The present invention relates to the technical field of new energy battery, and particularly relates to a small metal air cell.
The metal air cell (ie, fuel metal air battery) is a chemical power that produces electrical power by chemical reaction under the catalysis of catalyst, taking the oxygen in the air as the positive active substance, taking the metal as the negative active substance, and using the conductive solution (for example, water) as the electrolyte.
Metal air fuel cell has many unique advantages. Its fuel is metal materials, such as aluminum, magnesium, zinc, lithium and sodium. Because of the abundant reserves of fuel such as aluminum, magnesium and zinc, the metal air fuel cell resources can be fully supplied. The positive active substance is the oxygen in the air, and the cell itself does not need to carry. The size of energy carried by the cell is determined by the amount of metal as negative pole, which makes the actual rate energy of this cell can reach more than 350 Wh/kg (the current lithium ion battery for 100 Wh/kg), with great performance advantages. The products after reaction can be reelectrolyzed aluminum oxide (or magnesium hydroxide) into metal by using wind energy, solar energy, water energy and other clean energy or electric energy in the rich area, then reinstalled into metal air fuel cell to discharge, driving the electric vehicle. This can be achieved on the large scale production, can reduce pollution, reduce emissions, and can realize the centralized power supply, decentralized, low cost power will be transferred to the place in the high cost of local power, and power will be transferred from easy access to difficult to obtain. A new car life of zero pollution and zero emissions can be truly achieved. In the process, the free pollution is achieved, and green energy of zero emission is recycled. Metal air batteries are becoming more and more important in the world.
The current metal air cell is generally a large battery pack, assembled by a number of units, each of which has a cavity consisting of an air electrode and a metal plate (such as a magnesium plate, an alloy plate, etc.). The electrolyte (for example, water) is injected into the upper part of the cavity and reaction residue is discharged from the lower part of the cavity.
However, the volume of this metal air cell is huge and can not be applied in many fields. So it is urgent to develop a small metal air cell, which is easy to carry, easy to use, and can be well integrated with some existing standard battery products. Under the premise of industrial upgrading and environmental protection requirements increasing year by year, it makes the new products achieve automatic batch production process.
For the above technical problem, the present invention provides a small metal air cell, which can be easy to carry, easy to use, and can be well integrated with some existing standard battery products.
The technical solution of the present invention is, the small metal air cell includes an electric core (1), wires (2), an upper cover (3), an output negative electrode (4), a negative electrode presser (5), a positive pole press (6), an output positive pole (7), a housing (8).
The cores grouped are placed in a housing, and the bottom of a housing has a ventilation hole (a). Each core includes an air electrode (b), an absorbent cotton (c), an alloy rod (d), and an absorbent cotton is encapsulated outside an alloy rod by an air electrode. Each electric core is connected through a wire (the connection may be in series, parallel, or series parallel mixing), and a total positive leading out line and a total negative leading out line are reserved. An output positive pole and an output negative pole are installed on an upper cover. A positive lead end (i) connecting with an output positive pole and a negative lead end (j) connecting with an output negative pole are respectively reached in a housing through reserved holes of an upper cover, and respectively connected to a total positive leading out line and a total negative leading out line. A negative electrode presser pressed and fixed an output negative pole, and a positive electrode presser pressed and fixed an output positive pole. A negative electrode presser, a positive electrode presser, an upper cover and a housing are welded into a whole.
