2[5]I.Y.Konyashin. Improvements in reliability and serviceability of cemented carbides with wear-resistant coatings. Materials science and engineering, 1997,A230:213~220
3[6]I.Y.Konyashin. PVD/CVD technology for coating cemented carbides. Surface and coatings technology, 1995,71:277~283
4[7]O.Knotek, F.Loffler, G.Kramer. Cutting performance of multicomponent and multiplayer coatings on cemented carbides and cermets for interrupted cut maching. Int J of refractory & hard materials, 1996,14:195~202
5[8]Krishnan Narasimhan, S.Prasad Boppana, Deepak G.Bhat. Development of a graded TiCN coating for cemented carbide cutting tools?a design approach, Wear, 1995,188:123~129
6[9]M.Ekroth, R.Frykholm, M.Lindholm, et.al. Gradient zones in WC-Ti(C,N)-Co-based cemented carbides: experimental study and computer simulations. Acta mater, 2000:48:2177~2185
7[10]M.Schwarzkopf, H.E.ExnerM, H.F.Fischmeister. Kinetics of compositional modification of (W,Ti)C-WC-Co alloy surfaces. Materials science and engineering, 1998, A105/106:225~231
8[11]R.Frykholm,H.O.Andren.Development of the microstructure during gradient sintering of a cemented carbide. Materials Chemistry Physics, 2001,67:203~208
9[12]J.Zackrisson, U.Rolander, G.Weinl, et al. Microstructure of the surface zone in a heat-treated cermet material. Int J Refr Met Hard Mater, 1998, 16:315~322
10[13]Hans-Olof Andren. Microstructure development during sintering and heat- treatment of cemented carbides and cermets. Materials Chemistry and Physics 2001, 67:209~213