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Behavior of Hybrid-Fiber Engineered Cementitious Composites Subjected to Dynamic Tensile Loading and Projectile Impact

机译:动态拉伸载荷和弹丸冲击作用下混杂纤维工程水泥基复合材料的行为

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摘要

The characteristics of engineered cementitious composites (ECCs) subjected to dynamic tensile loading and high-velocity projectile impact have been investigated and are reported in this paper. Hybrid-fiber ECC containing a combination of high-modulus steel fibers and relatively low modulus polyethylene fibers was adopted to achieve a desired balance between the ultimate strength and the strain capacity of the material required for impact- and blast-resistant structures. Dynamic uniaxial tensile tests at varying strain rates of 2 X 10~(-6) to 0.2 s~(-1) were carried out, and ECC was found to be able to provide much higher enhancement in tensile strength than plain concrete and still be able to maintain pronounced tensile strain-hardening behavior. At higher rates of strain, ECC showed multiple-cracking behavior, similar to that observed from quasi-static tests, with tight crack width of about 0.1 mm. The results from high-velocity (300-750 m/s) impact tests demonstrated the potential of ECC in providing improved functionality (compared with concrete) as a protective material in aspects such as increased shatter resistance with reduction in damage arising from scabbing, spalling, and energy absorption associated with distributed microcracking.
机译:研究了工程胶结复合材料(ECCs)在动态拉伸载荷和高速弹丸冲击下的特性,并进行了报道。采用包含高模量钢纤维和相对低模量聚乙烯纤维的组合的混合纤维ECC,以在抗冲击和抗爆炸结构所需的材料的极限强度和应变能力之间实现所需的平衡。在2 X 10〜(-6)至0.2 s〜(-1)的不同应变速率下进行了动态单轴拉伸试验,发现ECC能够提供比普通混凝土更高的拉伸强度,并且仍然能够保持明显的拉伸应变硬化行为。在较高的应变速率下,ECC表现出多重裂纹行为,类似于准静态测试中观察到的行为,紧密裂纹宽度约为0.1 mm。高速(300-750 m / s)冲击试验的结果表明,ECC在提供增强的功能性(与混凝土相比)作为保护材料方面具有潜力,例如在提高抗碎性,减少刮擦,剥落造成的损坏等方面以及与分布式微裂纹相关的能量吸收。

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