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Tailoring microstructures: A technical note on an eco-friendly approach to weight reduction through heat treatment

机译:定制微结构:有关通过热处理减轻重量的环保方法的技术说明

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摘要

The number of vehicles, globally, will approach two billion by the year 2030. The impact which these vehicles will have on world energy consumption will be substantial. In anticipation, auto companies are putting a lot of effort into reducing the weight of these vehicles. Several car manufacturers have set up lightweight structure divisions and laboratories, because the weight taken out of a car improves its performance, handling and fuel economy. Automakers are investigating many options for weight reduction, including replacing steel with other, more lightweight, materials such as aluminum or carbon fiber, or improving the design of each component. This technical note proposes a unique method of weight reduction through specialized heat treatment, while maintaining steel as the base of the body-in-white (BIW) and suspension system. The method proposed here is to evaluate the functions of the parts and the types of stress experienced at particular locations and to subsequently select the appropriate microstructure. Therefore, one part does not necessarily have one type of homogeneous microstruc-ture, instead it has multi-microstructures. This technical note attempts to contribute to a new concept for weight reduction without the need for material substitution for lightweight constructions. Instead, it proposes an economically reasonable microstructure tailoring with heat treatment manipulation. As an example, a stabilizer bar is evaluated and a homogenization technique is suggested for computing the properties of the object.
机译:到2030年,全球车辆数量将接近20亿。这些车辆对世界能源消耗的影响将是巨大的。可以预见的是,汽车公司正在努力减轻这些车辆的重量。几家汽车制造商建立了轻型结构部门和实验室,因为从汽车上卸下的重量可以改善其性能,操控性和燃油经济性。汽车制造商正在研究减轻重量的许多选择,包括用其他更轻便的材料(例如铝或碳纤维)代替钢,或改进每个组件的设计。本技术说明提出了一种通过特殊热处理减轻重量的独特方法,同时将钢作为白车身(BIW)和悬挂系统的基础。这里提出的方法是评估零件的功能和在特定位置承受的应力类型,然后选择合适的微观结构。因此,一个部分不一定具有一种均质的微观结构,而是具有多种微观结构。本技术说明试图为减轻重量的新概念做出贡献,而无需为轻质结构替换材料。取而代之的是,它提出了通过热处理操作进行经济上合理的微结构调整。例如,评估稳定杆并建议使用均化技术来计算对象的属性。

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