Energy storage battery with Bluetooth function
By introducing a Bluetooth-controlled driving mechanism into the energy storage battery, the baffle is lifted and heat dissipated, which solves the problem of insufficient heat dissipation of traditional energy storage batteries and improves the safety and performance of the battery.
Patent Information
- Application Number
- CN202421649841.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-07-12
AI Technical Summary
Traditional energy storage batteries have shortcomings in heat dissipation and intelligent management, which leads to overheating problems affecting battery performance and safety.
An energy storage battery with Bluetooth function is designed. By setting a driving mechanism between the top cover and the housing to control the lifting baffle, the Bluetooth module is used to control the lifting of the baffle to realize the alternating opening and closing of the air inlet and the air outlet, forming an airflow for heat dissipation.
At low temperature, the baffle covers the air outlet and protects water from water. At high temperatures, the airflow forms a flow of air to carry away heat through the lifting and lowering of the baffle, effectively dissipating heat and improving battery safety.
Smart Images

Figure CN223245687U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of energy storage batteries, in particular to an energy storage battery with a Bluetooth function. Background Art
[0002] With the increasing popularity of electronic devices and mobile devices, portable energy storage batteries are playing an increasingly important role in daily life. However, as device usage increases and charge and discharge frequencies increase, the shortcomings of traditional energy storage batteries in heat dissipation and intelligent management are becoming increasingly apparent. Overheating not only affects battery performance and lifespan but can also pose safety risks. Therefore, effective heat dissipation and intelligent management of energy storage batteries have become urgent challenges. Utility Model Content
[0003] The purpose of the utility model is to provide an energy storage battery with Bluetooth function in order to address the above-mentioned deficiencies in the prior art.
[0004] The purpose of the utility model is achieved through the following technical solutions: an energy storage battery with Bluetooth function, comprising a shell and a top cover movable and movable on the shell; a bottom shell is provided inside the shell; a guide column is provided on the top cover; the guide column is passed through the bottom shell; a return spring is provided between the bottom of the bottom shell and the guide column;
[0005] An air outlet is provided at one end of the housing; an air inlet is provided at the other end of the housing; a first upper accommodating groove is provided at the top of the air outlet; a first lower accommodating groove is provided at the bottom of the air outlet; a second upper accommodating groove is provided at the top of the air inlet; a second lower accommodating groove is provided at the bottom of the air inlet; a first baffle is movably provided between the first upper accommodating groove, the air outlet, and the first lower accommodating groove; a second baffle is movably provided between the second upper accommodating groove, the air inlet, and the second lower accommodating groove;
[0006] A driving mechanism for driving the first baffle and the second baffle to move up and down is provided between the top cover and the outer shell; a Bluetooth module is provided on the bottom shell; and the Bluetooth module is electrically connected to the driving mechanism.
[0007] The present invention is further configured such that a power supply module is provided in the middle of the bottom shell.
[0008] The utility model is further configured as follows: the first baffle is provided with a first contact block; the second baffle is provided with a second contact block; one end of the top cover is floatingly provided with a first interference block for abutting against the first contact block; one end of the top cover is floatingly provided with a second interference block for abutting against the second contact block; a first tension spring is provided between the first upper accommodating groove and the first baffle; and a second tension spring is provided between the second lower accommodating groove and the second baffle.
[0009] The utility model is further configured as follows: a first placement slot is provided at one end of the top cover; the first interference block is telescopically movable and arranged in the first placement slot; a first spring is provided between the first interference block and the first placement slot; a second placement slot is provided at the other end of the top cover; the second interference block is telescopically movable and arranged in the second placement slot; a second spring is provided between the second interference block and the second placement slot.
[0010] The present invention is further configured such that the top of the first contact block is provided with a first upper contact slope; the bottom of the first contact block is provided with a first lower contact slope; the top of the first interference block is provided with a first upper interference slope; the bottom of the first interference block is provided with a first lower interference slope;
[0011] The top of the second contact block is provided with a second upper contact slope; the bottom of the second contact block is provided with a second lower contact slope; the top of the second interference block is provided with a second upper interference slope; the bottom of the second interference block is provided with a second lower interference slope.
