强度因子
结构工程
断裂力学
断裂(地质)
软件
巴黎法
焊接
裂缝闭合
压力(语言学)
疲劳极限
计算机科学
材料科学
工程类
机械工程
复合材料
语言学
哲学
程序设计语言
作者
Swati Puranik,I A Pathan,Swapnil Shinde,Nitesh Kumar Soni,Andrew Kindleysides
出处
期刊:SAE technical paper series
日期:2024-01-16
摘要
<div class="section abstract"><div class="htmlview paragraph">Cracks on metallic components may appear due to manufacturing, handling, installation, repair, welding etc. and are controlled by quality documents. However, if cracks violate the limit defined in quality document, then either parts will be scraped or will need additional evaluation through detailed fracture mechanic’s approach. The initial size and shape of a crack, part geometry and loading, highly impacts the behavior of a crack’s growth and remaining useful life. Industry standard software like ANSYS, AFGROW, Franc3D, etc. offer the solution to estimate the stress intensity factor and crack growth rate. However, these software’s have their limitation and start showing the deviation for complex geometry and loading scenario.</div><div class="htmlview paragraph">Study has been performed using Linear Elastic Fracture Mechanics (LEFM) to understand the effect of crack size, crack shape, multiple cracks at one location, complex geometry and stress gradient on a crack’s growth behavior and provides the solution to handle these complexities using simplified approach to overcome software limitations.</div></div>
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