Dynamic mechanical properties of oil palm microfibril-reinforced natural rubber composites

2010 ◽  
pp. NA-NA ◽  
Author(s):  
Shaji Joseph ◽  
Sreekumar P. Appukuttan ◽  
Jose M. Kenny ◽  
Debora Puglia ◽  
Sabu Thomas ◽  
...  
2015 ◽  
Vol 659 ◽  
pp. 522-526 ◽  
Author(s):  
Manit Kaewduang ◽  
Ekrachan Chaichana ◽  
Bunjerd Jongsomjit ◽  
Adisak Jaturapiree

Cellulose based fibers such as sisal, jute and coir are ones of the most frequently used reinforcing fillers for composite materials including natural rubber composites because they can improve mechanical properties of their composites. However, the main disadvantages of these composites are the poor compatibility between the fiber surface and the host matrices, mainly due to the highly hydrophilic character of the fibers and the hydrophobic character of the host materials. Therefore, in this research, coir had been modified with linear low-density polyethylene (LLDPE) prior to introducing into the natural rubber composites. The coir-filled LLDPE was synthesized by in situ polymerization with MAO/metallocene catalyst, named as modified coir. The unmodified coir and modified coir were then blended with natural rubber latex to obtain natural rubber composites. The morphology and thermal dynamic mechanical properties of the composites were investigated by scanning electron microscopy (SEM), and dynamic mechanical analysis (DMA). The composites blended with the modified coir showed the better compatibility between the coir and the natural rubber than those with the unmodified coir. In addition, they also showed the greater storage modulus and lower tan delta than the unmodified counterpart and the pure natural rubber without the reinforcement.


2020 ◽  
Vol 90 ◽  
pp. 106676
Author(s):  
Upendra Kulshrestha ◽  
Tanmay Gupta ◽  
Pankaj Kumawat ◽  
Harsh Jaiswal ◽  
Subrata Bandhu Ghosh ◽  
...  

2013 ◽  
Vol 844 ◽  
pp. 305-308
Author(s):  
Zhong Xian Ooi ◽  
Hanafi Ismail ◽  
Azhar Abu Bakar

The potential of utilizing low cost filler, i.e. oil palm ash (OPA) as a new filler in natural rubber (NR) compounds using conventional laboratory-sized two roll mills. The NR compound was cross-linked using sulphuric system. The variations of tensile and dynamic properties were examined in the NR vulcanizates with the OPA filling at low loading. In the view of reinforcement, the tensile strength and elongation at break was improved with the low loading of OPA (<10 phr). Dynamic mechanical properties of OPA filled NR vulcanizates was investigated with respect to the storage modulus and mechanical loss factor (Tan δ). Result showed that the storage modulus of the OPA filled NR vulcanizates became higher than that of gum NR vulcanizates whereas the peak height of tan δmax was reduced as the OPA loading was increased. This phenomenon manifested a strong rubber-filler interaction with the low loading of OPA.


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