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首页> 外文期刊>Journal of Materials Science >Microstructure of diffusional zirconia-titanium and zirconia-(Ti-6 wt% Al-4 wt% V) alloy joints
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Microstructure of diffusional zirconia-titanium and zirconia-(Ti-6 wt% Al-4 wt% V) alloy joints

机译:扩散氧化锆-钛和氧化锆-(Ti-6 wt%Al-4 wt%V)合金接头的显微组织

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摘要

Zirconia-titanium and zirconia-titanium alloy joints were made by diffusion bonding under an inert atmosphere at temperatures in the 1162-1494 degrees C range. To inhibit the strong oxygen uptake by the titanium member a platinum insert was alternatively used. The microstructures and elemental profiles across the joints were investigated by scanning electron microscopy imaging and energy-dispersive spectroscopy or wavelength-dispersive spectroscopy microanalysis. It was found that direct ZrO2-Ti joining produces oxygen saturation in the Ti member and the formation of (Ti,Zr)(2)O at the interface. ZrO2/Pt/Ti joints present a complex layer sequence which at lower temperatures can be described on the basis of the Pt-Ti binary, except near the ceramic where a (Pt, Zr)-rich layer forms; at higher temperatures these joints develop an oxide layer of composition Ti2O3, this oxide probably resulting from local decomposition of the ceramic and reaction of oxygen with the incoming titanium. When Ti is replaced by the Ti-6 wt% Al-4 wt% V alloy in joints where Pt is present, the main consequences are the presence of liquid at lower joining temperatures and the earlier development of the oxide layer, now of nominal composition TiO. In all Pt-containing joints a phase of nominal composition Ti3Pt2 forms; it is advanced that this may be an equilibrium phase not predicted by the Pt-Ti diagrams available. All joints are weak, the fracture path running through the metal in the case of direct ZrO2-Ti joints and through the interface between the ceramic and the (Pt,Zr)-rich layer in joints where Pt is present. [References: 4]
机译:氧化锆-钛和氧化锆-钛合金接头是通过在惰性气体中在1162-1494摄氏度范围内的温度下进行扩散粘结而制成的。为了抑制钛构件的强氧气吸收,可替代地使用铂插入物。通过扫描电子显微镜成像和能量色散光谱或波长色散光谱显微分析,研究了整个接头的微观结构和元素分布。发现直接的ZrO2-Ti连接会在Ti部件中产生氧饱和,并在界面处形成(Ti,Zr)(2)O。 ZrO2 / Pt / Ti接头具有复杂的层序,在较低温度下可以根据Pt-Ti二元关系进行描述,除了在陶瓷中形成富含(Pt,Zr)的层附近。在较高的温度下,这些接头会形成一层由Ti2O3组成的氧化物层,这种氧化物可能是由于陶瓷的局部分解以及氧气与进入的钛的反应而产生的。当在存在Pt的接头中用Ti-6 wt%Al-4 wt%V合金代替Ti时,主要后果是在较低的连接温度下存在液体,并且较早形成了名义组成的氧化物层二氧化钛在所有含Pt的接头中,形成名义组成为Ti3Pt2的相。提出这可能是没有可用的Pt-Ti图预测的平衡阶段。所有接头均较弱,在直接ZrO2-Ti接头的情况下,断裂路径贯穿金属,并贯穿存在Pt的接头中的陶瓷与(Pt,Zr)富层之间的界面。 [参考:4]

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