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Number of items: 45.

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BISWAS, Barnali, PURANDARE, Yashodhan, ARUNACHALAMSUGUMARAN, Arunprabhu, KHAN, Imran and HOVSEPIAN, Papken (2018). Effect of chamber pressure on defect generation and their influence on corrosion and tribological properties of HIPIMS deposited CrN/NbN Coatings. Surface and Coatings Technology, 336, 84-91. [Article]

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BISWAS, Barnali, PURANDARE, Yashodhan, KHAN, Imran and HOVSEPIAN, Papken (2018). Effect of substrate bias voltage on defect generation and their influence on corrosion and tribological properties of HIPIMS deposited CrN/NbN coatings. Surface and Coatings Technology, 344, 383-393. [Article]

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GAJEWSKI, W., EHIASARIAN, A.P., ŻELECHOWSKI, M. and HOVSEPIAN, P. Eh. (2017). Composition and dynamics of high power impulse magnetron discharge at W-Mo-C target in argon atmosphere. Surface and Coatings Technology, 327, 185-191. [Article]

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HOVSEPIAN, Papken, EHIASARIAN, Arutiun and PETROV, Ivan (2014). Structure evolution and Properties of TiAlCN/VCN Coatings Deposited by Reactive HIPIMS. Surface and Coatings Technology, 257, 38-47. [Article]

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HOVSEPIAN, Papken, LUO, Quanshun, ROBINSON, Gary, PITTMAN, M., HOWARTH, Martin, DOERWALD, D., TIETEMA, R., SIM, W.M., DEEMING, A. and ZEUS, T. (2005). TiAlN/VN superlattice structured PVD coatings: A new alternative in machining of aluminium alloys for aerospace and automotive components. Surface and Coatings Technology, 201 (1-2), 265-272. [Article]

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LEWIS, D.B., LUO, Q., HOVSEPIAN, P. E. and MUNZ, W.D. (2004). Interrelationship between atomic species, bias voltage, texture and microstructure of nano-scale multilayers. Surface and Coatings Technology, 184 (2-3), 225-232. [Article]

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LUO, Quanshun, ROBINSON, Gary, PITTMAN, Manfred, HOWARTH, Martin, SIM, W.M., STALLEY, M.R., LEITNER, H., EBNER, R., CALISKANOGLU, D. and HOVSEPIAN, Papken (2005). Performance of nano-structured multilayer PVD coating TiAlN/VN in dry high speed milling of aerospace aluminium 7010-T7651. Surface and Coatings Technology, 200, 123-127. [Article]

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LUO, Quanshun, YANG, S. and COOKE, K.E. (2013). Hybrid HIPIMS and DC magnetron sputtering deposition of TiN coatings: Deposition rate, structure and tribological properties. Surface and Coatings Technology, 236, 13-21. [Article]

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MEI, Haijuan, DING, Ji Cheng, XIAO, Xiaolan, LUO, Quanshun, WANG, Rui, ZHANG, Quan, GONG, Weiping and WANG, Qimin (2020). Influence of pulse frequency on microstructure and mechanical properties of Al-Ti-V-Cu-N coatings deposited by HIPIMS. Surface and Coatings Technology. [Article]

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MEI, Haijuan, GENG, Dongsen, WANG, Rui, CHENG, Lixia, DING, Ji Cheng, LUO, Quanshun, ZHANG, Teng Fei and WANG, Qimin (2020). Effect of Cu doping on the microstructure and mechanical properties of AlTiVN-Cu nanocomposite coatings. Surface and Coatings Technology, p. 126490. [Article]

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MEI, Haijuan, LUO, Quanshun, HUANG, Xueli, DING, Ji Cheng, ZHANG, Teng Fei and WANG, Qimin (2018). Influence of lubricious oxides formation on the tribological behavior of Mo-V-Cu-N coatings deposited by HIPIMS. Surface and Coatings Technology, 358, 947-957. [Article]

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SAVISALO, T., LEWIS, D. B., LUO, Q., BOLTON, M. and HOVSEPIAN, P. E. (2007). Structure of duplex CrN/NbN coatings and their performance against corrosion and wear. Surface and Coatings Technology, 202 (9), 1661-1667. [Article]

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SHARP, J, MÜLLER, IC, MANDAL, P, ABBAS, A, NORD, M, DOYE, A, EHIASARIAN, Arutiun, HOVSEPIAN, Papken, MACLAREN, I and RAINFORTH, WM (2019). Characterisation of a High-Power Impulse Magnetron Sputtered C/Mo/W wear resistant coating by transmission electron microscopy. Surface and Coatings Technology, 377, p. 124853. [Article]

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SHUKLA, Krishnanand, PURANDARE, Yashodhan, KHAN, Imran, EHIASARIAN, Arutiun and HOVSEPIAN, Papken (2020). Effect of Nitriding Voltage on the Impact Load Fatigue and Fracture Toughness Behaviour of CoCrMo Alloy Nitrided Utilising a HIPIMS Discharge. Surface and Coatings Technology, 400, p. 126227. [Article]

