박사

Effect of styrene-butadiene rubber containing glycidyl methacrylate on the mechanical and dynamic properties of silica filled compound = 기능성 스티렌 부타디엔 글리시딜 메타아크릴에이트 공중합체가 실리카 컴파운드에 미치는 영향

김기현 2015년
논문상세정보
' Effect of styrene-butadiene rubber containing glycidyl methacrylate on the mechanical and dynamic properties of silica filled compound = 기능성 스티렌 부타디엔 글리시딜 메타아크릴에이트 공중합체가 실리카 컴파운드에 미치는 영향' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • emulsion polymerization
  • rubber
  • silica compound
  • tire
  • 친환경타이어
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
60 0

0.0%

' Effect of styrene-butadiene rubber containing glycidyl methacrylate on the mechanical and dynamic properties of silica filled compound = 기능성 스티렌 부타디엔 글리시딜 메타아크릴에이트 공중합체가 실리카 컴파운드에 미치는 영향' 의 참고문헌

  • “Emulsion polymerization” internet: http://en.wikipedia.org/wiki/Emulsion_polymerization, Dec. 8, 2014 [Mar. 6, 2015].
  • Z. Peng, L. X. Kong, S. Li, Y. Chen and M. F. Huang, Composites Sci. Technol., 67, 3130 (2007).
  • Z. Abdollahi, M. T. Darestani, S. Ghasemi and V. G. Gomes, Polym. Int.,DOI: 10.1002/pi.4853 (2014).
  • Y. Wu, Q. Zhao, S. Zhao and L. Zhang, J. Appl. Polym. Sci., 108, 112(2008).
  • Y. Wu Y, Q. Zhao, S. Zhao and L. Zhang, J. Appl. Polym. Sci., 108, 112(2008).
  • Y. Wang, D. Fan, J. He and Y. Yang, Colloid. Polym. Sci., 289, 1885(2011).
  • Y. Saito, Kautsch. Gummi. Kunstst., 39, 30 (1986).
  • Y. Li, M. J. Wang, T. Zhang, F. Zhang and X. Fu, Rubber Chem. Technol., 67, 693 (1994).
  • Y. C. Ou, Z. Z. Yu, A. Vidal and J. B. Donnet, Rubber Chem. Technol.,67, 834 (1994).
  • X. Pan, Rheologica. acta., 44, 379 (2005).
  • W. V. Smith, J. Am. Chem. Soc., 71, 4077 (1949).
  • W. V. Smith, J. Am. Chem. Soc., 70, 3695 (1948).
  • W. V. Smith and R. H. Ewart, J. Chem. Phys., 16, 592 (1948).
  • W. Kern and S. Futamura, Polymer, 29, 1801 (1988).
  • W. Kaewsakul, K. Sahakaro, W. Dierkes and J. Noordermeer,“Flocculation kinetics and filler-rubber interaction in silica-reinforcednatural rubber compounds,” in International Rubber Conference 2012,Jeju, Korea, May 22th, p. 63. 2012.
  • W. Kaewsakul, K. Sahakaro, W. Dierkes and J. Noordermeer, RubberChem. Technol., 85, 277 (2012).
  • W. H. Keesom, Trans. Faraday Soc., 23, 225 (1937).
  • W. Dierkes, J. Noordermeer, C. van de Pol, M. Rinker and K. Kelting,Kaut. Gummi. Kunstst., 56, 338 (2003).
  • W. D. Harkins, J. Chem. Phys., 14, 47 (1946).
  • W. D. Harkins, J. Chem. Phys., 13, 381 (1945).
  • W. D. Harkins, J. Am. Chem. Soc., 69, 1428 (1947).
  • U. S. Energy Information Administration. Annual Energy Review(AER), 11. Environmental, http://www.eia.gov/totalenergy/data/annual,2010 [Mar. 4, 2015]
  • T. Sone and T. Yuasa, Inter. Polym. Sci. Technol., 38, 1 (2011).
  • T. Jesionowski and A. Krysztafkiewicz. Appl. Surf. Sci., 172, 18 (2001).
  • S. Wolff, Rubber Chem. Technol., 69, 325 (1996).
  • S. Wolff, M. Wang and E. Tan, Rubber Chem. Technol., 66, 163 (1993).
  • S. Wolff and M. J. Wang, Kautsch. Gummi. Kunstst., 47, 17 (1994).
  • S. Sternstein and A. Zhu, Macromolecules, 35, 7262 (2002).
