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毕业论文网 > 任务书 > 材料类 > 高分子材料与工程 > 正文

抗菌弹性砧板的造型设计与工艺、材料选择任务书

 2020-06-04 08:06  

1. 毕业设计(论文)的内容和要求

主要内容包括: 抗菌弹性砧板具有较高附加值。

具体包括:项目简介、前言、技术可行性分析、设备选型、经济可行性分析、厂房工艺设计布局等。

具体分为: 第一周~第二周:文献查阅 查阅有关抗菌弹性体材料方面的文献,要求学习并掌握利用中国期刊网、ca、ei、elsevier等查阅文献,不少于30篇。

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2. 参考文献

[1] Teh PL, Mohd-Ishak ZA, Hashim AS, Karger-Kocsis J, Ishiaku US. Effects of epoxidized natural rubber as a compatibilizer in melt compounded natural rubber-organoclay nanocomposites. Eur Polym J 2004;40:2513-21. [2] Tasakorn P, Amatyakul W. Photochemical reduction of molecular weight and number of double bonds in natural rubber film. Korean J Chem Eng 2008;25: 1532-8. [3] Avirah SA, Joseph R. Studies on natural rubber bound para-phenylenediamine antioxidants in NBR. J Appl Polym Sci 1995;57:1511-24. [4] Ismali MN, Abd El Ghaffar MA, Shaffei KA, Mohamed NA. Some novel polyamines as antioxidants for SBR vulcanizates. Polym Degrad Stab 1999;63: 377-83. [5] Zhao Y, Dan Y. Preparation and characterization of a high molecular weight UV-stabilizer based on a derivative of 2, 4-dihydroxybenzophenone and its application in polymer materials. J Appl Polym Sci 2006;102:2203-11. [6] Poh BT, Te CS. Cure index and activation energy of vulcanization of natural rubber and epoxidized natural rubber vulcanized in the presence of antioxidants. J Appl Polym Sci 2000;77:3234-8. [7] Ismali MN, Yehia AA, Korium AA. Evaluation of some arylphosphites as antioxidants and antifatigue agents in natural rubber and styrene-butadiene rubber vulcanizates. Polym Degrad Stab 2001;74:247-53. [8] Avirah S, Joseph R. Studies on natural rubber-bound diphenylamine antioxidants. Polym Degrad Stab 1994;46(2):251-7. [9] Choi SS. Migration of antidegradants to the surface in NR vulcanizates: influence of content of carbon black. Bull Korean Chem Soc 1998;19(2):170-4. [10] Foldes E, Lohmeijer J. Polymer/additive compatibility: study of primary antioxidants in PBD. J Appl Polym Sci 2007;55:3225-31. [11] Parra DF, Freire MT De A, Paoli De MA. Diffusion of amine stabilizers in vulcanized natural rubber compositions used in tires. J Appl Polym Sci 2000; 75:670-6. [12] Charles A, Andre GS, Ralph M, Pual L. Leaching of antioxidants and vulcanization accelerators from rubber closures into drug preparations. J Biomat Sci Polym Ed 1990;1(4):231-41. [13] Feigenbaum A, Scholler D, Bouquant J, Brigot G, Ferrier D, Franz R, et al. Safety and quality of food contact materials. Part 1: evaluation of analytical strategies to introduce migration testing into good manufacturing practice. Food Addit Contam 2002;19(2):184-201. [14] Ikarashi Y, Kaniwa M. Determination of p-phenylenediamine and related antioxidants in rubber boots by high performance liquid chromatography. Development of an analytical method for N-(1-methylheptyl)-N0-phenyl-pphenylenediamine. J Health Sci 2000;46(6):467-73. [15] Tsuchiya T, Fukuhara K, Hata H, Ikarashi Y, Miyata N, Katoh F, et al. Studies on the tumor-promoting activity of additives in biomaterials: inhibition of metabolic cooperation by phenolic antioxidants involved in rubber materials. J Biomed Mater Res 1995;29(1):121-6. [16] Ruiz AM, Sakai G, Cornet A, Shimanoe K, Morante JR, Yamazoe N. Cr-doped TiO2 gas sensor for exhaust NO2 monitoring. Sensors Actuators B: Chem 2003; 93(1e3):509-18. [17] Fujishima A, Rao TN, Tryk DA. TiO2 photocatalysts and diamond electrodes. Electrochim Acta 2000;45:4683-90. [18] Nasu A, Otsubo Y. Rheology and UV-protecting properties of complex suspension of titanium dioxides and zinc oxides. J Coll Int Sci 2007;310:617-23. [19] Erdem N, Erdogan UH, Cireli AA, Onar N. Structural and ultraviolet-protective properties of nano-TiO2-doped polypropylene filaments. J Appl Polym Sci 2010;115:152-7. [20] Montazer M, Seifollahzadeh S. Enhanced self-cleaning, antibacterial and UV protection properties of nano TiO2 treated textile through enzymatic pretreatment. Photochem Photobiol 2011;87:877-83. [21] Schilling K, Bradford B, Castelli D, Dufour E, Nash JF, Pape W, et al. Human safety review of ”nano” titanium and zinc oxide. Photochem Photobiol Sci 2010;9(4):495-509. [22] Faunce T, Murray K, Nasu H, Bowman D. Sunscreen safety: the precautionary principle, the Australian goods administration and nanoparticles in sunscreens. Nanoethics 2008;2:231-40. [23] Yadav A, Prasad V, Kathe AA, Raj S, Yadav D, Sundaramoorthy C, et al. Functional finishing in cotton fabrics using zinc oxide nanoparticles. Bull Mater Sci 2006;29(6):641-5. [24] Wang RM, Wang BY, He YF, Lv WH, Wang JF. Preparation of composited nanoTiO2 and its application on antimicrobial and self-cleaning coatings. Polym Adv Technol 2010;21(5):331-6. [25] Chawengkijwanich C, Hayata Y. Development of TiO2 powder-coated food packaging film and its ability to inactivate Escherichia coli in vitro and in actual tests. Int J Food Microbiol 2008;123(3):288-92. [26] Mouillet V, Farcas F, Besson S. Ageing by UV radiation of an elastomer modified bitumen. Fuel 2008;87(12):2408-19. [27] Delor F, Barrois-Oudin N, Duteurtre X, Cardinet C, Lemaire J, Lacoste J. Oxidation of rubbers analyzed by HATR/IR spectroscopy. Polym Degrad Stab 1998;62:395-401.

3. 毕业设计(论文)进程安排

17. 2.22-17. 2.28 文献查阅,了解课题 17. 2.29-17.3.13 英文文献翻译以及完成开题报告 17.3.14-17.4.1 按照实验计划进行试验 17.4.2-17.4.4 清明节休假 17.4.5-17.4.27 按照实验计划进行试验 17.4.28-17.4.30 进行中期检查 17.5.1-17.5.3 劳动节休假 17.5.4-17.5.31 进行实验并整理数据 17.6.1-17.6.14 撰写完成毕业论文 17.6.15-17.6.21 毕业论文答辩

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