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首页> 外文期刊>International Journal of Fatigue >Comparison of genetic programming with conventional methods for fatigue life modeling of FRP composite materials
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Comparison of genetic programming with conventional methods for fatigue life modeling of FRP composite materials

机译:遗传编程与传统方法对FRP复合材料疲劳寿命建模的比较

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摘要

Genetic programming is used in this paper for modeling the fatigue life of several fiber-reinforced composite material systems. It is shown that if the genetic programming tool is adequately trained, it can produce theoretical predictions that compare favorably with corresponding predictions by other, conventional methods for the interpretation of fatigue data. For the comparison of results, curves produced by the genetic programming tool are plotted together with curves produced by three other commonly used methods for the analysis of composite material fatigue data: linear regression, Whitney's Weibull statistics and Sendeckyj's wear-out model. The modeling accuracy of this computational technique, whose application for this purpose is novel, is very high. The proposed modeling technique presents certain advantages compared to conventional methods. The new technique is a stochastic process that leads straight to a multi-slope S-N curve that follows the trend of the experimental data, without the need for any assumptions.
机译:本文使用遗传程序设计来模拟几种纤维增强复合材料系统的疲劳寿命。结果表明,如果对遗传编程工具进行了充分的培训,它可以产生理论预测,该理论预测可以与其他用于解释疲劳数据的常规方法的相应预测相媲美。为了比较结果,将遗传编程工具生成的曲线与其他三种用于复合材料疲劳数据分析的常用方法生成的曲线一起绘制出来:线性回归,Whitney的Weibull统计和Sendeckyj的磨损模型。这种计算技术的建模精度非常高,其在此方面的应用是新颖的。与常规方法相比,提出的建模技术具有某些优势。这项新技术是一种随机过程,无需任何假设即可直接形成遵循实验数据趋势的多斜率S-N曲线。

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