All Issue

2021 Vol.30, Issue 1 Preview Page

Research Paper

28 February 2021. pp. 60-65
Abstract
References
1
G. Lutjering, J.C. Williams, 2007 : Traditional and Emerging Applications, Titanium (Engineering Materials and Processes), pp.8-11, 2nd Edition, Springer, Berlin.
2
J. Lu, Y. Zhang, W. Huo, et al., 2018 : Electrochemical corrosion characteristics and biocompatibility of nanostructured titanium for implants, Appl. Surf. Sci., 434, pp.63-72 10.1016/j.apsusc.2017.10.168
3
H. Asgar, K.M. Deen, Z.U. Rahman, et al., 2019 : Functionalized graphene oxide coating on Ti6Al4V alloy for improved biocompatibility and corrosion resistance, Mater. Sci. Eng., C 94, pp.920-928 10.1016/j.msec.2018.10.04630423780
4
Korea Customs Service, Trade Statistics, https://unipass.customs.go.kr
5
T.E. Norgate, S. Jahanshahi, W.J. Rankin, 2007 : Assessing the environmental impack of metal production processes, J. Clean. Prod., 15, pp.838-848 10.1016/j.jclepro.2006.06.018
6
J. Reitz, C. Lochbichler, B. Friedrich, 2011 : Recycling of gamma titanium aluminide scrap from investment casting operations, Intermetallics, 19, pp.762-768 10.1016/j.intermet.2010.11.015
7
K. Topolski, W. Bochniak, M. Lagoda, et al., 2017 : Structure and properties of titanium produced by a new method of chip recycling, J. Mater. Process. Technol., 248, pp.80-91 10.1016/j.jmatprotec.2017.05.005
8
J.M. Oh, K.H. Heo, W.B. Kim, et al., 2013 : Sintering properties of Ti-6Al-4V alloys prepared using Ti/TiH2 powders, Mater. Trans., 54, pp.119-121 10.2320/matertrans.M2012304
9
Osamu Takeda, Toru H. Okabe, 2019 : Current Status of Titanium Recycling and Related Technologies, JOM, 71, pp.1981-1990. 10.1007/s11837-018-3278-1
10
Kurdyukov, V. A., A. A. Sergeev, and A. A. Reznyakov., 1997 : Efficient methods of processing metal chips, Metallurgist, 41, pp.331-335. 10.1007/BF02802436
11
S. C. Lim, D. H. Kim, E. P. Yoon, et al., 1997 : Decomposition kinetics of machining oil and oxidation of A356.2 aluminium alloy in aluminium recycling process, Mater. Sci. Technol., 13, pp.859-864 10.1179/mst.1997.13.10.859
12
Jirang Cui, Anne Kvithyld, Hans Jørgen Roven, 2010 : Degreasing of aluminum turnings and implications for solid state recycling [C], In: TMS Annual Meeting, Seattle. pp.675-678.
13
J. E. Lee, N. C. Cho, J. H. Moon, et al., 2013 : A Study of Cleaning Technology for Zirconium Scrap Recycling in the Nuclear Industry. Clean Technology, 19(3), pp.264-271. 10.7464/ksct.2013.19.3.264
14
S. Y. Park, J. H. Song, 2018, KR, 10-1850967.
15
J. Chae, J. M. Oh, J. W. Lim, et al., 2019 : Eco-Friendly Pretreatment of Titanium Turning Scraps and Subsequent Preparation of Ferro-Titanium Ingots. Korean J. Met. Mater., 57(9), pp.569-574. 10.3365/KJMM.2019.57.9.569
16
A.F. Stalder, G. Kulik, D. Sage, et al., 2006 : A Snake-Based Approach to Accurate Determination of Both Contact Points and Contact angles, Colloids Surf. A Physicochem. Eng. Asp., 286(1-3), pp.92-103 10.1016/j.colsurfa.2006.03.008
17
Carlos Drummond, Jacob Israelachvili, 2002 : Surface forces and wettability, J. Pet. Sci. Eng., 33, pp.123-133 10.1016/S0920-4105(01)00180-2
18
Jean C. Childers, 2006 : The Chemistry of Metalworking Fluids, Metalworking Fluids, 2nd Edition, Jerry P. Byers, pp.133, Taylor & Francis, New York.
19
Milton J. Rosen, 2004 : Surfactants and Interfacial Phenomena, pp.53, 3rd Edition, Wiley, New Jersey. 10.1002/0471670561
20
ASTM B977/B977M-19, Standard Specification for Titanium and Titanium Alloy Ingots.
Information
  • Publisher :The Korean Institute of Resources Recycling
  • Publisher(Ko) :한국자원리싸이클링학회
  • Journal Title :Resources Recycling
  • Journal Title(Ko) :자원리싸이클링
  • Volume : 30
  • No :1
  • Pages :60-65
  • Received Date : 2020-11-23
  • Revised Date : 2020-12-30; 2021-01-22
  • Accepted Date : 2021-01-27