Ti65高温钛合金钎焊界面组织与力学性能

Microstructure and mechanical properties of brazing interface of Ti65 high temperature titanium alloy

  • 摘要:
    目的 高温钛合金Ti65蜂窝结构对新型航空飞行器发展至关重要,研究钎焊工艺参数对其界面组织与力学性能的影响具有重要价值。
    方法 研究首先对板/板结构开展钎焊工艺试验,并分析了其界面组织与力学性能;随后对蜂窝夹层结构进行钎焊,并对其界面组织与力学性能进行了相应分析。
    结果 钎焊温度较低或保温时间较短时,界面存在较多的块状和针状Ti-Cu和Ti-Ni金属间化合物,提高钎焊温度或延长保温时间,界面的块状金属间化合物逐渐减少,甚至消失。钎焊温度为950 ℃、保温时间30 min时,界面组织和力学性能最优,界面组织主要由针状α组织组成,Ti-Cu,Ti-Ni金属间化合物弥散分布于针状α组织之间,去除表面富氧层后板/板钎焊复合板的抗拉强度、屈服强度和断后伸长率分别为1 118.77 MPa,1 036.61 MPa,5.95%;该工艺参数下,蜂窝结构中的板/芯钎焊界面主要由针状α组织组成,夹层结构的室温三点弯曲强度、平压强度和侧压强度分别为207.66 MPa,20.60 MPa和1 352.70 MPa。随着测试温度的提高,蜂窝夹层结构力学性能逐渐降低,650 ℃时三点弯曲强度、平压强度和侧压强度分别为室温强度值的39.97%,43.16%,30.97%。
    结论 在950 ℃,30 min的工艺参数下,Ti65板/板与蜂窝夹层结构以针状α组织为主、金属间化合物弥散分布的优质界面组织,具有优异的室温力学性能,但其高温强度随温度升高显著下降。

     

    Abstract: Objective The honeycomb structure of high temperature titanium alloy Ti65 is very important for the development of new aircraft. It is of great value to study the influence of brazing process parameters on its interface structure and mechanical properties. Methods In this study, the brazing process test was carried out on the plate/plate structure, and the interface structure and mechanical properties were analyzed. Subsequently, the honeycomb sandwich structure was brazed, and its interface structure and mechanical properties were analyzed accordingly. Results When the brazing temperature is low or the holding time is short, there are more bulk and needle-like Ti-Cu and Ti-Ni intermetallic compounds at the interface. Increasing the brazing temperature or prolonging the holding time, the bulk intermetallic compounds at the interface gradually decrease or even disappear. When the brazing temperature is 950 ℃ and the holding time is 30 min, the interface structure and mechanical properties are the best. The interface structure is mainly composed of acicular α structure. Ti-Cu and Ti-Ni intermetallic compounds are dispersed between the acicular α structure. After removing the surface oxygen-rich layer, the tensile strength, yield strength and elongation of the plate/plate brazed composite plate are 1118.77 MPa, 1036.61 MPa and 5.95%, respectively. Under this process parameter, the plate/core brazing interface in the honeycomb structure is mainly composed of needle-like α structure. The three-point bending strength, flat compressive strength and edgewise compressive strength of the sandwich structure at room temperature are 207.66 MPa, 20.60 MPa and 1 352.70 MPa, respectively. As the test temperature increases, the mechanical properties of the honeycomb sandwich structure gradually decrease. At 650 ℃, the three-point bending strength, flat compressive strength and edgewise compressive strength are 39.97%, 43.16% and 30.97% of the room temperature strength, respectively. Conclusion Under the process parameters of 950 ℃ and 30 min, the Ti65 plate/plate and honeycomb sandwich structure are dominated by needle-like α structure and the high-quality interface structure with dispersed intermetallic compounds, which has excellent room temperature mechanical properties, but its high temperature strength decreases significantly with the increase of temperature.

     

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