1 / 19

Reporter : Chin-Tzu Chang Advisor : Cheng- Chien Wang Date : 2014-06-16

Reporter : Chin-Tzu Chang Advisor : Cheng- Chien Wang Date : 2014-06-16. Outline. 1. Introductions 2. Experimental 2.1 Material and compounding 2.2 Mixing and cure characteristic determination 3 . Results and discussion 4. Conclusion. Introductions. Epoxidized natural rubber.

zinna
Download Presentation

Reporter : Chin-Tzu Chang Advisor : Cheng- Chien Wang Date : 2014-06-16

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Reporter : Chin-Tzu Chang Advisor : Cheng-Chien Wang Date : 2014-06-16

  2. Outline 1. Introductions 2. Experimental 2.1 Material and compounding 2.2 Mixing and cure characteristic determination 3. Results and discussion 4. Conclusion

  3. Introductions Epoxidized natural rubber Modified ENR NR • Tg • Oil resistance • Permeability • Polarity Natural rubber Review of the Literature Silica • Tensile strength • Tear strength ENR

  4. Introductions white rice husk ash (WRHA) Rice Husk Ashes (RHA) black rice husk ash (BRHA) silica and carbon RHA Commercial silica Evaluate Commercial carbon

  5. ExperimentalMaterial and compounding Epoxidized natural rubber (ENR50) S Sulfur ZnO Zinc oxide Stearic acid N-cyclohexyl-2-benzothiazole-2-sulphenamide (CBS)

  6. ExperimentalMaterial and compounding Tetrametylthiuramdisulphide(TMTD) ‘N-isopropyl-N-phenylenediamine(IPPD) γ-mercaptopropyltrimethoxysilane (A-189)

  7. ExperimentalMaterial and compounding Table 1. Typical formulations Table 2. Chemical property of WRHA and BRHA Table 3. Physical properties of WRHA, BRHA, silica and carbon black

  8. ExperimentalMixing and cure characteristic determination Filler Curing agents ENR Siliane laboratory size two roll mixing mill ENR Filler Siliane Curing agents various filler of compounds

  9. Results and discussion Fig. 1. Typical torque-time curves of WRHA-filled ENR vulcanizates.

  10. Results and discussion Fig. 2. Typical torque-time curves of BRHA-filled ENR vulcanizates.

  11. Results and discussion Table 4. Cure time (t90), scorch time and maximum torque of WRHA-tilled ENR vulcanizates with coupling agent Table 5. Cure time (t90), scorch time and maximum torque of BRHA-tilled ENR vulcanizates with coupling agent

  12. Results and discussion Fig. 3. The effect of filler loadings on tensile strengths of WRHA and BRHA-filled ENR vulcanizates.

  13. Results and discussion Fig. 4. The effect of filler loadings on tear strengths of WRHA and BRHA-filled ENR vulcanizates.

  14. Results and discussion Fig. 5. The hardness of WRHA and BRHA-filled ENR vulcanizates.

  15. Results and discussion Table 8. Cure time (t90), scorch time and maximum torque of WRHA, BRHA, silica and carbon black-filled ENR vulcanizates with and without coupling agent (20 phr)

  16. Results and discussion Table 9. Physical properties of WRHA, BRHA, silica and carbon black-filled ENR vulcanizates with and without coupling agent (20 phr)

  17. Conclusion • The main objective of this study is to gauge the possibility of utilizing the low-cost rice husk ashes (RHA) as alternative filler materials in epoxidizednatural rubber (ENR). • It has been shown that with white RHA, apart from exhibiting better physical properties than black RHA, properties are not much more inferior when compared to the commercial carbon black or silica-filled vulcanizates. • As a whole, this study indicates that the potential of RHA, especially the white RHA, can be exploited further by controlling particle size and particle size distribution, improving filler dispersion and also its surface functionality.

  18. 樣品打滑 • 材料除水 • 腔體內的清潔 • 檢查溫度參數 • 發生打滑便暫停混摻,將材料取出並重新啟動(累積混摻時間)。

  19. Thanks For Your Attentions

More Related