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Superplastic forming of bellows expansion joints made of titanium alloys

机译:钛合金波纹管膨胀节的超塑性成形

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摘要

A new forming technology was developed for bellows expansion joints. This technology uses superplastic forming (SPF) method of applying gas pressure and compressive axial load. It is developed and can be used to manufacture large diameter "U" type bellows expansion joints made of titanium alloys. The forming technology for bellows expansion joints made of titanium alloys is presented to make a two-convolution bellows expansion joint of Ti-6Al-4V alloy as an example. Welded pipe bent by a hot bending method with a set of specific dies and welded by plasma arc welding was used as a tubular blank in the SPF. During the SPF process the tubular blank is restrained in a multi-layer die block assembly which determines the final shape of convolution. The forming load route is divided into three steps in order to obtain optimum thickness distribution. This technology can also be used to fabricate stainless steel bellows expansion joints.
机译:为波纹管伸缩缝开发了一种新的成型技术。该技术使用超塑成型(SPF)方法施加气压和轴向压缩载荷。它被开发出来,可用于制造钛合金制成的大直径“ U”型波纹管膨胀节。以钛合金波纹管伸缩缝的成形技术为例,以Ti-6Al-4V合金二次波纹管伸缩缝为例。在SPF中使用通过热弯法弯曲并带有一组特定模具并通过等离子弧焊进行焊接的焊管作为管状毛坯。在SPF过程中,管状毛坯被约束在多层模具块组件中,该组件确定卷积的最终形状。为了获得最佳的厚度分布,成形载荷路径分为三个步骤。该技术还可以用于制造不锈钢波纹管伸缩缝。

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