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首页> 外文期刊>Materials & design >Study on laser beam welding/superplastic forming technology of multi-sheet cylinder sandwich structure for Inconel718 superalloy with ultra-fine grains
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Study on laser beam welding/superplastic forming technology of multi-sheet cylinder sandwich structure for Inconel718 superalloy with ultra-fine grains

机译:超细晶粒Inconel718合金多片圆柱夹层结构的激光焊接/超塑性成形技术研究

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摘要

Multi-sheet cylinder sandwich structure of InconeI718 superalloy will be widely used in aerospace as heat resisting and heat shielding structure due to its lightweight, high strength and stiffness. Superplasticity of Inconel718 superalloy was investigated. Under T= 950 ℃ and initial strain rate with ε = 1.6×10~(-4) s~(-1), the elongation of Inconel718 superalloy is 483.6%. The perfect superplastic forming temperature for Inco-nel718 superalloy is at 950℃. The laser penetration welding parameters are as follows: power 1200 W, welding speed 1200 mm/min, defocusing amount -1 mm, shield gas flow 0.6 L/min, and the parameters for superplastic forming are as follows: temperature 7)= 950℃, pressure P_f= 4.2 MPa, time t_f= 130 min. The multi-sheet cylinder sandwich structure manufactured by laser beam welding/superplastic forming (LBW/SPF) technology has good shape, uniform wall thickness distribution, high symmetry in internal structure. Laves phase, harmful to the materials, translates to the δ phase which will help improve the performance of the material after SPF process. The hardness of laser welding joints is improved from 331.63 HV to 391.74 HV after the SPF process. The tensile strength of base material of multi-sheet cylinder sandwich structure has been increased about 261 MPa after the SPF process.
机译:InconeI718高温合金的多片圆柱夹层结构由于其轻巧,高强度和刚度而将在航空航天中用作耐热和隔热结构。研究了Inconel718高温合金的超塑性。在T = 950℃和ε= 1.6×10〜(-4)s〜(-1)的初始应变率下,Inconel718高温合金的伸长率为483.6%。 Inco-nel718高温合金的最佳超塑性成形温度为950℃。激光熔透焊接参数如下:功率1200 W,焊接速度1200 mm / min,散焦量-1 mm,保护气流0.6 L / min,超塑性成形参数如下:温度7)= 950℃ ,压力P_f = 4.2 MPa,时间t_f = 130分钟。采用激光束焊接/超塑性成形(LBW / SPF)技术制造的多片圆柱夹层结构,形状好,壁厚分布均匀,内部结构对称性高。对材料有害的Laves相转变为δ相,这将有助于在SPF处理后改善材料的性能。经过SPF处理后,激光焊接接头的硬度从331.63 HV提高到391.74 HV。经SPF处理后,多片圆柱夹层结构基材的抗拉强度提高了约261 MPa。

著录项

  • 来源
    《Materials & design》 |2012年第8期|p.151-161|共11页
  • 作者

    F.S. Qu; Z. Lu; F. Xing; K.F. Zhang;

  • 作者单位

    Chongqing University, College of Material Science and Engineering, Chongqing 400030, China;

    Harbin Institute of Technology, School of Materials Science and Engineering, Harbin 150001, China;

    Chongqing University, College of Material Science and Engineering, Chongqing 400030, China;

    Harbin Institute of Technology, School of Materials Science and Engineering, Harbin 150001, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    C. forming; B. sandwich structures; D. welding;

    机译:C.成型;B.三明治结构;D.焊接;

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