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Effect of Ultrasonic Cavitation and Chemical Erosion on TC4 Titanium Alloy in Aluminum Melt

机译:超声波空化和化学腐蚀对铝熔体TC4钛合金的影响

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An ultrasonic radiation rod made of Ti-6Al-4V (TC4) titanium alloy can be eroded in an aluminum alloy casting, which can also affect the stable transmission of ultrasonic waves. This erosion is a result of complex, multifactor interaction. Therefore, two groups of experiments were designed: one group did not apply ultrasonic treatment (UST), while the other group did. Five titanium alloy samples removed from the radiation rod were ground on the automatic grinding machine to make their surface roughness similar. The four samples were placed in the molten aluminum for 4.5, 9, 13.5, and 18 h, respectively, without UST. The remaining sample was placed in molten aluminum with UST for 4.5 h. The four samples without UST were cooled and cut through the middle position by a wire-cutting machine. The cross sections of the four samples were ground and observed by a scanning electron microscope (SEM). The generated chemical layer was determined to be titanium trialuminide alloy (TiAl3) by energy dispersion spectrum (EDS) analysis, and its thickness was approximately 20-50, 145, 220, and 345 mu m, respectively, corresponding to different processing times. The fifth titanium alloy sample was processed by UST, the residual aluminum on the sample surface was removed by hydrochloric acid, and obvious erosion pits and microcracks were found by SEM. The roughness of the surface was approximately 340 mu m in the LY-WN-YH 3-D system. Therefore, the effect of ultrasonic cavitation on TC4 titanium alloy is much larger than that of a chemical reaction.
机译:由Ti-6AL-4V(TC4)钛合金制成的超声波辐射棒可以在铝合金铸件中侵蚀,这也可以影响超声波的稳定传输。这种侵蚀是复杂的多因素相互作用的结果。因此,设计了两组实验:一组不适用超声波处理(UST),而另一组则为另外。从辐射棒中取出的五个钛合金样品在自动磨床上研磨,使其表面粗糙度类似。将四个样品分别置于4.5,9,13.5和18小时的熔融铝中,而无需UST。将剩余的样品与UST置于熔融铝中,4.5小时。通过钢丝切割机冷却和切割中间位置的四个样品。将四个样品的横截面接地并由扫描电子显微镜(SEM)观察。通过能量分散谱(EDS)分析,测定所产生的化学层是钛试距离二硅烷合金(TiA13),其厚度分别为约20-50,145,220和345μm,对应于不同的加工时间。通过UST加工第五钛合金样品,通过盐酸除去样品表面上的残留铝,通过SEM发现明显的腐蚀坑和微裂纹。在LY-WN-YH 3-D系统中,表面的粗糙度约为340μm。因此,超声波空化对TC4钛合金的影响远大于化学反应。

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