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Microstructure and Properties of Nickel Layers Electrodeposited under Reduced Pressure and Temperature Gradient Conditions
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Microstructure and Properties of Nickel Layers Electrodeposited under Reduced Pressure and Temperature Gradient Conditions
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National Natural Science Foundation of China (51175152) and Program for Science and Technology Innovation Talents in Universities of?Henan Province (2012HASTIT012)

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    摘要:

    前期研究表明,在5 kPa恒負壓和35 ℃/65 ℃溫度梯度和無添加劑的條件下,能以高達1 mm/h的沉積速度制備出表面光滑、近無沉積缺陷且多項性能優(yōu)越的鎳鍍層。本實驗則重點研究負壓、溫度梯度等條件參數(shù)對鎳沉積層形貌、織構(gòu)和性能的影響。研究結(jié)果顯示:負壓和溫度梯度大小對沉積層的形貌、織構(gòu)與硬度、耐腐蝕等性能都有一定程度的影響;只有在貼近陰極面的液層處于沸騰狀態(tài)時才能獲得良好的鎳沉積層;增大溫度梯度和(或)降低沉積槽氣壓都有利于細化晶粒、提高硬度和耐酸腐蝕性;溫度梯度對鎳沉積層的織構(gòu)特征影響作用明顯,但負壓大小對鎳層的擇優(yōu)取向幾乎沒有影響。鎳沉積層上述形貌、織構(gòu)與性能的變化主要歸結(jié)于負壓電沉積的沸騰驅(qū)動傳質(zhì)效應(yīng)與真空脫氣效應(yīng)

    Abstract:

    Our previous studies showed that at a considerably high plating speed up to 1 mm/h, the nickel electrodeposits with smooth surface, few deposition defects and some improved properties could be prepared under the conditions of an additive-free bath at a reduced pressure of 5 kPa and a temperature gradient of 35 °C /65 °C. This paper aims at further analyzing the effect of bath pressure and temperature gradient on the surface morphology, the microstructure and the properties of electrodeposited nickel coatings in a subatmospheric environment. Our findings indicate that the surface quality, the microstructure and the properties of the deposited nickel coatings are, to some extent, affected by the applied bath pressure and the temperature gradient; favorable nickel electrodeposits can be only achieved when the electrolyte in the vicinity of cathode surface is in a boiling state. The temperature gradient influences the texture characteristic of nickel deposits, but the bath pressure has few effects on the preferred orientation. Grain-fining, microhardness, and corrosion resistance of nickel deposits are improved with increasing of the temperature-gradient and/or the reducing of bath pressure. These variations are closely relevant with the boiling-driven mass transfer effect and the vacuum-degassing effect during the electrodeposition in a reduced pressure bath.

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明平美,呂文星,商靜瑜,王書卿. Microstructure and Properties of Nickel Layers Electrodeposited under Reduced Pressure and Temperature Gradient Conditions[J].稀有金屬材料與工程,2015,44(2):312~318.[Ming Pingmei, Lü Wenxing, Shang Jingyu, Wang Shuqing. Microstructure and Properties of Nickel Layers Electrodeposited under Reduced Pressure and Temperature Gradient Conditions[J]. Rare Metal Materials and Engineering,2015,44(2):312~318.]
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  • 收稿日期:2014-03-25
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  • 在線發(fā)布日期: 2015-05-29
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