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'Collapsible' lightweight aggregate concrete. Part II: characterization under static and dynamic loadings

机译:“可塌陷”的轻质骨料混凝土。第二部分:静态和动态载荷下的表征

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摘要

In this work a granular cementitious composite has been developed, tailoring its performance to a low compressive strength and high deformation and energy dissipation capacity, which can be required to the material when employed in post-installed screeds for protection of structures and infrastructures against accidental actions such as impact and blast. The required level of performance can be achieved by uniform grain size distribution, paste content as low as minimum theoretical void ratio and low paste strength: it is believed that the synergy between the aforementioned three requirements can allow for energy dissipation capacity after paste cracking due to both rearrangement of grain meso-structure and, in case, grain crushing. After the mix design concept and optimization of the material composition, illustrated in the first part of this companion paper study, the mechanical performance of the composite under static and impact compressive loadings has been thoroughly characterized, as affected by mix-design variables, such as paste volume fraction, water to cement ratio and aggregate size. The reliability will thus be thoroughly checked, of the employed material concept, and the influence will also be investigated, if any, of specimen shape, size and boundary conditions.
机译:在这项工作中,已经开发出颗粒状水泥基复合材料,以使其性能适应低抗压强度,高变形和能量消散能力,在后安装熨平板中使用该材料时可能需要这种材料,以保护结构和基础设施免受意外作用例如撞击和爆炸。所需的性能水平可以通过均匀的粒度分布,低至最小理论空隙率的浆料含量和较低的浆料强度来实现:据信,上述三个要求之间的协同作用可以使由于以下原因导致的浆料开裂后的能量耗散能力得以实现晶粒细观结构的重新排列,以及晶粒破碎的情况。在配合研究的第一部分中说明了混合设计概念并优化了材料成分之后,复合材料在静态和冲击压缩载荷下的机械性能已被彻底表征,受到混合设计变量的影响,例如浆料体积分数,水灰比和骨料尺寸。因此,将彻底检查所用材料概念的可靠性,并且还将调查样品形状,尺寸和边界条件的影响(如果有)。

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