Car battery
09893332 ยท 2018-02-13
Inventors
Cpc classification
H01M50/249
ELECTRICITY
H01M4/5825
ELECTRICITY
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M50/213
ELECTRICITY
H01M50/253
ELECTRICITY
H01M10/0525
ELECTRICITY
International classification
H01M10/0525
ELECTRICITY
Abstract
A car battery comprises: four lithium ferro-phosphate batteries serially connected and positioned within a battery case with the anode and cathode caps exposed and connected to each other, and each of the lithium ferro-phosphate batteries has a capacity of 10-20 ampere-hour. The car battery also comprises two wires respectively connected to the anode and cathode caps, and the wires are thus connected to the anode and cathode of the lithium ferro-phosphate batteries connected in series.
Claims
1. A car ignition battery, comprising: a battery case with an opening; a battery pack being positioned within the battery case, and the battery pack comprising at least four lithium ferro-phosphate batteries connected in series and each of the batteries provides at least 10 amp hour in capacity; a battery lid fit with the opening; and two convex electrode connectors respectively connected to the anode and cathode of the battery pack with a connector.
2. The car ignition battery of claim 1, further comprising a retractable handle positioned on the battery lid.
3. The car ignition battery of claim 2, wherein the retractable handle is capable of being rotated into a vertical position.
4. The car ignition battery of claim 1, further comprising a plurality of connecting parts for connecting the lithium ferro-phosphate batteries in serial.
5. The car ignition battery of claim 4, wherein the connecting parts are be connected to the lithium ferro-phosphate batteries with retention bolts, and the connecting parts are composed of a metal pad of a material selected from a group consisting of copper, aluminum and nickel.
6. The car ignition battery of claim 4, wherein each connecting part is a metal wire for being attached to the lithium ferro-phosphate batteries with retention bolts.
7. The car ignition battery of claim 4, further comprising a plurality of retention bolts, wherein the connecting parts are capable of being inserted with the retention bolts, and the retention bolts are screwed into lithium ferro-phosphate batteries.
8. The car ignition battery of claim 4, wherein the connecting parts are springs or spring pieces.
9. The car ignition battery of claim 4, wherein the battery lid has two openings for respectively placing the convex electrode connectors, and the convex electrode connectors extend through the two openings.
10. The car ignition battery of claim 1, further comprising a converting socket.
11. The car ignition battery of claim 10, wherein the converting socket has a socket body and two wires connected to the socket body.
12. The car ignition battery of claim 11, wherein each of the wires is connected with a connecting member, the connecting member is connected with each of the convex electrode connectors.
13. The car ignition batter of claim 12, wherein one of the two wires is directly connected between one of the convex electrode connectors and the anode of the battery pack with a retention bolt and the other of the two wires is directly connected between the other of the convex electrode connectors and the cathode of the battery pack with a retention bolt.
14. The car ignition battery of claim 1, wherein the battery pack comprises four lithium ferro-phosphate batteries.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The foregoing aspects and many of the attendant advantages of this invention will become more readily appreciated as the same becomes better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
(2)
(3)
(4)
(5)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6)
(7) After the battery 104 has been placed within the battery case 102, the battery case is covered with the battery lid and the convex electrode connectors 110 are respectively exposed through the openings 114, and the convex electrode connectors 110 function as electrodes of the car battery 100. The retractable handle can be rotated into a vertical position to facilitate a user carrying the car battery 100. In the embodiment, tightly-screwed connecting parts can not only be assembled and dismantled with ease, but also provide a shortest path (with a lowest resistance) for a current flowing through and prevent bad contact problems or an uprising resistance due to driving vibrations.
(8) As shown in the
(9) Furthermore, in a still other case, the anodes and cathodes of a plurality of batteries, such as six batteries, would form a rectangle. The connecting parts and retention bolts with other predetermined connection types are implemented to connect the six batteries to meet specific design requirements, so as to ensure a lowest resistance.
(10) In the embodiment, the capacity of the battery 104 is only 10-20 Ah, and the battery provides output voltages in a range of 13.8-15.2 volts. Please refer to the testing results of a car battery in the embodiment and a conventional lead-acid battery.
(11)
(12)
(13) According to the testing results shown in the
(14) The car battery is characterized for low resistance, generally, the resistance is affected by the following factors:
(15) 1. the resistance of the battery;
(16) 2. the resistance of the connecting elements (such as a current collecting plate); and
(17) 3. the resistance of a car circuit and a connecting point between a battery pack and a car.
