期刊文献+

AlCrN涂层的残余热应力分析 被引量:3

Thermal Residual Stress Analysis of AlCrN Coating
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摘要 采用ANSYS有限元分析软件中的瞬态分析方法,对涂层刀具沉积过程中残余热应力进行了仿真分析。研究了AlCrN涂层残余热应力的大小、分布和影响因素。结果表明:由于涂层与基体材料的热膨胀系数不匹配,结合面区域存在严重的应力集中;基体材料、涂层厚度、沉积温度以及中间层的使用对残余应力有很大影响;基体材料为高速钢时,AlCrN涂层内残余应力大以压应力为主并随着涂层厚度的增加而减小;基体为硬质合金时,残余应力相对较小,涂层内以拉应力为主并随基体钴含量和涂层厚度的增加而减少;增加中间层可以减小残余应力。因此,通过涂层和不同基体匹配以及增加中间层可以缓和界面应力增强界面结合强度。 Residual thermal stresses produced in deposition process of coating tools were calculated by using tran- sient analysis method of finite element analysis software. The residual stress level, distribution and influence factors of Al- CrN coating were studied. The results show that due to the mismatch of coefficient of thermal expansion between the coat- ing and the substrate, there is a serious stress concentration in the interface region. Different substrates, coating thickness, deposition temperature and interlayer have great influences on the residual stress. With high-speed steel as substrate, the residual stress of A1CrN coating is mainly compressive stress which increases with the diminution of coating thickness. While with carbide as substrate, the residual stress is relatively small and it is mainly tensile stress which decreases with the increase of cobalt content in carbide substrate and the increase of coating thickness. Adding an interlayer to the sub- strate can reduce the residual stress. Thus, the interface stress can be released and the interfacial bonding strength can be improved by the matching of coating and different substrates as well as adding an interlayer.
出处 《硬质合金》 CAS 2012年第2期80-85,105,共7页 Cemented Carbides
基金 国家重点基础研究发展计划资助项目(2009CB724402) 国家自然科学基金资助项目(51175310) 山东大学优秀研究生科研创新基金资助项目(yyx10012)
关键词 AlCrN涂层 有限元方法 残余应力 中间层 AlCrN coating finite element method residual stress interlayer
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参考文献13

  • 1Narasimhan K, Boppana S P, Bhat D G. Development of a graded TiCN coating for cemented carbide cutting toolsa design approach[J]. Wear, 1995, 188: 123- 129.
  • 2张武装,刘咏,黄伯云.硬质合金切削刀具涂层技术的发展[J].粉末冶金工业,2006,16(5):44-47. 被引量:13
  • 3Jindal P C, Santhanam A T, Schleinkofer U, et al. Performance of PVD TiN, TiCN, and TiA1N coated cemented carbide tools in turning[J]. International Journal of Refractory Metals & Hard Materials, 1999, 17: 163-170.
  • 4Fox-Rabinovich G S, Kovalev A I, Aguirre M H. Design and performance of A1TiN and TiA1 CrN PVD coatings for machining of hard to cut materials[J]. Surface & Coatings Technology, 2009, 204: 489-496.
  • 5赵玉玲,丰平,张晓明,熊惟皓.涂层硬质合金的最新研究进展[J].材料开发与应用,2009,24(2):94-101. 被引量:4
  • 6Chen Li, Du Yong, Wang S Q, et al. Comparative research on physical and mechanical properties of (Ti,A1)N and (Cr, A1)N PVD coatings with high A1 content [J]. International Journal of Refractory Metals & Hard Materials, 2007, 25: 400-404.
  • 7Godoy C, Souza E A, Lima M M, et al. Correlation between residual stresses and adhesion of plasma sprayed coatings: effects of a post-annealing treatment[J]. Thin Solid Films, 2002, 420-421: 438-445.
  • 8谈峰,黄自谦.硬质合金TiC/Al2O3/TiN复合涂层的热应力分析[J].湖南农业大学学报(自然科学版),2008,34(3):363-365. 被引量:2
  • 9Bengtsson P, Persson C. Modelled and measured residual stresses in plasma sprayed thermal barrier coatings [J]. Surface & Coatings Technology, 1997,92:78-86.
  • 10马自省,黄自谦,贺跃辉,肖逸锋.硬质合金金刚石涂层的残余应力分析[J].中国钨业,2006,21(6):32-35. 被引量:2