  • S. Ng and L. Gan, Eur. Polym. J., 17, 1073 (1981).
  • S. Ng S and L. Gan, Eur. Polym. J., 17, 1073 (1981).
  • S. Mihara, “Reactive processing of silica-reinforced tire rubber: newinsight into the time-and temperature-dependence of silica rubberinteraction,” PhD thesis, University of Twente, Enschede, theNetherlands, 2009.
  • S. Mihara, R. Datta and J. Noordermeer, Rubber Chem. Technol., 82,524 (2009).
  • S. Mihara, R. Datta and J. Noodermeer, Rubber Chem. Technol., 82, 524(2009).
  • S. Choi, Polym. Test., 21, 201 (2002).
  • S. Choi, J. Appl. Polym. Sci., 83, 2609 (2002).
  • S. Bandyopadhyay, P. De, D. Tripathy and S. De, J. Appl. Polym. Sci.,63, 1833 (1997).
  • S. Ahmad and R. J. Schaefer, “Energy saving tire with silica-rich tread,”U.S. Patent 4,519,430, May 28, 1985.
  • S. Ahmad and R. J. Schaefer, Energy saving tire with silica-rich tread. U. S patent 4,519,430. 1985.
  • R. O. Ebewele, “Polymer Modification” in Polymer Science andTechnology, CRC Press LLC, New York, 2000.
  • R. K. Matthan, “Synthetic Rubbers” in Rubber Engineering, IndianRubber Institute: Tata McGraw-Hill Publishing Co. Ltd., New Delhi,1998. p. 455.
  • R. K. Matthan, “Synthetic Rubbers” in Rubber Engineering, IndianRubber Institute: Tata McGraw-Hill Publishing Co. Ltd., New Delhi,1998. p. 445.
  • R. K. Matthan, Rubber Engineering, Indian Rubber Institute: TataMcGraw-Hill Publishing Co. Ltd., New Delhi, 1998. pp. 717?726
  • R. K. Matthan, Rubber Engineering, Indian Rubber Institute: TataMcGraw-Hill Publishing Co. Ltd., New Delhi, 1998. pp. 478?479.
  • R. K. Matthan, Rubber Engineering, Indian Rubber Institute: TataMcGraw-Hill Publishing Co. Ltd., New Delhi, 1998. pp. 461?462.
  • R. K. Matthan, Rubber Engineering, Indian Rubber Institute: TataMcGraw-Hill Publishing Co. Ltd., New Delhi, 1998. p. 398.
  • P. Vondra??ek, M. Hradec, V. Chvalovsky? and H. D. Khanh, RubberChem. Technol., 57, 675 (1984).
  • P. Sae-oui, C. Sirisinha, U. Thepsuwan and K. Hatthapanit, Eur. Polym. J., 42, 479 (2006).
  • P. Debye, Trans. Faraday Soc., 22, 302 (1921).
  • P. A. Lovell and M. S. El-Aasser, Emulsion polymerization andemulsion polymers: Wiley, New York, 1997.
  • P. A. Ciullo and N. Hewitt, The rubber formulary; William Andrew:New York, 1999.
  • O. Johannson, F. Stark, G. Vogel and R. Fleischmann, J. CompositeMater., 1, 278 (1967).
  • O. Johannson, F. Stark, G. Vogel and R. Fleischmann, J. Compos. Mater., 1, 278 (1967).
  • M. Wang, Rubber Chem. Technol., 72, 430 (1999).
  • M. Wang, Rubber Chem. Technol., 71, 520 (1998).
  • M. Wang and Y. Kutsovsky, Rubber Chem. Technol., 81, 552 (2008).
  • M. P. Stevens, “Free Radical Polymerization” in Polymer chemistry;Oxford Univ. press: New York, 1990. p. 178.
  • M. P. Stevens, “Free Radical Polymerization” in Polymer chemistry;Oxford Univ. Press: New York, 1990. pp. 175?176.
  • M. P. Stevens, “Free Radical Polymerization” in Polymer chemistry;Oxford Univ. Press: New York, 1990. p. 173.
  • M. P. Stevens, “Basic principle” in Polymer chemistry; Oxford Univ. Press: New York, 1990. pp. 6?7.
  • M. P. Stevens, “Basic principle” in Polymer chemistry; Oxford Univ. Press: New York, 1990. p. 10.
  • M. Montes-Moran, D. Suarez, J. Menendez, and E. Fuente, Carbon, 42,1219 (2004).
