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Control of the carbon content in metal hollow sphere structures by variation of the debindering conditions

机译:通过脱脂条件的变化控制金属中空球体结构中的碳含量

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The present paper highlights results from the priority program "Cellular Metals" of the Deutsche Forschungsgemeinschaft (DFG SPP 1075). The knowledge of the mechanical properties of packed hollow spheres is essential for constructing lightweight hollow sphere structures with an adjustable strength to weight ratio. For a better understanding of the mechanics of hollow sphere structures, it is important to determine the microstructure and the mechanical properties of the cell wall. Due to the amount of organic components needed during the manufacturing of the hollow spheres, the control of carbon content in the final product is very important. At high carbon contents, the formation of carbides may lead to embrittlement and insufficient corrosion resistance. Carbothermic reduction with Fe_2O_3 addition in the cell walls proved to be a promising approach for the effective removal of carbon. Compression tests showed no effect of the carbon removal in the energy consumption of hollow sphere structures produced with the IFAM (Fraunhofer Institute for Manufacturing and Advanced Materials ) route.
机译:本文突出了Deutsche Forschungsgemeinschaft(DFG SPP 1075)的优先程序“细胞金属”的结果。填充空心球的力学性能的知识对于构造具有可调节强度的轻质中空球结构来重量比是必不可少的。为了更好地理解中空球体结构的机制,重要的是确定细胞壁的微观结构和机械性能。由于在空心球的制造过程中所需的有机成分的量,最终产品中的碳含量控制非常重要。在高碳含量下,碳化物的形成可能导致脆化和耐腐蚀性不足。用FE_2O_3在细胞壁中添加CARbothothothotmic减少被证明是有效去除碳的有希望的方法。压缩试验显示碳去除在用IFAM(Fraunhofer制造业和先进材料)路线中生产的中空球体结构的能量消耗中的影响。

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