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Experimental results for structural design of Wire-and-Arc Additive Manufactured stainless steel members

机译:线弧添加剂制造不锈钢构件结构设计实验结果

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Additive Manufacturing has recently gained great importance to produce metallic structural elements for civil engineering applications. While a lot of research effort has been focused on different technologies (such as Powder Bed Fusion), there is still quite limited knowledge concerning the structural response of Wire-and-Arc Additive Manufactured (WAAM) metallic elements, as very few experimental campaigns aimed at assessing their geometrical and mechanical properties have been carried out. The paper presents selected results of a wide experimental campaign focused on the assessment of the main geometrical and mechanical properties of Wire-and-Arc Additive Manufactured (WAAM) stainless steel material, carried out at the Topography and Structural Engineering Labs of University of Bologna. In detail, the focus is on the characterization of the surface irregularities by means of various measuring techniques and on the evaluation of the main material mechanical properties, including tensile and compressive strengths, Young's modulus and post elastic behavior. Tests results have been interpreted through statistical tools in order to derive mean values and gather information about the variability of both geometrical and mechanical parameters. (C) 2019 Elsevier Ltd. All rights reserved.
机译:添加剂制造最近产生了对土木工程应用的金属结构元素产生重视。虽然很多研究努力都集中在不同的技术(如粉床融合)上,但仍然存在相当有限的知识,了解导线和弧添加制造(WAAM)金属元素的结构响应,因为旨在的实验活动很少在评估其几何和机械性能时已经进行。本文介绍了广泛的实验活动的选定结果,重点是在博洛尼亚大学的地形和结构工程实验室进行的线弧添加剂制造(WAAM)不锈钢材料的主要几何和力学性能进行评估。详细地,焦点通过各种测量技术和主要材料机械性能的评估来表征表面不规则性,包括拉伸和抗压强度,杨氏模量和后弹性行为。测试结果通过统计工具解释了才能导出平均值并收集关于几何和机械参数的可变性的信息。 (c)2019 Elsevier Ltd.保留所有权利。

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