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两类Ni-Fe基合金抗氧化性能的对比研究 被引量:6
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作者 周涛 袁铁锤 +1 位作者 李志友 周科朝 《矿冶工程》 CAS CSCD 北大核心 2006年第4期68-71,共4页
用热压法制备了2种成分的N i-Fe-X基合金,并在1 000℃和1 200℃进行了大气氧化试验。XRD、SEM、EDX和金相分析表明,N i-11Fe-10Cu-6A l-3Zn的氧化层致密,主要由N i、Fe和A l混合氧化物组成,合金中Cu显示较强的抗氧化性能,是由于铝的优... 用热压法制备了2种成分的N i-Fe-X基合金,并在1 000℃和1 200℃进行了大气氧化试验。XRD、SEM、EDX和金相分析表明,N i-11Fe-10Cu-6A l-3Zn的氧化层致密,主要由N i、Fe和A l混合氧化物组成,合金中Cu显示较强的抗氧化性能,是由于铝的优先氧化的结果,氧化膜中较多的尖晶石的存在有效改善了氧化物结构,提高了合金的抗氧化性能。Fe-N i合金氧化膜主要是铁氧化物,由于氧化膜抗热震性差使得氧化膜与基体中存在较多的裂纹,导致合金氧化膜疏松,是该合金抗氧化性能差的主要原因。 展开更多
关键词 ni—fe基合金 尖晶石 EDX线扫描 抗氧化性
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Effect of vacuum degree in VIM furnace on mechanical properties of Ni-Fe-Cr based alloy 被引量:1
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作者 Masoud Moshtaghi Seied Mahdi Abbasi 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第9期2124-2130,共7页
In order to investigate the effect of the vacuum degree in vacuum induction melting (VIM) furnace on the mechanical properties of Ni-Fe-Cr based alloy, four samples were prepared under different conditions. The chem... In order to investigate the effect of the vacuum degree in vacuum induction melting (VIM) furnace on the mechanical properties of Ni-Fe-Cr based alloy, four samples were prepared under different conditions. The chemical analysis results show that under the argon atmosphere, there is more dissipation in Al and Ti, whereas it is reduced by establishing the vacuum atmosphere. The gas analysis results show that the oxygen and nitrogen contents of the samples decrease with increasing vacuum degree. However, there is no dissipation in the gas content of the samples in higher degree of vacuum. In addition, the thermodynamic calculations show that the probability of TiO2 and Al2O3 formation is high due to the small value of the equilibrium oxygen. Higher vacuum degree reduces the tensile and yield strength of the alloys, while it enhances the elongation and reduction of area values due to the lower amount of the inclusions and evaporation of Al and Ti under higher vacuum. On the other hand, increasing vacuum degree changes the fracture mode from brittle to ductile. 展开更多
关键词 ni-fe-Cr based alloy vacuum degree VIM furnace mechanical properties
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