Cracked Pipe Elbow of a Hydraulic Installation

F. Naumann, F. Spies
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Abstract

An elbow of 70 mm OD and 10 mm wall thickness made from St 35.29, and exposed to 315 atmospheres internal pressure in an oil hydraulic shear installation, cracked lengthwise after a short operating period. Because the stress was not sufficient to explain the fracture of this elbow under this pressure, an investigation was conducted to establish whether material or processing errors had occurred. Microscopic examination showed that a ferritic-pearlitic structure in select locations was very fine-grained. Other signs of fast cooling as compared to normally formed structure of the core zone were noted. It was also possible that the pipe was resting on a cold plate during bending or that it came in touch with a cold tool. This apparently caused the strains at the transition to the cross-sectional part that had been cooled more slowly. The location of the crack at just this point gave rise to the conclusion that it was formed either by the sole or contributive effect of these stresses.
液压装置的管弯头开裂
一个外径为70mm、壁厚为10mm的弯头,由St 35.29制成,在液压剪切装置中暴露在315个大气压下,在短时间内纵向开裂。由于应力不足以解释在这种压力下肘关节的骨折,因此进行了调查,以确定是否发生了材料或加工错误。显微检查表明,铁素体-珠光体组织在某些位置非常细晶。与正常形成的核心区结构相比,其他快速冷却的迹象也被注意到了。也有可能管子在弯曲过程中被放在冷板上,或者它与冷工具接触。这显然导致了过渡到冷却较慢的截面部分的应变。裂缝的位置就在这一点上,由此得出结论,它要么是由这些应力的单独作用形成的,要么是由这些应力的共同作用形成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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