首页> 外文会议>Symposium on magnesium technology;TMS annual meeting exhibition >THE NEXT GENERATION OF MAGNESIUM BASED MATERIAL TO SUSTAIN THE INTERGOVERNMENTAL PANEL ON CLIMATE CHANGE POLICY
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THE NEXT GENERATION OF MAGNESIUM BASED MATERIAL TO SUSTAIN THE INTERGOVERNMENTAL PANEL ON CLIMATE CHANGE POLICY

机译:下一代基于镁的材料用于维持政府间气候变化政策

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Current Mg alloys have several drawbacks that limit wide and profitable utilization in the industrial sector. From an environmental point of view, lighter metals like magnesium are currently considered unclean products as they require energy-intensive. But they have been proven to be 'clean' in the transport sector, as they can reduce fuel consumption. Here the potential of magnesium based materials is addressed through double-tasking: a) establish innovative lean-manufacturing processes, avoid the classic melting step to substantially reduce carbon footprint of the magnesium products; b) encourage the using of no-melt processes, realizing high-resistant ultra-fined microstructures. The 'Green Metallurgy 2020', a project funded by European Community in the LIFE+ 2009 Program, started in September 2010, coordinated by Politecnico di Milano (ITA) aims to scale to industrial route such impressive results experienced by CENIM (SPA) for some ultrafine bi-phase Mg -Zr (-Y) produced by no-melting route that achieved up to 400 MPa UTS and elongation capability of about 13%.
机译:当前的镁合金具有几个缺点,这些缺点限制了在工业领域中广泛的和有利可图的利用。从环境的角度来看,镁等轻金属目前被认为是不清洁的产品,因为它们需要消耗大量能源。但是,由于它们可以减少燃料消耗,因此已被证明在运输部门是“清洁的”。在这里,通过双重任务解决了镁基材料的潜力:a)建立创新的精益生产工艺,避免经典的熔化步骤,从而大幅减少镁产品的碳足迹; b)鼓励使用不熔融工艺,实现高强度的超细微结构。欧洲共同体在LIFE + 2009计划中由欧洲共同体资助的“绿色冶金2020”项目于2010年9月启动,由米兰理工大学(ITA)协调进行,旨在将工业化规模扩大到CENIM(SPA)所获得的令人印象深刻的超细粉通过不熔融路线生产的双相Mg -Zr(-Y),可实现高达400 MPa的UTS和约13%的伸长率。

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