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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >INVESTIGATION OF FRETTING FATIGUE BEHAVIOR OF TI811 ALLOY AT ELEVATED TEMPERATURE
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INVESTIGATION OF FRETTING FATIGUE BEHAVIOR OF TI811 ALLOY AT ELEVATED TEMPERATURE

机译:TI811合金高温疲劳行为的研究。

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摘要

The fretting fatigue behavior of the Ti811titanium alloy, as influenced by temperature, slip amplitude, and contact pressure, was investigated using a high-frequency fatigue machine and a home-made high-temperature apparatus. The fretting fatigue failure mechanisms were studied by observing the fretting surface morphology features. The results show that the sensitivity to fretting fatigue is high at both 350℃ and 500℃. The higher the temperature is, the more sensitive the alloy is to fretting fatigue failure. Creep is an important factor that influences the fretting fatigue failure process at elevated temperature. The fretting fatigue life of the Ti811 alloy does not change in a monotonic way as the slip amplitude and contact pressure increase. This is due to the fact that the slip amplitude affects the action of fatigue and wear in the fretting process, and the nominal contact pressure affects the distribution and concentration of the stress and the amplitude of fretting slip at the contact surface, and thus further influences the crack initiation probability and the driving force for propagation.
机译:使用高温疲劳机和自制的高温设备研究了Ti811钛合金的微动疲劳行为,该行为受温度,滑移幅度和接触压力的影响。通过观察微动表面形态特征研究了微动疲劳破坏机理。结果表明,在350℃和500℃下对微动疲劳的敏感性都很高。温度越高,合金对微动疲劳失效越敏感。蠕变是影响高温下微动疲劳破坏过程的重要因素。随着滑动幅度和接触压力的增加,Ti811合金的微动疲劳寿命不会单调变化。这是由于以下事实:滑动幅度会影响微动过程中的疲劳和磨损作用,并且名义接触压力会影响应力的分布和集中以及接触表面上的微动滑动幅度,因此会进一步产生影响。裂纹萌生概率和传播的驱动力。

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