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A hybrid approach to determine fracture resistance for mode I and mixed-mode I and II fracture specimens

机译:确定I型以及I和II型混合断裂试样的抗断裂强度的混合方法

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摘要

This paper proposes a hybrid approach to determine the fracture resistance for mode I and mixed-mode I and II fracture specimens, combining both numerically computed and experimentally measured load (P) versus load-line displacement (LLD or A) relationships for metallic fracture specimens. The hybrid approach predicates on the same principle as the conventional, multiple-specimen experimental method in determining the energy release rate. The hybrid method computes the P-A curves from multiple finite element (FE) models, each with a different crack depth. The experimental procedure measures the P-A curve from a standard fracture specimen with a growing crack. The intersections between the experimental P-A curve and the numerical P-A curves from multiple FE models dictate the LLD levels to compute the strain energy (U) using the area under the numerical P-A curves. This method provides accurate estimates of the J resistance data for both SE(B) specimen under mode I loading and single-edge notched specimens under mixed-mode I and II loading.
机译:本文提出了一种混合方法来确定I型和I型和II型混合断裂试样的断裂抗力,将数值计算和实验测量的载荷(P)与载荷线位移(LLD或A)的关系结合起来。在确定能量释放速率时,混合方法基于与常规多样本实验方法相同的原理。混合方法从多个具有不同裂纹深度的有限元(FE)模型计算P-A曲线。实验程序从裂纹不断扩展的标准断裂样品中测量P-A曲线。来自多个有限元模型的实验P-A曲线与数字P-A曲线之间的交点规定了LLD级别,以使用数字P-A曲线下方的面积来计算应变能(U)。该方法可为I(I)模式下的SE(B)样品和I和II混合模式下的单边带缺口样品的J电阻数据提供准确的估算值。

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