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首页> 外文期刊>Journal of materials science >Improvement of strength-ductility trade-off in a Sn-0.7Cu-0.2Ni lead-free solder alloys through Al-microalloying
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Improvement of strength-ductility trade-off in a Sn-0.7Cu-0.2Ni lead-free solder alloys through Al-microalloying

机译:通过Al-Micro合金化改善Sn-0.7Cu-0.2Ni无铅焊料合金中的强度 - 延展性折折优化

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摘要

The enhancement in strength is generally attended by ductility loss in lead-free solder alloys, which is commonly denoted as strength-ductility trade-off (SDT). This work provides new viewpoint on the design of novel Sn-0.7Cu-0.2Ni (SCN) solders with the notably enhanced SDT, possessing yield stress (YS) of 40.8 MPa, tensile strength (UTS) of 42.9 MPa, and large uniform elongation up to 240%. Such breaking between competing properties of SDT is caused by microstructural modification that comprised with the arrangement of fine and coarse-sized phases in complex heterogeneous microstructures. Toward this end, the heterogeneous structures in SCN solder are produced by Al-microalloying, followed by cold-drawn and temperature-annealing. However, microalloying of 0.1 % Al decreases the undercooling of SCN solder while 0.2% Al reduces the eutectic temperature. Our results show that the heterogeneous structure design strategy can offer a new generation of enhanced SDT alloys with boosting elastic compliance and plastic energy chock resistance for mobile products industry.
机译:通常通过无铅焊料合金中的延展性损失引起强度的增强,其通常表示为强度 - 延展性折折(SDT)。这项工作为新的SN-0.7Cu-0.2Ni(SCN)焊料设计提供了新的观点,具有显着增强的SDT,具有40.8MPa,拉伸强度(UT)的屈服应力(Ys),伸长强度(UT)和大均匀伸长率高达240%。 SDT的竞争性能之间的这种破裂是由微结构改性引起的,所述微观结构改性包括在复杂的非均相微结构中的细小和粗大小相的布置。朝向此结束时,SCN焊料中的异质结构由Al-Micro合金化生产,然后进行冷绘和温度退火。然而,0.1%Al的微合金化降低了SCN焊料的过冷,而0.2%Al降低了共晶温度。我们的研究结果表明,异构结构设计策略可提供新一代增强的SDT合金,具有促进移动产品行业的弹性顺应性和塑料能量肋障碍。

著录项

  • 来源
    《Journal of materials science 》 |2020年第11期| 8649-8661| 共13页
  • 作者单位

    Physics Department Faculty of Science Zagazig University Zagazig Egypt;

    Basic Science Department Modern Academy of Engineering and Technology Cairo Egypt;

    Physics Department Faculty of Science Umm Al-Qura University Makkah Saudi Arabia;

    Physics Department Faculty of Science Zagazig University Zagazig Egypt Physics Department College of Science Jouf University P. O. 2014 Sakaka Saudi Arabia;

    Physics Department Faculty of Science Zagazig University Zagazig Egypt;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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