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Advances in Integrated Computational Materials Engineering 'ICME'

机译:综合计算材料工程“ICME”进展

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The methods of Integrated Computational Materials Engineering that were developed and successfully applied for Aluminium have been constantly improved. The main aspects and recent advances of integrated material and process modeling are simulations of material properties like strength and forming properties and for the specific microstructure evolution during processing (rolling, extrusion, annealing) under the influence of material constitution and process variations through the production process down to the final application. Examples are discussed for the through-process simulation of microstructures and related properties of Aluminium sheet, including DC ingot casting, pre-heating and homogenization, hot and cold rolling, final annealing. New results are included of simulation solution annealing and age hardening of 6xxx alloys for automotive applications. Physically based quantitative descriptions and computer assisted evaluation methods are new ICME methods of integrating new simulation tools also for customer applications, like heat affected zones in welding of age hardening alloys. The aspects of estimating the effect of specific elements due to growing recycling volumes requested also for high end Aluminium products are also discussed, being of special interest in the Aluminium producing industries.
机译:综合计算材料工程方法经常提高了开发和成功施加的铝。综合材料和过程建模的主要方面和最近进步是仿真性质,如强度和成型性能,以及在通过生产过程的影响和工艺变化的过程中加工(轧制,挤出,退火)期间的特定微观结构演变到最后的申请。用于铝板的微观结构和相关性能的通阱模拟,包括DC铸锭铸造,预热和均质化,冷热轧制,最终退火。新的结果包括为汽车应用6xxx合金的模拟解决方案退火和年龄硬化。基于物理的定量描述和计算机辅助评估方法是新的ICME方法,用于整合新的仿真工具,用于客户应用,如焊接年龄硬化合金焊接的热影响区域。还讨论了估算特定元素效果的方面,因为还需要对高端铝产品的日益增长的铝产品进行了不断增长的铝制品,对铝生产行业具有特别兴趣。

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