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首页> 外文期刊>Journal of Materials Science >Crystallization and phase transformation behaviour of electroless nickel-phosphorus deposits with low and medium phosphorus contents under continuous heating
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Crystallization and phase transformation behaviour of electroless nickel-phosphorus deposits with low and medium phosphorus contents under continuous heating

机译:连续加热下低中磷含量化学镀镍磷沉积物的结晶和相变行为

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摘要

Electroless nickel-phosphorus deposits with 5-8 wt% P and 3-5 wt% P were analysed for the effects of continuous heating on the crystallization kinetics and phase transformation behaviour of the deposits. The as-deposited coatings consist of a mixture of amorphous and microcrystalline nickel phases, featuring in their X-ray diffraction patterns. Continuous heating processes to 300degreesC-800degreesC at 20degreesC/min were carried out on the deposits in a differential scanning calorimetric apparatus. The subsequent X-ray diffraction analyses show that the sequence of phase transformation process was: amorphous phase + microcrystalline nickel --> f.c.c. nickel + Ni3P stable phases. Preferred orientation of nickel {200} plane developed in the deposits after the heating processes. Differential scanning calorimetry of the deposits indicates that the crystallization temperatures increased with decreasing phosphorus content, and increasing heating rate. Crystallization activation energies of the deposits (230 and 322 kJ/mol, respectively) were calculated using the peak temperatures of crystallization process, from the differential scanning calorimetric curves at the heating rates ranging from 5 to 50degreesC/min. It was found that the deposit with lower phosphorus content has higher activation energy. (C) 2002 Kluwer Academic Publishers. [References: 31]
机译:分析了具有5-8 wt%P和3-5 wt%P的化学镍-磷沉积物的连续加热对沉积物的结晶动力学和相变行为的影响。沉积后的涂层由非晶态和微晶态镍相的混合物组成,其特征在于其X射线衍射图。在差示扫描量热仪中以20℃/ min的速度连续加热至300℃〜800℃。随后的X射线衍射分析表明,相变过程的顺序为:非晶相+微晶镍-> f.c.c.镍+ Ni3P稳定相。在加热过程之后,镍{200}面的优选取向在沉积物中形成。沉积物的差示扫描量热法表明,结晶温度随着磷含量的降低和加热速率的提高而升高。使用结晶过程的峰值温度,从差示扫描量热曲线以5至50℃/ min的加热速率计算出沉积物的结晶活化能(分别为230和322 kJ / mol)。已发现磷含量较低的沉积物具有较高的活化能。 (C)2002 Kluwer学术出版社。 [参考:31]

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