Energy storage battery with efficient heat dissipation function
Technical Field
The utility model relates to the technical field of energy storage batteries, in particular to an energy storage battery with high-efficiency heat dissipation.
Background
The energy storage battery mainly refers to a battery used for storing energy in solar power generation equipment, wind power generation equipment and renewable energy sources, and a common energy storage battery is a lead-acid battery.
Some traditional energy storage batteries mainly adopt compact mode to install for the radiating effect after the battery installation is accomplished is not very good, can produce a large amount of heats in the inside of the in-process battery that charges, if the radiating effect is not good, can make the battery cause the potential safety hazard easily at the in-process that charges, for this reason we have proposed a high-efficient radiating energy storage battery.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
Aiming at the defects of the prior art, the utility model provides the energy storage battery with high heat dissipation efficiency, which has the advantages of good heat dissipation performance and capability of preventing the potential safety hazard caused by the fact that more heat generated in the charging process of the storage battery is not easy to dissipate, and solves the problems in the background art.
(II) technical scheme
The utility model provides the following technical scheme: an energy storage battery with high-efficiency heat dissipation comprises a bottom plate, an energy storage battery, two silica gel heat dissipation plates and a metal heat dissipation plate, wherein the energy storage battery is arranged at the top of the bottom plate, the two silica gel heat dissipation plates are respectively movably connected with two sides of the top of the bottom plate, one side, opposite to the two silica gel heat dissipation plates, is respectively lapped with two sides of the energy storage battery, the metal heat dissipation plate is fixedly connected with one side, away from the energy storage battery, of the silica gel heat dissipation plates, a mounting frame is fixedly connected with the bottom of the bottom plate, a servo motor is fixedly arranged inside the mounting frame, a heat dissipation fan is fixedly connected with the output end of the servo motor and is positioned below the energy storage battery, a cavity is formed inside the bottom plate, a threaded rod is movably connected inside the cavity, a threaded rod is connected with the side surface of the threaded rod, the top of the threaded sleeve is fixedly connected with the bottom of the silica gel heat dissipation plates through a connecting rod, and the right end of the threaded rod is fixedly connected with an adjusting knob.
Preferably, one end of the threaded rod penetrates through the inner side wall of the cavity and extends to one side of the bottom plate, and the adjusting knob is movably connected with one side of the bottom plate.
Preferably, the top of bottom plate fixedly connected with slide bar, the spout has been seted up to the inside of silica gel heating panel, slide bar and spout sliding connection.
Preferably, the inner top wall of the cavity is provided with a through groove, and the connecting rod is movably connected with the inside of the through groove.
Preferably, the top of the bottom plate is fixedly connected with a supporting block, and the top of the supporting block is in lap joint with the bottom of the energy storage battery.
Compared with the prior art, the utility model provides an energy storage battery with high-efficiency heat dissipation, which has the following beneficial effects:
1. this high-efficient radiating energy storage battery, install energy storage battery at the top back of bottom plate, can drive the threaded rod through rotatory adjust knob and rotate, make the thread bush move in the inside of cavity under the effect of the inside screw thread of thread bush, it is close to and presss from both sides tight fixedly to energy storage battery to the centre to drive two silica gel heating panels, it is fixed to make energy storage battery be convenient for the installation, the installation is accomplished the back silica gel heating panel and is hugged closely on energy storage battery's surface, the effect through silica gel heating panel and metal cooling panel is convenient for spread the heat of energy storage battery inside in charging process, make the device reach the radiating effect of being convenient for.
2. This high-efficient radiating energy storage battery through being provided with the mounting bracket, and the inside fixed mounting of mounting bracket has servo motor, and servo motor's output is provided with radiator fan, can drive radiator fan through servo motor and rotate, can further dispel the heat to energy storage battery's bottom through radiator fan at the in-process that charges, has improved the radiating effect of the device when charging to the emergence of potential safety hazard has been reduced.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a metal heat sink structure according to the present invention;
FIG. 3 is an enlarged view of the structure of FIG. 1 at A according to the present invention.
