压力容器中由于大气污染导致的焊缝断裂

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引用次数: 0

摘要

Ti-6Al-4V合金压力容器在耐压测试中发生故障,沿中心环焊缝破裂。采用自动气体钨弧焊法焊接围接头,利用附在焊枪上的辅助尾随护罩为焊缝外表面提供惰性气体保护。在容器内使用带有气体通道的分段备份环来保护焊缝根部。由于氧气污染了熔合区,导致压力容器失效,这是由于保护焊缝根部表面的气体被泄漏到气体通道中的空气稀释所致。热应力使易碎的焊缝破裂,使裂纹表面在冷却前氧化。其中一个裂缝引起的应力集中如此严重,以致在证明试验中容器壁的破坏是不可避免的。在分段备份环的分割线区域设置了密封系统,在备份环的通道段设置了细孔不锈钢筛网扩散器,以防止空气泄漏。提供了钛合金颜色图,以便将焊接区变色与大气污染程度相关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fracture of Welds in a Pressure Vessel Because of Atmospheric Contamination
A Ti-6Al-4V alloy pressure vessel failed during a proof-pressure test, fracturing along the center girth weld. The girth joints were welded with the automatic gas tungsten arc process utilizing an auxiliary trailing shield attached to the welding torch to provide inert-gas shielding for the exterior surface of the weld. A segmented backup ring with a gas channel was used inside the vessel to shield the weld root. The pressure vessel failed due to contamination of the fusion zone by oxygen, which resulted when the gas shielding the root face of the weld was diluted by air that leaked into the gas channel. Thermal stresses cracked the embrittled weld, exposing the crack surfaces to oxidation before cooling. One of these cracks caused a stress concentration so severe that failure of the vessel wall during the proof test was inevitable. A sealing system at the split-line region of the segmented backup ring was provided, and a fine-mesh stainless steel screen diffuser was incorporated in the channel section of the backup ring to prevent air from leaking in. A titanium alloy color chart was furnished to permit correlation of weld-zone discoloration with the degree of atmospheric contamination.
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