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Toughness of fibre reinforced hydraulic lime mortar. Part-2: Dynamic response

机译:纤维增强液压石灰砂浆的韧性。第2部分:动态响应

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The seismic rehabilitation of historical masonry buildings necessitates a quantitative understanding of the repointing mortar under variable strain rates. In Part-1 of this paper, plain and fibre reinforced hydraulic lime mortar specimens were examined under compression, flexure and direct shear to evaluate the post-crack response under quasi-static loading. It was seen that although the fibres enhance the flexural toughness of hydraulic lime mortar, the material is weakest in Mode I fracture. In Part-2 of this paper, the authors describe the strain rate sensitivity of hydraulic lime mortar on the basis of impact testing of notched beams. The mixes were identical to those examined in Part-1, and the dynamic response was evaluated using a drop-weight impact machine for strain rates in the range of 10~(-6) to 10 s~(-1) The authors found that compared to fibre reinforced Portland cement-based mortar and concrete, the flexural response of hydraulic lime mortar is more sensitive to strain rate.
机译:对历史悠久的砖石建筑进行地震修复后,需要对在可变应变率下的砂浆重新进行定量了解。在本文的第1部分中,对普通和纤维增强的水硬石灰砂浆标本进行了压缩,挠曲和直接剪切试验,以评估准静态载荷下的裂纹后响应。可以看出,尽管纤维增强了水硬石灰砂浆的抗弯韧性,但该材料在模式I断裂中最弱。在本文的第2部分中,作者根据缺口梁的冲击试验描述了水硬石灰砂浆的应变率敏感性。混合物与在第1部分中检查的混合物相同,并使用落锤冲击机评估了应变率在10〜(-6)至10 s〜(-1)范围内的动态响应。与纤维增强的波特兰水泥基砂浆和混凝土相比,水硬石灰砂浆的挠曲响应对应变速率更敏感。

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