(18) With the low resistance, the amount of the batteries serially or parallelly connected with each other can be reduced. Generally speaking, a conventional car ignition battery requires six batteries serially connected with each other to provide a sufficient output voltage (12-13V), and several conventional car ignition batteries are connected in parallel with each other to provide a capacity of 60-80 Ah. Such a complex connection results in a large number of connecting points. For the car battery of the invention, four batteries are serially connected to provide a 10 Ah capacity and are sufficient to start the car ignition and operate a car.
(19) For ensuring the car battery of the invention can be implemented in a car, the following tests were implemented on the car batteries with capacities of 10 Ah and 20 Ah to ignite a car and provide energy for a variety of functions.
(20) Testing 1
(21) A tested car is an OPEL OMEGA 2000CC manufactured in 1989. Before the testing begins, the tested car uses a lead-acid battery. The tested car adopts a car battery pack with four batteries, and each battery has an output voltage of 13.2V and a capacity of 20 Ah. The car battery can be composed of two battery packs connected in parallel, each battery pack has four batteries 104. After the tested car practically operates for a long time, the testing results are shown as follow:
(22) 1. The ignition current for the car is up to 220 Ampere, the ignition operation can be repeated for five times without any waiting time.
(23) 2. After the ignition, the car battery is charged with a charging voltage of 13.8V.
(24) 3. The car light is brighter, sound of the engine is reduced, and the horsepower is higher.
(25) 4. The driving performance of the car is more stable (less vibrations).
(26) 5. After the car is driven for a week, the battery dismantled still has an output voltage of 13.6V
(27) Testing 2
(28) A tested car is a TOYOTA PREMIO 2000CC, which was driven as a taxi. Before the testing begins, the tested car implements a lead-acid battery. The tested car adopts a car battery pack with four batteries, and each battery has an output voltage of 13.2V and a capacity of 20 Ah. After the tested car practically operates for a long time, the testing results are shown as follow:
(29) 1. The car ignition starts smoothly, the car light is brighter, sound of the engine is reduced, the horsepower is higher, the engine speed is lower when the car is cooled, and the accelerating engine speed is smoother during the operation of a car air conditioner.
(30) 2. The driving performance of the car is more stable (less vibrations).
(31) 3. After the car is driven for a week, the average fuel consumption is 8 kilometers per liter, compared with original consumption of 6.5 kilometers per liter.
(32) Testing 3
(33) A tested car is a VOLVO 2000CC. Before the testing begins, the tested car implements a lead-acid battery with a capacity of 60 Ah. The tested car adopts a car battery pack with four batteries, and each battery has an output voltage of 13.2V and a capacity of 20 Ah. After the tested car practically operates for a long time, the testing results are shown as follow:
(34) 1. The car ignition starts smoothly and the driving performance of the car is more stable, the car light is brighter, and the horsepower is higher.
(35) 2. After the ignition, the car battery is charged with a charging voltage of 14V.
(36) 3. The tested car with a full fuel tank is capable of driving 600 km, as compared with original 540 km.
(37) Testing 4
(38) A tested car is the same as the testing 1. Before the testing begins, the tested car implements a lead-acid battery of a capacity of 60 Ah. The tested car adopts a car battery pack with four batteries, and each battery has an output voltage of 13.2V and a capacity of 20 Ah (as shown in
(39) According to the four tests, the car battery can start the ignition on a variety of cars and provides a better performance and more comfort. Also, implementing the car batteries has the advantage of saving more fuel. Compared with the battery of a capacity of 20 Ah, a battery with a capacity of 10 Ah is more economical and has fewer points of connection, thus also has a higher efficiency.
(40) Lithium ferro-phosphate batteries for starting a car ignition, unlike lead-acid batteries with a capability to 65 Ah, have a higher output power and a more stable voltage level, thus a car with these batteries has a better performance, more comfort and saves more fuel. Furthermore, the lithium ferro-phosphate batteries can perform a deep discharge (100% capability cycle). Such advantages cannot be accomplished by lead-acid batteries.
(41) On the other hand, the weight of the car battery is reduced to 2.7-4.4 kg, as compared with 12-15 kg of a lead-acid battery. The car battery of the invention cannot only start the car ignition, but can also provide power for outdoor activities. As shown in the
(42) While the present invention has been described with respect to preferred embodiments thereof, it will be apparent to those skilled in the art that the disclosed invention may be modified in numerous ways and may assume many embodiments other than those specifically described above. Accordingly, it is intended by the appended claims to cover all modifications of the invention that fall within the true spirit and scope of the invention.