首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Comparison of flow behavior of as-cast and hot rolled Al-B4C composites by constant and differential strain rate tests
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Comparison of flow behavior of as-cast and hot rolled Al-B4C composites by constant and differential strain rate tests

机译:恒定差分应变速率试验铸造和热轧Al-B4C复合材料流动性能的比较

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摘要

High temperature tensile flow behavior of aluminum-boron carbide (Al-B4C) composites of 0, 5 and 15% B4C, hot rolled to similar to 88% with intermediate annealing at 350 degrees C, was investigated by constant initial strain rate (CIS) ((epsilon) over dot = 1 x 10(-2)s(-1)) test technique at 500 degrees C and strain rate jump ((epsilon) over dot = 5 x 10(-5) - 1 x 10(-2)s(-1)) test technique over the temperature range of 400-500 degrees C. In the as-cast condition, the flow stresses obtained between CIS and strain rate jump test techniques were found to be significantly different at 500 degrees C. The strain rate sensitivity index (m) was found to be similar to 0.1 over (epsilon) over dot = 1 x 10(-4) - 1 x 10(-2)s(-1) for all the composites in both as-cast as well as hot rolled condition. Tensile elongations were found to be 0.36 in both as-cast and hot rolled aluminum, whereas the same reduced in Al-5% B4C composite to 0.35 and 0.27, respectively. The values of activation energy (Q) for deformation of rolled aluminum and Al-5% B4C composite were determined to be 194.2 and 73.4 kJ/mol, respectively. The microstructural examination, using SEM and EBSD techniques, revealed cavitation in aluminum upon differential strain rate test, and grain refinement upon rolling, which increased later during tensile test.
机译:通过恒定的初始应变速率研究了0,5和15%B4C的高温碳化铝 - 碳化铝(Al-B4C)复合材料的碳化铝 - 碳化铝(Al-B4C)复合材料,热轧为类似于350℃的中间退火(CI) ((epsilon)通过点= 1×10(-2)s(-1))S(-1))试验技术在500摄氏度和r = 5×10(-5) - 1 x 10( - 2)S(-1))测试技术在400-500℃的温度范围内。在铸造条件下,发现CIS和应变率跳跃测试技术之间获得的流量应力在500摄氏度下显着不同。发现应变率敏感性指数(m)与均复合材料相似的0.1上(ε)上(ε10(-4)-1×10(-2)(-1))。 -Cast以及热轧条件。在浇铸和热轧铝中发现拉伸伸长率为0.36,而Al-5%B4C复合材料的相同,分别将Al-5%B4C复合物分别降低至0.35和0.27。轧制铝和Al-5%B4C复合物变形的活化能量(Q)的值分别测定为194.2和73.4kJ / mol。微观结构检查,采用SEM和EBSD技术,在差动应变速率试验时揭示铝中的空化,轧制后晶粒细化,在拉伸试验期间增加。

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