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Volume 29 Issue 4
Sep.  2013
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Finite element simulation of thermal stress distribution in direct metal laser sintering

  • Corresponding author: YAO Jin, jinyao163@163.com
  • Received Date: 2004-07-30
    Accepted Date: 2004-09-08
  • Taking into account temperature-dependent thermal conduction and heat capacity,a three-dimensional transient finite element model was established.A sequentially analysis of coupled thermal-stress was employed.Some conclusions related to the simulation results are made:maximum thermal stress lessens with sintering going on owing to effect of sintered region;the region ahead of sintering has greater stress distribution than behind.
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  • [1]

    JIANG W,XU Zh X,DALGARNO K W etal.Numerical prediction of thermal stresses in direct metal SLS process [A].Proceeding of the Second International Conference on Rapid Prototyping & Manufacturing 2002 [C].Beijing:Tsinghua University Press,2002.64~69.
    [2]

    CHILDS T H C,TONTOWI A E.Selective laser sintering of a crystalline and a glass-filled crystalline polymer:experiments and simulations [J].Proc MechE,2001,B215:1481~1495.
    [3]

    GRECO A,MAFFEZZOLI A.Polymer melting and polymer powder sintering by thermal analysis [J].Journal of Thermal Analysis and Calorimetry,2003,72(3):1167~1174.
    [4]

    CHILDS T H C,BERZINS M,RYDER G Retal.Selective laser sintering of an amorphous polymers-simulations and experiments [J].Proc IMechE,1999,B213:333~349.
    [5]

    FISHCHER P,ROMANO V,WEBER H P et al.Modeling of near infrared pulsed laser sintering of metallic powders [J].SPIE,2003,5147:292~298.
    [6]

    MATSUMOTO M,SHIOMI M,OSAKADA K et al.Finite element analysis of single layer forming on metallic powder bed in rapid prototyping by selective laser processing [J].International Journal of Machine Tools & Manufacture,2002,42(1):61~67.
    [7]

    WILLIAMS J D,DECKARD R.Advances in modeling the effects of selected parameters on the SLS process [J].Rapid Prototyping Journal,1998,4(2):90~100.
    [8]

    SIH S S,BARLOW J W.Measurement and prediction of the thermal conductivity of powders at high temperature [A].Proceedings of the 5th Annual SFF Symposium [C].Austin:the University of Texas,1994.321~329.
    [9]

    SIH S S,BARLOW J W.The prediction of the thermal conductivity of powders [A].Proceedings of the 6th Annual SFF Symposium [C].Ausfin:the University of Texas,1995.397~401.
    [10] 鹿安理,史青宇,赵海燕 et al.厚板焊接过程温度场、应力场的三维有限元数值模拟[J].中国机械工程,2001,12(2):183~186.

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通讯作者: 陈斌, bchen63@163.com
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Finite element simulation of thermal stress distribution in direct metal laser sintering

    Corresponding author: YAO Jin, jinyao163@163.com
  • 1. School of Manufacture Science and Engineering, Sichuan University, Chengdu 610065, China;
  • 2. Institute of Machinery Manufacturing Technology, China Academy of Engineering Physics, Mianyang 621900, China

Abstract: Taking into account temperature-dependent thermal conduction and heat capacity,a three-dimensional transient finite element model was established.A sequentially analysis of coupled thermal-stress was employed.Some conclusions related to the simulation results are made:maximum thermal stress lessens with sintering going on owing to effect of sintered region;the region ahead of sintering has greater stress distribution than behind.

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