Elastomers
A special issue of Polymers (ISSN 2073-4360).
Deadline for manuscript submissions: closed (25 April 2018) | Viewed by 100399
Special Issue Editors
2. Faculty of Mechanical Science and Engineering, Technische Universität Dresden, 01069 Dresden, Germany
Interests: polymer nanocomposites; friction and adhesion of polymer systems, wear; fracture mechanical characterization and modelling of crack formation and propagation in elastomers; statistical-mechanics of polymer networks, material laws, engineering applications; rubber elasticity and viscoelasticity of filled polymer networks; filler-polymer and filler-filler interactions in elastomers: modelling, testing, engineering applications; tire physics, mechanics and engineering (e.g. traction and braking, road-tire interactions), advanced tire materials compounding and testing
Special Issues, Collections and Topics in MDPI journals
Interests: rubber technology; thermoplastic elastomers; design, properties and processing of elastomers, nano materials; mechanical behavior of elastomers and polymers; interfacial properties of fiber reinforced composites; structure-property relationships, recycling of rubber and elastomeric barrier materials
Special Issue Information
Dear Colleagues,
This Special Issue focuses on the current state-of-the-art of elastomers for several applications. The main characteristic of elastomer materials is the high elongation and (entropy) elasticity of these materials. The use of filled elastomers, especially of new kinds of elastomer nano-composites, is currently of interest for rubber technologies. It enables widespread application in engineering fields, especially for modern tire technologies, as well as for medical applications or consumer goods. Elastomers also find utility for a range of biomaterial applications. Bioelastomers are widely available in nature and have been shown to have specific properties often far superior to their synthetic counterparts. All elastomers share typical features such as entropy driven elasticity, the presence of entanglements, and topological constraints of network chain conformations. These features still offer fascinating scientific challenges in polymer network synthesis, experimental and theoretical physics of polymer networks, and in modeling of elastomeric solids.
Papers are sought that discuss the latest research in the area or summarize selected areas in the field. The scope of the Special Issue encompasses frontier-of-science contributions in synthesis, characterization, and modelling of elastomers. Of particular interest are new structures and functionalities incorporated into elastomers leading to enhanced properties of crosslinked elastomeric materials. Examples include conductive elastomers, biomimetic mechanically adaptive elastomers, bio-elastomers, photosensitive and light controlled elastomers, elastomers with autonomous self-healing properties, and other novel materials.
Prof. Dr. Gert Heinrich
Prof. Dr. Joey L. Mead
Guest Editors
Manuscript Submission Information
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Keywords
- Elastomer nanocomposites
- Conductive elastomers
- Bio-elastomers
- Light-controllable elastomers
- Elastomers with self-healing properties
- Smart and adaptive elastomers
- Non-crosslinked ‘olympic‘ elastomers
- Elastomers for future tire technologies
- Advanced modeling and simulation of elastomers
- Cutting-edge characterization of elastomers
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