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首页> 外文期刊>International journal of impact engineering >Microstructural effects on the spall properties of ECAE-processed AZ31B magnesium alloy
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Microstructural effects on the spall properties of ECAE-processed AZ31B magnesium alloy

机译:显微组织对ECAE处理的AZ31B镁合金剥落性能的影响

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摘要

Time-resolved normal plate impact experiments and spall recovery experiments were conducted to study the spall behavior of AZ31B-4E magnesium alloy processed via Equal-Channel Angular Extrusion (ECAE). The spall strength and incipient spall damage in the specimens were measured at different shock stresses using 51 mm and 105 mm bore gas guns. The Hugoniot Elastic Limit (HEL) was measured to be approximately 181 +/- 3 MPa. The spall strengths extracted from the free surface velocity profiles of the shocked specimens were found to decrease by 5% for shock stresses ranging from 1.7 GPa to 4.6 GPa. However, this reduction in spall strength may fall within the experimental error. Post-test fractographic examinations of recovered specimens revealed that spall failure originated at micrometer-size intermetallic inclusions and propagated through the material by cavitation events with a very limited growth of voids. It was concluded that the strengthening of AZ31B-4E magnesium alloy by the ECAE-process resulted in adverse effects on its microstructure and spall behavior because of the process-induced cracking of intermetallic inclusions and their weak interface strengths. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进行了时间分辨的正常板冲击试验和剥落恢复实验,以研究通过等通道角挤压(ECAE)加工的AZ31B-4E镁合金的剥落行为。使用51毫米和105毫米口径的气枪在不同的冲击应力下测量了样品的剥落强度和初期剥落损伤。测得的Hugoniot弹性极限(HEL)约为181 +/- 3 MPa。对于从1.7 GPa到4.6 GPa的冲击应力,发现从冲击试样的自由表面速度曲线提取的剥落强度降低了5%。但是,剥落强度的这种降低可能落在实验误差之内。测试后对回收的样品进行分形检查,结果表明,剥落破坏起源于微米级的金属间夹杂物,并通过空化事件在整个材料中传播,空洞的增长非常有限。结论是,由于过程诱导的金属间夹杂物的开裂及其弱的界面强度,ECAE工艺对AZ31B-4E镁合金的强化对其组织和剥落行为产生了不利影响。 (C)2016 Elsevier Ltd.保留所有权利。

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