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This book presents the most recent description of rubber
reinforcement, focusing on the network-like structure formation of
nanofiller in the rubber matrix under the presence of bound rubber.
The resultant filler network is visualized by electron tomography
applied to rubber. In the case of natural rubber, the
self-reinforcement effect is uniquely functioning, and new template
crystallization is suggested. Here, the crystallites are also
believed to arrange themselves in a network-like manner. These
results are of great use, particularly for engineers, in designing
rubber reinforcement.
This book presents the most recent description of rubber
reinforcement, focusing on the network-like structure formation of
nanofiller in the rubber matrix under the presence of bound rubber.
The resultant filler network is visualized by electron tomography
applied to rubber. In the case of natural rubber, the
self-reinforcement effect is uniquely functioning, and new template
crystallization is suggested. Here, the crystallites are also
believed to arrange themselves in a network-like manner. These
results are of great use, particularly for engineers, in designing
rubber reinforcement.
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