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激光自蔓延烧结Fe-Al合金及其成型过程温度场数值模拟
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辽宁工程技术大学,辽宁工程技术大学,辽宁工程技术大学

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Study on Fe-Al alloy prepared by laster ignition induced and numerical simulation of temperature field in forming process
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Liaoning Technical University,Liaoning Technical University,Liaoning Technical University

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    摘要:

    对Fe40Al60粉末压坯进行激光点燃自蔓延烧结,利用XRD、金相、硬度等表征手段,分析烧结合金表层区、中部区和底部区的微观组织结构及宏观性能,并采用有限元分析方法,对Fe40Al60激光烧结过程的温度场进行数值模拟,得到了烧结过程温度场分布云图和路径图。实验结果表明:表层区产物相主要为FeAl、Al2O3,中部区产物相为Fe3Al、FeAl、Al2O3,底层区产物相为Fe3Al、Al2O3和Fe;烧结合金表层区组织为条状,中部区组织为胞状,底层区组织为针状;表层区硬度为901HV,中间层硬度为1005HV,底层区硬度为965HV。模拟结果表明:10s时,表层区温度最高为1150K,中部区温度为894.033K,底层区温度最低为820.979K。表明试样各区域物相与该区温度场模拟结果相一致。

    Abstract:

    Fe40Al60 alloy was prepared by laster ignition induced self-propagating high-temperature synthesis. By means of XRD, microscopic test, hardness test to analyze the microstructure and macroscopic properities of the sintered alloy about different areas. According to finite element method, the temperature field of Fe40Al60 was simulated by finite element analysis software ANSYS. Contour maps of temperature field and path map were obtained after sintering 10s. The experiment result shows that: The main phases of the alloy upper surface was FeAl, Al2O3. the middle layer of the alloy were Fe3Al, FeAl, Al2O3. the buttom layer of the alloy was Fe3Al, Al2O3 and Fe . The microstructure of the upper surface was strip, the median surface was celluar, the buttom surface was fine needle, hardness highest to 1005 HV of the middle layer, 901 HV to the surface layer, 965HV to the buttom layer.The simulation result shows that: At 10s, the temperature of the direct laster sintering surface up to 1150K, the buttom surface up to 820.979K and the temperature of median surface was 894.033K.The results show that the experimental results are consistent with the simulation results.

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李刚,许新颖,葛少成.激光自蔓延烧结Fe-Al合金及其成型过程温度场数值模拟[J].稀有金属材料与工程,2016,45(11):2873~2877.[ligang, xuxinying, geshaocheng. Study on Fe-Al alloy prepared by laster ignition induced and numerical simulation of temperature field in forming process[J]. Rare Metal Materials and Engineering,2016,45(11):2873~2877.]
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  • 收稿日期:2014-08-26
  • 最后修改日期:2014-09-11
  • 录用日期:2014-10-30
  • 在线发布日期: 2016-12-08
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