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      Design and Performance of Polyurethane Elastomers Composed with Different Soft Segments

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          Abstract

          Thermoplastic polyurethane elastomers (TPUs) are widely used in a variety of applications as a result of flexible and superior performance. However, few scholars pay close attention on the design and synthesis of TPUs through the self-determined laboratory process, especially on definite of chemical structures and upon the influence on properties. To investigate the properties of synthesized modifier based on chemical structure, firstly each kind of unknown structure and composition ratio of TPUs was determined by using a new method. Furthermore, the thermal characteristics and mechanical properties of modifiers were exposed by thermal characteristics and mechanics performance tests. The experimental results indicate that TPUs for use as an asphalt modifier can successfully be synthesized with the aid of semi-prepolymer method. The linear backbone structure of TPUs with different hard segment contents were determined by micro test methods. The polyester-based TPUs had thermal behavior better than the polyether-based TPUs; conversely, the low temperature performance of polyether-based TPUs was superior. Most importantly, it was found that the relative molecular mass of TPUs exhibited a weak effect on the mechanical properties, whereas the crystallinity of hard segment showed a significant influence on the properties of TPUs.

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          Most cited references53

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          Synthesis methods, chemical structures and phase structures of linear polyurethanes. Properties and applications of linear polyurethanes in polyurethane elastomers, copolymers and ionomers

          P Krol (2007)
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            Few layered Co(OH)2ultrathin nanosheet-based polyurethane nanocomposites with reduced fire hazard: from eco-friendly flame retardance to sustainable recycling

            Huge consumption of thermoplastic polyurethane (TPU) results in two serious challenges for our society: fire hazards and environment pollution. Huge consumption of thermoplastic polyurethane (TPU) results in two serious challenges for our society: fire hazards and environment pollution. To address these challenges, on the one hand, ultrathin β-Co(OH) 2 nanosheets were devised and synthesized by a surfactant self-assembly technique and their application in TPU reduced the fire hazard; on the other hand, a green method was developed to sustainably recycle TPU nanocomposites into high value-added carbon materials. The structural characterizations demonstrate that the ultrathin β-Co(OH) 2 nanosheets showed a typical two-dimensional lamellar morphology, possessing a lateral dimension of ca. 2 μm and a low thickness of ca. 2.6 nm, corresponding to the two layers of β-Co(OH) 2 . The incorporation of ultrathin β-Co(OH) 2 nanosheets into the TPU matrix effectively reduced the heat release and restrained the toxicity of the volatiles, which was attributed to the ultrathin β-Co(OH) 2 nanosheets in the TPU matrix offering an enhanced barrier effect and catalytic charring capability and Co 3 O 4 decomposed from β-Co(OH) 2 possessing superior catalytic oxidation of CO. Moreover, a green autocatalytic process in a sealed autoclave was developed to convert TPU/Co(OH) 2 nanocomposites into high value-added Co/CNTs nanocomposites with more than 85% yield. This innovative idea may be expanded to other polymer systems and opens a new door to developing high performance polymer nanocomposites via green approaches and in particular, the sustainable recycling of the polymer-based materials.
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              A high stiffness and self-healable polyurethane based on disulfide bonds and hydrogen bonding

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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                05 November 2020
                November 2020
                : 13
                : 21
                : 4991
                Affiliations
                [1 ]Transportation Engineering College, Dalian Maritime University, Dalian 116026, China; jinxinzzz@ 123456126.com
                [2 ]Department of Civil and Environmental Engineering, Michigan Technological University, Houghton, MI 49931-1295, USA; zyou@ 123456mtu.edu
                [3 ]School of Transportation Science and Engineering, Harbin Institute of Technology, Harbin 150090, China; yiqiutan@ 123456163.com
                Author notes
                [* ]Correspondence: naishengguo@ 123456dlmu.edu.cn ; Tel.: +86-136-042-596-77
                Author information
                https://orcid.org/0000-0002-9103-6599
                Article
                materials-13-04991
                10.3390/ma13214991
                7664240
                33167575
                ca20689c-dc44-4bfc-962b-e8735f72e1b0
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 09 October 2020
                : 04 November 2020
                Categories
                Article

                thermoplastic polyurethane elastomers,different soft segments,microstructure characterization,mechanical properties

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