会议论文详细信息
International Rubber Conference
Rheological Properties of Carbon Black/Silica Hybrid Filler in Acrylonitrile Butadiene Rubber
Mohd Hasan, M.H.^1 ; Kler, J.K.^1 ; Ong, S.K.^1 ; Manroshan, S.^2
Universiti Kuala Lumpur Branch, Campus Malaysian Institute of Chemical and Bioengineering Technology (UniKL MICET), Lot 1988, Kawasan Perindustrian Bandar Vendor, Taboh Naning, Melaka,Alor Gajah
78000, Malaysia^1
Malaysian Rubber Board, RRIM Research Station, Selangor,Sungai Buloh
47000, Malaysia^2
关键词: Acrylonitrile butadiene rubber;    Ball milling time;    Colloidal Stability;    Flow resistance;    Hybrid fillers;    Rheological property;    Silica particle size;    Zeta potential analysis;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/548/1/012005/pdf
DOI  :  10.1088/1757-899X/548/1/012005
来源: IOP
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【 摘 要 】

Filler is a common additive added into rubber vulcanizate to achieve reinforcing performance. Typically, filler is compounded via two-roll mill which results in filler agglomeration and lower reinforcing efficiency. To gain higher reinforcing efficiency, filler agglomeration must be minimized via masterbatch preparation. This study investigates colloidal stability of carbon black/silica (CB/SiO2) hybrid filler and effectiveness between typical compounding and masterbatch process for NBR vulcanizate production. CB/SiO2 hybrid filler was fixed at 20 wt.% with ratios of 100/0, 75/25, 50/50, 25/75 and 0/100 were dispersed separately in sodium hydroxide (NaOH) via ball milling. The zeta potential, particle size and viscosity results showed CB and SiO2 dispersions stabilized after 48 hours of ball milling. NBR masterbatch with 50/50 ratio has highest flow resistance. SiO2 reinforced NBR masterbatch showed higher flow resistance compared to CB due to finer silica particle size. However, scorch and cure time for SiO2 reinforced NBR is slower than CB reinforced NBR as silica deactivate the accelerator. CB/SiO2 at 50/50 has highest Tmax and ΔT while 100/0 and 0/100 has insignificant differences. As conclusion, CB and SiO2 dispersions were stable based on zeta potential analysis and particle size reduced as ball milling time increased.

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