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Influence of crack on the permeability of plastic concrete

机译:裂缝对塑料混凝土渗透性的影响

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摘要

This study examined the relations between permeability of the concrete due to addition of new cracks. The different concrete types analyzed were standard concrete, reinforced steel fiber concrete, and reinforced concrete polypropylene fiber. In consideration of the improved polypropylene content of polypropylene fiber reinforced concrete, the crack diameter was decreased by 72-93% for up to 0.25% fiber and cracks were eliminated with 0.3% fiber inclusion. In terms of steel fiberreinforced concrete, the results showed that steel reinforcing macro fibers decrease the permeability of cracked concrete at wider crack widths. While the permeability of unreinforced concrete was the highest, 0.5% steel content resulted in lower permeability while a higher steel content concrete with 1% steel had the lowest permeability. Crack stitching phenomenon and the effect of multiple cracks may be attributed to the decrease in the permeability. With respect to normal concrete, the findings showed the crack opening displacement at the highest tension is less than 20 microns. At this loading stage, after unloading, around 80% of the displacement is restored and the residual crack opening is notably small, indicating the low impact of cracking on concrete permeability (CP) and showing that CP was increased with crack width. As a result, adding polypropylene aggregate to concrete could significantly reduce the width of crack, while adding steel fiber to concrete reduces the permeability of cracked concrete compared to normal concrete which may result in a minor crack on CP.
机译:本研究审查了由于添加新裂缝而导致混凝土渗透性的关系。分析的不同混凝土类型是标准混凝土,加强钢纤维混凝土和钢筋混凝土聚丙烯纤维。考虑到改善聚丙烯纤维增强混凝土的聚丙烯含量,裂缝直径可下降72-93%,最高可达0.25%的纤维,纤维含有0.3%纤维夹杂物。在钢纤维纤维混凝土方面,结果表明,钢筋宏观纤维在更宽的裂缝宽度下降低裂纹混凝土的渗透性。虽然未原始混凝土的渗透性最高,但钢含量为0.5%,导致渗透性较低,而1%钢的更高钢含量混凝土具有最低的渗透性。裂缝缝合现象和多个裂缝的效果可能归因于渗透性的降低。关于正常混凝土,发现在最高张力下裂缝开口位移小于20微米。在此负载阶段,在卸载后,恢复大约80%的位移,并且残留裂缝开口显着小,表示裂缝对混凝土渗透率(CP)的影响,并且表明CP随着裂缝宽度而增加。结果,将聚丙烯聚集体与混凝土添加到混凝土中可以显着降低裂缝的宽度,同时将钢纤维添加到混凝土中,与正常混凝土相比,裂化混凝土的渗透性降低了可能导致CP的次要裂缝的常规混凝土。

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