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首页> 外文期刊>Cement and Concrete Research >Characterising the time-dependant behaviour on the single fibre level of SHCC: Part 1: Mechanism of fibre pull-out creep
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Characterising the time-dependant behaviour on the single fibre level of SHCC: Part 1: Mechanism of fibre pull-out creep

机译:在SHCC的单纤维水平上表征随时间变化的行为:第1部分:纤维拉出蠕变的机理

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SHCC (Strain Hardening Cement-based Composite) has been designed and optimised to overcome the main weaknesses of ordinary concrete, which is its brittleness. SHCC shows a high tensile ductility and can resist the full load at a tensile strain of more than 4 percent . An in depth investigation into the time-dependant behaviour is still lacking for SHCC. This paper is the first part of a two paper series about the time-dependant behaviour on the single fibre level. In this paper, the tensile creep behaviour of SHCC is studied to distinguish mechanisms of creep. Tensile creep and shrinkage test results are reported for dumbbell type SHCC specimens. The specimens are pre-cracked to simulate in-service conditions, with subsequent sustained load at various levels, here chosen as 30 percent , 50 percent , 70 percent and 80 percent of the ultimate resistance. To distinguish the sources of significant creep deformation under these sustained loads, single fibre pull-out tests are performed under sustained load. It is shown that the time-dependent fibre pull-out is a significant source of time-dependent deformation, along with the formation of new cracks in SHCC under sustained load.
机译:SHCC(应变硬化水泥基复合材料)经过设计和优化,可以克服普通混凝土的主要缺点,即脆性。 SHCC表现出很高的拉伸延展性,并且在超过4%的拉伸应变下可以抵抗满负荷。 SHCC仍缺乏对时间依赖性行为的深入研究。本文是有关单纤水平上随时间变化行为的两篇论文系列的第一部分。本文研究了SHCC的拉伸蠕变行为,以区分蠕变机理。报告了哑铃型SHCC试样的拉伸蠕变和收缩试验结果。样品被预先开裂以模拟使用条件,随后承受各种水平的持续载荷,此处选择为极限阻力的30%,50%,70%和80%。为了区分在这些持续载荷下明显的蠕变变形的根源,在持续载荷下进行了单纤维拉拔测试。结果表明,随时间变化的光纤拔出是随时间变化的变形的重要来源,并且在持续载荷下SHCC中会形成新的裂纹。

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