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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Stress relaxation behavior of shot-peened Ti-6Al-4V under fretting fatigue at elevated temperature
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Stress relaxation behavior of shot-peened Ti-6Al-4V under fretting fatigue at elevated temperature

机译:高温微动疲劳下喷丸Ti-6Al-4V的应力松弛行为

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Relaxation behavior of residual stress in a shot-peened titanium alloy, Ti-6Al-4V subjected to fretting fatigue was investigated at room and elevated temperatures. Constant amplitude fretting fatigue tests were conducted at several maximum stress levels, σ_(max) ranging from 333 to 666 MPa with a stress ratio of 0.1. Two heaters, placed at the front and back of specimen, were used to heat and maintain the temperature in the gage section of specimen at 100 and 260℃. Residual stress was measured using the X-ray diffraction method. There was relaxation of residual compressive stress during fretting fatigue at room and elevated temperatures, which in turn manifested in the reduction of fretting fatigue life. Greater stress relaxation occurred when higher temperature, stress range and contact load were applied, however, contact load had a considerably smaller effect. Stress relaxations due to elevated temperature and mechanical load (i.e. fretting fatigue) were found to be independent processes within the test conditions of this study, such that they can be linearly superimposed to predict the total stress relaxation from fretting fatigue at elevated temperature.
机译:在室温和高温下研究了喷丸钛合金Ti-6Al-4V承受微动疲劳时残余应力的松弛行为。在几个最大应力水平σ_(max)范围从333到666 MPa,应力比为0.1的情况下,进行了恒定振幅微动疲劳测试。分别在样品的前后放置两个加热器,以加热并保持样品的量具部分的温度在100和260℃。使用X射线衍射法测量残余应力。在室温和高温下的微动疲劳过程中,残余压缩应力有所松弛,这又表现为微动疲劳寿命的降低。当施加较高的温度,应力范围和接触载荷时,应力松弛更大,但是接触载荷的影响要小得多。在本研究的测试条件下,发现由于高温和机械负荷(即微动疲劳)引起的应力松弛是独立的过程,因此可以将它们线性叠加以预测在高温下因微动疲劳引起的总应力松弛。

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