[0012] The utility model is further configured as follows: the driving mechanism includes a motor arranged on the bottom shell, a driving wheel connected to the output end of the motor, and a rack arranged on the top cover; a semi-tooth structure is provided on the circumference of the driving wheel; the rack is engaged with the semi-tooth structure; and the motor is electrically connected to the Bluetooth module.
[0013] The present invention is further configured such that the rack is arranged along the height direction of the top cover.
[0014] The present invention is further configured such that the housing is provided with a first interface and a second interface; the first interface and the second interface are electrically connected to the power module respectively.
[0015] The beneficial effects of the present invention are as follows: when the temperature of the energy storage battery is low, the first baffle and the second baffle respectively shield the air outlet and the air inlet, thereby playing a waterproof role; when the temperature of the energy storage battery is high, the user can control the operation of the driving mechanism through the Bluetooth module, thereby driving the first baffle and the second baffle to continuously rise and fall, generating airflow between the air inlet and the air outlet, and taking away the heat inside the energy storage battery. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The utility model is further described using the accompanying drawings, but the embodiments in the accompanying drawings do not constitute any limitation to the utility model. A person skilled in the art can obtain other drawings based on the following drawings without making any creative effort.
[0017] Figure 1 It is a structural diagram of the utility model;
[0018] Figure 2This is a schematic diagram of the structure of the utility model after the top cover is hidden;
[0019] Figure 3 It is a structural diagram of the top cover of the utility model;
[0020] Figure 4 It is a cross-sectional view of the present utility model;
[0021] Figure 5 It is a cross-sectional view of the present invention when it is lowered to the bottom;
[0022] Figure 6 This is a cross-sectional view of the utility model when the top cover rises to the top
[0023] Wherein: 1. Housing; 11. Air outlet; 12. Air inlet; 13. First interface; 14. Second interface; 2. Top cover; 21. Guide column; 22. Return spring; 23. Rack; 3. Bottom shell; 31. Power module; 32. Bluetooth module; 33. Motor; 34. Drive wheel; 35. Half-tooth structure; 41. First upper accommodating groove; 42. First lower accommodating groove; 43. First tension spring; 51. Second upper accommodating groove; 52. Second lower accommodating groove; 53. Second tension spring; 6. First Baffle; 61, first contact block; 62, first upper contact slope; 63, first lower contact slope; 7, second baffle; 71, second contact block; 72, second upper contact slope; 73, second lower contact slope; 8, first placement groove; 81, first spring; 82, first interference block; 83, first upper interference slope; 84, first lower interference slope; 9, second placement groove; 91, second spring; 92, second interference block; 93, second upper interference slope; 94, second lower interference slope. DETAILED DESCRIPTION
[0024] The present invention will be further described with reference to the following embodiments.
[0025] Depend on Figures 1 to 6 As can be seen, the energy storage battery with Bluetooth function described in this embodiment includes a housing 1 and a top cover 2 that is movable and retractable on the housing 1; a bottom housing 3 is disposed within the housing 1; a guide post 21 is disposed on the top cover 2; the guide post 21 passes through the bottom housing 3; and a return spring 22 is disposed between the bottom of the bottom housing 3 and the guide post 21.
[0026] An air outlet 11 is provided at one end of the housing 1; an air inlet 12 is provided at the other end of the housing 1; a first upper receiving groove 41 is provided at the top of the air outlet 11; a first lower receiving groove 42 is provided at the bottom of the air outlet 11; a second upper receiving groove 51 is provided at the top of the air inlet 12; a second lower receiving groove 52 is provided at the bottom of the air inlet 12; a first baffle 6 is movably provided between the first upper receiving groove 41, the air outlet 11, and the first lower receiving groove 42; a second baffle 7 is movably provided between the second upper receiving groove 51, the air inlet 12, and the second lower receiving groove 52;
[0027] A driving mechanism for driving the first baffle 6 and the second baffle 7 to move up and down is provided between the top cover 2 and the outer shell 1 ; a Bluetooth module 32 is provided on the bottom shell 3 ; and the Bluetooth module 32 is electrically connected to the driving mechanism.
[0028] Specifically, in the energy storage battery with Bluetooth function described in this embodiment, when the temperature of the energy storage battery is low, the first baffle 6 and the second baffle 7 respectively shield the air outlet 11 and the air inlet 12, thereby achieving a waterproof effect; when the temperature of the energy storage battery is high, the user can control the operation of the driving mechanism through the Bluetooth module 32, thereby driving the first baffle 6 and the second baffle 7 to continuously rise and fall, generating airflow between the air inlet 12 and the air outlet 11, and taking away the heat inside the energy storage battery.
