帮助 关于我们

返回检索结果

评价强界面涂层界面结合能力的横截面压入法
Cross-sectional Indentation Method to Evaluate Strong Interface Adhesive Strength

查看参考文献18篇

文摘 为了解强界面脆性涂层/硬性金属基体涂层结构横截面压入时的涂层剥落特点,以电镀铬层/硬性金属基体为研究模型,在原位观察系统下进行横截面压入试验,其结果表明:铬层断裂和剥落与载荷-位移曲线上出现的3个载荷下降点相对应,首先是在铬层横截面上形成一条与压头轴线平行的中间裂纹;随后又出现了以第1条裂纹为对称轴的2条斜裂纹;随着3条裂纹的稳态扩展和汇合,形成了与周围铬层相隔离、仅靠基体支撑的2块1/4圆形局部“孤岛”铬层;最后“孤岛”铬层沿界面剥落。以此“孤岛”剥落为力学计算模型,提出定量评价强界面脆性涂层/硬性金属基体的界面结合能力的横截面压入法,该方法利用载荷-位移曲线计算“孤岛”剥落所需要的总能量,测量界面剥落面积,并计算两者的比值,给出临界界面能量释放率,以此数据作为评价界面结合能力的指标,并给出了应用举例.
其他语种文摘 In order to understand the chromium coatings spallation characteristic when the cross-sectional indentation experiment on strongly interracial brittle coating/hard metal substrate, the chromium-plating on hard metal substrate is used as studied model, the cross-sectional indentation experiment is carried out with the help of in situ observational system. The result shows that the coatings crack and spallation corresponds to three load dropping points of load-displacement, firstly, a middle crack corresponding to the indenter axis forms on the chromium coatings cross-section, then, two symmetric inclined cracks to middle crack form, with the propagation and intersection of above three cracks, two chromium coatings " island" of one fourth circle shape form, which separate from other Cr coatings and are supported only by the substrate, in the final, " island" spalls along the interface. Based on the mechanical model of the " island" spallation, the cross-sectional indentation method to evaluate strong interfacial adhesion is presented. In the method, the interfacial spallation energy is calculated through the load-displacement curve and spallation area is measured, the critical interface energy release rate is given by the above two values. As applied example, the adhesive ability of the experimental sample is measured.
来源 表面技术 ,2006,35(6):1-4 【扩展库】
关键词 横截面压入法 ; 强界面 ; 界面结合能力
地址

中国科学院力学研究所, 北京, 100080

语种 中文
文献类型 研究性论文
ISSN 1001-3660
学科 一般工业技术
基金 国家自然科学基金资助项目
文献收藏号 CSCD:2665156

参考文献 共 18 共1页

1.  J M Sánchez,S. Acta Materialia,1999,47(17):4253-4259 被引 1    
2.  M R Elizalde. J M Sánchez J M Martínez-Esnaola et al. Acta Materialia,2003,51(14):4295-4305 被引 12    
3.  Xian-Fang Li. Effects of an elastic substrate on the interfacial adhesion of thin films. Surface&Coatings Technology,2006,200:5003-5008 被引 2    
4.  X J Zheng. Investigation of an anisotropic plate model to evaluate the interface adhesion of thin film with cross-sectional nanoindentation method. Composites Science and Technology,2005,65:1382-1390 被引 8    
5.  H Zhang. Application of a novel lateral force-sensing microindentation method for evaluation of the bond strength of thermal sprayed coatings. Surface&Coatings Technology,2005,197:137-141 被引 4    
6.  H Zhang. Development of a novel lateral force-sensing microindentation technique for determination of interfacial bond strength. Acta Materialia,2004,52:2037-2046 被引 6    
7.  D B Marshall. Measurement of adherence of residually stressed thin films by indentation. J Appl Phys,1984,56(10):2635-2638 被引 2    
8.  K L Johnson. Contact mechanics,1985:171-172 被引 2    
9.  Michael Lane. Interface fracture. Annu Rev Mater Res,2003,33:29-54 被引 1    
10.  A A Volinsky. Interfacial toughness measurements for thin films on Substrates. Acta Mater,2002,50:441-466 被引 26    
11.  B Rother. Coating and interface characterization by depth-sensing indentation experiments. Surface and Coatings Technology,1996,85:183-188 被引 3    
12.  B Rother. Evaluation of interface strength between TiN coatings and hardened high speed steel substrates. Surface and Coatings Technology,1995,74/75:625-628 被引 1    
13.  B Rother. Interface strength of titanium nitride coatings on hardened high-speed steel. Surface and Coatings Technology,1995,71:229-232 被引 1    
14.  B Rother. Quantification of the interface strength between(Ti Zr)N coatings and high speed steel. Surface and Coatings Technology,1996,82:214-217 被引 2    
15.  XiaoDong Li. Fracture mechanics of thin amorphous carbon films in nanoindentation. Acta mater,1997,45(11):4453-4461 被引 5    
16.  Xiaodong Li. Measurement of fracture toughness of ultra-thin amorphous carbon films. Thin Solid Films,1998,315:214-221 被引 4    
17.  《数学手册》编写组. 数学手册,1979:77 被引 3    
18.  萧敬勋(译). 材料力学,1989:195-199 被引 1    
引证文献 3

1 陈光南 材料力学性能的激光调控(邀请报告) 中国激光,2011,38(6):0601006-1-0601006-11
被引 2

2 张凯亮 侧面压入法评价涂层界面结合性能的影响因素 材料热处理学报,2012,33(3):156-160
被引 2

显示所有3篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

iAuthor 链接
陈光南 0000-0003-0543-7167
版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号