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Effect of filler shape, volume fraction and loading rate on dynamic fracture behavior of glass-filled epoxy

机译:填料形状,体积分数和负载率对玻璃纤维环氧树脂动态断裂行为的影响

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摘要

The effect of filler shape and filler volume fraction on the dynamic fracture behavior of paniculate polymer composites (PPC) has been studied. Mode-Ⅰ dynamic fracture experiments were carried out on pre-notched glass-filled epoxy. An experimental setup comprising of a gas-gun and a long-bar was used to deliver one-point impact loading to unconstrained specimens. Pulse shapers were utilized to control the loading rate during impact loading. The dynamic crack initiation and propagation events were captured using high-speed photography (~300,000 frames per second). Digital Image Correlation (DIC) method was utilized to measure in-plane displacement fields around the crack-tip and extract fracture parameters including stress intensity factor histories to examine the filler shape, volume fraction and loading rate effects. The results showed a pronounced improvement in crack initiation toughness for rod-shaped fillers producing ~145% increase over unfilled epoxy at 15% V_f With flakes and spherical fillers showing ~97% and ~67% improvement, respectively. For all three different volume fractions - 5%, 10%, and 15% - considered, the rod-shaped fillers produced the highest crack initiation toughness as well as post-initiation stress intensity factors followed by flakes and spheres, respectively. A linear relationship between crack initiation toughness and log of filler aspect ratio was also recorded. In addition, for 10% V_f rod-shaped filler case, the effect of loading rate on dynamic fracture behavior has been examined. The loading rate study showed ~113% and ~50% increase in crack initiation toughness for the lowest and the highest loading rate cases, respectively, compared to that of neat epoxy.
机译:研究了填料形状和填料体积分数对颗粒状聚合物复合材料(PPC)动态断裂行为的影响。对预刻有玻璃纤维的环氧树脂进行了Ⅰ型动态断裂实验。使用由气枪和长杆组成的实验装置将单点冲击载荷传递到不受约束的样本上。利用脉冲整形器来控制冲击加载期间的加载速率。动态裂纹的萌生和扩展事件是通过高速摄影(每秒约300,000帧)捕获的。利用数字图像相关(DIC)方法测量裂纹尖端周围的平面位移场,并提取包括应力强度因子历史在内的断裂参数,以检查填充物的形状,体积分数和加载速率的影响。结果表明,在15%V_f下,棒状填料的开裂韧性明显提高,而未填充环氧树脂的棒状填料的开裂韧性提高了145%,其中薄片状和球形填料的开裂韧性分别提高了约97%和67%。对于所有三种不同的体积分数(分别为5%,10%和15%),棒状填料产生的裂纹萌生韧性最高,而后的应力强度因子最高,其次是片状和球形。还记录了裂纹萌生韧性与填料长径比的对数之间的线性关系。另外,对于10%的V_f棒状填充物,已经研究了加载速率对动态断裂行为的影响。负载率研究表明,与纯净环氧树脂相比,最低和最高负载率情况下的裂纹萌生韧性分别提高了〜113%和〜50%。

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