[0029] In the energy storage battery with Bluetooth functionality described in this embodiment, a power module 31 is provided in the middle of the bottom housing 3. Specifically, by arranging the power module 31 in the middle of the bottom housing 3, the airflow generated by the continuous lifting and lowering of the first baffle 6 and the second baffle 7 can fully flow through the power module 31, thereby effectively achieving a heat dissipation effect.
[0030] In the energy storage battery with Bluetooth function described in this embodiment, the first baffle 6 is provided with a first contact block 61; the second baffle 7 is provided with a second contact block 71; a first interference block 82 is provided in a floating manner at one end of the top cover 2 for abutting against the first contact block 61; a second interference block 92 is provided in a floating manner at one end of the top cover 2 for abutting against the second contact block 71; a first tension spring 43 is provided between the first upper receiving groove 41 and the first baffle 6; a second tension spring 53 is provided between the second lower receiving groove 52 and the second baffle 7. In the energy storage battery with Bluetooth function described in this embodiment, a first placement groove 8 is provided at one end of the top cover 2; the first interference block 82 is provided in the first placement groove 8 for telescopic movement; a first spring 81 is provided between the first interference block 82 and the first placement groove 8; a second placement groove 9 is provided at the other end of the top cover 2; the second interference block 92 is provided in the second placement groove 9 for telescopic movement; a second spring 91 is provided between the second interference block 92 and the second placement groove 9. In the energy storage battery with Bluetooth function described in this embodiment, the top of the first contact block 61 is provided with a first upper contact slope 62; the bottom of the first contact block 61 is provided with a first lower contact slope 63; the top of the first interference block 82 is provided with a first upper interference slope 83; the bottom of the first interference block 82 is provided with a first lower interference slope 84; the top of the second contact block 71 is provided with a second upper contact slope 72; the bottom of the second contact block 71 is provided with a second lower contact slope 73; the top of the second interference block 92 is provided with a second upper interference slope 93; the bottom of the second interference block 92 is provided with a second lower interference slope 94. In the energy storage battery with Bluetooth function described in this embodiment, the drive mechanism includes a motor 33 provided on the bottom shell 3, a drive wheel 34 connected to the output end of the motor 33, and a rack 23 provided on the top cover 2; the circumference of the drive wheel 34 is provided with a semi-tooth structure 35; the rack 23 engages with the semi-tooth structure 35; and the motor 33 is electrically connected to the Bluetooth module 32.
[0031] Specifically, the energy storage battery with Bluetooth function described in this embodiment, when the temperature is low, such as Figure 5 As shown, at this time, the top cover 2 is located at the lowest position, the first baffle 6 covers the air outlet 11 under the action of the first tension spring 43, and the second baffle 7 covers the air inlet 12 under the action of the second tension spring 53, thereby playing a waterproof role. In addition, at this time, the second upper contact slope 93 is in contact with the second lower contact slope 73, and the top of the rack 23 is in contact with one end of the half-tooth structure 35.
[0032] When the temperature of the energy storage battery is high, the user can control the motor 33 through the Bluetooth module 32, and the motor 33 drives the driving wheel 34 to rotate. Under the action of the semi-tooth structure 35 and the rack 23, the top cover 2 rises, thereby driving the second baffle 7 to rise, and the air inlet 12 is opened. As the volume inside the energy storage battery increases, the external air enters the energy storage battery through the air inlet 12; until the second resistance block 92 of the top cover 2 crosses the second contact block 71, the second baffle 7 is reset under the action of the second tension spring 53, as shown in FIG. Figure 6 As shown, at this time, the first interference block 82 synchronously crosses the first contact block 61, and the first lower interference slope 84 abuts against the first upper contact slope 62. At this time, the rack 23 passes the other end of the half-tooth structure 35, and the driving wheel 34 rotates to the part without teeth.
[0033] At this moment, the cover plate descends again due to the action of the return spring 22. During the descending process of the cover plate, the top cover 2 descends, thereby driving the first baffle 6 to descend, opening the air outlet 11. Since the volume inside the energy storage battery is relatively small, the gas inside the energy storage battery is discharged to the outside through the air outlet 11.
