Abstract:
Disclosed is a method for producing an aluminum structure which forms an aluminum structure with a uniform thick film of high purity aluminum, making possible aluminum plating on the surface of even a porous resin molded body having a three-dimensional network structure by providing a conductivity forming step that forms a conductive layer of aluminum on the surface of the resin molded body and a plating step that plates, with aluminum, the resin molded body that has been rendered conductive. Also disclosed is an aluminum porous body with a large surface area.
Abstract:
Disclosed is a porous metal body with communicating pores and low oxygen content; also disclosed is the manufacturing method thereof. A porous resin body, which has communicating pores formed in the surface of a metal layer, is broken down by heating the same to a temperature below the melting point of said metal while applying a negative potential to said metal layer in a state immersed in a first molten salt.
Abstract:
Provided is a molten salt battery which can stably charge and discharge power, and does not have dead space even when a plurality of batteries are combined. A power generating element (X) is configured by interposing, between a rectangular plate-shaped positive electrode (1) and negative electrode (2), a separator (3) which is formed from a rectangular plate-shaped fiberglass cloth, and which is impregnated with molten salt. A battery container (5) roughly shaped as a cube has a nonflexible pressing plate (4b) to which the pressure from a spring (4a) disposed in the battery container (5) on the side of the negative electrode (2) is applied, which disperses the pressing force from the spring (4a) in a roughly uniform manner, and which presses the negative electrode (2) downward. Then, as a counteraction thereof, the positive electrode (1) is pressed upward by the bottom wall (52) of the battery container (5).
Abstract:
There is provided a magnesium alloy member having mechanical properties and corrosion resistance and a method of manufacturing the magnesium alloy member. A magnesium alloy member has a base material made of a magnesium alloy, and an anticorrosive film formed on the base material. The base material is a rolled magnesium alloy including 5 to 11% by mass of Al. By using a base material including a large amount of Al, a magnesium alloy member having excellent mechanical properties and high corrosion resistance can be produced. In addition, by using a rolled material, the number of surface defects at the time of casting is small, and the frequency of compensation processes such as undercoating and puttying can be reduced:
Abstract:
There is provided a magnesium alloy member having mechanical properties and corrosion resistance and a method of manufacturing the magnesium alloy member. A magnesium alloy member has a base material made of a magnesium alloy, and an anticorrosive film formed on the base material. The base material is a rolled magnesium alloy including 5 to 11% by mass of Al. By using a base material including a large amount of Al, a magnesium alloy member having excellent mechanical properties and high corrosion resistance can be produced. In addition, by using a rolled material, the number of surface defects at the time of casting is small, and the frequency of compensation processes such as undercoating and puttying can be reduced: