在寻找结构复合材料的虚拟测试中
1Teledyne Scientific Co., 1049 Camino Dos Rios, Thousand Oaks, CA 91360, USA. bcox@teledyne.com
骨折建模的进步,包括凝聚性和混合模型,正在改进复杂复合骨折的模拟. 这使得虚拟实验成为可能,减少了物理测试,并扩大了强硬结构材料的设计可能性.
科学领域:
- 材料科学 材料科学 材料科学
- 计算力学 计算力学 计算力学
- 工程断裂力学 工程断裂力学
背景情况:
- 在坚固的结构复合材料中模拟分散和复杂的断裂模式带来了重大挑战.
- 传统的方法经常与这些材料固有的复杂损伤机制作斗争.
研究的目的:
- 介绍对坚固结构复合材料的断裂建模的近期概念和计算进步.
- 突出这些进步如何促进更准确和更全面的材料故障模拟.
主要方法:
- 完善用于骨折模拟的凝聚性模型.
- 混合应力-张力和引-移位模型的制定.
- 在统一的计算框架中整合连续和离散损害表示.
- 开发用于多尺度损害分析的等级配方.
主要成果:
- 改进了复合材料中分散和复杂的断裂模式的模拟保真度.
- 在单个模型中,连续和离散损伤机制的成功组合.
- 能够追踪从宏观到原子尺度的损害的等级模型的出现.
结论:
- 断裂建模越来越能够模拟复杂的复合材料行为.
- 先进的模型作为有效的虚拟实验,减少了对广泛的物理测试的需求.
- 这些计算工具扩大了以前难以经验认证的复杂材料配置的设计空间.
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