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首页> 外文期刊>International Journal of Fatigue >Fatigue behavior of additively manufactured 17-4 PH stainless steel: Synergistic effects of surface roughness and heat treatment
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Fatigue behavior of additively manufactured 17-4 PH stainless steel: Synergistic effects of surface roughness and heat treatment

机译:瘦性地制造的疲劳行为17-4 pH不锈钢:表面粗糙度和热处理的协同作用

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摘要

In this study, the synergistic effects of heat treatment and surface roughness on the microstructure and mechanical properties of laser powder bed fusion (L-PBF) 17-4 precipitation hardening (PH) stainless steel (SS) were investigated under monotonic tensile and fatigue loading. Five different heat treatment procedures, with and without primary solution treating cycle, i.e. Condition A (CA), were applied on L-PBF specimens in both as-built and machined surface conditions. Monotonic tensile tests were conducted at a strain rate of 0.001 s(-1) and, uniaxial fully-reversed (R = -1) strain-controlled fatigue tests were carried out at various strain amplitudes ranging from 0.001 to 0.004 mm/mm. The heat treatment procedures were found to have a significant effect on the microstructure and mechanical properties of L-PBF 17-4 PH SS with the CA thermal cycle improving the fatigue strength considerably. This is due to the more homogenized microstructure obtained after performing the CA thermal cycle. In addition, eliminating the effect of surface roughness by machining and polishing processes enhanced the fatigue strength of the material, somewhat comparable to the one of the wrought counterpart. Fractography analysis revealed surface micro-notches and internal pores as the primary crack initiating factors in the as-built and machined specimens, respectively.
机译:在本研究中,在单调拉伸和疲劳负载下研究了热处理和表面粗糙度对激光粉末融合(L-PBF)17-4沉淀硬化(PH)不锈钢(PH)不锈钢(PH)不锈钢(PH)不锈钢(PH)的协同作用。五种不同的热处理程序,具有和无初级溶液处理循环,即条件a(CA),在竣工和机加工表面条件下应用于L-PBF标本。单调拉伸试验以0.001秒(-1)的应变速率进行,并且在不同于0.001至0.004mm / mm的各种应变幅度下进行单轴完全反转(R = -1)应变控制的疲劳试验。发现热处理程序对L-PBF 17-4 pH SS的微观结构和机械性能具有显着影响,随着Ca热循环显着提高了疲劳强度。这是由于在进行CA热循环之后获得的更均匀化的微观结构。此外,通过加工和抛光工艺消除了表面粗糙度的效果,增强了材料的疲劳强度,稍微与锻造对应物中的一个相当。 Fractography分析分别显示出表面微缺口和内部孔隙,分别为竣工和机加工标本中的主要裂纹启动因子。

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