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Heat fatigue behavior of 4Cr5MoSiV1 and 8407S steels

机译:4Cr5mosiv1和8407s钢的热疲劳行为

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With the self-restricting test method, heat fatigue behavior of 4Cr5MoSiV1 steel and 8407 steel is investigated under the same heat treatment condition. The crack morphology and fracture surface is also analyzed. Heat fatigue cracks of both steels initiate at the time between 100 to 200 cycles. The initiating cracks of 8407S steel are smaller and more equable than that in 4Cr5MoSiV1 steel. When the annealing temperature is below 610°C, the heat fatigue behavior of 4Cr5MoSiV1 steel is better than that of 8407S steel. However, as the annealing temperature exceeds 610°C, the behavior of the latter seems superior. Also analyzed is the mechanism of heat fatigue, which reveals the main factor affecting heat fatigue resistance is the thermal stability and strength or hardness of steels.
机译:通过自限制试验方法,在相同的热处理条件下研究了4Cr5MOSiv1钢和8407钢的热疲劳行为。还分析了裂缝形态和裂缝表面。两个钢的热疲劳裂缝在100至200周期之间启动。 8407S钢的启动裂缝比4Cr5mosiv1钢更小,更均更均匀。当退火温度低于610℃时,4Cr5mosiv1钢的热疲劳行为优于8407S钢。然而,随着退火温度超过610°C,后者的行为似乎优越。还分析了热疲劳的机制,揭示了影响热疲劳抗性的主要因素是钢的热稳定性和强度或硬度。

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