对涂层/基体系统中,基体性质对涂层压痕力学行为的影响进行了研究,得出了基体对压痕载荷位移曲线的影响规律.研究表明:在给定的条件下,当压痕位移为涂层厚度的12%~16%时,由于基体屈服强度的变化,导致压痕载荷位移曲线在此处发生偏离;在压痕位移小于涂层厚度的10%时,不同的基体屈服强度得到的压痕响应完全一致,即基体的改变对压痕响应的影响是可以忽略的;同时还发现,在压痕位移为涂层厚度的30%时,如果基体屈服强度小于2000MPa时,基体屈服应力的改变会改变涂层的压痕力学行为,而当基体屈服强度大于2000MPa时,即使继续增大基体的屈服应力,所得到的载荷-位移曲线几乎重合,即其影响可以忽略.
参考文献
[1] | NIX W D;MEHI MEDALIST R F .Mechanical properties of thin films[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1989,20(11):2217-2245. |
[2] | OLIVER W C;PHARR G M .An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments[J].Journal of Materials Research,1992,7(06):1564-1583. |
[3] | Nix WD.;Gao HJ. .Indentation size effects in crystalline materials: A law for strain gradient plasticity[J].Journal of the Mechanics and Physics of Solids,1998(3):411-425. |
[4] | Yang-Tse Cheng;Che-Min Cheng .Relationships between hardness, elastic modulus, and the work of indentation[J].Applied physics letters,1998(1/6):614-616. |
[5] | CHENG Y T;CHENG C M .Scaling relationships in conical indentation of elastic-perfectly plastic solids[J].International Journal of Solids and Structures,1998,36(08):1231-1243. |
[6] | Yoo YH.;Lee W.;Shin H. .Effect of work hardening on the critical indentation limit in spherical nano-indentation of thin film/substrate systems[J].Surface & Coatings Technology,2004(2/3):324-332. |
[7] | Akihiko Hirano;Masao Sakane;Naomi Hamada .Relationship Between Rockwell C Hardness and Inelastic Material Constants[J].Journal of engineering materials and technology,2002(2):179-184. |
[8] | SUNDGREN J E;HENTZELL H T G .A review of the present state of art in hard coatings grown from the vapor phase[J].Journal of Vacuum Science and Technology A-Vacuum Surfaces and Films,1986,4(05):2259-2279. |
[9] | CAMMARATA R C;SCHLESINGER T E;KIM C .Nanoindentation study of the mechanical properties of copper-nickel multilayered thin films[J].Applied Physics Letters,1990,56(19):1862-1864. |
[10] | Stan Veprek .The search for novel, superhard materials[J].Journal of Vacuum Science & Technology, A. Vacuum, Surfaces, and Films,1999(5):2401-2420. |
[11] | SHINN M;HULTMAN L;BARNETT S A .Growth structure and microhardness of epitaxial TiN/NbN superlattices[J].Journal of Materials Research,1992,7(04):901-911. |
[12] | HIBBIT;KARLSSON;SORENSON;ABAQUS.handbook version 6.5[M].USA:Hibbitt Karlsson & Sorensen Inc,2005 |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%