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What kind of tools and cutting parameters should be used for turning and milling nickel-titanium alloys?

A process for grinding titanium alloy, which is characterized by first using a mixed abrasive grinding wheel for semi-finish grinding, and then using an elastic grinding wheel for fine grinding.

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Beryllium Nitinol Strip

The alloy series of beryllium nickel titanium alloy strip containing 1.8-2.5 beryllium and 0.4-0.6 titanium is a nickel-based dispersion-strengthened alloy with high strength, low hysteresis and high elasticity. It has attracted increasing attention due to its high ultimate strength (especially its processing characteristics), fatigue resistance, resistance to high temperature softening, resistance to stress decay and corrosion resistance. Deformed nickel beryllium alloy has excellent elasticity at high temperatures, so it is mainly used as mechanical parts and electrical and electronic components, such as thermal switches, bellows, vibrating diaphragms, overheated connectors and sockets, sleeves, etc. The alloy has good plasticity after solution treatment and is easy to roll and process to form parts with various complex shapes; after aging treatment, it can obtain higher mechanical properties and elastic properties than beryllium bronze, 3J1, 3J58 and other precision alloys; At the same time, it also has good electrical conductivity, weldability, corrosion resistance, and fatigue resistance; it also has high elasticity and high conductivity that beryllium bronze cannot achieve at high temperatures up to 370°C, and is suitable for manufacturing products that work below 370°C. Diaphragms, high temperature springs and conductive springs. In addition, beryllium nickel titanium alloy belts have important applications in military aircraft engines.