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BANDORF, Ralf and EHIASARIAN, Arutiun (2018). Editorial - 8th International Conference on Fundamentals and Applications of HIPIMS, 13.-14.6.2017, Braunschweig, Germany. Surface and Coatings Technology, 352, p. 662. [Article]

FENKER, M., JACKSON, N., SPOLDING, M., NICOLE, P., SCHONHUT, K., GREGORY, G., HOVSEPIAN, P. E. and MUNZ, W. D. (2004). Corrosion performance of PVD-coated and anodised materials for the decorative market. Surface and Coatings Technology, 188, 466-472. [Article]

HOLBERY, J. D., PFLUEGER, E., SAVAN, A., GERBIG, Y., LUO, Quanshun, LEWIS, D. B. and MUNZ, W. D. (2003). Alloying MoS2 with Al and Au: structure and tribological performance. Surface and Coatings Technology, 169 (170), 716-720. [Article]

HOVSEPIAN, P. E., LEWIS, D. B., CONSTABLE, C., LUO, Q., KOK, Y. N. and MUNZ, W. D. (2003). Combined steered cathodic arc/unbalanced magnetron grown C/Cr nanoscale multilayer coatings for tribological applications. Surface and Coatings Technology, 174, 762-769. [Article]

HOVSEPIAN, P. E., LEWIS, D. B. and MUNZ, W. D. (2000). Recent progress in large scale manufacturing of multilayer/superlattice hard coatings. Surface and Coatings Technology, 133-4, 166-175. [Article]

HOVSEPIAN, P. E., LEWIS, D. B., MUNZ, W. D., LYON, S. B. and TOMLINSON, M. (1999). Combined cathodic arc/unbalanced magnetron grown CrN/NbN superlattice coatings for corrosion resistant applications. Surface and Coatings Technology, 120, 535-541. [Article]

HOVSEPIAN, P. E., LEWIS, D. B., MUUNZ, W. D., ROUZAUD, A. and JULIET, P. (1999). Chromium nitride/niobium nitride superlattice coatings deposited by combined cathodic-arc/unbalanced magnetron technique. Surface and Coatings Technology, 116, 727-734. [Article]

HOVSEPIAN, P. E., MUNZ, W. D., MEDLOCK, A. and GREGORY, G. (2000). Combined cathodic arc/unbalanced magnetron grown CrN/NbN superlattice coatings for applications in the cutlery industry. Surface and Coatings Technology, 133, 508-516. [Article]

HOVSEPIAN, P. E., REINHARD, C. and EHIASARIAN, A. P. (2006). CrAlYN/CrN superlattice coatings deposited by the combined high power impulse magnetron sputtering/unbalanced magnetron sputtering technique. Surface and Coatings Technology, 201 (7), 4105-4110. [Article]

HOVSEPIAN, Papken and EHIASARIAN, Arutiun (2010). Novel CrAlYN/CrN nanoscale multilayer PVD coatings produced by the combined high power impulse magnetron sputtering/unbalanced magnetron sputtering technique for environmental protection of gamma TiAl alloys. Surface and Coatings Technology, 204 (16-17), 2702-2708. [Article]

KAMATH, G., EHIASARIAN, A. P., PURANDARE, Y. and HOVSEPIAN, P. (2011). Tribological and oxidation behaviour of TiAlCN/VCN nanoscale multilayer coating deposited by the combined HIPIMS/(HIPIMS-UBM) technique. Surface and Coatings Technology, 205 (8-9), p. 2823. [Article]

KOK, Y. N. and HOVSEPIAN, P. E. (2006). Resistance of nanoscale multilayer C/Cr coatings against environmental attack. Surface and Coatings Technology, 201 (6), 3596-3605. [Article]

KOK, Y. N., HOVSEPIAN, P. E., HAASCH, R. and PETROV, I. (2005). Raman spectroscopy study of C/Cr coatings deposited by the combined. Surface and Coatings Technology, 200 (1-4), 1117-1122. [Article]

LATTEMANN, M., EHIASARIAN, A. P., BOHMARK, J., PERSSON, P. A. O. and HELMERSSON, U. (2006). Investigation of high power impulse magnetron sputtering pretreated interfaces for adhesion enhancement of hard coatings on steel. Surface and Coatings Technology, 200 (22-23), 6495-6499. [Article]

LEYENS, C., PETERS, M., HOVSEPIAN, P. E., LEWIS, D. B., LUO, Q. and MUNZ, W. D. (2002). Novel coating systems produced by the combined cathodic arc/unbalanced magnetron sputtering for environmental protection of titanium alloys. Surface and Coatings Technology, 155 (2-3), 103-111. [Article]

