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Two-step gradation of particle size in an inorganic-organic hybrid

机译:无机-有机杂化体的粒度两步分级

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An inorganic-organic hybrid (IOH) of silica particulates and polyethylene (PE) was investigated, where silica was employed as an analogue to lunar soil. The objective was to search for the optimum materials design strategy for “lunar cements” – infrastructural materials based on locally harvestable resources on the Moon. If the silica particulate size was uniform, the flexure strength of the IOH decreased quite linearly with the PE content. With a two-step size gradation of silica particulates, the flexure strength of the silica-PE IOH could be much improved, higher than that of Portland cements with only 4 wt% of PE. A threshold PE content around 6 wt% existed. Above the threshold, the PE content has only a secondary effect on the IOH flexure strength; below the threshold, the IOH flexure strength decreases abruptly. In order to further enhance the IOH strength and to reduce the binder content, this threshold value must be minimized.
机译:研究了二氧化硅颗粒和聚乙烯(PE)的无机-有机杂化物(IOH),其中二氧化硅被用作月球土壤的类似物。目的是寻找“月牙水泥”的最佳材料设计策略,即基于月球当地可采资源的基础设施材料。如果二氧化硅颗粒尺寸均匀,则IOH的挠曲强度会随着PE含量线性下降。通过二氧化硅颗粒的两步分级,可以大大提高二氧化硅-PE IOH的挠曲强度,高于仅含4 wt%PE的波特兰水泥的挠曲强度。存在约6wt%的PE阈值。高于阈值,PE含量仅对IOH挠曲强度产生次要影响;低于阈值,IOH弯曲强度突然降低。为了进一步提高IOH强度并减少粘合剂含量,必须将该阈值最小化。

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