首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials Pt.1; Jul 7-11, 2003; Leganes, Madrid, Spain >Effect of Microstructures on Mechanical Properties of Heat Resistant Titanium Alloys at Elevated Temperatures
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Effect of Microstructures on Mechanical Properties of Heat Resistant Titanium Alloys at Elevated Temperatures

机译:高温下显微组织对耐热钛合金力学性能的影响

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The weight reduction of rotating and reciprocating automobile engine components such as intake and exhaust valves, valve springs and connecting rods has been vital to the improvement of engine performance. Titanium alloys are one of the candidate light weight materials for these. Among them, near alpha alloys, Ti-6242S (Ti-6Al-2Sn-4Zr-2Mo-0.1Si), which is applied to the compressor discs of aerospace jet engines and DAT54 (Ti-5.8Al-4.OSn-3.5Zr-2.8Mo-0.7Nb-0.35Si-0.06C), which is a newly developed alloy in place of Ti-6242S, are promising heat resistant alloys for exhaust valves. As exhaust valves for an automobile locally reach up to 1000 K, it is necessary to understand mechanical properties at elevated temperatures. However, their maximum operating temperature for titanium alloys for aerospace components has been limited to 873 K, and few data exist on their mechanical properties over 873 K. To apply Ti-6242S and DAT54 to exhaust engine valves, the effect of microstructures on tensile, fatigue and creep properties were evaluated from room temperature to 1073 K. In each alloy, the acicular material exhibited an excellent combination of all properties. The equiaxed structure with the highest fatigue strength at room temperature showed the lowest mechanical strength at 1073 K. The bi-modal material possessed strength that was between that of the acicular and the equiaxed materials. Mechanical properties of DAT54 at various temperatures were superior to those of Ti-6242S. DAT54 with acicular microstructure showed the best combination of all properties and it is the most applicable to exhaust valves.
机译:旋转和往复运动的汽车发动机组件(例如进气门和排气门,气门弹簧和连杆)的轻量化对于提高发动机性能至关重要。钛合金是这些材料的候选轻质材料之一。其中,近α合金Ti-6242S(Ti-6Al-2Sn-4Zr-2Mo-0.1Si)应用于航空喷气发动机的压气机盘和DAT54(Ti-5.8Al-4.OSn-3.5Zr -2.8Mo-0.7Nb-0.35Si-0.06C)是代替Ti-6242S的新开发合金,是有希望的用于排气阀的耐热合金。由于汽车的排气阀局部达到1000 K,因此有必要了解高温下的机械性能。但是,用于航空航天部件的钛合金的最高工作温度已限制为873 K,并且关于873 K以上的机械性能的数据很少。将Ti-6242S和DAT54应用于排气发动机气门时,微观结构对拉伸的影响,从室温到1073 K评估了疲劳和蠕变性能。在每种合金中,针状材料均表现出所有性能的极佳组合。在室温下具有最高疲劳强度的等轴结构在1073 K时显示出最低的机械强度。双峰材料的强度介于针状和等轴材料的强度之间。 DAT54在各种温度下的机械性能均优于Ti-6242S。具有针状微结构的DAT54显示了所有性能的最佳组合,并且最适用于排气门。

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