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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Thermodynamic properties and phase transitions of ternary Co-Cu-Si alloys with equiatomic Co/Cu ratio
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Thermodynamic properties and phase transitions of ternary Co-Cu-Si alloys with equiatomic Co/Cu ratio

机译:具有阶段Co / Cu比的三元Co-Cu-Si合金的热力学性质及相变

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摘要

Different amounts of Si element were introduced into binary Co50Cu50 alloy to investigate the thermodynamic properties and phase transitions of ternary Co50-x/2Cu(50-x)/2Si(x) (x = 10, 20, 30, 40 and 50 at%) alloys. Their liquidus and solidus temperatures versus Si content were determined by the differential scanning calorimetry (DSC) method. It was found that the addition of Si element depressed both the liquidus and solidus temperatures as compared with binary Co50Cu50 alloy. In particular, the additions of 10 and 20 at% Si remarkably reduced the critical undercooling for liquid demixing to only 3 and 1 K, whereas no liquid phase separation took place in other Co50-x/2Cu(50-x)/2Si(x) alloys. The relationship between the enthalpy of fusion and alloy composition was also established by a polynomial function on the basis of the measured data. The solidification microstructures of the DSC samples were investigated corresponding to the calorimetric signals, based on which the solidification pathway for each Co(50-x/)2Cu(50-x)/2Si(x) alloy was elucidated. The Si element displays stronger affinity with the Co element than the Cu element. As Si content rises, the pseudobinary eutectic (Co + Co2Si), (Co2Si + CoSi), (CoSi + CoSi2) and (Cu3Si + Si) structures were successively formed, and there were no ternary intermetallic compounds in these alloys. The thermal diffusivity of solid ternary Co50-x/2Cu(50-x)/2Si(x) alloys was determined by a laser flash method in a wide temperature range from 300 to 1180 K, which showed a decreasing tendency with the increase of Si content.
机译:将不同量的Si元素引入二元CO50cu50合金中,研究三元CO 50-x / 2cu(50-x)/ 2si(x)的热力学性质和相转变(x = 10,20,30,40和50at% )合金。通过差示扫描量热法(DSC)方法测定它们的液相和固体温度与Si含量。结果发现,与二元CO50Cu50合金相比,添加Si元素抑制液相液和固相温度。特别地,在%Si中添加10和20的添加显着降低了仅为3和1K的液体脱尾的临界过冷,而在其他CO50-x / 2cu(50-x)/ 2si(x)中没有进行液相分离(x )合金。还通过基于测量数据通过多项式函数建立融合和合金组合物之间的关系。研究了DSC样品的凝固微观结构,对应于量热信号,基于其阐明了每种CO(50-X /)2CU(50-X)/ 2SI(X)合金的凝固途径。 SI元素与CU元素显示比CU元素更强的亲和力。随着Si含量升高,依次形成假血管共晶(CO + CO2SI),(CO2SI + COSI)和(CO 2 SI + COSI2)和(CU3SI + Si)结构,这些合金中没有三元金属间化合物。固体三元CO50-X / 2Cu(50-X)/ 2SI(X)合金的热扩散率通过激光闪光法在300至1180k的宽温度范围内测定,这表明随着Si的增加而降低趋势内容。

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