Control of the wetting properties of an AISI 316L stainless steel surface by femtosecond laser-induced surface modification

被引:140
|
作者
Kam, D. H. [1 ]
Bhattacharya, S. [1 ]
Mazumder, J. [1 ]
机构
[1] Univ Michigan, Ctr Lasers & Plasmas Adv Mfg, Ann Arbor, MI 48109 USA
关键词
ZEOLITE COATINGS; WATER SEPARATION; SILICON; IRRADIATION; WETTABILITY; ABLATION; TITANIUM;
D O I
10.1088/0960-1317/22/10/105019
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A simple and effective method without vacuum to control the wetting properties of AISI 316L stainless steel using femtosecond laser pulses at high repetition rate has been developed. Both hydrophilic and hydrophobic surfaces were formed by creating micro-conical structures on the surface with femtosecond laser irradiation in air. The scan speed was found to be an effective parameter in controlling micro-cone morphology, size and number densities and contact angles during surface wettability experiments. It was found during surface wettability experiments that the contact angle of water varied from 0 degrees (superhydrophilic) to 113 degrees on laser micro-cone textured surfaces depending on processing conditions. Additionally, a superhydrophobic AISI 316L stainless steel surface was created (contact angle similar to 150 degrees) with a functionalized silane coating on already hydrophobic surface geometry.
引用
收藏
页数:6
相关论文
共 50 条
  • [31] Tribological Properties of Surface Friction Hardened AISI 316L Steel
    A. Khaksaran
    R. Taghiabadi
    M. Jafarzadegan
    Transactions of the Indian Institute of Metals, 2021, 74 : 1979 - 1989
  • [32] Tribological Properties of Surface Friction Hardened AISI 316L Steel
    Khaksaran, A.
    Taghiabadi, R.
    Jafarzadegan, M.
    TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 2021, 74 (08) : 1979 - 1989
  • [33] Influence of laser selection melting times on the surface properties of 316L stainless steel
    Li J.
    Yang L.-J.
    Zheng H.
    Jiang Z.-R.
    Sui Z.-H.
    Surface Technology, 2021, 50 (06): : 93 - 100
  • [34] AISI 316L stainless steel modification by surface alloy and a-C:H:SiOx coating synthesis
    Grenadyorov, A. S.
    Solovyev, A. A.
    Oskomov, K. V.
    Yakovlev, E. V.
    Zhulkov, M. O.
    VACUUM, 2022, 204
  • [35] Surface Nanostructure Formations in an AISI 316L Stainless Steel Induced by Pulsed Electron Beam Treatment
    Cai, Yang
    Zhang, Kemin
    Zhang, Zhimin
    Dong, Jiawei
    Lei, Yuan
    Zhang, Tao
    JOURNAL OF NANOMATERIALS, 2015, 2015
  • [36] Effects of Surface Softening on the Mechanical Properties of an AISI 316L Stainless Steel under Cyclic Loading
    Fang, Tiehui
    Cai, Feng
    METALS, 2021, 11 (11)
  • [37] Laser Cutting Parameters Effect on 316L Stainless Steel Surface
    Wardhana, B. S.
    Anam, K.
    Ogana, R. M.
    Kurniawan, A.
    INTERNATIONAL CONFERENCE ON MECHANICAL ENGINEERING RESEARCH AND APPLICATION, 2019, 494
  • [38] Effects of surface mechanical attrition treatment (SMAT) on a rough surface of AISI 316L stainless steel
    Arifvianto, B.
    Suyitno
    Mahardika, M.
    APPLIED SURFACE SCIENCE, 2012, 258 (10) : 4538 - 4543
  • [39] Electrolyte Effect on the Surface Roughness Obtained by Electropolishing of AISI 316L Stainless Steel
    Nunez Lopez, P. J.
    Garcia Plaza, E.
    Hernando Prada, M.
    Trujillo Coronel, R.
    ADVANCES IN MATERIALS PROCESSING TECHNOLOGIES-MESIC V, 2014, 797 : 133 - 138
  • [40] Corrosion behavior of AISI 316L stainless steel surface-modified with NiTi
    Chiu, KY
    Cheng, FT
    Man, HC
    SURFACE & COATINGS TECHNOLOGY, 2006, 200 (20-21): : 6054 - 6061