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Cycling Effect on Undercooling in Pd_(40)Cu_(30)Ni_(10)P_(20) Melt

机译:Pd_(40)Cu_(30)Ni_(10)P_(20)熔体中过冷的循环效应

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The influence of large number of heating and cooling cycles on the nucleation and hence on the undercooling of Pd_(40)Cu_(30)Ni_(10)P_(20) melt has been investigated by differential scanning calorimety. The repeated undercooling measurements allow the investigation of the stochastic nature of the nucleation process. It is found that the value of the undercooling monotonically decreases with increasing cycle number up to about 100 cycles. The melting temperature of the alloy on the other hand remains constant up to 60 cycles and then it increases by 85°C. Structure characterisation by X-ray diffraction and scanning electron microscopy measurements reveals that a Cu-O oxide layer is gradually formed with increasing cycle number. This causes a depletion of copper in the interior of the sample and therefore decreases the glass forming ability of the alloy. A correlation of cycling dependence of melting, liquidus, and nucleation temperatures with the microstructure evolution is presented.
机译:通过差示扫描量热法研究了大量加热和冷却循环对Pd_(40)Cu_(30)Ni_(10)P_(20)熔体成核的影响,进而对Pd_(40)Cu_(30)Ni_(10)P_(20)熔体的过冷产生了影响。重复的过冷测量可以研究成核过程的随机性。发现过冷值随着循环次数的增加而单调降低,直至大约100个循环。另一方面,合金的熔融温度直到60个循环都保持恒定,然后升高85℃。通过X射线衍射和扫描电子显微镜测量的结构表征表明,随着循环次数的增加,Cu-O氧化物层逐渐形成。这导致样品内部的铜耗尽,因此降低了合金的玻璃形成能力。提出了熔化,液相线和成核温度的循环依赖性与微观结构演变的关系。

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