首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Failure Characteristics of 6061/Al_2O_3/15p and 2014/Al_2O_3/15p Composites as a Function of Loading Rate
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Failure Characteristics of 6061/Al_2O_3/15p and 2014/Al_2O_3/15p Composites as a Function of Loading Rate

机译:6061 / Al_2O_3 / 15p和2014 / Al_2O_3 / 15p复合材料的破坏特性与加载速率的关系

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The effects of loading rate on the toughness and fracture mechanisms of two cast 6061/Al_2O_3/15p and 2014/Al_2O_3/15p composites under the as-worked (AW) and AW + T6 conditions have been examined. The quasistatic bending and high-rate impact tests were conducted over strain rates from 5 X 10~(-4) to 1 X 10~3 s~(-1) using screw-driven or servohydraulic high-rate systems. The results showed that the peak load P_(max), specimen deflection d, specimen lateral expansion fraction Δw, crack initiation energy E_i, propagation energy E_p, total fracture energy E_t, and deformation zone all tended to increase with increasing strain rate. Under quasistatic loading, the composites failed predominantly by matrix/reinforcement interface decohesion. As the loading rate increased, reinforcement failure became the major failure mechanism. Differences in the effect of matrix microstructure and stress state on the fracture properties also are discussed. In comparing the fracture modes in the AW and AW + T6 specimens, the latter showed a higher tendency toward particle cracking. Based on mechanical data, the degree of specimen deflection and expansion and fracture modes, the AW composites exhibited a higher strain-rate dependence. The T6 specimens, due to their intrinsicly more brittle nature, appeared to be less influenced by loading rate over the strain-rate range examined.
机译:研究了加载速率对两种铸态6061 / Al_2O_3 / 15p和2014 / Al_2O_3 / 15p复合材料在工作(AW)和AW + T6条件下的韧性和断裂机理的影响。使用螺杆驱动或伺服液压高速系统,在从5 X 10〜(-4)到1 X 10〜3 s〜(-1)的应变速率下进行了准静态弯曲和高冲击试验。结果表明,峰值载荷P_(max),试样挠度d,试样横向膨胀率Δw,裂纹萌生能E_i,传播能E_p,总断裂能E_t和变形区均随应变率的增加而增大。在准静态载荷下,复合材料主要是由于基体/增强界面的脱粘而失效。随着载荷率的增加,钢筋破坏成为主要的破坏机理。还讨论了基体组织和应力状态对断裂性能影响的差异。在比较AW和AW + T6标本的断裂模式时,后者显示出更高的颗粒开裂趋势。根据机械数据,样品的挠度和膨胀程度以及断裂模式,AW复合材料表现出更高的应变率依赖性。由于T6样品固有的脆性,因此在所研究的应变速率范围内受载荷率的影响较小。

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