3D printing of polymer matrix composites for space: A review andpromises; Journal of Economics and Social Sciences; № 15

書誌詳細
Parent link:Journal of Economics and Social Sciences: electronic scientific journal.— , 2012-.— 2312-2978
№ 15.— 2019.— [4 p.]
第一著者: Yurkina V. A. Varvara Alexandrovna
共著者: School of Advanced Manufacturing Technologies, Laboratory of Mechanics of Polymer Composite Materials, Institute of Strength Physics and Materials Science
その他の著者: Klimenov V. A. Vasily Aleksandrovich, Kornienko L. A. Lyudmila
要約:Title screen
Today scientists try to present technologies that can help in solving social issues. Three-dimensional printing methods are currently manufactured products for all industries. This paper provides an overview of the creation of high-temperature polymer composite materials by three-dimensional printing technology for space applications. Additive technologies make it possible to find a balance between the required physical and mechanical properties and at the same time to ease construction, which can significantly reduce the cost of manufacturing products in comparison with traditional materials and methods of processing. To increase the physicomechanical properties and operating temperature of high-temperature plastics, composite materials are created with the addition of dispersed and fibrous fillers. The most common fillers are carbon and fiberglass
言語:英語
出版事項: 2019
シリーズ:Социологические науки
主題:
オンライン・アクセス:http://earchive.tpu.ru/handle/11683/57812
フォーマット: xMaterials 電子媒体 図書の章
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=585037

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330 |a Today scientists try to present technologies that can help in solving social issues. Three-dimensional printing methods are currently manufactured products for all industries. This paper provides an overview of the creation of high-temperature polymer composite materials by three-dimensional printing technology for space applications. Additive technologies make it possible to find a balance between the required physical and mechanical properties and at the same time to ease construction, which can significantly reduce the cost of manufacturing products in comparison with traditional materials and methods of processing. To increase the physicomechanical properties and operating temperature of high-temperature plastics, composite materials are created with the addition of dispersed and fibrous fillers. The most common fillers are carbon and fiberglass 
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