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首页> 外文期刊>MATEC Web of Conferences >Tensile properties and drawability of thin bimetallic aluminum-scandium-zirconium / stainless steel foils and monometallic Al-Sc-Zr fabricated by magnetron sputtering
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Tensile properties and drawability of thin bimetallic aluminum-scandium-zirconium / stainless steel foils and monometallic Al-Sc-Zr fabricated by magnetron sputtering

机译:磁控溅射制备双金属铝-dium-锆/不锈钢薄箔和单金属Al-Sc-Zr的拉伸性能和拉伸性

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摘要

Al-Sc-Zr alloys are interesting for the production of high strength micro components by micro deep drawing. These alloys show a good hardenability due to the formation of nanometer-scale spheroidal Al3(Sc, Zr) precipitates, which are highly coherent with the aluminum matrix. However, the formation of these precipitates in Al-Sc-Zr foils fabricated by conventional metallurgical methods dramatically reduces their ductility and drawability. In this work, magnetron sputtering was used to produce Al-Sc-Zr foils and Al-Sc-Zr / stainless steel bimetallic foils which are nearly free of these precipitates. Tensile tests were carried out to measure and compare the mechanical properties of monometallic Al-Sc-Zr foils and bimetallic Al-Sc-Zr / stainless steel foils deposited with varying plasma target powers and containing different volume fractions (layer thickness) of Al-Sc-Zr. Micro deep drawing was used to determine the drawability of selected monometallic and bimetallic foils. The results show that the density of monometallic Al-Sc-Zr foils can be improved significantly by increasing the DC target power and by using the high power impulse magnetron sputtering (HiPIMS) technology, resulting in foils with higher ductility. Bimetallic foils achieved higher strength and ductility than monometallic Al-Sc-Zr foils. Their mechanical properties vary with the target power and the volume fraction (thickness) of Al-Sc-Zr. The limit drawing ratio of HiPIMS deposited monometallic foil was 1.7 or 1.8 depending on the side of the foil facing the die, whereas a limit drawing ratio of 1.9 was observed for bimetallic foils.
机译:Al-Sc-Zr合金对于通过微深冲生产高强度微组件很有用。这些合金由于形成了纳米级球形Al3(Sc,Zr)沉淀物而具有良好的淬透性,该沉淀物与铝基体高度粘结。然而,这些沉淀物在通过常规冶金方法制造的Al-Sc-Zr箔中的形成极大地降低了它们的延展性和可拉伸性。在这项工作中,磁控溅射用于生产几乎不含这些沉淀物的Al-Sc-Zr箔和Al-Sc-Zr /不锈钢双金属箔。进行了拉伸试验,以测量和比较沉积有不同等离子靶功率且包含不同体积分数(层厚)的Al-Sc的单金属Al-Sc-Zr箔和双金属Al-Sc-Zr /不锈钢箔的机械性能-Zr。使用微深拉深来确定选定的单金属和双金属箔的可拉伸性。结果表明,单金属Al-Sc-Zr箔的密度可以通过提高DC目标功率和使用高功率脉冲磁控溅射(HiPIMS)技术来显着提高,从而获得具有更高延展性的箔。双金属箔比单金属Al-Sc-Zr箔具有更高的强度和延展性。它们的机械性能随目标功率和Al-Sc-Zr的体积分数(厚度)而变化。 HiPIMS沉积的单金属箔的极限拉伸比为1.7或1.8,具体取决于箔面对模具的一侧,而双金属箔的极限拉伸比为1.9。

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