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Thermal-mechanical and isothermal fatigue of 304L stainless steel under middle range temperatures

机译:中等温度下304L不锈钢的热机械和等温疲劳

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摘要

The present study investigates the crack initiation in a 304L stainless steel under thermal fatigue using volume element tests designed to assess the endurance to engineering crack initiation in real structures under middle range temperature and fairly large number of cycles. The inelastic cyclic strain is significant in most testing conditions for this alloy, even for long tests. Regarding tests, thermal-mechanical fatigue life is compared with low cycle fatigue tests under isothermal conditions. Noteworthy, throughout the different studied ranges of applied temperature cyclic behavior of the alloy has shown an initial hardening followed by a cyclic softening. In addition, no clear effect in lifetime for the high strain range has been discovered. In fact, when exposed to various increasing temperature levels, the material endurance tends to decreases for low strain range (correspond to high number of cycle). A different behavior in cyclic hardening tests is identified between the In-Phase thermal-mechanical fatigue tests and the Out-of-Phase tests at temperature levels ranges between 90 and 165°C. In-Phase thermal-mechanical test increases lifetime with respect to the Out-of-Phase test. The fracture surfaces for all tested conditions are characterized by a fatigue striation.
机译:本研究使用体积元素测试研究了304L不锈钢在热疲劳下的裂纹萌生,该体积元素测试旨在评估在中等温度和相当大的循环次数下真实结构中工程裂纹萌生的承受力。在这种合金的大多数测试条件下,即使是长期测试,其非弹性循环应变也很重要。关于测试,将热机械疲劳寿命与等温条件下的低循环疲劳测试进行了比较。值得注意的是,在应用温度的不同研究范围内,合金的循环行为都显示出先硬化,然后再循环软化。另外,还没有发现对于高应变范围的寿命有明显影响。实际上,当暴露于各种不断升高的温度水平时,材料的耐用性往往会在低应变范围内降低(与高循环次数相对应)。在90至165°C的温度水平下,在同相热机械疲劳测试和异相测试之间发现了循环硬化测试中的不同行为。相间热机械测试相对于相间测试可以延长使用寿命。在所有测试条件下的断裂表面均具有疲劳条纹。

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