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Effect of nano-OMMTs on mode I and mode II fracture toughness of continuous glass fibre reinforced polypropylene composites

机译:纳米OMMT对连续玻璃纤维增​​强聚丙烯复合材料的I和II型断裂韧性的影响

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The influence of nano-organic montmorillonites (nano-OMMTs) on mode I and mode II interlaminar fracture toughness of continuous glass fibre reinforced ammonium polyphosphate polypropylene (CGF/PP/APP) composites was experimentally studied in this paper. Nano-OMMTs modified CGF/PP/APP unidirectional prepreg composites were fabricated by hot-melt impregnation process. To investigate the effect of nano-OMMTs on the interlaminar fracture toughness of composites, double cantilever beam (DCB) test and end-notched flexure (ENF) test were conducted to obtain the mode I initiation interlaminar fracture toughness (G(IC init.)), mode I propagation interlaminar fracture toughness (G(IC prop.)), and mode II initiation interlaminar fracture toughness (G(II) (C init)) of samples, respectively. Through comparison against to the neat CGF/PP/APP composites, with the addition of 6.5 wt% nano-OMmTs into PP matrix, the G(IC init), G(IC )(prop.), and G(II C init) of composites can be enhanced from 0.502 kJ/m(2) , 0.746 kJ/m(2) and 0.623 kJ/m(2) to 0.712 kJ/m(2) , 1.119 kJ/m(2) , and 1.195 kJ/m(2) , respectively. Finally, it was found that nano-OMMTs in matrix can act as "pins", which could absorb energy in the forms of nano-particles pullout and enhance the interlaminar fracture toughness values in DCB and ENF tests.
机译:本文通过实验研究了纳米有机蒙脱土对连续玻璃纤维增​​强聚磷酸铵聚丙烯(CGF / PP / APP)复合材料的I型和II型层间断裂韧性的影响。采用热熔浸渍法制备了纳米OMMTs改性的CGF / PP / APP单向预浸料。为了研究纳米OMMT对复合材料层间断裂韧性的影响,进行了双悬臂梁(DCB)试验和端部弯曲挠度(ENF)试验,从而获得了I型起始层间断裂韧性(G(IC init。) ),样品的I型传播层间断裂韧性(G(IC prop。))和II型起始层间断裂韧性(G(II)(C init))。通过与纯CGF / PP / APP复合材料进行比较,向PP基质中添加6.5 wt%的纳米OMmTs,G(IC init),G(IC)(prop。)和G(II C init)复合材料的数量可以从0.502 kJ / m(2),0.746 kJ / m(2)和0.623 kJ / m(2)提高到0.712 kJ / m(2),1.119 kJ / m(2)和1.195 kJ / m(2)。最后,发现基质中的纳米OMMT可以充当“销”,可以以纳米颗粒拉出的形式吸收能量并提高DCB和ENF测试中的层间断裂韧性值。

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