Wherein: 1. a base plate; 2. an energy storage battery; 3. a silica gel heat dissipation plate; 4. a metal heat dissipation plate; 5. a mounting frame; 6. a servo motor; 7. a heat radiation fan; 8. a cavity; 9. a threaded rod; 10. a threaded sleeve; 11. adjusting a knob; 12. a slide bar; 13. a chute; 14. a through groove; 15. a connecting rod; 16. and (7) a supporting block.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-3, an energy storage battery with high heat dissipation efficiency comprises a bottom plate 1, an energy storage battery 2, two silica gel heat dissipation plates 3 and metal heat dissipation plates 4, wherein the energy storage battery 2 is installed on the top of the bottom plate 1, the two silica gel heat dissipation plates 3 are respectively movably connected with two sides of the top of the bottom plate 1, one opposite sides of the two silica gel heat dissipation plates 3 are respectively lapped with two sides of the energy storage battery 2, the metal heat dissipation plates 4 and one side of the silica gel heat dissipation plates 3 away from the energy storage battery 2 are fixedly connected, the metal heat dissipation plates 4 are made of copper, the silica gel heat dissipation plates 3 are attached to the sides of the energy storage battery 2, heat dissipation is conveniently performed around the energy storage battery 2 through the actions of the silica gel heat dissipation plates 3 and the metal heat dissipation plates 4, the bottom of the bottom plate 1 is fixedly connected with a mounting bracket 5, a servo motor 6 is fixedly installed inside the mounting bracket 5, and a heat dissipation fan 7 is fixedly connected with an output end of the servo motor 6, radiator fan 7 is located energy storage battery 2's below, cavity 8 has been seted up to bottom plate 1's inside, the inside swing joint of cavity 8 has threaded rod 9, threaded rod 9's side surface threaded connection has thread bush 10, connecting rod 15 and silica gel heating panel 3's bottom fixed connection are passed through at the top of thread bush 10, threaded rod 9's right-hand member fixedly connected with adjust knob 11, the one end of threaded rod 9 runs through the inside wall of cavity 8 and extends to one side of bottom plate 1, adjust knob 11 and one side swing joint of bottom plate 1.
Bottom plate 1's top fixedly connected with slide bar 12, spout 13 has been seted up to the inside of silica gel heating panel 3, slide bar 12 and spout 13 sliding connection, when silica gel heating panel 3 removes about bottom plate 1's top, spout 13 is at the surperficial horizontal slip of slide bar 12, effect through slide bar 12 and spout 13, be convenient for lead to the position of silica gel heating panel 3 spacing, logical groove 14 has been seted up to the interior roof of cavity 8, connecting rod 15 and the inside swing joint who leads to groove 14, bottom plate 1's top fixedly connected with supporting shoe 16, the top of supporting shoe 16 and energy storage battery 2's bottom overlap joint, effect through supporting shoe 16 can prop energy storage battery 2, make and leave certain space between energy storage battery 2's the bottom and bottom plate 1, be convenient for the heat dissipation.
When the energy storage battery 2 is used, after the energy storage battery 2 is arranged at the top of the bottom plate 1, the threaded rod 9 can be driven to rotate by rotating the adjusting knob 11, the threaded sleeve 10 can move in the cavity 8 under the action of the internal threads of the threaded sleeve 10, the two silica gel heat dissipation plates 3 are driven to approach to the middle and clamp and fix the two sides of the energy storage battery 2, so that the energy storage battery 2 can be conveniently arranged and fixed, the silica gel heat dissipation plates 3 are tightly attached to the surface of the energy storage battery 2 after the energy storage battery 2 is arranged, the heat of the energy storage battery 2 can be conveniently led out in the charging process under the action of the silica gel heat dissipation plates 3 and the metal heat dissipation plates 4, the energy storage battery 2 can be conveniently dissipated in the charging process, meanwhile, the heat dissipation fan 7 can be driven to rotate by the servo motor 6, and the bottom of the energy storage battery 2 can be further dissipated by the heat dissipation fan 7 in the charging process, the heat dissipation effect of the device during charging is improved.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.