Growth kinetics and some mechanical properties of two-phase boride layers produced on commercially pure titanium during plasma paste boriding

被引:53
作者
Makuch, N. [1 ]
Kulka, M. [1 ]
Keddam, M. [2 ]
Taktak, S. [3 ]
Ataibis, V. [3 ]
Dziarski, P. [1 ]
机构
[1] Poznan Univ Tech, Inst Mat Sci & Engn, PL MSklodowskiej Curie 5, PL-60965 Poznan, Poland
[2] USTHB, Fac Genie Mecan & Genie Procedes, Lab Technol Mat, BP 32, Bab Ezzouar 16111, Algiers, Algeria
[3] Afyon Kocatepe Univ, Fac Technol, Dept Met & Mat Engn, ANS Campus, TR-03200 Afyon, Turkey
关键词
Plasma paste boriding; Commercially pure titanium; Growth kinetics of borides; Boron activation energy; Hardness; Wear resistance; SOLID-STATE DIFFUSION; TI6AL4V ALLOY; SURFACE; BORON; WEAR; TI; DEPOSITION; COATINGS; MODEL;
D O I
10.1016/j.tsf.2017.02.033
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, the plasma paste boriding (PPB) was applied in order to produce the boride layers on commercially pure titanium (Cp-Ti). PPB process was carried out in 50% H2-50% Ar atmosphere under a reduced pressure at various parameters (temperature and duration). The boride layers consisted of two zones: a continuous TiB2 zone close to the surface and a zone with TiB whiskers below the first one. The growth of both zones obeyed the parabolic, growth law. The model of growth kinetics of such layers was analyzed. The parabolic growth constants were calculated and the boron diffusion coefficients were determined. Activation energy values of 123.33 and 178.71 kJ mol(-1) were obtained for TiB2 and TiB phases, respectively. The calculated value for TiB2 phase was lower compared to the other boriding processes. Microhardness profile was determined for the layer of the highest depth. The maximal microhardness was characteristic of TiB2 zone (2452 HV). Nanomechanical properties (nanohardness and Young's modulus) were studied using the nanoindenter. TiB2 zone was characterized by the nanohardness of 2867.6 HV and indentation modulus E-IT= 383 GPa. Wear resistance of plasma paste borided layers was up to 9 times higher when comparing to the untreated Cp-Ti. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:25 / 37
页数:13
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