材料科学
严重塑性变形
扭转(腹足类)
纳米复合材料
复合材料
形状记忆合金
扫描电子显微镜
合金
医学
外科
作者
Carmela Gurău,Felicia Ţolea,Nicanor Cimpoeşu,Mihaela Sofronie,Alina Cantaragiu Ceoromila,Cristian Stefănescu,Gheorghe Gurău
出处
期刊:Nanomaterials
[MDPI AG]
日期:2024-02-22
卷期号:14 (5): 405-405
被引量:1
摘要
When a severe plastic deformation (SPD) process is performed at high temperatures, it becomes more versatile. Designed originally for the bulk nanoconstruction of hard-to-deform alloys, high-speed high-pressure torsion (HSHPT) is an SPD method used in this research for assembling multiple layers of shape memory nanocomposites. Three hard-to-deform magnetic alloys in the cast state were used. Soft magnetic shape memory alloys, NiFeGa and FePdMn, and a potentially hard magnetic alloy, CoZr, were assembled in various composites. Both grain refinement and strong layer bonding were achieved in ZrCo/FePdMn and ZrCo/NiFeGa composites in seconds. The very short SPD time is specific to HSHPT because of the intense friction that occurs under high pressures, which generates huge amounts of heat. After SPD, the temperature rises in bulk material like a pulse, being dissipated mostly through heat conduction. The SPD parameters were carefully controlled with an advanced automation system using a programmable logic controller. Nevertheless, the major drawbacks of high-pressure torsion were overcome, and large SPD discs were obtained. Various investigation techniques (optical microscopy, scanning electron microscopy, energy dispersive spectroscopy and atomic force microscopy) show well-defined interfaces as well as a fine and ultrafine structure.
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