LUO, Q., ROBINSON, G., PITTMAN, M., HOWARTH, M., SIM, W. M., STALLEY, M. R., LEITNER, H., EBNER, R., CALISKANOGLU, D. and HOVSEPIAN, P. E. (2005). Performance of nano-structured multilayer PVD coating TiAN/VN in dry high speed milling of aerospace aluminium 7010-T7651. Surface and Coatings Technology, 200 (1-4), 123-127. [Article]

LUO, Quanshun, RAINFORTH, W.M. and MÜNZ, W.D. (2001). Wear mechanisms of monolithic and multicomponent nitride coatings grown by combined arc etching and unbalanced magnetron sputtering. Surface and Coatings Technology, 146/7, 430-435. [Article]

MAYRHOFER, P. H., HOVSEPIAN, P. E., MITTERER, C. and MUNZ, W. D. (2004). Calorimetric evidence for frictional self-adaptation of TiAlN/VN superlattice coatings. Surface and Coatings Technology, 177, 341-347. [Article]

MUNZ, W. D., DONOHUE, L. A. and HOVSEPIAN, P. E. (2000). Properties of various large-scale fabricated TiAlN- and CrN-based superlattice coatings grown by combined cathodic arc-unbalanced magnetron sputter deposition. Surface and Coatings Technology, 125 (1-3), 269-277. [Article]

PURANDARE, Y. P., STACK, M. M. and HOVSEPIAN, P. E. (2006). Velocity effects on erosion-corrosion of CrN/NbN "superlattice" PVD coatings. Surface and Coatings Technology, 201 (1-2), 361-370. [Article]

PURANDARE, Yashodhan, EHIASARIAN, Arutiun, STACK, M.M. and HOVSEPIAN, Papken (2010). CrN/NbN coatings deposited by HIPIMS: A preliminary study of erosion–corrosion performance. Surface and Coatings Technology, 204 (8), 1158-1162. [Article]

RTIMI, Sami, BAGHRICHE, Oualid, PULGARIN, Cesar, EHIASARIAN, Arutiun, BANDORF, Ralf and KIWI, John (2014). Comparison of HIPIMS sputtered Ag- and Cu-surfaces leading to accelerated bacterial inactivation in the dark. Surface and Coatings Technology, 250, 14-20. [Article]

SAVISALO, T., LEWIS, D. B. and HOVSEPIAN, P. E. (2006). Microstructure and properties of novel wear and corrosion resistant CrON/NbON nano-scale multilayer coatings. Surface and Coatings Technology, 200 (8), 2731-2737. [Article]

STUEBER, M., ALBERS, U., LEISTE, H., ULRICH, S., HOLLECK, H., BARNA, P. B., KOVACS, A., HOVSEPIAN, P. E. and GEE, I. (2006). Multifunctional nanolaminated PVD coatings in the system Ti-Al-N-C by combination of metastable fcc phases and nanocomposite microstructures. Surface and Coatings Technology, 200 (22-23), 6162-6171. [Article]

TALEBI, Tahereh, GHOMASHCHI, Reza, TALEMI, Pejman and AMINORROAYA YAMINI, Sima (2018). Fabrication of n-type Bi2Te3 film using electrophoretic deposition for thermoelectric applications. Surface and Coatings Technology, 343, 127-130. [Article]

WALKE, P. J., NEW, R. and CARE, C. M. (1993). Behavior of a steered cathodic arc as a function of steering magnetic-field. Surface and Coatings Technology, 59 (1-3), 126-128. [Article]

WALKE, P. J., NEW, R. and CARE, C. M. (1994). The distribution of transit times in a magnetically steered cathodic arc. Surface and Coatings Technology, 68, 352-358. [Article]

WANG, H. W., STACK, M. M., LYON, S. B., HOVSEPIAN, P. E. and MUNZ, W. D. (2000). Wear associated with growth defects in combined cathodic arc/unbalanced magnetron sputtered CrN/NbN superlattice coatings during erosion in alkaline slurry. Surface and Coatings Technology, 135 (1), 82-90. [Article]

ZHOU, Z., RAINFORTH, W. M., LEWIS, D. B., CREASY, S., FORSYTH, J. J., CLEGG, E., EHIASARIAN, A. P., HOVSEPIAN, P. E. and MUNZ, W. D. (2004). Oxidation behaviour of nanoscale TiAlN/VN multilayer coatings. Surface and Coatings Technology, 177, 198-203. [Article]

ZHOU, Z. X., RAINFORTH, W. M., ROTHER, B., EHIASARIAN, A. P., HOVSEPIAN, P. E. and MUNZ, W. D. (2004). Elemental distributions and substrate rotation in industrial TiAlN/VN superlattice hard PVD coatings. Surface and Coatings Technology, 183 (2-3), 275-282. [Article]

VAN ESSEN, P., HOY, R., KAMMING, J. D., EHIASARIAN, A. P. and JANSSEN, G. (2006). Scratch resistance and wear of CrNx coatings. Surface and Coatings Technology, 200 (11), 3496-3502. [Article]

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