Advances in Ceramic Matrix Composites by I.M. Low (Eds.)

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By I.M. Low (Eds.)

Ceramic matrix composites (CMCs) have confirmed to be worthy for a variety of purposes as a result of homes corresponding to their gentle weight, durability and temperature resistance. Advances in ceramic matrix composites summarises key advances and kinds of processing of CMCs.

After an introductory bankruptcy, the 1st a part of the booklet experiences varieties and processing of CMCs, protecting processing, homes and functions. Chapters speak about nanoceramic matric composites, silicon carbide-containing alumina nanocomposites and advances in manufacture through quite a few infiltration recommendations together with warmth remedies and spark plasma sintering. the second one a part of the publication is devoted to realizing the homes of CMCs with chapters on Finite aspect research, tribology and put on and self-healing CMCs. the ultimate a part of the e-book examines the purposes of CMCs, together with these within the structural engineering, nuclear and fusion power, turbine, steel slicing and microelectronics industries.

Advances in ceramic matrix composites is a necessary textual content for researchers and engineers within the box of CMCs and industries similar to aerospace and automobile engineering.

  • Reviews varieties and processing of CMCs, protecting processing, homes and applications

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Extra resources for Advances in Ceramic Matrix Composites

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J. Nucl. Mater. 2011, 417: 348–52. 56. Huo J, Wang L, Yu HJ. Polymeric nanocomposites for electromagnetic wave absorption. J. Mater. Sci. 2009, 44: 3917–27. 57. Zhao DL, Luo F, Zhou WC. Microwave absorbing property and complex permittivity of nano SiC particles doped with nitrogen. J. Alloy. Compd. 2010, 490:190–4. 58. Li ZM, Zhou WC, Su XL, et al. Dielectric property of aluminum-doped SiC powder by solid-state reaction. J. Am. Ceram. Soc. 2009, 92(9): 2116–18. 59. Luo F. Effect of aluminum doping on microwave permittivity of silicon carbide powders.

Microstructure, mechanical properties and reaction mechanism of KD-1 SiCf /SiC composites fabricated by chemical vapor infiltration and vapor silicon infiltration. Mater. Sci. Eng. A. 2011, 2441–5. 44. Wang HL, Zhu XG, Yu JS, Cao YB, Liu RJ. Fabrication of SiCf /SiC composites by chemical vapor infiltration and vapor silicon infiltration. Mater. Lett. 2010, 1691–3. 45. Wong EW, Sheehan PE, Lowdon RA, Stinton DP. Nanorods and nanotubes nanobeam mechanics: elasticity, strength, and toughness of nanorods and nanotubes, Science, 1997, 277: 1971–5.

J. Mater. Sci. 2009, 44: 3917–27. 57. Zhao DL, Luo F, Zhou WC. Microwave absorbing property and complex permittivity of nano SiC particles doped with nitrogen. J. Alloy. Compd. 2010, 490:190–4. 58. Li ZM, Zhou WC, Su XL, et al. Dielectric property of aluminum-doped SiC powder by solid-state reaction. J. Am. Ceram. Soc. 2009, 92(9): 2116–18. 59. Luo F. Effect of aluminum doping on microwave permittivity of silicon carbide powders. J. Am. Ceram. Soc. 2008, 91(12): 4151–3. 60. Jin HB, Cao MS, et al.

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