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The Use of Circumferentially Notched Tension (CNT) Specimen for Fracture Toughness Assessment of High Strength Steels

机译:周向缺口拉伸(CNT)试样在高强度钢断裂韧性评估中的应用

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The fracture toughness of high strength steels is commonly determined by standard methods using Compact tension (CT) or Single edge notched bend (SENB) specimens. In the past the Circumferentially Notched Tension (CNT) geometry has been reported as a potential candidate for determining the fracture toughness of highly constrained cracks, theoretically approaching plane strain conditions, even for small specimen dimensions. The goal of this study is to develop a more fundamental understanding of the CNT methodology and apply it to high strength S690QT steel. An alternative prefatiguing method was developed and a straightforward relation was established between the Crack Mouth Opening Displacement (CMOD) and the Crack Tip Opening Displacement (CTOD). With the new experimental aspects, it proved feasible to determine upper-shelf CTOD values for S690QT steel, using small CNT specimens (D = 12 mm), tested at room temperature with a relative high loading rate. Furthermore, CNT low temperature values were found comparable to those of conventional SENB tests. Hence, the research demonstrates that CNT geometry allows for small scale high loading rate specimen testing, resulting in simple, rapid and cost effective fracture toughness determination.
机译:高强度钢的断裂韧性通常通过标准方法使用紧凑张力(CT)或单边缺口弯曲(SENB)样品确定。过去,据报道周向缺口张力(CNT)几何形状可用于确定高度受约束的裂纹的断裂韧性,即使是小尺寸的试样,从理论上讲也接近平面应变条件。这项研究的目的是对CNT方法学有更基本的了解,并将其应用于高强度S690QT钢。开发了一种替代的预疲劳方法,并在裂纹口张开位移(CMOD)和裂纹尖端张开位移(CTOD)之间建立了直接关系。在新的实验方面,事实证明,使用小型CNT样品(D = 12 mm)确定S690QT钢的上架CTOD值是可行的,并在室温下以相对较高的加载速率进行了测试。此外,发现CNT的低温值可与常规SENB测试相媲美。因此,研究表明,碳纳米管的几何形状允许进行小规模高负荷率的试样测试,从而可以简单,快速且经济高效地确定断裂韧性。

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