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首页> 外文期刊>Frattura e Integrita Strutturale >Effect of thermomechanical processing defects on fatigue and fracture behaviour of forged magnesium
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Effect of thermomechanical processing defects on fatigue and fracture behaviour of forged magnesium

机译:热机械加工缺陷对锻造镁的疲劳和断裂行为的影响

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The microstructural origins of premature fatigue failures were investigated on a variety of forged components manufactured from AZ80 and ZK60 magnesium, both at the test specimen level and the full-scale component level. Both stress and strain-controlled approaches were used to characterize the macroscopically defect-free forged material behaviour as well as with varying levels of defect intensities. The effect of thermomechanical processing defects due to forging of a industrially relevant full-scale component were characterized and quantified using a variety of techniques. The fracture initiation and early crack growth behaviour was deterministically traced back to a combination of various effects having both geometric and microstructural origins, including poor fusion during forging, entrainment of contaminants sub-surface, as well as other inhomogeneities in the thermomechanical processing history.??????????? At the test specimen level, the fracture behaviour under both stress and strain controlled uniaxial loading was characterized for forged AZ80 Mg and a structure-property relationship was developed. The fracture surface morphology was quantitatively assessed revealing key features which characterize the presence and severity of intrinsic forging defects.? A significant degradation in fatigue performance was observed as a result of forging defects accelerating fracture initiation and early crack growth, up to 6 times reduction in life (relative to the defect free material) under constant amplitude fully reversed fatigue loading.??????????? At the full-scale component level, the fatigue and fracture behaviour under combined structural loading was also characterized for a number of ZK60 forged components with varying levels of intrinsic thermomechanical processing defects. A novel in-situ non-contact approach (utilizing Digital-Image Correlation) was used as a screening test to establish the presence of these intrinsic defects and reliably predict their effect on the final fracture behaviour in an accelerated manner compared to conventional methods.
机译:研究了在试样水平和全规模组分水平的AZ80和ZK60镁中制造的各种锻造组件上进行了过早疲劳故障的微观结构起源。压力和应变控制的方法都用于表征宏观缺陷的无缺陷锻造材料行为以及不同水平的缺陷强度。使用各种技术表征和量化由于工业相关的全规模组分锻造而导致的热机械加工缺陷的影响。断裂引发和早期裂纹的生长行为是确定的,追溯到具有几何和微观结构起源的各种效果的组合,包括在锻造期间熔化,污染物亚表面夹带的差异较差,以及热机械加工历史中的其他不均匀性。 ??????????在试样水平下,应应力和应变控制的单轴负载下的断裂行为表征用于锻造AZ80mg,并且开发了结构性质关系。定量评估裂缝表面形态的揭示揭示关键特征,其表征内在锻造缺陷的存在和严重程度。由于锻造缺陷加速骨折启动和早期裂纹增长,因此观察到疲劳性能的显着降解,在恒定幅度下,寿命下降6倍(相对于缺陷自由材料)完全反转疲劳负荷。????? ??????在全规模的组分水平下,组合结构负载下的疲劳和断裂行为还表征了许多ZK60锻造部件,具有不同水平的内在热机械加工缺陷。用一种新的原位非接触方法(利用数码图像相关性)作为筛选试验,以建立这些内在缺陷的存在,并且与常规方法相比,通过加速方式可靠地预测它们对最终断裂行为的影响。

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