  • M. J. Wang, Rubber Chem. Technol., 71, 520 (1998).
  • M. J. Wang, Presented at a workshop “Praxis and Theorie derVerstarkung won Elastomeren,” Hanover, Germany, June 27?28, 1996.
  • M. F. Perry and V. A. Volpert, J. Eng. Math., 49, 359 (2004).
  • L. Zhuravlev, Colloids Surface. A., 173, 1 (2000).
  • L. Reuvekamp, S. Debnath, J. Ten Brinke, P. Van Swaaij and J. Noordermeer, Rubber Chem. Technol., 77, 34 (2004).
  • L. Nikiel, M. Gerspacher, H. Yang and C.P. O'Farrell, Rubber Chem. Technol., 74, 249 (2011).
  • L. Nikiel, M. Gerspacher, H. Yang and C. P. O'Farrell, Rubber Chem. Technol., 74, 249 (2001).
  • K. Stockelhuber, A. Svistkov, A. Pelevin and G. Heinrich,Macromolecules, 44, 4366 (2011).
  • K. Murakami, S. Iio, Y. Ikeda, H. Ito, M. Tosaka and S. Kohjiya, J. Mater. Sci., 38, 1447 (2003).
  • K. Kim, K. Lee, B. Choi, B. Seo, G. Kwag, H. Paik and W. Kim. Compos. Interface., 21, 685 (2014).
  • K. Kim, J. Lee, B. Choi, B. Seo, G. Kwag, H. Paik and W. Kim, Compos. Interface., 21, 685, (2014).
  • K. Kim, B. Seo, J. Lee, B. Choi, G. Kwag, H. Paik and W. Kim, Compos. Interface., 22, 137 (2015).
  • K. Kim, B. Seo, J. Lee, B. Choi, G. Kwag, H. Paik and W. Kim, Compos. Interface., 22, 137 (2014).
  • K. Hochi, Run flat tire, EU patent, 1719,799 B1. 2012.
  • J. T. Byers, Rubber World, 218, 38 (1998).
  • J. T. Byers, Rubber Chem. Technol., 75, 527 (2002).
  • J. Phillips, Trans. Faraday Soc., 51, 561 (1955).
  • J. Harwood, L. Mullins and A. Payne, J. Appl. Polym. Sci., 9, 3011(1965).
  • J. Germain and J. Machurat, Rubber World, 193, 51 (1985).
  • I. Piirma, Emulsion Polymerization, Academic Press, New York, 1982.
  • I. Mora-Barrantes, A. Rodriguez, L. Ibarra, L. Gonzalez and J. Valentin,J. Mater. Chem., 21, 7381 (2011).
  • I. Moora-Barrantes, A. Rodriguez, L. Ibarra, L. Gonzalez and J. Valentin,J. Mater. Chem., 21, 7381 (2011).
  • H. Zou, S. Wu and J. Shen, Chem. Rev., 108, 3893 (2008).
  • H. Yan, G. Tian, K. Sun, Y. Zhang and Y. Zhang, J. Polym. Sci., Part B:Polym. Phys., 43, 573 (2005).
  • H. Yan, G. Tian, K. Sun, Y. Zhang and Y. Zhang, J. Polym. Sci. Pol. Phys., 43, 573 (2005).
  • H. Y. Erbill, “Vinyl Acetate Emulsion Polymerization andCopolymerization with Acrylic Monomers,” CRC Press, Florida, 2000.
  • H. Ismail and P. Freakley, Polym?Plastics Technol., 36, 873 (1997).
  • H. Ismail and P. Freakley, Polym.-Plast. Technol., 36, 873 (1997).
  • H. Hirakawa and A. Ahagon, Tire Sci. Technol., 10, 16 (1982).
  • H. B. Yamak, “Emulsion Polymerization” in Polymer Science, INTECHopen access, Jan. 23, 2013. pp. 46?49.
  • H. B. Yamak, “Emulsion Polymerization” in Polymer Science, INTECHopen access, Jan. 23, 2013. pp. 44?45.
  • G. Thielen, Rubber Chem. Technol., 81, 625 (2008).
  • G. Thielen and C. Berg, Kaut. Gummi. Kunstst., 61, 377 (2008).
  • G. Plouchart. “Energy Consumption in the Transport Sector”,http://www.iaea.org/inis/collection/NCLCollectionStore/_Public/37/121/37121765.pdf, Dec. 1, 2004 [Mar. 4, 2015]
  • G. Mathew, M. Huh, J. Rhee, M. Lee and C. Nah, Polym. Adv. Technol.,15, 400 (2004).
