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Effect of chemically modified recycled carbon fiber composite on the mechanical properties of cementitious mortar

机译:化学改性的再生碳纤维复合材料对水泥砂浆力学性能的影响

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摘要

Proper chemical treatment of recycled carbon fiber composites (RCFC) has been demonstrated to potentially add value to them, by improving the performance of cementitious materials incorporating them. This laboratory investigation mainly explored the use of saturated (simulated concrete) pore solution (SPS) to treat RCFC that contains cured epoxy resin, before its use in cementitious mortar. A total of seven mortar mixtures were fabricated, incorporating untreated RCFC, RCFC treated by SPS for different time periods followed by triisopropanolamine (TIPA), or RCFC treated by montmorillonite nanoclay emulsion (mNCE, at the nanoclay dosage of 0.75% by weight of cementitious binder). The water-to-binder (w/b) ratio of all mortar mixtures was 0.50 and the RCFC was admixed at 1% by volume. The compressive strength and splitting tensile strength of RCFC reinforced mortar were evaluated. The chemical characterization (by FTIR), thermogravimetric analysis, and microscopic investigation (by SEM) helped explain the observed engineering performance data. The residue epoxy resin on the surface of the RCFC was removed by the immersion in SPS, but a long-time treatment may result in damage of the fiber surface. The chemical treatment of RCFC showed both mechanical and chemical benefits to its adhesion with the cementitious mortar. Admixing mNCE achieved outstanding strengths of the mortar similar to those of mortars treated by SPS for 0.5 h and then TIPA.
机译:事实证明,对碳纤维复合材料(RCFC)进行适当的化学处理可以通过改善掺入碳纤维复合材料的胶凝材料的性能,从而潜在地增加其价值。该实验室研究主要探索了在水泥胶浆中使用饱和(模拟混凝土)孔隙溶液(SPS)来处理含有固化环氧树脂的RCFC的方法。总共制造了七种砂浆混合物,包括未处理的RCFC,经SPS在不同时间段处理的RCFC,随后的三异丙醇胺(TIPA)或经蒙脱土纳米粘土乳液(mNCE)处理的RCFC,纳米粘土用量为水泥粘结剂的0.75%(重量) )。所有砂浆混合物的水对粘合剂的比(w / b)为0.50,并且RCFC以1体积%混合​​。评估RCFC增强砂浆的抗压强度和劈裂抗拉强度。化学表征(通过FTIR),热重分析和微观研究(通过SEM)有助于解释观察到的工程性能数据。通过浸入SPS中可以除去RCFC表面上的残留环氧树脂,但是长时间处理可能会损坏纤维表面。 RCFC的化学处理显示出它与水泥砂浆的粘合性,在机械和化学方面均具有优势。混合mNCE所获得的砂浆具有出色的强度,类似于SPS处理0.5 h再经TIPA处理的砂浆的强度。

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