drives the temperature detector 12 to synchronously move, namely the temperature detector 12 moves upwards in the energy storage mechanism.
According to the embodiment, the electric rotating rod 4 is used for promoting the photovoltaic panel 7 to perform angle adjustment according to the movement track of the sun, ensuring that the photovoltaic panel 7 always receives sunlight irradiation with the largest contact surface, avoiding gradually reducing the light energy absorption and conversion effect of the photovoltaic panel 7 with a fixed angle due to east-west falling of the sun, optimizing the energy storage content of the energy storage mechanism 3 and improving the use benefit, and the special-shaped frame 10 is used for driving the temperature detector 12 to displace, namely gradually rising in the sunshine stage and monitoring whether the energy storage mechanism 3 is overheated, and when the sunset temperature detector 12 resets through the special-shaped frame 10, the thermal energy data of the energy storage mechanism 3 can be monitored and collected again, further optimizing the comprehensiveness and accuracy of the monitored data and timely knowing whether the energy storage mechanism 3 is overheated.
Referring to fig. 1-9, another embodiment of the present invention further includes an anti-backlog device 13 based on the above embodiment;
The anti-backlog device 13 comprises a sealing plate 131, the outer wall of the sealing plate 131 penetrates through and is slidably mounted in a circulation groove of the protective box 1, the edge of the bottom of the protective top plate 2 is located on the movement track of the top of the sealing plate 131, an L-shaped plate 132 is fixedly mounted on one side of the sealing plate 131 close to the elliptical plate 9, a U-shaped plate 133 is fixedly mounted on the bottom of the L-shaped plate 132, and the U-shaped plate 133 is fixedly mounted on the outer wall of the special-shaped frame 10 close to one side of the elliptical plate 9.
The backlog prevention device 13 further comprises a limiting rod 134, one end, close to the elliptical plate 9, of the limiting rod 134 is fixedly arranged at the outer wall of the protective box 1, the outer wall of the limiting rod 134 penetrates through and is slidably provided with a filter screen shell 135, the inner wall of the filter screen shell 135 is symmetrical, a plurality of telescopic rods 136 are fixedly arranged on the telescopic ends of the telescopic rods 136, square frames 137 are fixedly arranged on the telescopic ends of the telescopic rods 136, and one side, close to the elliptical plate 9, of the square frames 137 is in contact with the outer wall of the sealing plate 131.
A spring is arranged between the inside of the filter screen shell 135 and the limiting rod 134, the filter screen shell 135 is positioned on the periphery of the sealing plate 131, and the filter screen shell 135 effectively prevents external dirt from entering the inside of the protective box 1 through the circulation groove.
Through shielding of the sealing plate 131, dew at night and early morning is effectively prevented from entering the protective box 1, oxidation rate of the energy storage mechanism 3 caused by water vapor is avoided, meanwhile, rising sealing plate 131 and the protective top plate 2 ensure that heat in the protective box 1 can flow rapidly in the operation stage of the photovoltaic panel 7 and the energy storage mechanism 3, heat backlog is prevented from increasing operation risk of the energy storage mechanism 3, the sealing plate 131 is effectively prevented from carrying water vapor or dirt into the protective box 1 through scraping of the square frame 137, oxidation risk in the protective box 1 is reduced, lifting and stagnation of the sealing plate 131 caused by dirt solidification is prevented, and abrasion aggravation between the sealing plate 131 and the interior of the protective box 1 is avoided.
When the novel multifunctional energy storage device is used, the special-shaped frame 10 drives the U-shaped plate 133 to move upwards gradually, the U-shaped plate 133 drives the L-shaped plate 132 to synchronously move, the L-shaped plate 132 drives the sealing plate 131 to move upwards gradually in the protective box 1, the sealing plate 131 opens the shielding of the circulation groove of the protective box 1, meanwhile, the sealing plate 131 is continuously lifted to contact and push the protective top plate 2 to lift, the protective top plate 2 is separated from the top of the protective box 1, a space is generated between the protective top plate and the protective top plate, after the U-shaped plate 133 is reset, the sealing plate 131 is reset through the L-shaped plate 132, the protective top plate 2 is synchronously reset, the filter screen shell 135 is kept stable and stationary under the limit of the limiting rod 134, the filter screen shell 135 is used for intercepting dirt or particles carried in air through self-filtering holes, impact and pollution to the energy storage mechanism 3 are avoided, meanwhile, the filter screen shell 135 limits the telescopic rod 136, the square frame 137 is enabled to be always contacted with the outer wall of the sealing plate 131, and when the sealing plate 131 moves upwards, the square frame 137 can scrape water vapor and tiny dirt on the surface of the sealing plate 131.
According to the embodiment, dew entering the inside of the protection box 1 at night and early morning is effectively avoided through shielding of the sealing plate 131, oxidation rate of the energy storage mechanism 3 caused by water vapor is avoided, meanwhile, rising sealing plate 131 and the protection top plate 2 ensure that heat in the photovoltaic panel 7 and the energy storage mechanism 3 can flow rapidly in the operation stage of the protection box 1, heat backlog is prevented from increasing operation risk of the energy storage mechanism 3, the sealing plate 131 is effectively prevented from carrying water vapor or dirt into the inside of the protection box 1 through scraping of the square frame 137, oxidation risk in the inside of the protection box 1 is reduced, lifting and stagnation of the sealing plate 131 caused by dirt solidification is prevented, and abrasion aggravation between the sealing plate 131 and the inside of the protection box 1 is avoided.
