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Cyclic deformation behavior and low cycle fatigue life of normalized medium carbon steel with hydrogen charging

机译:氢气充电常规介质碳钢的循环变形行为与低循环疲劳寿命

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The effects of hydrogen on low cycle fatigue properties have been fundamentally examined using normalized JIS S45C steel. With the aid of hydrogen thermal desorption analysis, the influence of the increase in carbon content has been discussed. The S45C steel easily pick-up hydrogen. But it is relatively insensitive to hydrogen absorption. This increased amount of hydrogen pick-up is firstly caused by large amount of pearlite structure. Further sulfur takes an important role for hydrogen pick up during cathodic charging. Hydrogen plays two kinds of roles during fatigue tests. One is hydrogen in dislocation core and makes plastic deformation easier in the first monotonic tension stage. The other is hydrogen/vacancy pair, and suppresses dislocation motion and increases stress amplitudes. The latter should be the fundamental issue for fatigue life. The amount of absorbed hydrogen itself is not only important, but the difference of hydrogen concentration between surface and inside is more important. When the fatigue crack initiates inside, the fatigue life is severely damaged to less than 10% of non-charged one. Taking the lower limit value of hydrogen to form internal fish-eye type cracking, S45C is less sensitive to hydrogen in cyclic straining. This comes from the pearlite structure that resists crack propagation.
机译:使用标准化的JIS S45C钢基本上研究了氢对低循环疲劳性能的影响。借助于氢热解吸分析,已经讨论了碳含量增加的影响。 S45C钢易拾氢。但它对氢吸收相对不敏感。这一增加量的氢拾取量首先由大量的珠光体结构引起。进一步的硫在阴极充电期间对氢拾取产生重要作用。氢气在疲劳试验期间发挥两种作用。一个是位错芯中的氢气,在第一单调张力阶段使塑性变形更容易。另一个是氢/空位对,并抑制位错运动并增加应力幅度。后者应该是疲劳生活的基本问题。吸收的氢本身的量不仅重要,而且表面和内部之间的氢浓度的差异更为重要。当疲劳裂纹引发内部时,疲劳寿命严重受损到不到10%的非收费。采用氢气的下限值形成内部鱼眼裂纹,S45C对循环紧张的氢气不太敏感。这来自耐磨损裂缝繁殖的珠光体结构。

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