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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Experimental study on ultrasonic consolidation process parameters of Ti-Al metal foil
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Experimental study on ultrasonic consolidation process parameters of Ti-Al metal foil

机译:Ti-Al金属箔超声固结工艺参数的实验研究

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The additive manufacturing technology for ultrasonic consolidation(UC) is to make use of piezoelectric properties of piezoelectric transducer which produces high frequency vibration applied to the metal foil surface and form solid state bonds between metals under certain pressure. In order to obtain better consolidation process parameters, 0.2 mm thick Ti-6Al-4V titanium alloy and 6061 aluminum alloy were consolidated with the UC method, experiments of peeling and surface hardness for consolidation joints were carried out. Firstly, the regularity of peeling strength and surface hardness for consolidation joints with the change of consolidation pressure, oscillator amplitude and heating plate temperature was analyzed, and key process parameters which could improve mechanical properties of the consolidation interface were obtained. Secondly, the microstructure of the consolidation interface was observed by energy dispersive spectrometer (EDS), and the effect of different process parameters on the consolidation interface, and the formation of intermetallic compounds were analyzed, and good consolidation process parameters were obtained. It is found that the larger consolidation pressure, oscillator amplitude and heating plate temperature can result in stronger bonding. The optimum UC pressure of Ti-Al foil is 2.5 kN, the oscillator amplitude is 60 μm, and the heating plate temperature is above 200 ℃. This paper not only focuses on peeling strength and surface hardness, but also analyzes the microstructure of Ti-Al consolidation interface, which can give an opportunity to satisfy the effective consolidation of different materials.
机译:超声波固结(UC)的增材制造技术是利用压电换能器的压电特性,该压电换能器会在金属箔表面产生高频振动,并在一定压力下在金属之间形成固态键。为了获得更好的固结工艺参数,采用UC方法固结了0.2 mm厚的Ti-6Al-4V钛合金和6061铝合金,并进行了固结接头的剥离和表面硬度试验。首先,分析了固结点的剥离强度和表面硬度随固结压力,振子振幅和加热板温度的变化规律,并获得了可改善固结界面力学性能的关键工艺参数。其次,利用能谱仪观察了固结界面的微观结构,分析了不同工艺参数对固结界面的影响,分析了金属间化合物的形成,获得了良好的固结工艺参数。发现更大的固结压力,振荡器振幅和加热板温度可以导致更牢固的结合。 Ti-Al箔的最佳UC压力为2.5 kN,振子振幅为60μm,加热板温度在200℃以上。本文不仅着眼于剥离强度和表面硬度,而且还分析了Ti-Al固结界面的微观结构,这为满足不同材料的有效固结提供了机会。

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