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93.3Sn3.1Ag0.5Cu3.1Bi钎料熔体结构转变及其对凝固的影响

Melt Structure Transition of 93.3Sn3.1Ag0.5Cu3.1Bi Solder and Its Effects on Solidification
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摘要 本文采用直流四电极法研究了93.3Sn3.1Ag0.5Cu3.1Bi无铅钎料合金熔体在连续两轮的升降温过程中电阻率随温度的变化关系,探讨了温度诱导的液-液结构转变;以此为基础进一步研究了该合金在结构转变前后的凝固。结果表明,93.3Sn3.1Ag0.5Cu3.1Bi合金中存在液-液结构转变,并且该结构转变在第一轮升温后的转变过程是可逆的。结合实验结果及分析可知,在首轮升温过程中,结构转变包括不可逆的和可逆的两种不同类型的结构转变。 In this paper, the temperature dependence of electrical resistivity of 93.3Sn3. lag0.5Cu3.1Bi lead-free solder melts was measured at two heating and cooling cycles with the help of I)(2 four-probe method. Based on the a- bove results, further research of solidification properties of the alloy before and after structural transition was carried out. The results show the liquid-liquid structure transition (LLST) exists in 93.3Sn3. lag0.5Cu3.1Bi solder, and the structure transition is reversible after the first heating process. Combined the results of experiments and the ana- lyses, it is thought that the LLSTs in first heating process include two different types of structural transition: irre- versible and reversible.
出处 《金属功能材料》 CAS 2012年第4期20-24,共5页 Metallic Functional Materials
关键词 93.3Sn3.1Ag0.5Cu3.1Bi无铅钎料 液-液结构转变 电阻率 短程序结构 93.3Sn3. lAg0. 5Cu3.1Bi lead-free solder liquid-liquid structure transition resistivity short-range or-ders structure
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参考文献8

  • 1Bian X F, Wang W M. Thermal-rate treatment and structure transformation of A1 - la wt. % Si alloy melt[J]. Mater Lett, 2000,44: 54-58.
  • 2Sette F, Krisch M H, Masciovecchio C, et al. Dynamics of Glasses and Glass-Forming Liquids Studied by Inelastic X-ray Seattering[J]. Science, 1998, 280:1550.
  • 3余瑾,祖方遒,丁厚福,刘兰俊,李先芬,薛国宪.连续变温金属固-液电阻率测试装置及应用[J].稀有金属,2004,28(5):880-884. 被引量:21
  • 4胡成明,李先芬,祖方遒,毛丽娜,刘明全,刘永驰.Sn-Bi合金熔体可逆液-液结构转变的研究[J].原子与分子物理学报,2008,25(4):1003-1007. 被引量:6
  • 5周兵,祖方遒,杨树斌,邵春文,刘小毛,那庆阳.Sn-70Bi合金熔体结构转变的可逆性及其凝固行为[J].特种铸造及有色金属,2008,28(2):0160-03.
  • 6Itami T Munejiri S,Masaki T, et al. Stucture of liquid Sn over a wide temperature range from neutron scattering experiments and first-principles molecular dynamics simulation : a comparison to liquid Pb[J]. Phys Rev, B,2003,67:064201.
  • 7周绕和,胡壮麟,介万齐.凝固技术[M].北京:机械工业出版社,1998.
  • 8Zharikov E V, Zavartesv Y D, Laptev V V, et al. Impurity dis- tribution within the diffusion layer in the cluster crystallization model[J]. Crystal Research and Technology, 1989,24(8) : 751 -759.

二级参考文献22

  • 1余瑾,祖方遒,丁厚福,刘兰俊,李先芬,薛国宪.连续变温金属固-液电阻率测试装置及应用[J].稀有金属,2004,28(5):880-884. 被引量:21
  • 2杨中喜,耿浩然,陶珍东,孙春静.液态Sn的粘度及其熔体微观结构的变化[J].原子与分子物理学报,2004,21(4):663-666. 被引量:15
  • 3桂满昌,贾均,李庆春,冯健宏.液态金属电阻率测定装置及应用[J].材料工程,1994,22(7):29-31. 被引量:5
  • 4杨中喜,耿浩然,邱学农,孙春静.Sn-60%Bi合金熔体粘滞性研究[J].济南大学学报(自然科学版),2005,19(4):283-285. 被引量:3
  • 5[2]Glosli James N, Francis H Ree. Liquid-liquid phase transformation in carbon [J]. Physical Review Letters, 1999, 82(23):4659.
  • 6[4]Zhang J X, Fung P C W, Zeng W G. Dissipation function of the first-order phase transformation in solids via internal-friction measurements [J]. Physical Review B, 1995, 52(1): 268.
  • 7[5]J-Lou Bretonnet. J. Non-Crystal. Solids, 1990, 117 ~ 118:395.
  • 8[7]Fecht H J, Zhang M X, Chang Y A, et al. Metastable phase equilibria in the lead-tin alloy system: part Ⅱ . thermodynamic modeling [J]. Metallurgical Transactions A, 1989, 20A: 795.
  • 9[8]Fecht H J, Perepezko J H. Metastable phase equilibria in the lead-tin alloy system: part Ⅰ . experimental [J]. Metallurgical Transactions A, 1989, 20A: 785.
  • 10[9]Ubbelohde A R. The Molten State of Matter [M]. New York:A Wiley-Interscience Publication, 1978. 25.

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