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Low temperature superplastic gas pressure forming of electrodeposited Ni/SiCp nanocomposites

机译:电沉积Ni / SiCp纳米复合材料的低温超塑性气压形成

摘要

The superplastic deformation behavior of a Ni/SiCp nanocomposite was investigated under equibiaxial tension at a strain rate of 8.3 × 10-4 s-1 and various forming temperatures and die apertures. The average as-deposited nickel grain size was 40 nm, and the average SiC particle size was 50 nm. The experimental relative bulging height (RBH) values were measured, and compared with that predicted by a finite element method (FEM) model. It was found that the composite had exhibited good superplasticity, illustrating high RBH values, and the die diameter affected significantly its deformation behavior. The cavitation behavior of the composite was also examined, and found to be dependent on stress state and the total effective strain. As compared to the analytical results, the FEM predictions were shown to be in better agreement with the experimental thickness distribution, although a large discrepancy was observed for dies with small diameters.
机译:研究了Ni / SiCp纳米复合材料在双轴拉伸,应变速率为8.3×10-4 s-1以及各种成型温度和模头孔径下的超塑性变形行为。沉积的镍平均粒径为40nm,SiC的平均粒径为50nm。测量了相对膨胀高度(RBH)的实验值,并与有限元方法(FEM)模型所预测的值进行了比较。发现该复合材料表现出良好的超塑性,说明具有较高的RBH值,并且模具直径显着影响其变形行为。还检查了复合材料的空化行为,发现其取决于应力状态和总有效应变。与分析结果相比,尽管对于小直径的模具观察到很大的差异,但有限元预测结果显示与实验厚度分布更加吻合。

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