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毕业论文网 > 任务书 > 材料类 > 复合材料与工程 > 正文

SSC5基陶瓷仿生抗热震结构构筑及其性能研究任务书

 2020-04-21 17:14:32  

1. 毕业设计(论文)的内容和要求

sm1-xsrxcoo3-δ是一类具有良好电化学性能和热稳定性的钙钛矿氧化物体系,通过研究其组分与光学、热辐射性能间的关系,发现其具有良好的可见光吸收率和较低的红外热辐射率。

且该类材料能够耐高温,在太阳能热发电方面有很好的发展前景。

实验表明,在热空气环境下,钙钛矿sm0.5sr0.5coo3陶瓷表现出了有优异的高温热空气性能稳定性(α/ε800~1000℃=0.82~0.85/0.05~0.06)。

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2. 参考文献

[1]K. Wada, Crystal growth of molluscan shells, Bulletin of the National Pearl Research Laboratories 7 (1961) 703#8211;828. [2] H. Nakahara, G. Bevelander, M. Kakei, Electron microscopic and amino acid studies on the outer and inner shell layers of Haliotis rufescens, Venus 41 (1982)33#8211;46. [3] H.A. Lowenstam, Minerals formed by organisms, Science 211 (1981) 1126#8211;1131. [4] H. Espinosa, J. Rim, F. Barthelat, M. Buehler, Merger of structure and material in nacre and bone-perspectives on de novo biomimetic materials, Progress in Materials Science 54 (2009) 1059#8211;1100. [5] S. Wise, Microarchitecture and mode of formation of nacre (mother-of-pearl) in pelecypods, gastropods, and cephalopods, Eclogae Geologicae Helvetiae 63 (1970) 775#8211;797. [6] T. Schauml;ffer, C. Ionescu-Zanetti, R. Proksch, M. Fritz, D. Walters, N. Almqvist, Does abalone nacre form by heteroepitaxialnucleation or by growth through mineral bridgesChemistryofMaterials9 (1997)1731#8211;1740. [7] Evans A G, Suo Z, Wang R Z, Aksay I A, He M Y and Hutchinson J W 2001 J. Mater. Res. 16 2475 [8] Schauml;ffer T E et al 1997 Chem. Mater. 9 1731 [9] Barthelat F, Tang H, Zavattieri P D, Li C-M and Espinosa H D 2007 J. Mech. Phys. Solids 55 306 [10] Tanaka Y, Kakisawa H and Kagawa Y 2010 Proc. 7th Asian-Australasian Conf. on Composite Materials (in CD-ROM) [11] Barthelat F and Espinosa H D 2007 Exp. Mech. 47 311 [12] Mayer G 2005 Science 310 1144 [13] Smith B L et al 1999 Nature 399 761 [14] Katti K S, Katti D R, Pradhan S M and Bhosle A 2005 J.Mater. Res. 20 1097 [15] Lin A and Meyers M A 2005 Mater. Sci. Eng. A 390 27 [16] Jackson A P, Vincent J F V and Turner R M 1988 Proc. R. Soc.B 234 415 [17] Kamat S, Su X, Ballarini R and Heuer A H 2000 Nature 405 1036

3. 毕业设计(论文)进程安排

2019.01.10-2019.01.18 文献查阅,了解课题,英文文献翻译 2019.01.19-2019.02.28 撰写开题报告 2019.03.01-2019.04.05 按照实验计划进行实验 2019.04.07-2019.04.28 实验并进行中期检查 2019.05.02-2019.06.02 进行实验并撰写完成毕业论文 2019.06.03-2019.06.14. 毕业论文答辩

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