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基于限位控制的钛合金扩散焊工艺

Diffusion bonding process controlled by position limitation on titanium alloy

  • 摘要: 为满足钛合金结构精密高性能扩散焊要求,采用高纯石墨作为限位块,开展了不同高度TA15钛合金试样在温度为920 ℃,压力为9800 N,保温时间为2 h的工艺参数下的扩散焊试验,分析了试样高度与限位块高度的差值限位间隙对接头焊接变形和组织、力学性能的影响.结果表明,限位间隙对TA15钛合金扩散焊接头变形影响较为显著,随着限位间隙从−0.05 mm增加至0.2 mm,接头焊接变形量近似呈线性从0.16 mm增加到0.42 mm,焊接面处孔洞尺寸及数量逐渐减小,接头抗拉强度逐渐增加到母材水平.当限位间隙为0.2 mm时,接头组织基本完全焊合,熔合线上存在断续分布的β相,抗拉强度达到962 MPa,拉伸试样断于母材.因此,限位扩散焊方案可以有效控制TA15钛合金焊接过程中的变形,并呈现较强的规律性.基于此变形规律,结合产品结构补偿设计,可实现钛合金构件的精密高性能焊接.

     

    Abstract: In order to meet the diffusion bonding of titanium alloy structure with high accuracy and strong performance, the pure graphite was used as the position limitation block, TA15 titanium alloy test blocks with various height dimensions were diffusion bonded at the process parameters of 920 ℃, 9800 N, and a holding time of 2 h, and the holding time is 2 hours, and the effect of the gap size between position limitation block and TA15 titanium alloy test block on deformation, microstructure and mechanical property of diffusion bonded joint. Results show that the gap size has great effect on the deformation of TA15 titanium alloy diffusion bonded joint. When the gap size increased from −0.05 mm to 0.2 mm, deformation amount of diffusion bonded joint increased from 0.16 mm to 0.42 mm approximately linearly with the size and amount of micro holes decreasing, when the tensile strength of joint increased to the level of base metal. When the gap size was 0.2 mm, well bonded joint was obtained with β phase distributing on the bond line intermittently, and the tensile strength reached to 962 MPa with the tensile test joint fracturing at base metal. Therefore, scheme of TA15 titanium alloy diffusion bonding through position limitation could control the deformation effectively and regularly. Based on the deformation behavior, titanium component could be bonded with high accuracy and high performance combined compensation design of the product structure.

     

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