Preparation and Properties of Polyorganosiloxane Modified Maleated EPDM/EPDM Rubber Vibration Isolator

Polyorganosiloxane 변성 말레화 EPDM/EPDM 방진고무의 제조와 그 특성

  • Kang, Doo-Whan (Department of Polymer Science & Engineering, College of Engineering Dankook University) ;
  • Kim, So-Mi (Department of Polymer Science & Engineering, College of Engineering Dankook University)
  • 강두환 (단국대학교 공과대학 고분자시스템공학과) ;
  • 김소미 (단국대학교 공과대학 고분자시스템공학과)
  • Received : 2010.07.26
  • Accepted : 2010.08.18
  • Published : 2010.10.10

Abstract

The surface of Alnico, one of the industrial dust waste, was treated with 1,3,5-trivinyl-1,3,5-trimethylcyclotrisilazane (VMS) as a surface treating agent and used as the filler for vibration isolator rubber. Maleated EPDM prepared from bulk polymerization of EPDM with maleic anhydride was copolymerized with ${\alpha},{\omega}$-bis(3-aminopropyl)polydimethylsiloxane to obtain maleated EPDM-polydimethylsiloxane copolymer (MEPDM-PDMS). EPDM/Alnico/MEPDM-PDMS vibration isolator rubber was prepared from compounding with Alnico treated with surface treating agent, 25 and 50 phrs to EPDM, respectvely based on 1 to 10 wt% of MEPDM-PDMS to EPDM. From the measurement of the thermal properties to the rubber, the glass transition temperatures (Tg) for the rubber containing maleated EPDM-PDMS copolymer was slightly lower temperature, $33^{\circ}C$ than EPDM rubber, and also DMA results showed higher tan ${\delta}$ peak to the rubber prepared from compounding with EPDM-PDMS copolymer. From the results, rubber prepared using EPDM-PDMS copolymer had better vibration isolator property.

산업폐기물 중의 하나인 무기 금속화합물, Alnico를 1,3,5-trimethylcyclotrisilazane으로 표면 처리하여 충전제로 하고 EPDM에 maleic anhydride (MA)를 용융 중합법으로 그라프트시켜 제조한 말레화 EPDM과 ${\alpha},{\omega}$-bis(3-aminopropyl)polydimethylsiloxane을 공중합시켜 제조한 말레화 EPDM-polydimethylsiloxane공중합체(MEPDM-PDMS)와 EPDM 및 표면처리된 Alnico를 compounding하여 composite rubber를 제조하였다. EPDM/Alnico/MEPDM-PDMS 방진고무는 MEPDMPDMS와 EPDM을 중량비로 1 : 10으로 하고 또한 충전제의 함량을 EPDM에 대하여 25, 50 phrs로 그리고 개시제로 dicumyl peroxide (DCP)를 첨가하여 compounding시킨 다음 유압 고온 프레스로 가교시켜 제조하였다. 제조한 composite rubber의 열적특성을 측정한 결과 MEPDM-PDMS를 첨가하여 제조한 시료의 Tg가 EPDM만으로 제조한 고무보다 약간 낮은 $-33^{\circ}C$ 부근으로 나타났고 DMA의 측정결과 손실계수 tan ${\delta}$는 MEPDM-PDMS을 혼합한 경우가 더 크게 나타나는 것으로 보아 방진 특성이 우수함을 확인하였다.

Keywords

References

  1. W. S. Kim, W. D. Kim, C. S. Woo, and S. S. Choi, Elastomer, 39, 95 (2004).
  2. B. Jurkowska, Y. A. Olkhov, B. Jurkowski, and O. M. Olkhova, J. Appl. Polym. Sci., 71, 729 (1999). https://doi.org/10.1002/(SICI)1097-4628(19990131)71:5<729::AID-APP7>3.0.CO;2-8
  3. S. H. Lee, Rubber Tech., 5, 12 (2004).
  4. J. W. Choi, C. S. Hong, and D. S. Herh, Elastomer, 20, 13 (1985).
  5. S. Kole, S. K. Srivastava, D. K. Triphathy, and A. K. Bhowmick, J. Appl. Polym. Sci., 54, 1329 (1994). https://doi.org/10.1002/app.1994.070540915
  6. F. Ramsteiner, W. Heckmann, G. E. Mckee, and M. Breulmann, Polymer, 43, 22 (2002).
  7. D. M. Laura, H. Keskkula, J. W. Barlow, and D. R. Paul, Polymer, 43, 4673 (2002). https://doi.org/10.1016/S0032-3861(02)00302-6
  8. S. Gartasegana, Rubber Chem. Technol., 59, 722 (1986). https://doi.org/10.5254/1.3538230
  9. C. H. Chiang and J. Koenig, J. Polymer. Sci. : Polymer Phys. Ed., 20, 2135 (1982). https://doi.org/10.1002/pol.1982.180201114
  10. D. W. Kang and H. G. Yeo, Polymer (Korea), 29, 161 (2005).
  11. D. W. Kang, B. J. Kim, and D. S. Shim, J. Korea. Ind. Eng. Chem., 12, 277 (2001).
  12. D. W. Kang, B. J. Kim, and D. S. Shim, J Ind. Eng. Chem., 6, 270 (2000).
  13. J. S. Yoon, Elastomer, 31, 280 (1996).
  14. T. Yamaguchi, I. Kurimoto, H. Nagasaki, and T. Okita, Rubber World, 199, 30 (1989).