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MA Yanyi, WANG Haiyan, ZHANG Yupeng, YI Yaoyong, DONG Fuyu. Crystallization control and microstructural properties of laser welded Zr67.8Cu24.7Al3.43Ni4.07 bulk metallic glasses[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2019, 40(12): 138-142. DOI: 10.12073/j.hjxb.2019400327
Citation: MA Yanyi, WANG Haiyan, ZHANG Yupeng, YI Yaoyong, DONG Fuyu. Crystallization control and microstructural properties of laser welded Zr67.8Cu24.7Al3.43Ni4.07 bulk metallic glasses[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2019, 40(12): 138-142. DOI: 10.12073/j.hjxb.2019400327

Crystallization control and microstructural properties of laser welded Zr67.8Cu24.7Al3.43Ni4.07 bulk metallic glasses

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  • Received Date: April 29, 2019
  • Laser welding was employed to weld Zr67.8Cu24.7Al3.43Ni4.07 bulk metallic glasses (BMGs). The effects of laser power and welding speed on the microstructures of different regions in the joints were studied. The crystallization control law of laser welded BMG joints is expounded, and the relationship between microstructure characteristics and hardness of as-welded joints is discussed. The results showed that the laser welding technology with high welding speed and high energy density is beneficial to maintain the amorphous structure of the molten zone in Zr67.8Cu24.7Al3.43Ni4.07 BMG joints, accompanied by some nano-grains forming. The crystallization happening in heat affected zones is severe. Laser power has a great influence on the complete penetration of as-welded joints. The degree of crystallization in heat affected zones can be effectively controlled through lowering laser power or increasing the welding speed to reduce heat input. Vickers hardness tests reveal that the hardness of the molten zones of the welded joint is slightly higher than that of base material, and the hardness of heat affected zones is significantly lower than that of the base material.
  • 王彦芳, 司爽爽, 宋增金, 等. 电火花沉积非晶涂层的组织结构与摩擦磨损性能[J]. 焊接学报, 2018, 39(7):121-124
    Wang Yanfang, Si Shuangshuang, Song Zengjin, et al. Microstructure and tribology behaviors of Zr-based amorphous coating on ZL101 by electro-spark deposition[J]. Transactions of the China Welding Institution, 2018, 39(7):121-124
    Qiao J, Jia H, Liaw P K. Metallic glass matrix composites[J]. Materials Science and Engineering R Reports, 2016, 100:1-69.
    王 廷, 石志远, 李 宁, 等. Cu46Zr46Al8非晶合金电子束焊接特性分析[J]. 焊接学报, 2018, 39(8):38-41
    Wang Ting, Shi Zhiyuan, Li Ning, et al. Characteristic of electron beam welded Cu46Zr46Al8 BMGs[J]. Transactions of the China Welding Institution, 2018, 39(8):38-41
    文 驰. Zr基非晶合金扩散焊技术研究[D]. 武汉:华中科技大学, 2015.
    张英明, 袁子洲, 孙 慧, 等. 非晶合金连接的研究现状[J]. 材料学报, 2010, 24(9):89-92
    Zhang Yingming, Yuan Zizhou, Sun Hui, et al. Research status of the bonding for amorphous alloys[J]. Materials Reports, 2010, 24(9):89-92
    Williams E, Lavery N. Laser processing of bulk metallic glass:a review[J]. Journal of Materials Processing Technology, 2017, 247:73-91.
    Wirginia P. Structure and properties of Zr-Based bulk metallic glasses in as-cast state and after laser welding[J]. Materials, 2018, 11(7):1-14.
    Wang H S, Chen H G, Jang J S C, et al. Combination of a Nd:YAG laser and a liquid cooling device to (Zr53Cu30Ni9Al8)Si0.5 bulk metallic glass welding[J]. Materials Science & Engineering A, 2010, 528(1):338-341.
    Chen B, Shi T, Li M, et al. Crystallization of Zr55Cu30Al10Ni5 bulk metallic glass in laser welding:simulation and experiment[J]. Advanced Engineering Materials, 2015, 17(4):483-490.
    Wang G, Huang Y J, Shagiev M, et al. Laser welding of Ti40Zr25Ni3Cu12Be20 bulk metallic glass[J]. Materials Science & Engineering A, 2012, 541(9):33-37.
    Wang H S, Chen H G, Jang S C. Microstructure evolution in Nd:YAG laser-welded (Zr53Cu30Ni9Al8)Si0.5 bulk metallic glass alloy[J]. Journal of Alloys & Compounds, 2010, 495(1):224-228.
    Chen H L, Li L J, Lin T L. Formation of segregation morphology in crystalline/amorphous polymer blends:molecular weight effect[J]. Macromolecules, 1998, 31(7):2255-2264.
    胡 鹏. 锆基非晶合金及复合材料凝固行为的研究[D]. 兰州:兰州理工大学, 2018.
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