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Experimental and numerical determination of relationships between process variables of thermo-mechanical material treatment and mechanical properties in graded mixed microstructures with bimodal grain size distribution

Experimental and numerical determination of relationships between process variables of thermo-mechanical material treatment and mechanical properties in graded mixed microstructures with bimodal grain size distribution
热机械材料处理工艺变量与双峰晶粒尺寸分布的分级混合微观结构机械性能之间关系的实验和数值确定
批准号:
390307525
负责人:
Dr.-Ing. Ismail Caylak, since 3/2024
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

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Dr.-Ing. Ismail Caylak, since 3/2024的其他基金

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中文摘要
翻译
为了负责任地使用资源和减少运输部门的二氧化碳排放,组件专门针对相应的负载情况进行调整。对于钢,这可以通过分级微观结构和晶粒尺寸来实现。热-机械工艺链使得可以设置不同的混合微观结构和不均匀的晶粒尺寸,即所谓的双峰晶粒尺寸分布。后者可以提高延展性、疲劳强度和腐蚀性能。该研究项目的总体目标是基于模拟确定热机械材料加工的工艺变量与所产生的具有双峰粒度分布的分级混合微观结构之间的关系。对于Robbie 900 ®钢,通过预亚温退火和冷成型,然后再结晶退火来实现这一点。通过扩展第一个资助期开发的光学测量方法,将在临界区退火期间进行奥氏体含量的定量测定。在数值研究领域,相场法被用来建立一个模拟微观结构转变的材料模型。为此目的,应用已经用于相变的概念。实验结果与数值结果之间的比较应通过积分量进行。通过模拟,将根据双峰微观结构的定量成分确定强度和延展性的负载适应组合。
英文摘要
For responsible use of resources and reduction of CO2 emissions in the transport sector, components are specifically adapted to the respective load case. For steels, this can be achieved by grading the microstructure and grain sizes. A thermo-mechanical process chain makes it possible to set different mixed microstructures and heterogeneous grain sizes, so-called bimodal grain size distributions. The latter can improve ductility, fatigue strength and corrosion properties.The overall objective of the research project is the simulation-based determination of the relationships between the process variables of thermo-mechanical material processing and the resulting graded mixed microstructure with bimodal grain size distribution. This is to be achieved for Robusal900® steel by a preliminary intercritical annealing and cold forming followed by recrystallization annealing. By extending the optical measuring method developed in the first funding period, a quantitative determination of the austenite content during intercritical annealing is to be carried out. In the field of numerical investigations, the phase field method is intended to be used to develop a material model for simulating the microstructural transformations. For this purpose, a concept is applied which has already been used for phase transformations. The comparison between experimental and numerical results shall be done by integral quantities. Through the simulation, load-adapted combinations of strength and ductility will be determined based on the quantitative compositions of the bimodal microstructure.
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