[0034] Therefore, under the action of the motor 33, the cover plate is continuously lifted and lowered, and the air inlet 12 and the air outlet 11 are alternately opened and closed, thereby generating airflow inside the energy storage battery to achieve the effect of heat dissipation.
[0035] In the energy storage battery with Bluetooth function described in this embodiment, the rack 23 is arranged along the height direction of the top cover 2. The above arrangement facilitates the lifting of the top cover 2.
[0036] In the energy storage battery with Bluetooth function described in this embodiment, the housing 1 is provided with a first interface 13 and a second interface 14; the first interface 13 and the second interface 14 are respectively electrically connected to the power module 31. This arrangement facilitates connection of the energy storage battery with external devices.
[0037] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model, rather than to limit the scope of protection of the utility model. Although the utility model has been described in detail with reference to the preferred embodiments, ordinary technicians in this field should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the essence and scope of the technical solution of the utility model.
Claims
1. An energy storage battery with Bluetooth function, characterized by: It comprises a shell and a top cover which is movable and movable on the shell; a bottom shell is arranged inside the shell; a guide column is arranged on the top cover; and the guide column is passed through the bottom shell; A return spring is provided between the bottom of the bottom shell and the guide column; An air outlet is provided at one end of the housing; an air inlet is provided at the other end of the housing; a first upper accommodating groove is provided at the top of the air outlet; a first lower accommodating groove is provided at the bottom of the air outlet; a second upper accommodating groove is provided at the top of the air inlet; a second lower accommodating groove is provided at the bottom of the air inlet; a first baffle is movably provided between the first upper accommodating groove, the air outlet, and the first lower accommodating groove; a second baffle is movably provided between the second upper accommodating groove, the air inlet, and the second lower accommodating groove; A driving mechanism for driving the first baffle and the second baffle to move up and down is provided between the top cover and the outer shell; a Bluetooth module is provided on the bottom shell; and the Bluetooth module is electrically connected to the driving mechanism.
2. The energy storage battery with Bluetooth function according to claim 1, characterized in that: A power module is provided in the middle of the bottom shell.
3. The energy storage battery with Bluetooth function according to claim 1, characterized in that: The first baffle is provided with a first contact block; the second baffle is provided with a second contact block; one end of the top cover is floatingly provided with a first interference block for abutting against the first contact block; one end of the top cover is floatingly provided with a second interference block for abutting against the second contact block; a first tension spring is provided between the first upper accommodating groove and the first baffle; a second tension spring is provided between the second lower accommodating groove and the second baffle.
4. The energy storage battery with Bluetooth function according to claim 3, characterized in that: A first placement slot is provided at one end of the top cover; the first interference block is telescopically movable in the first placement slot; a first spring is provided between the first interference block and the first placement slot; a second placement slot is provided at the other end of the top cover; the second interference block is telescopically movable in the second placement slot; a second spring is provided between the second interference block and the second placement slot.
5. The energy storage battery with Bluetooth function according to claim 4, characterized in that: The top of the first contact block is provided with a first upper contact inclined surface; the bottom of the first contact block is provided with a first lower contact inclined surface; the top of the first interference block is provided with a first upper interference inclined surface; the bottom of the first interference block is provided with a first lower interference inclined surface; The top of the second contact block is provided with a second upper contact slope; the bottom of the second contact block is provided with a second lower contact slope; the top of the second interference block is provided with a second upper interference slope; the bottom of the second interference block is provided with a second lower interference slope.
6. The energy storage battery with Bluetooth function according to claim 1, characterized in that: The driving mechanism includes a motor arranged on the bottom shell, a driving wheel connected to the output end of the motor, and a rack arranged on the top cover; a semi-tooth structure is provided on the circumference of the driving wheel; the rack is engaged with the semi-tooth structure; and the motor is electrically connected to the Bluetooth module.
7. The energy storage battery with Bluetooth function according to claim 6, characterized in that: The rack is arranged along the height direction of the top cover.
8. The energy storage battery with Bluetooth function according to claim 2, characterized in that: The housing is provided with a first interface and a second interface; the first interface and the second interface are electrically connected to the power module respectively.