Characterization of Natural Rubber, Styrene Butadiene Rubber, and Nitrile Butadiene Rubber Monomer Blend Composites Loaded with Zinc Stearate to Be Used in the Solid Tire Industry

Author:

Nasruddin 1ORCID,Setianto Wahyu1,Yohanes Heryoki1ORCID,Atmaji Gigih1,Lanjar 1,Yanto Dede2ORCID,Wulandari Enasty3,Wiranata Arya4,Ibrahim Bahruddin4ORCID

Affiliation:

1. Research Center for Agroindustry, National Research and Innovation Agency (BRIN), Tangerang Selatan 15314, Indonesia

2. Research Center for Applied Microbiology, National Research and Innovation Agency (BRIN), Jl. Raya Bo-gor Km.46, Cibinong, Bogor 16911, Indonesia

3. Mechanical Engineering Department, Taman Siswa University, Palembang 30126, Indonesia

4. Chemical Engineering Department, Riau University, Pekanbaru 28293, Indonesia

Abstract

Vulcanization is an important step in the manufacture of solid tires in which the crosslinking process occurs. In vulcanization, the materials commonly used as activators and coactivators are ZnO and stearic acid, respectively. In this research, ZnO and stearic acid were replaced with zinc stearate to improve the characteristics of vulcanized rubber. Zinc stearate was applied in four formulas with a composition of 5 to 9 phr. A formula that is often used in the rubber industry was used as a comparison, and ZnO and stearic acid of 5 phr and 2.5 phr, respectively, were applied. The rubber compound for solid tire production was developed using an open mill at a compounding temperature of 45 °C ± 5 °C. The vulcanization process of developing the rubber compound into vulcanized rubber was carried out at 150 °C for 20 min. Rubber compound test results showed that the use of zinc stearate at a ratio of 8 phr accelerated the curing time (t90) between 58.3% and 69%, the scorch time (ts2) between 22.4% and 95.5%, and the torque delta (Δs) between 17.67 and 24.21 kg-cm. In addition, the vulcanized rubber mechanical properties test results for the compression set parameter increased between 28.6% and 57.1%. Scan results with SEM–EDS showed that using ZS could improve the homogeneous distribution of the material in the vulcanized matrix of solid tire rubber.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference65 articles.

1. Kim, D.Y., Park, J.W., Lee, D.Y., and Seo, K.H. (2020). Correlation between the Crosslink Characteristics and Mechanical Properties of Natural Rubber Compound via Accelerators and Reinforcement. Polymers, 12.

2. Cure characteristics, thermal and mechanical properties of natural rubber/synthetic rubber blends with and without compatibilizer;Moolsin;Rangsit. J. Arts Sci.,2014

3. Nanomodified ZnO in natural rubber and its effects on curing characteristics and mechanical proper-ties;Pornprasit;Chiang Mai J. Sci.,2018

4. Mostoni, S., Milana, P., Di Credico, B., D’Arienzo, M., and Scotti, R. (2019). Zinc-Based Curing Activators: New Trends for Reducing Zinc Content in Rubber Vulcanization Process. Catalysts, 9.

5. Ecotoxicity of manufactured ZnO nanoparticles—A review;Ma;Environ. Pollut.,2012

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