A comprehensive review on advancements of elastomers for engineering applications

被引:42
作者
Alari, Ibrahim M. [1 ]
机构
[1] Majmaah Univ, Coll Engn, Dept Mech & Ind Engn, Riyadh 11952, Saudi Arabia
关键词
Elastomers; Functional elastomers; 3D printing; Self-healing; Tissue engineering; SELF-HEALING ELASTOMERS; CONTAINING POLYURETHANE ELASTOMERS; WIDE-RANGE MODULATION; POLYDIMETHYLSILOXANE ELASTOMER; MECHANICAL-PROPERTIES; MAGNETIC ELASTOMERS; STRAIN; NANOCOMPOSITES; FLAMMABILITY; TEMPERATURE;
D O I
10.1016/j.aiepr.2023.05.001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Researchers frequently turn to the adaptable material known as elastomers for various industrial products, including soft robotics, astronautics equipment, vehicles, tissue engineering, self-healing, and constructional materials. The typical lower modulus of popular elastomers is accompanied by weak resistance to chemicals and abrasion. Most commonly, the rubbery polymers are called elastomers and may be readily expanded to lengths several times longer than they were originally. Although the polymeric chains continue to have some mobility, the cross-linkers keep them from wandering indefinitely in relation to one another. The material could become stiff, hard, and more similar in qualities to a thermoset if there were a lot of cross-links. Elastomers have inherent apparent, thermal processing, and mechanical properties, making additive manufacturing (AM) challenging. The advent of additive manufacturing, formerly known as three-dimensional (3D) printing, inspired academic and industrial researchers to combine elastomeric properties with design freedom and the potential for straightforward mass customization. Elastomers are employed in the adhesive industry because they have high adherence qualities. The elastomers may also be utilized extensively in daily applications due to their excellent adherence to various filler kinds and other characteristics. This review article explores current advancements in diverse elastomer types, 3D printing advances, functional elastomers, and applications in several sectors in the context of these developments. The discussions also include the present-day difficulties from the perspective of product development.(c) 2023 Kingfa Scientific and Technological Co. Ltd. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. This is an open access article under the CC BY-NC-ND license (http:// creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页码:451 / 464
页数:14
相关论文
共 120 条
[101]   An ultrafast self-healing polydimethylsiloxane elastomer with persistent sealing performance [J].
Wang, Da-Peng ;
Zhao, Zi-Han ;
Li, Cheng-Hui ;
Zuo, Jing-Lin .
MATERIALS CHEMISTRY FRONTIERS, 2019, 3 (07) :1411-1421
[102]   Strain-induced structural and dynamic changes in segmented polyurethane elastomers [J].
Wang, Fenfen ;
Chen, Shengli ;
Wu, Qiang ;
Zhang, Rongchun ;
Sun, Pingchuan .
POLYMER, 2019, 163 :154-161
[103]   Efficient color manipulation of zinc sulfide-based mechanoluminescent elastomers for visualized sensing and anti-counterfeiting [J].
Wang, Haojie ;
Chen, Xiaoming ;
Tian, Zhen ;
Jiang, Zhiye ;
Yu, Wei ;
Ding, Wenge ;
Su, Li .
JOURNAL OF LUMINESCENCE, 2020, 228
[104]   Recent advances in thermoplastic elastomers from living polymerizations: Macromolecular architectures and supramolecular chemistry [J].
Wang, Weiyu ;
Lu, Wei ;
Goodwin, Andrew ;
Wang, Huiqun ;
Yin, Panchao ;
Kang, Nam-Goo ;
Hong, Kunlun ;
Mays, Jimmy W. .
PROGRESS IN POLYMER SCIENCE, 2019, 95 :1-31
[105]   Healable, Recyclable, and Mechanically Tough Polyurethane Elastomers with Exceptional Damage Tolerance [J].
Wang, Xiaohan ;
Zhan, Shengnan ;
Lu, Zhongyuan ;
Li, Jian ;
Yang, Xiao ;
Qiao, Yongna ;
Men, Yongfeng ;
Sun, Junqi .
ADVANCED MATERIALS, 2020, 32 (50)
[106]   Preparation and research of intrinsic self-healing elastomers based on hydrogen and ionic bond [J].
Wang, Xiaoping ;
Liang, Dong ;
Cheng, Bingkun .
COMPOSITES SCIENCE AND TECHNOLOGY, 2020, 193
[107]   Preparation, characterization and properties of intrinsic self-healing elastomers [J].
Wang, Zhanhua ;
Lu, Xili ;
Sun, Shaojie ;
Yu, Changjiang ;
Xia, Hesheng .
JOURNAL OF MATERIALS CHEMISTRY B, 2019, 7 (32) :4876-4926
[108]   Three-dimensional printing of functionally graded liquid crystal elastomer [J].
Wang, Zijun ;
Wang, Zhijian ;
Zheng, Yue ;
He, Qiguang ;
Wang, Yang ;
Cai, Shengqiang .
SCIENCE ADVANCES, 2020, 6 (39)
[109]   Flame retardant polyurethane elastomer nanocomposite applied to coal mines as air-leak sealant [J].
Wu, Jianming ;
Yan, Hong ;
Wang, Junfeng ;
Wu, Yuguo ;
Zhou, Chunshan .
JOURNAL OF APPLIED POLYMER SCIENCE, 2013, 129 (06) :3390-3395
[110]   Degradation and stabilization of polyurethane elastomers [J].
Xie, Fengwei ;
Zhang, Tianlong ;
Bryant, Peter ;
Kurusingal, Valsala ;
Colwell, John M. ;
Laycock, Bronwyn .
PROGRESS IN POLYMER SCIENCE, 2019, 90 :211-268