There are the following reasons. The cores grouped are placed in a housing, and the bottom of a housing has a ventilation hole. Each core includes an air electrode, an absorbent cotton, an alloy rod, and an absorbent cotton is encapsulated outside an alloy rod by an air electrode. Each electric core is connected through a wire (the connection may be in series, parallel, or series parallel mixing), and a total positive leading out line and a total negative leading out line are reserved. An output positive pole and an output negative pole are installed on an upper cover. A positive lead end connecting with an output positive pole and a negative lead end connecting with an output negative pole are respectively reached in a housing through reserved holes of an upper cover, and respectively connected to a total positive leading out line and a total negative leading out line. A negative electrode presser pressed and fixed an output negative pole, and a positive electrode presser pressed and fixed an output positive pole. A negative electrode presser, a positive electrode presser, an upper cover and a housing are welded into a whole. In the process of using the product, only the bottom of a housing is put into the water. The water is entered into a cell from air holes. The water is absorbed by an absorbent cotton in an electric core, thus a cell is activated. Therefore, this small metal air cell can be easy to carry, easy to use, and can be well integrated with some existing standard battery products.
The invention improves the product performance of a metal air cell by simple multiplying group of many electric cores, standard and standardized product design, and makes it obtain higher power output and use time. At the same time, standardization design is beneficial to realize product's multiplication and expansion, improve production efficiency and realize mass automation production.
As shown as
The cores grouped are placed in a housing, and the bottom of a housing has a ventilation hole a. Each core includes an air electrode b, an absorbent cotton c, an alloy rod d, and an absorbent cotton is encapsulated outside an alloy rod by an air electrode. Each electric core is connected through a wire (the connection may be in series, parallel, or series parallel mixing), and a total positive leading out line and a total negative leading out line are reserved. An output positive pole and an output negative pole are installed on an upper cover. A positive lead end i connecting with an output positive pole and a negative lead end j connecting with an output negative pole are respectively reached in a housing through reserved holes of an upper cover, and respectively connected to a total positive leading out line and a total negative leading out line. A negative electrode presser pressed and fixed an output negative pole, and a positive electrode presser pressed and fixed an output positive pole. A negative electrode presser, a positive electrode presser, an upper cover and a housing are welded into a whole.
There are the following reasons. The cores grouped are placed in a housing, and the bottom of a housing has a ventilation hole. Each core includes a ventilation hole, an absorbent cotton, an alloy rod, and an absorbent cotton is encapsulated outside an alloy rod by an air electrode. Each electric core is connected through a wire (the connection may be in series, parallel, or series parallel mixing), and a total positive leading out line and a total negative leading out line are reserved. An output positive pole and an output negative pole are installed on an upper cover. A positive lead end connecting with an output positive pole and a negative lead end connecting with an output negative pole are respectively reached in a housing through reserved holes of an upper cover, and respectively connected to a total positive leading out line and a total negative leading out line. A negative electrode presser pressed and fixed an output negative pole, and a positive electrode presser pressed and fixed an output positive pole. A negative electrode presser, a positive electrode presser, an upper cover and a housing are welded into a whole. In the process of using the product, only the bottom of a housing is put into the water. The water is entered into a cell from air holes. The water is absorbed by an absorbent cotton in an electric core, thus a cell is activated. Therefore, this small metal air cell can be easy to carry, easy to use, and can be well integrated with some existing standard battery products.
Preferably, as shown as
Preferably, as shown as
Preferably, the said alloy rod is a magnesium alloy rod. After extensive experiments, the applicant obtained that magnesium is the most suitable material for carrying and using conveniently.
Preferably, as shown as
Preferably, as shown as
Preferably, as shown as
Preferably, as shown as
Preferably, as shown as
Preferably, by ultrasonic welding, a negative electrode presser, a positive electrode presser, an upper cover and a housing are welded into a whole. Of course, other ways can be used to fix a negative electrode presser, a positive electrode presser, an upper cover and a housing as a whole.
A specific example of the invention is given below.
The above stated is only preferable embodiments of the present invention, and it should be noted that the above preferable embodiments do not limit the present invention. The claimed scope of the present invention should be based on that defined by the claims. For a skilled person in this technical field, without departing from spirit and scope of the present invention, any improvement and amendment can be made, and these improvement and amendment should belong to the claimed scope of the present invention.
Number | Date | Country | Kind |
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CN2018103457981 | Apr 2018 | CN | national |