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Residual Stress Analysis Within Steel Encapsulated Metal Matrix Composites Via Neutron Diffraction

机译:钢包裹的金属基复合材料中的中子衍射残余应力分析

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Neutron diffraction measurements were performed on steel encapsulated metal matrix composites (MMCs) in order to quantify bulk residual stresses. A coefficient of thermal expansion (CTE) mismatch induced residual compressive stress method is utilized as a means of improving the ductility of the MMCs and overall efficiency of several macro hybridized materials systems. Systems consisting of an A36, 304 stainless steel, or Nitronic® 50 stainless steel shell filled with an Al-SiC or A1-A1_2O_3 metal matrix composite are evaluated in this work. Upon cooling from processing temperatures residual strains are generated due to a CTE mismatch between each of the phases: steel, aluminum, and reinforcement. The analysis shows variation in the measured strain and stress results due to outer steel thickness, difference in CTE between materials, and relative position within the composite.
机译:为了对整体残余应力进行量化,对钢封装的金属基复合材料(MMC)进行了中子衍射测量。热膨胀系数(CTE)不匹配引起的残余压应力方法被用作提高MMC延展性和几种宏观杂交材料系统整体效率的手段。在这项工作中,评估了由填充有Al-SiC或A1-A1_2O_3金属基复合材料的A36、304不锈钢或Nitronic®50不锈钢外壳组成的系统。从加工温度冷却后,由于以下各相之间的CTE不匹配而产生了残余应变:钢,铝和钢筋。分析表明,由于外部钢厚度,材料之间的CTE差异以及复合材料内的相对位置,导致所测得的应变和应力结果发生变化。

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