Growth kinetics and mechanical characterization of boride layers formed on β-type Ti-45Nb alloy

被引:27
作者
Kara, Gokhan [1 ]
Purcek, Gencaga [2 ]
机构
[1] Karadeniz Tech Univ, Surmene Abdullah Kanca Vocat Sch Higher Educ, Trabzon, Turkey
[2] Karadeniz Tech Univ, Dept Mech Engn, Trabzon, Turkey
关键词
beta-Type Ti alloys; Ti-45Nb; Powder-pack boriding; Growth kinetics; Solid-state diffusion; COMMERCIALLY PURE TITANIUM; ELECTRON-BEAM EVAPORATION; SOLID-STATE DIFFUSION; BIOMEDICAL APPLICATIONS; CORROSION BEHAVIOR; SURFACE; MICROSTRUCTURE; TI; TI6AL4V;
D O I
10.1016/j.surfcoat.2018.07.085
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this study, beta-type Ti-45Nb alloy was borided by solid-state diffusion process in order to achieve a hard and adhered boride layer. Boriding was carried out in a solid medium consisting of amorphous boron, anhydrous borax and active carbon at temperatures between 850 and 1100 degrees C for time intervals of 3-24 h in order to determine boron diffusion kinetic and to achieve an optimum adhered layer thickness. Microstructure, mechanical properties, adhesion characteristic and growth kinetic of borided layers were investigated in detail by X-ray diffraction, GDOES and SEM-EDS analysis, microhardness and Rockwell-C adhesion tests. A layer consisting of monolithic TiB2 center dot NbB2 phase with the hardness of about 34.3 GPa on the top and TiB whisker with the hardness of about 14.7 GPa beneath it was formed by boriding using optimum processing parameters. A diffusion model based on mass balance equations was used to estimate boron diffusion coefficients and activation energies in the boride layers. Activation energies in TiB2 center dot NbB2 and TiB layers were determined to be 203.96 +/- 2.4 kJ/mol and 138.33 +/- 24.5 kJ/mol, respectively. Fracture toughness of the borided layer formed at 1000 degrees C for 24 h was found to be 2.84 +/- 0.8 MPa m(1/2). Multiple concentric cracks occurred at the peripheral zone of indent by Rockwell-C adhesion test. But no or very limited delamination or spalling occurred due to the result of deeper penetration of TiB whiskers.
引用
收藏
页码:201 / 212
页数:12
相关论文
共 54 条
[1]   TiB whisker coating on titanium surfaces by solid-state diffusion: Synthesis, microstructure, and mechanical properties [J].
Aich, S ;
Chandran, KSR .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2002, 33 (11) :3489-3498
[2]   Hydroxyapatite production on ultrafine-grained pure titanium by micro-arc oxidation and hydrothermal treatment [J].
Alsaran, A. ;
Purcek, G. ;
Hacisalihoglu, I. ;
Vangolu, Y. ;
Bayrak, O. ;
Karaman, I. ;
Celik, A. .
SURFACE & COATINGS TECHNOLOGY, 2011, 205 :S537-S542
[3]   Effect of single and duplex surface treatments on wear properties of CP-Ti [J].
Alsaran, A. ;
Albayrak, C. .
SURFACE ENGINEERING, 2011, 27 (03) :205-210
[4]  
[Anonymous], 1991, Verein Deutscher Ingenieure: Technikbewertung - Begriffe und Grundlagen. Erlauterungen und Hinweise zur VDI-Richtlinie 3780
[5]   Boriding of titanium alloys in a fluidized bed reactor [J].
Anthymidis, KG ;
Tsipas, DN ;
Stergioudis, E .
JOURNAL OF MATERIALS SCIENCE LETTERS, 2001, 20 (22) :2067-2069
[6]   Characteristics and growth kinetics of plasma paste borided Cp-Ti and Ti6Al4V alloy [J].
Ataibis, Volkan ;
Taktak, Sukru .
SURFACE & COATINGS TECHNOLOGY, 2015, 279 :65-71
[7]   Implant Surface Treatment Using Biomimetic Agents [J].
Avila, Gustavo ;
Misch, Kelly ;
Galindo-Moreno, Pablo ;
Wang, Hom-Lay .
IMPLANT DENTISTRY, 2009, 18 (01) :17-23
[8]  
Barin I., 1995, THERMOCHEMICAL DATA, V1, DOI DOI 10.1002/9783527619825
[9]   Boriding titanium alloys at lower temperatures using electrochemical methods [J].
Celikkan, Huseyin ;
Ozturk, M. Kemal ;
Aydin, Hasan ;
Aksu, Mehmet Levent .
THIN SOLID FILMS, 2007, 515 (13) :5348-5352
[10]  
Chatterjee-Fischer R., 1989, SURFACE MODIFICATION, P567