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Effects of dynamic strain-aging and cyclic loading on fracture behavior of ferritic steels

机译:动态应变老化和循环加载对铁素体钢断裂行为的影响

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Ferritic steels commonly used for pressure vessels and reactor supports in light water reactors (LWRs) exhibit dynamic strain aging (DSA) resulting in decreased ductility and toughness. In addition, recent work indicated decreased toughness during reverse-cyclic loading that has implications on reliability of these structures under seismic loading conditions. We summarize some of our recent work on these aspects along with synergistic effects, of interstitial impurity atoms (IIAs) and radiation induced point defects, that result in interesting beneficial effects of radiation exposure at appropriate temperature and strain-rate conditions. Radiation-defect interactions were investigated on pure iron, Si-killed mild steel, A533B, A516, A588 and other reactor support and vessel steels. In all cases, DSA is seen to result in decreased ductility accompanied by increased workhardening parameter. In addition to mechanical property tests, fracture toughness is investigated on both A533B and A516 steels. While dips in fracture toughness are observed in A533B steel in the DSA region, A516 steel exhibited at best a plateau. The reasons could lie in the applied strain-rates; while J1c tests were performed on A533B steel using 3-point bend tests on Charpy type specimens, Cr specimens were used for A516 steel. However, tensile and 3-point bend tests on similar grade A516 steel of different vintage did exhibit distinct drop in the energy to fracture. Load-displacement curves during J1c tests on CT specimens did show load drops in the DSA regime. The effect of load ratio (R) on J versus load-line displacement curves for A516 steel is investigated from +1 to -1 at a fixed normalized incremental plastic displacement of 0.1 (R=1 corresponds to monotonic loading). We note that J-values are significantly reduced with decreasing load ratio. The workhardening characteristics on the fracture surfaces were studied following monotonic and cyclic loading fracture tests along with the stress-field analyses. From the hardness and the ball-indentation tests, it was shown that decreased load ratio (R) leads to more strain hardening at the crack tip resulting in decreased fracture toughness. From the stress field analysis near the crack tip of a compact tension fracture toughness test specimen, a cycle of tensile and compressive loads is seen to result in tensile residual stresses (which did not exist at the crack tip before). These results are important to evaluations of flawed-structures under seismic loading conditions, i.e. Leak-Before-Break (LBB) and in-service flaw evaluation criteria where seismic loading is addressed. In addition, studies on fast vs total (thermal+fast) neutron spectra revealed unexpected results due to the influence of radiation exposure on source hardening component of
机译:通常用于压力容器和反应器的铁素体钢在光水反应器(LWRS)中载有动态应变老化(DSA),导致延展性和韧性降低。此外,最近的工作表明逆转循环载荷期间的韧性降低,这对这些结构的可靠性有影响来了解地震载荷条件下。我们概述了我们最近的一些方面的工作以及具有间隙杂质原子(IIA)和辐射诱导点缺陷的协同作用,这导致辐射暴露在适当温度和应变率条件下的有趣效果。研究了纯铁,Si杀死的温和钢,A533B,A516,A588和其他反应器支撑和容器钢上的辐射缺陷相互作用。在所有情况下,DSA被认为导致延展性降低,伴随着增加的工作和加工参数。除了机械性能试验之外,在A533B和A516钢上研究了断裂韧性。虽然在DSA地区的A533B钢铁中观察到断裂韧性的倾角,但A516钢呈现出最佳高原。原因可以位于应用的应变率;虽然J1C测试在A533B钢上使用3点弯曲试验在夏比样品上进行,但是CR标本用于A516钢。然而,不同复古的类似级别A516钢等级A516钢的拉伸和3点弯曲试验表现出明显的能量下降到骨折。在CT标本上的J1C测试期间的负载 - 位移曲线确实显示了DSA制度中的负载下降。在固定归一化的增量塑性位移0.1(R = 1对应于单调负载)的固定归一化的增量塑性位移中,研究了负载比(R)对A516钢的载荷线位移曲线的影响。我们注意到,随着负荷比率降低,j值显着降低。在单调和循环载荷骨折试验之后研究了骨折表面上的骨干特性以及应力场分析。从硬度和球形压痕试验中,显示出降低的负载比(R)导致裂纹尖端的更高的菌株硬化,导致断裂韧性降低。从紧凑张力裂缝韧性试样附近的应力场分析,看起来循环的拉伸和压缩载荷导致拉伸残余应力(其之前不存在于裂缝尖端)。这些结果对于对地震负载条件下的缺陷结构的评估很重要,即泄漏前泄漏(LBB)和在职的漏洞评估标准被解决。此外,由于辐射曝光对源硬化组分的影响,快速VS总(热+快)中子谱的研究显示出意外结果

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