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SFB 926: Microscale Morphology of Component Surfaces (MICOS)

SFB 926: Microscale Morphology of Component Surfaces (MICOS)
SFB 926:组件表面的微尺度形态学 (MICO)
批准号:
172116086
负责人:
金额:
$0.0万
依托单位国家:
德国
项目类别:
Collaborative Research Centres
财政年份:
2011
资助国家:
德国
项目状态:
已结题
起止时间:
2010-12-31 至 2022-12-31

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中文摘要
翻译
表面对部件的功能和寿命有决定性的影响。在CRC 926合作研究中心,来自机械工程、工艺工程和表面物理的科学家研究具有特定功能的部件表面的制造、表征和应用。研究的重点是在微观尺度上的表面形态,其中的形态是由几何形状(地形),以及表面的微观结构和物理化学性质来定义的。CRC 926的研究旨在建立制造工艺、部件表面形貌和部件性能之间的关系。这种关系使设计和制造具有所需性能的部件成为可能,这些特性是基于部件表面形貌在微观尺度上的新特征。CRC 926以矩阵结构组织,项目领域包括:•建模和仿真•制造和实验表征•应用•转移(与工业伙伴联合研究)和重点领域:•组件表面的微观结构•组件表面的颗粒•组件表面的相变。CRC 926的科学研究旨在在工业制造和组件应用中创造创新,关键是其表面在微观尺度上的形态。
英文摘要
The surface has a decisive influence on the functionality and lifetime of components. In the collaborative research center CRC 926, scientists from mechanical engineering, process engineering, and surface physics investigate manufacturing, characterization, and application of component surfaces with specific functionali-ties. The research is focused on the morphology of the surfaces on the microscale, where the morphology is defined by the geometrical shape (topography), and the microstructural and physico-chemical properties of the surface. The research in CRC 926 aims at establishing relations between the manufacturing process, the component surface morphology, and the component’s properties. Such relations enable designing and manufacturing components with desired properties based on new features of the component surface mor-phology on the microscale.CRC 926 is organized in a matrix structure with the project areas:• Modeling and simulation• Manufacturing and experimental characterization• Applications • Transfer (joint research with industrial partners)and the focus areas:• Micro-structuring of component surfaces • Particles at component surfaces• Phase transformations at component surfaces. The scientific research in CRC 926 aims at creating innovation in the industrial manufacturing and application of components for which the key is the morphology of their surface on the microscale.
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