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Rate-dependent tensile properties of ultra-high performance engineered cementitious composites (UHP-ECC)

机译:超高性能工程化水泥复合材料的速率依赖性拉伸性能(UHP-ECC)

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摘要

The direct tensile properties of ultra-high performance engineered cementitious composites (UHP-ECC) were investigated under a range of strain rates from 0.0001 to 0.05 s(-1) in this study. Three kinds of polyethylene fibers with different fiber aspect ratios were used as the reinforced fiber in the UHP-ECC. The rate sensitivity of the UHP-ECC in tension was evaluated in terms of initial cracking stress, peak stress, strain capacity, energy absorption capacity and elastic modulus at different strain rates. The cracking patterns, including crack number, crack width and crack spacing, of the UHP-ECC specimens were also monitored. The test results showed a significant rate effect on the initial cracking stress and a moderate effect on the peak stress and strain capacity. The fiber aspect ratio significantly influenced the tensile properties and failure modes of the UHP-ECC. The matrix strength, single fiber tensile and pull-out tests were conducted at corresponding strain rates to further explain the test results. Finally, the micro-structure of the tensile specimens was observed using a scanning electron microscope.
机译:在本研究中,在0.0001至0.05秒(-1)的一系列应变率下,研究了超高性能工程化水泥复合材料(UHP-ECC)的直接拉伸性能。用不同纤维纵横比的三种聚乙烯纤维用作UHP-ECC中的增强纤维。根据初始开裂应力,峰值应力,应变能力,能量吸收能力和不同应变率的弹性模量来评估UHP-ECC在张力中的速率敏感性。还监测了UHP-ECC样本的裂缝图案,包括裂缝数,裂缝宽度和裂缝间距。试验结果表明对初始开裂应力和对峰值应力和应变能力的适度影响显着效果。纤维纵横比显着影响了UHP-ECC的拉伸性能和失效模式。在相应的应变速率下进行基质强度,单纤维拉伸和拉出试验,以进一步解释测试结果。最后,使用扫描电子显微镜观察拉伸试样的微结构。

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