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选择性激光熔化打印等原子比NiCoCr中熵合金力学性能与温度的相关性
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作者 罗亚君 张卫东 +3 位作者 彭飞 刘胜 李忠涛 吴正刚 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第5期1547-1557,共11页
研究工艺参数对选择性激光融化制备的等原子比NiCoCr中熵合金致密度、显微组织和力学性能的影响,以及该合金的力学性能与温度的相关性。结果表明,显微组织和力学性能不与激光的体积能量密度呈线性相关,其主要是受扫描速度和激光功率影... 研究工艺参数对选择性激光融化制备的等原子比NiCoCr中熵合金致密度、显微组织和力学性能的影响,以及该合金的力学性能与温度的相关性。结果表明,显微组织和力学性能不与激光的体积能量密度呈线性相关,其主要是受扫描速度和激光功率影响。扫描速度为800 mm/s且激光功率为250W为最佳的工艺参数,但是在该工艺参数下的体积能量密度仅为57 J/mm^(3),低于最高能量密度68 J/mm^(3)。以最佳工艺制备的样品在77、200和293 K温度下测得的屈服强度分别为~819、~709和~618 MPa。通过计算揭示力学性能的温度相关性方程,并得到实验验证。 展开更多
关键词 选择性激光熔化 中熵合金 NiCoCr 低温 力学性能
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High-entropy carbide ceramics: a perspective review 被引量:4
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作者 Zhe Wang zhong-tao li +1 位作者 Shi-Jun Zhao Zheng-Gang Wu 《Tungsten》 2021年第2期131-142,共12页
High-entropy carbide ceramics(HECCs)exhibited a series of property superiority,such as high hardness,high oxidation resistance and adjustable range of thermal conductivity,making them great candidates for structural m... High-entropy carbide ceramics(HECCs)exhibited a series of property superiority,such as high hardness,high oxidation resistance and adjustable range of thermal conductivity,making them great candidates for structural materials used in extreme service conditions.However,current HECC-related reports can only provide limited guidance for the design of HECC materials with promising properties and stable structure or for their high-quality fabrication.To fill this gap,we proposed in the current review that integrated efforts should be taken in the following three aspects to advance the design and fabrication of high-performance HECCs.First,the rule for the single-phase formation needs to be theoretically identified using high-throughput density functional theory calculations(HTDFT)and a highly accurate predictive model for rapid compositional design warrants establishment through the combination of HTDFT and machine-learning studies.In parallel with the compositional design,the lack of theoretical foundation and guidance for the synthesis of highly dense and highly pure HECC materials necessitates extensive studies focusing on the principle for the synthesis of HECC pre-alloy powders and on the powder densification mechanisms during high-temperature sintering.Moreover,great attentions are to be paid to the mechanistic understandings on the mechanical,oxidation and thermal conduction behaviors of HECC materials;for example,the toughening and strengthening mechanisms of HECC materials could be elucidated through discerning the"HECC composition-stacking fault energy distribution/bonding state-dislocation behavior"correlations. 展开更多
关键词 High-entropy carbide ceramics Phase formation Mechanical property Oxidation behavior Thermal conduction Fabrication
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