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Curing kinetics and effects of fibre surface treatment and curing parameters on the interfacial and tensile properties of hemp/epoxy composites

机译:固化动力学以及纤维表面处理和固化参数对大麻/环氧树脂复合材料界面和拉伸性能的影响

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摘要

The curing kinetics of neat epoxy (NE) and hemp fibre/epoxy composites was studied and assessed using two dynamic models (the Kissinger and Flynn-Wall-Ozawa Models) and an isothermal model (the Autocatalytic Model) which was generally supported by the experimental data obtained from dynamic and isothermal differential scanning calorimetry (DSC) scans. The activation energies for the curing of composites exhibited lower values compared to curing of NE which is believed to be due to higher nucleophilic activity of the amine groups of the curing agent in the presence of fibres. The highest tensile strength, σ was obtained with composites produced with an epoxy to curing agent ratio of 1:1 and the highest Young's modulus, E was obtained with an epoxy to curing agent ratio of 1:1.2. Alkali treated hemp fibre/epoxy (ATFE) composites were found to have higher σ and E values compared to those for untreated hemp fibre/epoxy (UTFE) composites which was consistent with the trend for interfacial shear strength (IFSS) values. Composites σ and E were found to be higher for a processing temperature of 70°C than for 25°C for both UTFE and ATFE composites, but were found to decrease as the curing temperature was increased further to 120°C.
机译:使用两种动力学模型(基辛格模型和Flynn-Wall-Ozawa模型)和等温模型(自动催化模型)研究和评估了纯环氧(NE)和大麻纤维/环氧复合材料的固化动力学,该模型通常得到实验的支持。从动态和等温差示扫描量热法(DSC)扫描获得的数据。与NE的固化相比,用于复合材料的固化的活化能显示出较低的值,这被认为是由于在纤维存在下固化剂的胺基的较高的亲核活性。环氧与固化剂之比为1:1的复合材料可获得最高的拉伸强度σ,而环氧与固化剂之比为1:1.2的复合材料可获得最高的杨氏模量。与未处理的大麻纤维/环氧树脂(UTFE)复合材料相比,经碱处理的大麻纤维/环氧树脂(ATFE)复合材料具有更高的σ和E值,这与界面剪切强度(IFSS)值的趋势一致。发现对于UTFE和ATFE复合材料,复合材料的σ和E在70°C的处理温度下要比25°C的要高,但是随着固化温度进一步提高到120°C,复合材料的σ和E降低。

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