Referring to fig. 1-9, in addition to the above embodiment, another embodiment of the present invention further includes an anti-erosion device 14;
The anti-erosion device 14 comprises a plurality of L-shaped blocks 141, the outer walls of the L-shaped blocks 141 are symmetrically and fixedly arranged on the surface of the U-shaped plate 133, a friction wheel 142 is rotatably arranged on one side, away from the filter screen shell 135, of the L-shaped blocks 141, the friction wheel 142 penetrates through one side, close to the L-shaped blocks 141, of the friction wheel and is fixedly provided with a reciprocating screw rod 143, the outer walls of the reciprocating screw rods 143 penetrate through the outer walls of the reciprocating screw rods and are movably provided with L-shaped long plates 144, one ends, close to the friction wheel 142, of the L-shaped long plates 144 are slidably arranged on the surface of the L-shaped blocks 141, and an abutting plate 145 is fixedly arranged on one side, close to the L-shaped long plates 144, of the filter screen shell 135.
The outer wall of the friction wheel 142 is in contact with the inner wall of the protective box 1, the outer wall of the reciprocating screw rod 143 is a non-self-locking reciprocating spiral groove, the stroke of the reciprocating screw rod 143 is short, one end of the L-shaped long plate 144, which is far away from the friction wheel 142, penetrates through the inside of the chute of the protective box 1, and the outer wall of the abutting plate 145 is in contact with one end of the L-shaped long plate 144, which is far away from the friction wheel 142.
The friction pulley 142 is kept away from L shape longer 144 one side fixed mounting and is had threaded rod 146, and the non-self-locking thread groove has been seted up to threaded rod 146 outer wall, and threaded rod 146 outer wall runs through and movable mounting has movable block 147, and movable block 147 outer wall slidable mounting is at U-shaped plate 133 surface, and the inside humidity detector that is provided with of movable block 147, protective housing 1 inner wall slidable mounting have drying cabinet 148, drying cabinet 148 bottom and movable block 147 top contact, and drying cabinet 148 embeds there are drier granule.
Through the conflict of L shape longe-plate 144, make filter screen shell 135 can reciprocate and carry out horizontal slip and reset along gag lever post 134 outer wall for filter screen shell 135 motion in-process can get rid of the dirt that self filtration pore is inside attached, avoid the filtration pore jam to reduce the circulation rate of protective housing 1 inside and outside air, ensure energy storage mechanism 3 and move under suitable temperature, through movable block 147, effectively enlarge drying cabinet 148 home range, promote the coverage of dry gas to the inside of protective housing 1, guarantee the dryness of protective housing 1 inside, avoid humidity to be high constantly to corrode energy storage mechanism 3, reduce energy storage mechanism 3 impaired risk, the detection range of humidity detector is increased to movable block 147 simultaneously, namely humidity detector all carries out accurate humidity detection when equipment begins with the end operation, avoid the moisture to remain, optimize the protection to energy storage mechanism 3.
When the drying box is used, the U-shaped plate 133 drives the L-shaped block 141 to ascend, the L-shaped block 141 drives the friction wheel 142 to start rotating through friction force generated between the friction wheel 142 and the inner wall of the protective box 1 when the friction wheel 142 moves upwards along the inner wall of the protective box 1, the friction wheel 142 drives the reciprocating screw rod 143 to rotate, the reciprocating screw rod 143 rotates through the self-locking reciprocating spiral groove on the outer wall of the reciprocating screw rod 143, the L-shaped long plate 144 is driven to horizontally slide and reset along the surface of the L-shaped block 141, the L-shaped long plate 144 contacts with and pushes against the abutting plate 145, at the moment, the abutting plate 145 generates horizontal movement force, the abutting plate 145 drives the filter screen shell 135 to horizontally slide along the outer wall of the limiting rod 134, then the filter screen shell 135 is reset through spring force, the friction wheel 142 rotates, the threaded rod 146 is driven to rotate through the self-locking thread groove on the outer wall of the threaded rod 146, the moving block 147 is driven to horizontally slide along the side wall surface of the U-shaped plate 133, namely the moving block 147 horizontally moves upwards, the moving block 147 drives the humidity detector in the self-body synchronously, and the moving block 147 pushes against the inner wall of the drying box 148 to slide upwards along the inner wall of the protective box 1, and the drying box 148 is pushed upwards.
According to the embodiment, the filter screen shell 135 is driven to horizontally slide and reset along the outer wall of the limiting rod 134 by the interference of the L-shaped long plate 144, so that dirt attached to the inside of a filter hole of the filter screen shell 135 can be removed in the moving process of the filter screen shell 135, the filter hole is prevented from blocking, the circulation rate of the inside of the protective box 1 and the outside air is reduced, the energy storage mechanism 3 is ensured to operate at a proper temperature, the moving range of the drying box 148 is effectively widened, the coverage range of the drying gas to the inside of the protective box 1 is improved, the dryness of the inside of the protective box 1 is ensured, the energy storage mechanism 3 is prevented from being continuously corroded by excessive high humidity, the damage risk of the energy storage mechanism 3 is reduced, meanwhile, the moving block 147 increases the detection range of the humidity detector, namely the humidity detector performs accurate humidity detection when the equipment starts and ends operation, the humidity is prevented from remaining, and the protection of the energy storage mechanism 3 is optimized.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical scheme of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.