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Structure and Compressive Properties of Invar-Cenosphere Syntactic Foams

机译:Inth-Cenosphere句法泡沫的结构和压缩性能

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The present study investigates the mechanical performance of syntactic foams produced by means of the metal powder injection molding process having an Invar (FeNi36) matrix and including cenospheres as hollow particles at weight fractions (wt.%) of 5 and 10, respectively, corresponding to approximately 41.6 and 60.0 vol.% in relation to the metal content and at 0.6 g/cm 3 hollow particle density. The synthesis process results in survival of cenospheres and provides low density syntactic foams. The microstructure of the materials is investigated as well as the mechanical performance under quasi-static and high strain rate compressive loads. The compressive stress-strain curves of syntactic foams reveal a continuous strain hardening behavior in the plastic region, followed by a densification region. The results reveal a strain rate sensitivity in cenosphere-based Invar matrix syntactic foams. Differences in properties between cenosphere- and glass microsphere-based materials are discussed in relation to the findings of microstructural investigations. Cenospheres present a viable choice as filler material in iron-based syntactic foams due to their higher thermal stability compared to glass microspheres.
机译:本研究研究了通过具有INVIR(FENI36)基质的金属粉末注射成型工艺产生的句法泡沫的机械性能,并且包括分别为5和10的重量级分(wt.%)的中空颗粒的延伸粒子。大约41.6和60.0体积。%与金属含量和0.6g / cm 3中空颗粒密度相关。合成过程导致车簧的存活率并提供低密度的局部泡沫。研究了材料的微观结构以及准静态和高应变率压缩载荷下的机械性能。句法泡沫的压缩应力 - 应变曲线揭示塑料区域中的连续应变硬化行为,然后是致密化区域。结果揭示了基于Cenosphere的Invar矩阵句法泡沫的应变率敏感性。基于光圈和玻璃微球基材料之间的特性差异是关于微观结构调查的研究结果。由于与玻璃微球相比,由于其较高的热稳定性,Cenospheres在铁基语法泡沫中作为填充材料提供了可行的选择。

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