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USE OF FORCES FROM INSTRUMENTED CHARPY V-NOTCH TESTING TO DETERMINE CRACK-ARREST TOUGHNESS

机译:使用来自仪表夏比V-intch测试的力量来确定裂缝搅动韧性

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The objective of this investigation is an estimation of the crack-arrest toughness, particularly of irradiated materials, from voltage versus time output of an instrumented tup during a test on a Charpy V-notch (CVN) specimen. This voltage versus time trace (which can be converted to force versus displacement) displays events during fracture of the specimen. Various stages of the fracture process can be identified on the trace, including an arrest point indicating arrest of brittle fracture. The force at arrest, F_a, versus test temperature, T, relationship is examined to explore possible relationships to other experimental measures of crack-arrest toughness such as the drop-weight nil-ductility temperature (NDT), or crack-arrest toughness, K_a. For a wide range of weld and plate materials, the temperature at which F_a = 2.45 kN correlates with NDT with a standard deviation, o, of about 11 K. Excluding the so-called "low upper-shelf energy" (USE) welds from the analysis resulted in F_a = 4.12 kN and σ = 6.6 K. The estimates of the correlation of the temperature for F_a = 7.4 kN with the temperature at 100-MPa·√m level for a mean American Society of Mechanical Engineers (ASME) type K_(Ia) curve through crack-arrest toughness values show that prediction of conservative values of K_a are possible.
机译:本研究的目的是估计抗静态材料,特别是辐照材料,从夏比V-intch(CVN)样本的测试期间仪表拉的电压与时间输出。该电压与时间迹线(可以转换为力与位移)在样本的骨折期间显示事件。可以在痕迹上鉴定断裂过程的各个阶段,包括指示脆性骨折的逮捕点。检测逮捕的力,F_A,测试温度,T,关系,以探讨与裂纹搅动韧性(如滴重值)(NDT)或裂纹韧性,K_A的其他实验措施的可能关系。对于各种焊接和板材,F_A = 2.45KN的温度与NDT与标准偏差的NDT相关,O约11k.不包括所谓的“低底架能量”(使用)焊接该分析导致F_A = 4.12KN和Σ= 6.6 K.温度为F_A = 7.4kN的温度与温度为100MPa·√M的温度,用于平均美国机械工程师(ASME)类型通过裂化搅动韧性值的K_(IA)曲线表明,可以预测K_A的保守值。

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