二级参考文献72

  • 1余东海,王成勇,张凤林.刀具涂层材料研究进展[J].工具技术,2007,41(6):25-32. 被引量:39
  • 2谢宏,肖逸锋,贺跃辉,丰平.硬质合金涂层刀具研究的新进展[J].中国钨业,2006,21(2):33-36. 被引量:17
  • 3刘战强,万熠,周军.高速切削刀具材料及其应用[J].机械工程材料,2006,30(5):1-4. 被引量:30
  • 4Li Chen,Enxi Wu,Fei Yin,Jia Li.Effects of gradient structure on the microstructures and properties of coated cemented carbides[J].Journal of University of Science and Technology Beijing,2006,13(4):363-367. 被引量:19
  • 5Suzuki T, Yagi M, shibuki K,et al. High resolution electron microscopy observation of TiC coated cemented carbide[J]. Surf Coat Technol, 1996, 79:268 -275.
  • 6Bartsch K, Leonhardt A, Wolf E. Deposition of TixC layers on TiC hardmetals[ J ]. J Mater Sci, 1987, 22 (8) : 3032 -3038.
  • 7Ruppi S, Hogrelius B, Huhtiranta M. Wear characteristics of TiC, Ti(C,N), TiN and Al2O3 coatings in the turning of conventional and ca -treated steels[ J ]. Int J Refract Met Hard Mater, 1998, 16:353 -368.
  • 8Dobrzanski L A, Zukowska L W,Mikula J,et al. Structure and mechanical properties of gradient PVD [J]. J Mater Process Technol, 2008, 2{)1: 310-314.
  • 9Ibrahim Ciftci. Machining of austenitic stainless steels using CVD multi - layer coated cemented carbide tools [J]. Tribol Int, 2006, 39:565-569.
  • 10Jianning Ding, Yonggang Meng, Shizhu Wen. Mechanical properties and fracture toughness of multilayer hard coatings using nanoindentation [ J ]. Thin Solid Films, 2000, 371:178 - 182.

共引文献31

同被引文献36

  • 1Min Su KANG,Tie-gang WANG,Jung Ho SHIN,Roman NOWAK,Kwang Ho KIM.Synthesis and properties of Cr-Al-Si-N films deposited by hybrid coating system with high power impulse magnetron sputtering (HIPIMS) and DC pulse sputtering[J].中国有色金属学会会刊:英文版,2012,22(S3):729-734. 被引量:12
  • 2耿国盛,徐九华,傅玉灿,葛英飞,舒畅.高速铣削近α钛合金的切削温度研究[J].机械科学与技术,2006,25(3):329-332. 被引量:21
  • 3赵金龙,邓建新,宋文龙.MoS_2软涂层刀具的基体材料优选及涂层制备[J].材料工程,2007,35(12):30-34. 被引量:6
  • 4Zener C, Hollomon J H. Problems in non-elastic deformation of met- Ms[J]. Journal of Applied Physics. 1946, 17(2): 69-82.
  • 5Recht R F. Catastrophic thermoplastic shear[J]. Journal of Applied Mechanics, 1964, 31(2): 189-193.
  • 6Migu61ez M H, Soldani X, Molinari A. Analysis of adiabatic shear banding in orthogonal cutting of Ti alloy [J]. International Journal of Mechanical Sciences, 2013, 75: 212-222.
  • 7Wu H, To S. Serrated chip formation and their adiabatic analysis by using the constitutive model of titanium alloy in high speed cutting[J]. Journal of Alloys and Compounds, 2015, 629: 368-373.
  • 8Zhang Y, Mabrouki T, Nelias D, et al. FE-model for titanium alloy (Ti-6%A1-4%V) cutting based on stress at tool-chip interface [J]. forming, 2011, 4(1): 11-23. the identification of limiting shear International journal of material.
  • 9Johnson GR, Cook WH. A constitutive model and data for metals subjected to large strains, high strain rates and high temperature [C]. Proceedings of the 7th International Symposium on Ballis-tics, 1983, Netherlands, pp: 541-547.
  • 10Lee W S, Lin C F. High-temperature deformation behavior of Ti6A14V alloy evaluated by high strain-rate compression tests[J]. Jour- nal of Materials Processing Technology, 1998, 75(1): 127-136.

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