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逆方法,从仪器化槽试验中确定时间依赖性和周期性塑料材料行为的参数
Hafiz Muhammad Sajjad1, Thomas Chudoba2, Alexander Hartmaier1
1Interdisciplinary Centre for Advanced Material Simulation (ICAMS), Ruhr-Universität Bochum, Universitätsstr 150, 44801 Bochum, Germany.
Materials (Basel, Switzerland)
|August 29, 2024
概括
本研究引入了一种反向分析方法,结合仪器缩入试验和模拟,以确定依赖时间的材料特性. 这种方法成功地描述了马氏体钢的粘性塑料行为和加工硬化.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 计算力学 计算力学 计算力学
背景情况:
- 仪器化痕测试是评估材料硬度和弹性特性的一个关键方法.
- 先进的技术将入与模拟相结合,以确定复杂的材料特征,如产强度和加工硬化.
- 反向分析提供了一种强大的方法来提取材料参数,通过最大限度地减少模拟和实验缩数据之间的差异.
研究的目的:
- 开发一个仪器缩测试的协议和一个反向分析程序.
- 为了获得材料参数的时间依赖的粘性塑料行为和动态/同位体工作硬化.
- 为了比较两个参数识别的优化策略.
主要方法:
- 开发了一种仪器化痕测试的协议.
- 实施了反向分析程序,从实验数据中确定材料参数.
- 假设已知的弹性特性和初始收益率强度,可以独立确定.
- 采用并比较了两个不同的参数识别优化策略.
主要成果:
- 成功获得了依赖时间的粘性塑料行为的材料参数.
- 通过开发的反向方法来表征动力学和同源性工作硬化.
- 在马氏体钢中应用了新的反向方法,证明了它的有效性.
结论:
- 开发的反向分析方法有效地确定了依赖时间的粘性塑料材料参数和加工硬化特性.
- 该协议通过对马氏体钢的应用成功验证.
- 这种方法提高了用于全面材料表征的内测试的能力.
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