Analytical Study of J Estimation Formulas for Three-Point Bend Specimen : Series A : Solid-Mechanics, Strength of Materials

Fumio Hayakawa, Hideo Kobayashi
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Abstract

Rice has shown a simplified method for estimating the J-integral of a deeply cracked bend bar, that is J==2U/Bb where U is the area under the load versus the load point displacement curve, B is the specimen thickness and b is the remaining ligament. It has not been made clear, however, how deep is a deep enough crack for finite size specimens. In this study, an applicable range of the Rice formula for the three-point bend specimen used in the elastic-plastic fracture toughness JIC test is studied analytically. The Rice formula is compared directly with the definition of J as a change in potential energy. Results show that an assumption of a deep crack is required only for a linear elastic material and is not required necessarily for a rigid perfectly-plastic material. In order to obtain the quantitative data, the conditional equation is calculated numerically by varying the crack length for three materials; linear elastic, rigid perfectly-plastic and elastic perfectly-plastic. Results show that the Rice formula is valid when a/Wg0.4 for a linear elastic material. Based on the results, a recommended precrack length of the three-point bend specimen in the JIC test is newly proposed.
三点弯曲试样J估计公式的解析研究:A系列:固体力学,材料强度
Rice给出了一种估计深裂弯杆J积分的简化方法,即J==2U/Bb,其中U为受载面积与荷载点位移曲线,B为试件厚度,B为剩余韧带。然而,对于有限尺寸的试样来说,裂缝的深度到底有多深还没有弄清楚。本文对弹塑性断裂韧性JIC试验中三点弯曲试件Rice公式的适用范围进行了解析研究。将Rice公式与J作为势能变化量的定义直接比较。结果表明,深裂纹假设只适用于线弹性材料,而不适用于刚性的完全塑性材料。为了获得定量数据,通过改变三种材料的裂纹长度,对条件方程进行数值计算;线弹性、刚性完美塑性和弹性完美塑性。结果表明,对于线弹性材料,当a/Wg0.4时,Rice公式是有效的。在此基础上,提出了JIC试验中三点弯曲试件预裂的推荐长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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