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REVIEW OF TEST METHODS FOR EVALUATING HYDROGEN EMBRITTLEMENT SUSCEPTIBILITY OF MATERIALS

机译:评估材料氢脆化敏感性的试验方法

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摘要

For several decades, engineers and technicians responsible for safe transport and storage of hydrogen, in both the government and industry sectors, have had to contend with the problem of hydrogen embrittlement. Today, the problem of hydrogen embrittlement must be considered anew with the systems and environments emerging with the developing hydrogen fuel cell industry. This paper discusses several methods to test for the susceptibility of metallic materials to hydrogen embrittlement. The objective of this review is to assist engineers and designers in selecting hydrogen embrittlement test methods to simulate actual manufacturing and/or operating conditions while using appropriate specimen geometries. Reviewed are standard test methods from American Society for Testing and Materials (ASTM) International, British Aerospace Series (BS EN), and General Motors Engineering sources. These include constant load, rising step load, slow strain rate, inclined wedge, bend, disk pressure, and cantilever beam test methods. Information is provided on load and displacement characteristics, uses, a brief description, and required equipment for each test.
机译:几十年来,政府和工业部门负责安全运输和存储氢气的工程师和技术人员不得不应对氢气脆化的问题。如今,随着氢燃料电池行业的发展,系统和环境必须重新考虑氢脆的问题。本文讨论了几种测试金属材料对氢脆敏感性的方法。本文的目的是帮助工程师和设计师选择氢脆测试方法,以模拟实际的制造和/或操作条件,同时使用适当的试样几何形状。审查的是美国国际材料试验学会(ASTM),英国航空航天系列(BS EN)和通用汽车工程公司提供的标准测试方法。这些方法包括恒定载荷,上升阶跃载荷,慢应变速率,倾斜楔形,弯曲,圆盘压力和悬臂梁测试方法。提供有关载荷和位移特性,用途,简要说明以及每次测试所需设备的信息。

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