霍晓敏,李安,李军灵,王德庆.正交试验优化电沉积 Ni-Cr 泡沫合金工艺[J].表面技术,2014,43(1):95-102.
HUO Xiao-min,LI An,LI Jun-ling,WANG De-qing.Optimization of Ni-Cr Foam Alloy Electroplating Technology by Orthogonal Test[J].Surface Technology,2014,43(1):95-102
正交试验优化电沉积 Ni-Cr 泡沫合金工艺
Optimization of Ni-Cr Foam Alloy Electroplating Technology by Orthogonal Test
投稿时间:2013-07-29  修订日期:2013-09-25
DOI:
中文关键词:  聚氨酯  电沉积  镀层厚度  沉积速率  Cr 含量
英文关键词:polyurethane  electro-plating  coating thickness  deposition rate  Cr content
基金项目:
作者单位
霍晓敏 大连交通大学 材料科学与工程学院, 辽宁 大连 116028;大连市产品质量监督检验所, 辽宁 大连 116021 
李安 大连市产品质量监督检验所, 辽宁 大连 116021 
李军灵 大连交通大学 材料科学与工程学院, 辽宁 大连 116028 
王德庆 大连交通大学 材料科学与工程学院, 辽宁 大连 116028 
AuthorInstitution
HUO Xiao-min School of Materials Science and Engineering, Dalian Jiaotong University, Dalian 116028, China;Dalian Institute of Product Quality Supervision and Inspection, Dalian 116021, China 
LI An Dalian Institute of Product Quality Supervision and Inspection, Dalian 116021, China 
LI Jun-ling School of Materials Science and Engineering, Dalian Jiaotong University, Dalian 116028, China 
WANG De-qing School of Materials Science and Engineering, Dalian Jiaotong University, Dalian 116028, China 
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中文摘要:
      目的 获得电沉积 Ni-Cr 泡沫合金的最佳工艺参数。 方法 采用正交实验法研究镀液成分等工艺参数对镀层沉积速率、厚度以及合金中 Cr 含量的影响,并利用扫描电子显微镜等测试手段对镀层横截面厚度等镀层指标进行了考察。 结果 阴极电流密度为 28 A / dm2,镀液 pH 值为 2 . 0 ,镀液温度为 25 ℃ ,CrCl3 ·6 H2O 的质量浓度为 125 g / L,配位剂与 Cr3+摩尔比为 1 . 8 时,电沉积 60 min 能够获得表面光亮平整的 Ni-Cr 合金镀层,镀层厚度为 24 . 09 μm,沉积速率为 0 . 4198 mg / ( cm2·min) ,镀层中 Cr 的质量分数为 14 . 76 % 。 结论 镀液温度在 25 ~ 40 ℃ 范围内,对 Ni-Cr 合金镀层厚度、沉积速率的影响最大;镀液中CrCl3 ·6 H2O 浓度、配位剂与 Cr3+的摩尔比两个因素,对合金镀层中 Cr 含量的影响较大。
英文摘要:
      Objective To obtain the optimal parameters during the electrodepositing of Ni-Cr foam alloy. Methods The main factors including the thickness, deposition rate and chrome content of the coating layer were explored by orthogonal design experiment. The coating indices for cross-section microstructure and surface morphologies were investigated by the test methods. Results A 24. 09 μm thick layer of uniform and bright coating was obtained with 14. 76 wt% of Cr at the deposition rate of 0. 4198 mg /( cm2 ·min) in the solution of 125 g / L CrCl3 ·6 H2 O with a pH of 2. 0 and current density of 28 A / dm2 at 25 ℃ for sixty minutes. Conclusion Temperature was the most important factor affecting the Ni-Cr alloy layer thickness and deposition rate in the range of 25 ~ 40 ℃ , and the concentration of CrCl3 ·6 H2O and complexant in plating solution were the most important factors affecting the chrome content of the coating layer.
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