钛合金定子叶片电阻焊缝因金属排出引起疲劳开裂

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摘要

通过对某一级轴向压气机静叶的荧光渗透检测,发现在电阻焊缝边缘存在一条长度超过50毫米(2英寸)的纵向裂纹。叶片由钛合金Ti-6Al-4V (AMS 4911)制成。裂缝是通过压裂叶片而打开的。裂纹表面呈现由焊缝界面产生的疲劳滩痕。前缘和后缘焊缝的焊缝金属喷出长度均达3.6 mm(0.14英寸)。金相检查证实,电阻焊缝中普遍存在金属排出现象。定子叶片的失效是由于制造叶片的电阻焊缝中金属的排出引起的内部表面不连续处产生的疲劳裂纹。应通过稍微降低焊接电流以降低温度,或通过增加电极力,或两者兼而有之,来消除焊缝中金属的排出。
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Crack in a Resistance Seam Weld in a Titanium Alloy Stator Vane Because of Metal Expulsion That Caused Fatigue
A fluorescent liquid-penetrant inspection of an experimental stator vane of a first-stage axial compressor revealed the presence of a longitudinal crack over 50 mm (2 in.) long at the edge of a resistance seam weld. The vane was made of titanium alloy Ti-6Al-4V (AMS 4911). The crack was opened by fracturing the vane. The crack surface displayed fatigue beach marks emanating from the seam-weld interface. Both the leading-edge and trailing-edge seam welds exhibited weld-metal expulsions up to 3.6 mm (0.14 in.) in length. Metallographic examination confirmed that metal expulsion from the resistance welds was generally present. The stator vane failed by a fatigue crack that initiated at internal surface discontinuities caused by metal expulsion from the resistance seam weld used in fabricating the vane. Expulsion of metal from seam welds should be eliminated by a slight reduction in welding current to reduce the temperature, by an increase in the electrode force, or both.
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