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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Characterization, formability, various stresses and failure analysis on workability of sintered Mg-5%B4C composite under triaxial stress state condition
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Characterization, formability, various stresses and failure analysis on workability of sintered Mg-5%B4C composite under triaxial stress state condition

机译:三轴应力状态条件下烧结Mg-5%B4C复合材料可加工性的表征,可成形性,各种应力和失效分析

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The present study focuses on hardness and workability behavior of Magnesium (Mg) and Mg-5%B4C composites using online Acoustic Emission (AE). The Mg preform and Mg-5%B4C sintered samples are prepared by using Powder Metallurgy (P/M) route with the support of die-punch setup and Universal Testing Machine (UTM) having a maximum capacity of 1MN with an aspect ratio of one. The characterization of powders and composites are discussed using Scanning Electron Microscope (SEM), X-ray Diffraction (XRD) and Energy Dispersive Spectrum (EDS) analysis. Electron Back Scattered Diagram (EBSD) for grain size is carried out for the Mg and Mg-5% B4C composite. The Cold upsetting process under triaxial stress state condition is preferred for the workability study. AE tests are conducted simultaneously to detect the crack initiation in the preform. The AE test result displays that Mg-5%B4C composite has excellent AE waveform distribution owing to the presence of B4C in the matrix. The effect of formability stress index factor (beta(sigma)) and various stress ratio parameters (sigma(theta)/sigma(eff) and sigma(m)/sigma(eff)) are established. The result exhibits that Mg-5%B4C composite has greater hardness, higher workability parameter, triaxial stresses and initial relative density than the pure Mg preform due to the addition of the B4C. (c) 2018 Elsevier B.V. All rights reserved.
机译:本研究侧重于使用在线声学发射(AE)的镁(Mg)和Mg-5%B4C复合材料的硬度和可加工性行为。通过使用粉末冶金(P / M)途径使用粉碎设置和通用试验机(UTM)的宽度打孔装置(UTM)的宽度打孔(UTM)的宽高比来制备Mg预制件和Mg-5%B4C烧结样品。 。使用扫描电子显微镜(SEM),X射线衍射(XRD)和能量分散频谱(EDS)分析来讨论粉末和复合材料的表征。用于晶粒尺寸的电子背散射图(EBSD)用于Mg和Mg-5%B4C复合材料。在三轴应力状态条件下的冷镦处理是可加工性研究的。 AE测试同时进行以检测预制件中的裂纹引发。由于基质中的B4C存在,AE测试结果显示Mg-5%B4C复合材料具有优异的AE波形分布。建立了可成形性应力指数因子(β(Sigma))和各种应力比参数(Sigma(X型)/ sigma(Eff)和Sigma(M)/ Sigma(EFF)的影响。结果表现出Mg-5%B4C复合材料具有更大的硬度,更高的可加工性参数,三轴应力和初始相对密度而不是由于B4C的添加而比纯Mg预制件更高。 (c)2018年elestvier b.v.保留所有权利。

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