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RESIDUAL STRESS EFFECTS IN CONTAINMENT ANALYSIS

机译:容器分析中的残余应力效应

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The manufacturing of steel containment vessels starts with the forming of flat plates into curved plates. A steel containment structure is made by welding individual plates together to form the sections that make up the complex shaped vessels. The metal forming and welding process leaves residual stresses in the vessel walls. Generally, the effect of metal forming residual stresses can be reduced or virtually eliminated by thermally stress relieving the vessel. In large containment vessels this may not be practical and, thus, the residual stresses due to manufacturing may become important. The residual stresses could possibly affect the response of the vessel to internal pressurization. When the level of residual stresses is significant it will affect the vessel's response, for instance the yielding pressure and possibly the failure pressure.This paper will address the effect of metal forming residual stresses on the response of a generic pressure vessel to internal pressurization. A scoping analysis investigated the effect of residual forming stresses on the response of an internally pressurized vessel. A simple model was developed to gain understanding of the mechanics of the problem. Residual stresses due to the welding process were not considered in this investigation.
机译:钢制安全壳的制造始于将平板形成为弯曲板。钢制安全壳结构是通过将各个板焊接在一起以形成组成复杂形状容器的部分而制成的。金属成型和焊接过程会在容器壁上留下残余应力。通常,通过减轻容器的热应力,可以减少或实际上消除金属形成残余应力的影响。在大型安全壳容器中,这可能不切实际,因此,由于制造引起的残余应力可能变得很重要。残余应力可能会影响容器对内部增压的响应。当残余应力的水平很大时,它将影响容器的响应,例如屈服压力和可能的破坏压力。 本文将探讨金属形成残余应力对通用压力容器对内部增压的响应的影响。范围分析研究了残余成型应力对内部加压容器响应的影响。开发了一个简单的模型来了解问题的机理。在这项研究中未考虑由于焊接过程而产生的残余应力。

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