Direct Measurement of the Metastable Liquid Miscibility Gap in Fe--Co--Cu Ternary Alloy System

  • Published Date: January 31, 2005
  • The metastable liquid--liquid phase separation in undercooled Fe--Co--Cu ternary alloy melts (XCu=0.10--0.84; XCo:XFe=1:3, 1:1 and 3:1) is investigated by differential thermal analysis in combination with glass fluxing technique. In almost every case, the undercooling of the homogeneous alloy melt was sufficient to reach the boundary line of the submerged miscibility gap. The differential-thermal-analysis signals indicate that this separation into a (Fe,Co)-rich liquid phase L1 and a Cu-rich liquid L2 is exothermic and proceeds until the rapid solidification of the L1 phase occurs. At a given Cu concentration and with the increase of Co content, the phase separation temperatures decrease monotonically between the corresponding values of the boundary systems Fe--Cu and Co--Cu. The boundary lines of the miscibility gap, which are determined for the three quasi-binary cross-sections of the (Fe,Co)--Cu alloy system, show remarkably flat domes. The occurrence of the liquid phase separation shows an evident influence on the subsequent γ-Fe(Co,Cu)→α-Fe(Co, Cu) solid phase transformation.

  • Article Text

  • Related Articles

    [1]SU Zhou-Ping, JI Zhi-Cheng, ZHU Zhuo-Wei, QUE Li-Zhi, ZHU Yun. Phase Locking of Laser Diode Array by Using an Off-Axis External Talbot Cavity [J]. Chin. Phys. Lett., 2012, 29(5): 054210. doi: 10.1088/0256-307X/29/5/054210
    [2]WANG Xiao-Long, TAO Tian-Jiong, CHENG Bing, WU Bin, XU Yun-Fei, WANG Zhao-Ying, LIN Qiang. A Digital Phase Lock Loop for an External Cavity Diode Laser [J]. Chin. Phys. Lett., 2011, 28(8): 084214. doi: 10.1088/0256-307X/28/8/084214
    [3]ZHANG Jin-Chuan, WANG Li-Jun, LIU Wan-Feng, LIU Feng-Qi, YIN Wen, LIU Jun-Qi, LI Lu, WANG Zhan-Guo. Room-Temperature Continuous-Wave Operation of a Tunable External Cavity Quantum Cascade Laser [J]. Chin. Phys. Lett., 2011, 28(7): 074203. doi: 10.1088/0256-307X/28/7/074203
    [4]HAN Shun-Li, CHENG Bing, ZHANG Jing-Fang, XU Yun-Fei, WANG Zhao-Ying, LIN Qiang. Stabilization and Shift of Frequency in an External Cavity Diode Laser with Solenoid-Assisted Saturated Absorption [J]. Chin. Phys. Lett., 2009, 26(6): 063201. doi: 10.1088/0256-307X/26/6/063201
    [5]QI Xiang-Hui, CHEN Wen-Lan, YI Lin, ZHOU Da-Wei, ZHOU Tong, XIAO Qin, DUAN Jun, ZHOU Xiao-Ji, CHEN Xu-Zong. Ultra-Stable Rubidium-Stabilized External-Cavity Diode Laser Based on the Modulation Transfer Spectroscopy Technique [J]. Chin. Phys. Lett., 2009, 26(4): 044205. doi: 10.1088/0256-307X/26/4/044205
    [6]SU Zhou-Ping, LOU Qi-Hong, DONG Jing-Xing, ZHOU Jun, WEI Yun-Rong. Line-Width Reduction of a Laser Diode Array Using an External Cavity with Two Feedback Mirrors [J]. Chin. Phys. Lett., 2007, 24(9): 2587-2589.
    [7]TAN Yi-Dong, ZHANG Shu-Lian. Intensity Tuning in Single Mode Microchip Nd:YAG Laser with External Cavity [J]. Chin. Phys. Lett., 2006, 23(12): 3271-3274.
    [8]FEI Li-Gang, ZHANG Shu-Lian, WAN Xin-Jun. Influence of Optical Feedback from Birefringence External Cavity on Intensity Tuning and Polarization of Laser [J]. Chin. Phys. Lett., 2004, 21(10): 1944-1947.
    [9]WU Ke-Ying, ZHANG Han-Yi, ZHENG Xiao-Ping, TENG Xiang, SHI Wei-Wei, GUO Yi-Li. A Step-by-Step Tunable Compound External Cavity Semiconductor Laser with Two-Side Feedback Coupling [J]. Chin. Phys. Lett., 2003, 20(7): 1058-1060.
    [10]ZHANG Tian-cai, HOU Zhan-jia, WANG Jun-min, XIE Chang-de, PENG Kun-chi. Generation of Intensity Squeezing in Laser Diodes by Weak External Cavity Feedback [J]. Chin. Phys. Lett., 1996, 13(10): 734-736.

Catalog

    Article views (1) PDF downloads (1374) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return