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首页> 外文期刊>International Journal of Solids and Structures >Effect of heating-rate on the thermomechanical behavior of aluminum alloy LY12 and a phenomenological description
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Effect of heating-rate on the thermomechanical behavior of aluminum alloy LY12 and a phenomenological description

机译:升温速率对LY12铝合金热机械行为的影响及现象学描述

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摘要

The effect of heating-rate and its history on the thermomechanical behavior of aluminum alloy LY12 is investigated with a Gleeble 1500 thermal-mechanical material testing system. It was found that the material experiencing higher heating-rate histories possesses lower rupture strength, and the pre-stressed material fails at a lower temperature when it is heated at a higher heating-rate. The SEM observation shows that, in general, there are more defects in the material subjected to higher heating-rates or higher heating-rate histories. The concept of local thermal inconsistency is introduced to account for the effect of heating-rate on mechanical properties, such as hardening and damage. A constitutive model is proposed for the description of the behavior of the materials subjected to thermomechanical loading incorporating fast heating, which can take into account the effect of plastic deformation, temperature and its rate, and recrystallization on the mechanical property, hardening and damage of the material. The constitutive behavior of LY12 subjected to uniaxial thermomechanical loading incorporating fast heating is described, and the comparison with the experimental results demonstrates the validity of the proposed model. (c) 2005 Elsevier Ltd. All rights reserved.
机译:利用Gleeble 1500热机械材料测试系统研究了升温速率及其历史对铝合金LY12热机械行为的影响。发现具有较高加热速率历史的材料具有较低的断裂强度,并且当以较高加热速率加热时,预应力材料在较低温度下会失效。 SEM观察表明,通常,材料在经受更高加热速率或更高加热速率历史的情况下存在更多的缺陷。引入局部热不一致的概念是为了考虑加热速率对机械性能(例如硬化和损坏)的影响。提出了一个本构模型来描述承受快速加热的热机械载荷的材料的行为,该模型可以考虑塑性变形,温度及其速率以及再结晶对机械性能,硬化和损伤的影响。材料。描述了LY12在单轴热机械载荷作用下快速加热的本构行为,并与实验结果进行了比较,证明了该模型的有效性。 (c)2005 Elsevier Ltd.保留所有权利。

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