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Can I read Strain-induced Crystallization Behavior and Tensile Properties of Natural Rubber with Different Vulcanization Bond Types on EtoBox?
Strain-induced Crystallization Behavior and Tensile Properties of Natural Rubber with Different Vulcanization Bond Types by Wang, Yueqiong (author);Liu, Hongchao (author);Zheng, Tingting (author);Peng, Zheng (author);Wang, Rui (author);Yu, Heping (author);Wang, Qifang (author);Liao, Shuangquan (author);Liao, Lusheng (author) is a Materials Science article available to read on EtoBox.
What is Strain-induced Crystallization Behavior and Tensile Properties of Natural Rubber with Different Vulcanization Bond Types about?
The crosslinking network structure is a crucial factor influencing the properties of natural rubber. Therefore, investigating the impact of different vulcanization bond types on the strain-induced crystallization behavior and properties of natural rubber can provide a theoretical foundation for producing high-performance natural rubber. In this study, diverse curing systems were employed to produce vulcanized natural rubbers with varying crosslink types. The crosslinking network structures of the vulcanized rubbers were analyzed using the tube model theory. Additionally, the effects of vulcanization bonds on strain-induced crystallization behavior and tensile properties were examined through in-situ X-ray diffraction and a tensile testing machine. The results revealed that the vulcanizate with monosulfidic bonds, formed under the effective vulcanization (EV) system, primarily comprised chemical crosslinking networks, resulting in a high tensile modulus, low elongation at break, and low tensile strength. Conversely, the vulcanizate under the conventional vulcanization (CV) system exhibited a distinct entanglement network impact compared to the chemical crosslinking network, resultin
Who reads Strain-induced Crystallization Behavior and Tensile Properties of Natural Rubber with Different Vulcanization Bond Types?
It is typically read by researchers, students, and practitioners in Materials Science.
- Author
- Wang, Yueqiong (author);Liu, Hongchao (author);Zheng, Tingting (author);Peng, Zheng (author);Wang, Rui (author);Yu, Heping (author);Wang, Qifang (author);Liao, Shuangquan (author);Liao, Lusheng (author)
- Publisher
- Elsevier BV
- Published
- 2023
- Language
- EN
- Field
- Materials Science (Physical Sciences)