Titanium alloy rods have advantages such as high strength, low density, good mechanical properties, good toughness, and corrosion resistance. In addition, titanium alloy rods have poor process performance, difficult cutting, and are prone to absorbing impurities such as hydrogen, oxygen, nitrogen, and carbon during hot processing. They also have poor wear resistance and complex production processes. The industrial production of titanium began in 1948. To meet the needs of aviation industry development, the titanium industry is developing at an average annual rate of around 8%. At present, all titanium alloy rod manufacturers have an annual production capacity of over 40000 tons of processed materials, and there are nearly 30 brands of titanium alloy rods. Widely used titanium alloy rods include Ti-6Al-4V (TC4), Ti-5Al-2.5Sn (TA7), and industrial pure titanium (TA1, TA2, and TA3). (1) Titanium alloy rods have high strength
The density of titanium alloy can be analyzed, generally around 4.5g/cm3, which is only 60% of steel. The strength of pure titanium is only close to that of ordinary steel in our enterprise. Some problems have high strength, and titanium alloy exceeds the strength of many related research alloy structural steels. Therefore, the specific strength (strength/density) of titanium alloy is much higher than that of other metal industrial structural design materials, which can manufacture parts with high working strength, good rigidity, and light weight. At present, traditional Chinese titanium alloys are mainly used for the engine work of Chinese aircraft, including components, frames, skins, fasteners, and landing gears
(2) Titanium alloy rods have high thermal strength and can maintain the required strength at temperatures several hundred degrees higher than aluminum alloy. They can work for a long time at 450 degree C to 500 degree C, and the specific strength is still high within the range of 150 degree C. The specific strength of aluminum alloy decreases at 150 degree C, and the working temperature of titanium alloy can reach 500 degree C, while the working temperature of aluminum alloy is below 200 degree C.
Titanium alloy rods have advantages such as high strength, low density, good mechanical properties, good toughness, and corrosion resistance. In addition, titanium alloy rods have poor process performance, difficult cutting, and are prone to absorbing impurities such as hydrogen, oxygen, nitrogen, and carbon during hot processing. They also have poor wear resistance and complex production processes. The industrial production of titanium began in 1948. To meet the needs of aviation industry development, the titanium industry is developing at an average annual rate of around 8%. At present, all titanium alloy rod manufacturers have an annual production capacity of over 40000 tons of processed materials, and there are nearly 30 brands of titanium alloy rods. Widely used titanium alloy rods include Ti-6Al-4V (TC4), Ti-5Al-2.5Sn (TA7), and industrial pure titanium (TA1, TA2, and TA3).
(1) Titanium alloy rods have high strength
The density of titanium alloy can be analyzed, generally around 4.5g/cm3, which is only 60% of steel. The strength of pure titanium is only close to that of ordinary steel in our enterprise. Some problems have high strength, and titanium alloy exceeds the strength of many related research alloy structural steels. Therefore, the specific strength (strength/density) of titanium alloy is much higher than that of other metal industrial structural design materials, which can manufacture parts with high working strength, good rigidity, and light weight. At present, traditional Chinese titanium alloys are mainly used for the engine work of Chinese aircraft, including components, frames, skins, fasteners, and landing gears
(2) Titanium alloy rods have high thermal strength
The usage temperature is several hundred degrees higher than that of aluminum alloy, and it can maintain the required strength at medium temperatures. It works for a long time at 450-500 degree C, and the specific strength is still high in the range of 150-500 degree C. The specific strength of aluminum alloy decreases at 150 degree C, the working temperature of titanium alloy can reach 500 degree C, and the working temperature of aluminum alloy is below 200 degree C.
Dec 02, 2023
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