Chinese Journal of Applied Chemistry ›› 2022, Vol. 39 ›› Issue (12): 1833-1841.DOI: 10.19894/j.issn.1000-0518.220095
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Jian-Shu XIAO1,2, Yu-Ge WANG1,2, Qian-Qian GU1,2, Zhi-Cai ZHANG1,2, Yong-Peng LYU1,2, Yuan YIN1, Hong-Guo SUN1, Ya-Fang ZHENG1, Zhao-Yan SUN1,2()
Received:
2022-03-26
Accepted:
2022-08-31
Published:
2022-12-01
Online:
2022-12-13
Contact:
Zhao-Yan SUN
About author:
∶zysun@ciac.ac.cnSupported by:
Jian-Shu XIAO, Yu-Ge WANG, Qian-Qian GU, Zhi-Cai ZHANG, Yong-Peng LYU, Yuan YIN, Hong-Guo SUN, Ya-Fang ZHENG, Zhao-Yan SUN. Formation of Network by Carbon Black, Silica and Their Mixing Fillers in Isoprene Rubber[J]. Chinese Journal of Applied Chemistry, 2022, 39(12): 1833-1841.
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URL: http://yyhx.ciac.jl.cn/EN/10.19894/j.issn.1000-0518.220095
Fig.1 Curing curves of isoprene rubber filled with carbon black (A), silica(B), and carbon black and silica mixed fillers (C) at different filler loadingsanddifference between maximum torque and minimum torque (D) and the optimum curing time (E) obtained from the curing curve for different filled systems at different loadings
Fig.2 Storage modulus (G′) of unvulcanizated rubber filled with carbon black (A), silica (B), and mixed fillers (C), and vulcanizated rubber filled with carbon black (D), silica (E), and mixing fillers (F)
Fig.3 The difference of storage modulus ΔG′ at small strain and large strain for unvulcanized rubber and vulcanized rubber with different fillers versus the mass fraction (A, B) and volume fraction (C, D), and the storage modulus difference for vulcanizedrubber GVul' and unvulcanized rubber GVul' filled with carbon black (E), silica (F) and mixed fillers (G)
Fig.6 Tensile strength (A), elongation at break (B) and temperature rise in compression flexometer tests (C) of vulcanized rubber filled with different fillers
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