  • G. Heideman, R. N. Datta, J. W. Noordermeer and B. van Baarle,Rubber Chem. Technol., 77, 512 (2004).
  • G. G. Bohm and M. N. Nguyen, J. Appl. Polym. Sci., 55, 1041 (1995).
  • G. Burrowes and B. Rodgers, “Compound Development andApplications” in Rubber Compounding; Chemistry and Applications, EdM. B. Rodgers, Marcel Dekker, Inc., New York, 2004. p. 615.
  • G. Bohm, W. Tomaszewski, W. Cole and T. Hogan, Polymer, 51, 2057(2010).
  • F. M. Fowkes and M. A. Monsafa, Ind. Eng. Chem., Prod. Res. Dev., 17,3 (1978).
  • F. London, Trans. Faraday Soc., 33, 8 (1937).
  • F. Ignatz-Hoover and B. Rodgers, “Vulcanization” in RubberCompounding; Chemistry and Applications, Ed M. B. Rodgers, MarcelDekker, Inc., New York, 2004. pp. 514?515.
  • F. Ignatz-Hoover and B. Rodgers, “Vulcanization” in RubberCompounding; Chemistry and Applications, Ed M. B. Rodgers, MarcelDekker, Inc., New York, 2004. pp. 508?512.
  • E. Sheng, I. Sutherland, R. Bradley and P. Freakley, Eur. Polym. J., 32,35 (1996).
  • E. Dannenberg, Rubber Chem. Technol., 59, 512 (1986).
  • E. Cooper. “New data from 2050 Global Calculator indicatessustainable transport critical to combating climate change”,http://thecityfix.com, July. 30, 2014 [Mar. 4, 2015]
  • D. Edwards, J. Mater. Sci., 25, 4175 (1990).
  • D. C. Blakely, Emulsion Polymerization?Theory and Practice, AppliedScience, London, 1975.
  • C. Y. Sohn and S. Lee, the auto journal, 33, 18 (2011).
  • C. Y. Sohn and S. Lee, Auto Journal, 33, 18 (2011).
  • C. Wrana, U. Eisele and S. Kelbch, Kaut. Gummi. Kunsts., 53, 126(2000).
  • C. S. Chern, Prog. Polym. Sci., 31, 443 (2006).
  • C. Robertson, C. Lin, R. Bogoslovov, M. Rackaitis, P. Sadhukhan, J. Quinn and C. Roland, Rubber Chem. Technol., 84, 507 (2011).
  • C. J. Lin, W. Hergenrother, E. Alexanian and G. Bohm, Rubber Chem. Technol., 75, 865 (2002).
  • C. C. Pimentel and A. L. McClellan, “The hydrogen Bond,” Freemannand Co. San Francisco, 1960.
  • B. Seo, “Improvement of Silica Dispersion for Tire Tread Compounds:Effect of Rubber Functionalization, Additives and Vulcanization Agent,”16PhD thesis, Pusan National University, Busan, Republic of Korea,(2013).
  • B. Seo, H. Kim, H. Paik, G. Kwag and W. Kim, Macromole. Res., 21,738 (2013).
  • B. Seo, H. Kim, H. Paik, G. Kwag and W. Kim, Macromol. Res., 21,738 (2013).
  • B. Seo B, H. Kim, H. Paik, G. Kwag and W. Kim, Macromol. Res., 21,738, (2013).
  • B. Poh and C. Ng, Eur. Polym. J., 34, 975 (1998).
  • A. R. Payne, Rubber J., 146, 36 (1964).
  • A. R. Payne, J. Polym. Sci., 6, 57 (1962).
  • A. R. Payne, J. Appl. Polym. Sci., 6, 57 (1962).
  • A. R. Payne and R. E. Whittaker, Rubber Chem. Technol., 44, 440 (1971).
  • A. Payne and R. Whittaker, Rubber Chem. Technol., 44, 440 (1971).
  • A. I. Medalia, Rubber Chem. Technol., 51, 437 (1978).
  • A. Hashim, B. Azahari, Y. Ikeda and S. Kohjiya, Rubber Chem. Technol., 71, 289 (1998).
  • A. F. Halasa, Rubber Chem. Technol., 70, 295 (1997).
  • A. D. Jenkins, R. G. Jones and G. Moad, Pure Appl. Chem., 82, 483(2010).
  • 111[32] D. Edwards, J. Mater. Sci., 25, 4175 (1990).