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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/108721


    Title: Effect of welding sequence of a multi-pass temper bead in gas-shielded flux-cored arc welding process: hardness, microstructure, and impact toughness analysis
    Authors: 傅尹坤;Ling, Kuo-Hsia;Fuh, Yiin-Kuen;Kuo, Tin-Chun;Xun-Tu, Sheng
    Contributors: 工學院機械工程學系
    Keywords: Arc welding;Automobile industry;Automobiles;CAE) and Design;Charpy impact test;Computer-Aided Engineering (CAD;Diamond pyramid hardness;Engineering;Ferrites;Flux core wire welding;Heat affected zone;Heat treating;Impact analysis;Impact strength;Impact tests;Industrial and Production Engineering;Infrared imagery;Mechanical Engineering;Mechanical properties;Media Management;Microstructure;Military engineering;Multilayers;Nondestructive testing;Optical microscopes;Original Article;Phased arrays;Seams;Ships;Temper (metallurgical);Temperature distribution;Thermocouples;Toughness;Welded joints
    Date: 2015-11-01
    Issue Date: 2026-04-23 15:03:05 (UTC+8)
    Publisher: Springer London;London: Springer London
    Abstract: 摘要: Welding is used in ships, military, buildings, industrial machinery, automobiles, and many other industries. Problems associated with welding are common issues encountered in these fields. This paper investigated the weld profile, impact toughness, microhardness, and microstructure of a JIS SS400 structural multi-layer welding joint using gas-shielded flux-cored arc welding (FCAW-G). It further examined the effects of temper bead welding (TBW) made with two different welding processes, namely with 4 Layers 4 Passes (4L4P) and 4 Layers 10 Passes (4L10P). Thermocouples were fixed to measure the thermal cycles, and the temperature distribution curves along the weld seams were measured by infrared radiation (IR) images. All welded samples were checked using nondestructive phased array ultrasonic testing (PAUT) to ensure defect-free samples before the experiments commenced. The Charpy impact tests were finished at 20 and −20 °C, respectively. Vickers microhardness measurement was carried out at room temperature. The 4L4P welding process was found to improve the impact toughness of the welding joints. Ferrite (F) and acicular ferrite (AF) were observed via an optical microscope (OM) analysis of the 4L4P welding process, which was more effective in tempering the heat-affected zone (HAZ). In addition, it was found that the 4L4P welding process produced an overall lower hardness than the 4L10P welding process. The microstructure of the welding joints as well as the mechanical properties including impact toughness and microhardness were studied by using a scanning electron microscope (SEM) attached with an energy-dispersive spectrometer (EDS) and an OM.
    其他題名: Int J Adv Manuf Technol
    出版者: London: Springer London
    出版日期: 2015-11-01
    出處: International journal of advanced manufacturing technology, 2015-11, Vol.81 (5-8), p.1033-1046
    資源來源: EBSCOhost Academic Search Premier
    版權: Springer-Verlag London 2015
    版權: The International Journal of Advanced Manufacturing Technology is a copyright of Springer, (2015). All Rights Reserved.
    識別號: ISSN: 0268-3768
    識別號: EISSN: 1433-3015
    識別號: DOI: 10.1007/s00170-015-7277-x
    Appears in Collections:[Departmant of Mechanical Engineering ] journal & Dissertation

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