检索规则说明:AND代表“并且”;OR代表“或者”;NOT代表“不包含”;(注意必须大写,运算符两边需空一格)
检 索 范 例 :范例一: (K=图书馆学 OR K=情报学) AND A=范并思 范例二:J=计算机应用与软件 AND (U=C++ OR U=Basic) NOT M=Visual
机构地区:[1]福州大学机械工程与自动化学院,福州350002 [2]厦门市质量技术监督局,厦门361004
出 处:《机械工程材料》2012年第4期30-33,共4页Materials For Mechanical Engineering
摘 要:采用扫描电镜、X射线衍射仪、差热分析仪等分析了化学镀镍-磷-纳米SiC-PTFE复合镀层的表面形貌和物相结构,并研究了镀层的晶化动力学。结果表明:纳米SiC、PTFE颗粒均匀地分布于复合镀层中,且SiC颗粒在镀层中发生部分团聚;随热处理温度升高,镀层由镀态下的非晶态出现晶化,并逐渐析出镍、Ni3P以及Ni3Si等晶相;与镍-磷镀层相比,这种含两种颗粒的复合镀层表现出较低的晶化起始温度与较长的晶化时间,且其晶化激活能为268kJ.mol-1。The surface morphology and phase composition of Ni-P-nano SiC-PTFE composite coating prepared by electroless plating were studied by scanning electron microscopy,x-ray diffraction,diffrential thermal analysis,et al.The crystallization dynamics of the coating was also studied.The results show that the distribution of nano-SiC and PTFE particles was uniform in composite coating,and a few SiC particles agglomeration was found.The structure of coating changed from amorphous to crystal state gradually with the increase of heat treatment temperature,and crystallization phase precipitated,such as Ni,Ni3P and Ni3Si phases.Comparing with the Ni-P coating,the composite coating with two particles showed fairly low crystallization starting temperature and long crystallization time,and the crystallization activation energy of the composite coating was 268 kJ·mol-1.
关 键 词:化学复合镀 纳米SIC PTFE 镍-磷镀层 晶化
分 类 号:TG146.1[一般工业技术—材料科学与工程]
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在链接到云南高校图书馆文献保障联盟下载...
云南高校图书馆联盟文献共享服务平台 版权所有©
您的IP:13.59.22.238