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The effect of heat treatment on the tensile strength and ductility of pure titanium grade 2

机译:热处理对纯钛2级拉伸强度和延展性的影响

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摘要

The commercially pure titanium (CP) and titanium alloy are widely used in medical, aerospace and automotive industries due to their attractive mechanical properties especially because of its strength-to-weight ratio that is the highest among all known metal. A thorough understanding of the mechanical properties of titanium is very important so that an optimize machining parameters can be selected. Pure titanium has a higher level of corrosion resistance compared to titanium alloy due to the presence of an oxide layer on its surface. In this paper, heat treatment especially the annealing process was used prior to machining in order to study on the variation of its tensile strength and ductility at two different annealing conditions. The three conditions that were used in this experiment are untreated (T1), heat-treated at 700°C for 1 hour (T2) and 900°C for 1 hour (T3). In this work, a higher level of oxidation was observed for T3 compared to T2 due to the exposure to a temperature that is above the beta transus temperature that triggered the formation of acicular martensite. It was also observed that there was a decrease in the tensile strength when treated at T2 and a recovery of the strength was noticed at T3. The ductility properties were more significant at T2.
机译:由于其具有吸引力的机械性能,商业纯钛(CP)和钛合金广泛用于医疗,航空航天和汽车工业中,尤其是因为其在所有已知金属中最高的强度重量比。彻底了解钛的机械性能非常重要,从而可以选择优化加工参数。由于其表面上存在氧化物层,纯钛与钛合金相比具有更高水平的耐腐蚀性。本文在加工之前使用了热处理,特别是在加工之前使用退火过程,以研究其在两个不同的退火条件下其拉伸强度和延展性的变化。在该实验中使用的三种条件是未处理的(T1),在700℃下热处理1小时(T2),900℃,1小时(T3)。在这项工作中,与T2相比,由于暴露于β转换温度的温度而与触发成神经马氏体的形成的温度相比,T3比较较高水平的氧化。还观察到,当在T2处理时,在T2处理时存在拉伸强度,并在T3处注意到强度的恢复。延性特性在T2处更显着。

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