首页> 外文会议>Conference on Recent Developments in High Strain Rate Mechanics and Impact Behavior of Concrete >On the Rate Sensitive Fracture Behavior of Strain-Hardening Cement-Based Composites (SHCC) Depending on Fiber Type and Matrix Composition
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On the Rate Sensitive Fracture Behavior of Strain-Hardening Cement-Based Composites (SHCC) Depending on Fiber Type and Matrix Composition

机译:基于纤维型和基质组合物的应变硬化水泥基复合材料(SHCC)的速率敏感断裂行为

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Strain-hardening cement-based composites (SHCC) represent a special type of fiber reinforced concretes, whose post-elastic tensile behavior is characterized by the formation of multiple, fine cracks under increasing loading up to failure localization. The high inelastic deformability in the strain-hardening phase together with the high damage tolerance and energy dissipation capacity make SHCC promising for applications involving dynamic loading scenarios, such as earthquake, impact or blast. However, the main constitutive phases of SHCC, i.e. matrix, fibers and interphase between them, are highly rate sensitive. Depending on the SHCC composition, the increase in loading rates can negatively alter the balanced micromechanical interactions, leading to a pronounced reduction in strain capacity. Thus, there is need for a detailed investigation of the strain rate sensitivity of SHCC at different levels of observation for enabling a targeted material design with respect to high loading rates. The crack opening behavior is an essential material parameter for SHCC, since it defines to a large extent the tensile properties of the composite. In the paper at hand, the rate effects on the crack opening and fracture behavior of SHCC are analyzed based on quasi-static and impact tensile tests on notched specimens made of three different types of SHCC. Two SHCC consisted of a normal-strength cementitious matrix and were reinforced with polyvinyl-alcohol (PVA) and ultra-high molecular weight polyethylene (UHMWPE) fibers, respectively. The third type consisted of a high-strength cementitious matrix and UHMWPE fibers. The dynamic tests were performed in a split Hopkinson tension bar and enabled an accurate description of the crack opening behavior in terms of force-displacement relationships at displacement rates of up to 6 m/s (19.7 ft/s).
机译:应变硬化水泥基复合材料(SHCC)代表一种特殊类型的纤维增强混凝土,其后弹性拉伸行为的特征在于在增加加载到故障定位的增加下形成多个细裂缝。应变 - 硬化相中的高非弹性变形性与高损伤的耐受性和能量耗散能力使SHC为涉及动态加载方案的应用,例如地震,影响或爆炸。然而,SHCC,即矩阵,纤维和它们之间的相互间的主要组成阶段是高速率敏感。根据SHCC组成,加载率的增加可以对平衡的微机械相互作用进行负面改变,导致应变能力的显着降低。因此,需要详细研究SHCC在不同观察水平的应变速率敏感性,以实现针对高负荷率的目标材料设计。裂缝打开行为是SHCC的必要材料参数,因为它在很大程度上在很大程度上定义了复合材料的拉伸性能。在手中,基于对由三种不同类型的SHCC制成的缺口标本对SHCC的裂缝打开和裂缝行为的速率效应进行分析。两种SHCC分别由正常强度水泥基质组成,分别用聚乙烯醇(PVA)和超高分子量聚乙烯(UHMWPE)纤维增强。第三种类型由高强度水泥基质和UHMWPE纤维组成。动态测试在分开的Hopkinson张紧杆中进行,并且在位移率为高达6m / s(19.7ft / s)的位移率下,能够精确地描述裂缝开度行为。

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