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Temperature-Dependent Material Property Databases for Marine Steels—Part 1: DH36

机译:海洋钢的温度依赖材料性能数据库 - 第1部分:DH36

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Integrated computational materials engineering (ICME)-based tools and techniques have been identified as the best path forward for distortion mitigation in thin-plate steel construction at shipyards. ICME tools require temperature-dependent material properties to achieve accurate computational results for distortion and residual stress. However, the required temperature-dependent material property databases of U.S. Navy-relevant steels are not available in the literature. Therefore, as part of a Lightweight Innovations for Tomorrow program, a comprehensive testing plan for some of the most common marine steels used in the construction of US naval vessels was completed. This testing plan included DH36, HSLA-65, HSLA-80, HSLA-100, HY-80, and HY-100 steel with a nominal thickness of 4.76?mm (3/16-in.). This report is part of a seven-part series detailing the pedigreed steel data. The first six reports will report the material properties for each of the individual steel grades, whereas the final report will compare and contrast the measured steel properties across all six steels. This report will focus specifically on the data associated with DH36 steel.
机译:集成的计算材料工程(ICME)基于工具和技术被确定为造船厂薄板钢结构中的失真减缓的最佳道路。 ICME工具需要温度依赖的材料特性来实现变形和残余应力的准确计算结果。然而,文献中没有美国海军相关钢的所需温度依赖性材料物质数据库。因此,作为明天计划的轻量级创新的一部分,完成了在建造美国海军船舶建设中使用的一些最常见的海洋钢的全面测试计划。该测试计划包括DH36,HSLA-65,HSLA-80,HSLA-100,HY-80和HY-100钢,标称厚度为4.76Ωmm(3/16英寸)。本报告是七件系列的一部分,详细介绍了脚群钢数据。前六份报告将为每个单独的钢等级报告材料属性,而最终报告将比较和对比所有六个钢的测量钢质性能。本报告将专注于与DH36钢相关的数据。

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