首页> 外文期刊>Progress in Rubber,Plastics and Recycling Technology >Bonding Characteristics of Macro Polypropylene (PP) Fibre in PVA/ Macro PP Blended Fibre-Reinforced Styrene Butadiene Latex-Modified Cement-Based Composites
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Bonding Characteristics of Macro Polypropylene (PP) Fibre in PVA/ Macro PP Blended Fibre-Reinforced Styrene Butadiene Latex-Modified Cement-Based Composites

机译:PVA / Macro PP混合纤维增强苯乙烯-丁二烯胶乳改性水泥基复合材料中Macro PP纤维的粘结特性

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The bonding properties of macro polypropylene (PP) fibres in blended fibre-reinforced polymer-modified cement-based composites (BFRPMCCs) containing styrene butadiene (SB) latex were evaluated. A blend of polyvinyl alcohol (PVA) and macro PP fibres was used in the study. The pullout behaviour was investigated using dog-bone test specimens compliant with JCI SF-8. The macro PP fibre was added at 0.45 kg/m~3 and the PVA fibre was added at 12.6 kg/m~3 to fabricate the BFRPMCCs, and SB latex was added at 0-25 wt% of the cement. The addition of SB latex improved the dispersion of the PVA fibres, increased the pullout resistance of the macro PP fibre embedded in the BFRPMCC, and induced strain hardening in the debonded zone. The maximum bond strength occurred at an SB latex content of 10%, and the maximum interface toughness occurred at an SB latex content of 15%. Microstructural analysis of the macro PP fibre surfaces was carried out following pullout of the fibres embedded in the SB-latex-containing BFRPMCC. The amount of scratches increased with increasing SB latex content until 15%, but then decreased at SB latex contents above 20%, indicating that the bonding of the composite was optimum at a latex content of 15%.
机译:评估了大型聚丙烯(PP)纤维在含有苯乙烯丁二烯(SB)胶乳的混合纤维增强聚合物改性水泥基复合材料(BFRPMCC)中的粘合性能。在研究中使用了聚乙烯醇(PVA)和大型PP纤维的混合物。使用符合JCI SF-8的狗骨头试样对拉拔行为进行了研究。以0.45kg / m〜3的量添加大PP纤维,以12.6kg / m〜3的量添加PVA纤维以制造BFRPMCC,并以水泥的0-25wt%添加SB胶乳。 SB胶乳的添加改善了PVA纤维的分散性,增加了嵌入BFRPMCC的大PP纤维的抗拉强度,并引起了脱胶区的应变硬化。最大粘合强度在SB胶乳含量为10%时发生,最大界面韧性在SB胶乳含量为15%时发生。抽出嵌入含SB胶乳的BFRPMCC中的纤维后,进行宏观PP纤维表面的微结构分析。划痕量随着SB胶乳含量的增加而增加,直到15%,但随后在SB胶乳含量高于20%时减少,这表明复合材料的粘结在乳胶含量为15%时是最佳的。

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