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84865436638
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CVI : A versatile CMC-processing technique revisited
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Ed by W Krenkel and J Lamon AVISO Verlagsgesellschaft mbH Berlin
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R. Naslain, R. Pailller, S. Jacques, G. Vignoles, and F. Langlais, "CVI : A Versatile CMC-Processing Technique Revisited," pp. 2-14 in High Temperature Ceramic Materials and Composites. Ed. by W. Krenkel and J. Lamon, AVISO Verlagsgesellschaft mbH, Berlin, 2010.
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2
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DOI 10.1016/S0167-2738(01)00743-3, PII S0167273801007433
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R.R. Naslain, R. Pailler, X. Bourrat, S. Bertrand, F. Heurtevent, P. Dupel, and F. Lamouroux, "Synthesis of Highly Tailored Ceramic Matrix Composites by Pressure-pulsed CVI," Solid State Ionics, 141-142 541-8 (2001). (Pubitemid 32605385)
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3
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84865443461
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Chemical vapor infiltration processes for ceramic matrix composites: Manufacturing, properties, applications
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Ed by W Krenkel, Wiley-VCH Verlag GmbH & Co. KGaA., Weinheim
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M. Leuchs, "Chemical Vapor Infiltration Processes for Ceramic Matrix Composites: Manufacturing, Properties, Applications," pp. 141-64 in Ceramic Matrix Composites. Ed. by W. Krenkel, Wiley-VCH Verlag GmbH & Co. KGaA., Weinheim, 2008.
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Ceramic Matrix Composites
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A process for Cf/SiC composites using liquid polymer infiltration
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Development of a cost efficient process for the manufacture of CMC components
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W. Krenkel, "Development of a Cost Efficient Process for the Manufacture of CMC Components," DLR-Research Report 2000-04 (2000).
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Krenkel, W.1
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8
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Carbon fiber reinforced CMC for high-performance structures
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W. Krenkel, "Carbon Fiber Reinforced CMC for High-Performance Structures," Int. J. Appl. Ceram. Technol., 1 [2] 188-200 (2004).
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C/C-SiC composites for advanced friction systems
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W. Krenkel, B. Heidenreich, and R. Renz, "C/C-SiC Composites for Advanced Friction Systems," Advan. Eng. Mater., 4 [7] 427-36 (2002).
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Advan. Eng. Mater.
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84865419027
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Microstructure changes caused by the interaction of fiber-matrix during the carbonization
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Ed by W Krenkel and J Lamon AVISO Verlagsgesellschaft mbH Berlin
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J. Sha, J.M. Hausherr, H. Mucha, A. Konschak, and W. Krenkel, "Microstructure Changes Caused by the Interaction of Fiber-Matrix during the Carbonization," pp. 143-48 in High Temperature Ceramic Materials and Composites. Ed. by W. Krenkel and J. Lamon, AVISO Verlagsgesellschaft mbH, Berlin, 2010.
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Sha, J.1
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0344926547
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Microstructure tailoring of C/C-SiC composites
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W. Krenkel, "Microstructure Tailoring of C/C-SiC Composites," Cer. Eng. Sci. Proc., 24 [4] 471-6 (2003).
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Cer. Eng. Sci. Proc.
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Carbon fiber reinforced silicon carbide composites (C/SiC, C/C-SiC)
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Ed by NP Bansal, Kluwer Academic Publishers, USA
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W. Krenkel, "Carbon Fiber Reinforced Silicon Carbide Composites (C/SiC, C/C-SiC)," pp. 117-148 in Handbook of Ceramic Composites. Ed. by N.P. Bansal, Kluwer Academic Publishers, USA, 2005.
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Handbook of Ceramic Composites
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Krenkel, W.1
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15
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2 from Ti/Si/C powders
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DOI 10.1016/S0955-2219(02)00044-4, PII S0955221902000444
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2 from Ti/Si/C Powders," J. Eur. Ceram. Soc., 22 2957-61 (2002). (Pubitemid 35474180)
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N phases: A new class of solids; thermodynamically stable nanolaminates
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X. Yin, S. He, L. Zhang, S. Fan, L. Cheng, G. Tian, and T. Li, "Fabrication and Characterization of a Carbon Fibre Reinforced Carbon-silicon Carbide-titanium Silicon Carbide Hybrid Matrix Composite," Mat. Sci. Eng. A, 527 835-41 (2010).
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Fabrication of fiber composites with a MAX phase matrix by reactive melt infiltration
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F. Lenz and W. Krenkel, "Fabrication of Fiber Composites with a MAX Phase Matrix by Reactive Melt Infiltration," IOP Conf. Ser.: Mater. Sci. Eng., 18 2020-30 (2011) (doi: 10.1088/1757-899X/18/20/202030).
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