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The effects of aggressive environments on the mechanical properties of basalt plastics

机译:侵蚀性环境对玄武岩塑料力学性能的影响

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摘要

A review and analysis of changes in mechanical properties of basalt fibers (BF) and basalt composite materials under effects of aggressive environments in reference to foreign and Russian scientific literature has been carried out. The changes in the physical and mechanical properties of the fiberglass (FG) and basalt plastic (BP) have been compared. The analysis shows that BF is a good alternative to fiberglass for elaboration of composite materials for various purposes. In the most aggressive alkaline environments, BP resistance is higher as compared with that of FG. If required, BF resistance to chemically active media could be increased by midifying its composition and applying protective layers and heat treatment of fibers. For extended use of BP as an effective structural material under various climatic conditions, including in the Arctic, long-term tests of 10 or more years are advisable and relevant, with control of changes in their mechanical parameters and an analysis of processes of climatic aging developing in BP.
机译:参照国外和俄罗斯的科学文献,对侵蚀环境下玄武岩纤维(BF)和玄武岩复合材料的机械性能变化进行了回顾和分析。比较了玻璃纤维(FG)和玄武岩塑料(BP)的物理和机械性能变化。分析表明,BF可以替代玻璃纤维,用于各种用途的复合材料加工。在最具腐蚀性的碱性环境中,与FG相比,其BP抵抗力更高。如果需要,可以通过使BF的成分适中,施加保护层和对纤维进行热处理来提高其对化学活性介质的耐受性。为了在各种气候条件下(包括在北极)广泛使用BP作为有效的结构材料,建议进行10年或更长时间的长期测试,并进行相关测试,并控制其机械参数的变化并分析气候老化过程在BP开发。

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