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Articles

Effect of interconnected porosity on carbon diffusion depth in vacuum carburising process of iron compacts

Pages 318-322 | Published online: 19 Jul 2013

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James M. Damon, Erik Jung, Michael Zürn, Stefan Dietrich & Volker Schulze. (2021) High-cycle fatigue and surface layer stability of case-hardened PM-steels with graded porosity. Powder Metallurgy 64:4, pages 262-272.
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Articles from other publishers (6)

Ozer Pamuk, Yavuz Kaplan, Engin Tan & Sinan Aksoz. (2022) The Effect of Vacuum Carburizing on the Mechanical and Wear Properties of Fe–C–Cu Composite Materials Produced via Powder Metallurgy. Arabian Journal for Science and Engineering 47:12, pages 16305-16317.
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Özer PAMUK, Ümit DEMİR & Sinan AKSÖZ. (2021) Toz Metalurjisi Yöntemi ile Üretilen Fe Esaslı Kompozit Malzemelerde Vakum Sementasyon İşleminin Sinterlenebilirlik ve Mekanik Özelliklere Etkisinin İncelenmesi. Journal of Polytechnic.
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J. M. Damon, H. Surm, P. Saddei, S. Dietrich & V. Schulze. (2021) Experimental and Numerical Investigation of the Surface Layer Conditions after Carbonitriding of Powder Metallurgical Steels. Part 1: Diffusion in Components of Graded Porosity. HTM Journal of Heat Treatment and Materials 76:1, pages 36-57.
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Jiřina Vontorová & Petra Váňová. (2018) Determination of carburized layer thickness by GDOES method. AIMS Materials Science 5:1, pages 34-43.
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Joseph W. Newkirk. 2014. Heat Treating of Irons and Steels. Heat Treating of Irons and Steels 253 273 .
P. Nusskern, J. Hoffmeister & V. Schulze. (2014) Powder Metallurgical Components: Improvement of Surface Integrity by Deep Rolling and Case Hardening. Procedia CIRP 13, pages 192-197.
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