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Bonding strength evaluation of explosive welding joint of tungsten to ferritic steel using ultra-small testing technologies

机译:用超小型测试技术将钨爆炸焊接接头的粘接强度评价

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摘要

The interface bonding strength of thinly coated materials is difficult to be measured accurately owing to the size limitations of the coating layer. In this study, the interfaces bonding strength of an underwater explosive welded tungsten foil on ferritic steel was investigated by deep-notch-type micro-tensile tests and microscopic double-notch shear (DNS) compression tests. The micro-tensile tests were carried out using a focused ion beam (FIB) tensile system. The results showed that the tensile strength of the interface region near the ferritic steel was larger than that of the ferritic steel but weaker than that of the tungsten foil. The micro-DNS compression tests were conducted in both the tungsten and interface regions. The obtained shear strength of tungsten exhibited a strong size dependence as follows: the smaller the size, the higher the strength. Although interface specimens with a large gauge section area showed a shear strength similar to that of tungsten DNS specimens, an interface region specimen with an area of the gauge section of approximately 1 μm~2 showed larger shear strengths (~4.8 GPa) than the tungsten region (3.2 GPa). Observations of the bonding microstructure and fracture surface indicated that the obtained shear strength with 1 μm~2 specimens corresponded to the interface bonding shear strength between tungsten and ferritic steel obtained by underwater explosive welding.
机译:由于涂层的尺寸限制,难以准确地测量薄涂层材料的界面键合强度。在这项研究中,通过深槽型微拉伸试验和微观双凹凸剪切(DNS)压缩试验研究了铁素钢上的水下爆炸焊接钨箔的界面粘合强度。使用聚焦离子束(FIB)拉伸系统进行微拉伸试验。结果表明,铁素体钢附近的界面区域的拉伸强度大于铁素体钢的抗拉强度,但比钨箔的宽度较弱。微DNS压缩试验在钨和界面区域进行。所得钨的剪切强度表现出强大的依赖性,如下:尺寸越小,强度越高。尽管具有大型仪表区段区域的界面样本显示出类似于钨DNS样本的剪切强度,但具有大约1μm〜2的规格部分区域的界面区域样品显示出比钨更大的剪切强度(〜4.8GPa)地区(3.2 GPA)。键合微结构和裂缝表面的观察结果表明,具有1μm〜2试样的所得剪切强度对应于通过水下爆炸焊接获得的钨和铁素体钢之间的界面粘合剪切强度。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第5期|141995.1-141995.10|共10页
  • 作者单位

    Department of Quantum Science and Energy Engineering Graduate School of Engineering Tohoku University 2-1-1 Katahira Aoba-ku Sendai Miyagi 980-8577 Japan Institute for Materials Research Tohoku University 2-1-1 Katahira Aoba-ku Sendai Miyagi 980-8577 Japan;

    Institute for Materials Research Tohoku University 2-1-1 Katahira Aoba-ku Sendai Miyagi 980-8577 Japan;

    Institute for Materials Research Tohoku University 2-1-1 Katahira Aoba-ku Sendai Miyagi 980-8577 Japan;

    Institute for Materials Research Tohoku University 2-1-1 Katahira Aoba-ku Sendai Miyagi 980-8577 Japan;

    Rokkasho Fusion Institute National Institutes for Quantum and Radiological Science and Technology 2-166 Oaza Obuchi Aza Omotedate Rokkasho Aomori 039-3212 Japan;

    Rokkasho Fusion Institute National Institutes for Quantum and Radiological Science and Technology 2-166 Oaza Obuchi Aza Omotedate Rokkasho Aomori 039-3212 Japan;

    Institute of Industrial Nanomaterials Kumamoto University Kumamoto 860-8555 Japan;

    Institute of Industrial Nanomaterials Kumamoto University Kumamoto 860-8555 Japan;

    Institute of Advanced Energy Kyoto University Uji Gokasho Kyoto 61-0011 Japan;

    Institute of Advanced Energy Kyoto University Uji Gokasho Kyoto 61-0011 Japan;

    Institute for Materials Research Tohoku University 2-1-1 Katahira Aoba-ku Sendai Miyagi 980-8577 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultra-small testing technology; Interface bonding strength; Dissimilar joint; Explosive welding; Size effect; Tungsten;

    机译:超小型测试技术;界面粘接强度;不同的关节;爆炸焊接;尺寸效应;钨;

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