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Can a Design Engineer Rely on D/t Ratio as a Rational Indicator to Manage Stresses and Strains in Welded Steel Pipe During Handling?

机译:设计工程师能否将D / t比作为合理的指标来管理在处理过程中焊接钢管中的应力和应变?

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The choice of initial wall thickness in welded steel pipe design is accomplished by following an empirical formula with the objective of managing stresses and strains in the pipe wall during handling. Stresses and strains during handling are due to a number of factors, including lifting with slings, placement on supports, and shipping to name a few. Although the avoidance of cement mortar lining (CML) cracking before or during stull installation is of primary interest in this paper, the need to manage the strain level in steel to prevent having an adverse impact on the integrity of CML is also discussed. With a flexible lining, the design engineer has more latitude. To avoid excessive stresses and strains, for decades, design standards and manuals have provided empirical formulae as a diameter to thickness (D/t) ratio criterion. Given that water pipes carry relatively low internal pressures in many projects, the choice of initial wall thickness often ends up as the final thickness of the steel pipe. The question that has not been asked by engineers for over eight decades is "Can a Design Engineer Rely on D/t Ratio as a Rational Indicator to Manage Stresses and Strains in Welded Steel Pipe during Handling?" The authors of this paper embarked on an investigation to answer this very question. The authors share their methodology, results, findings and suggestions for improvement in current practice.
机译:焊接钢管设计中初始壁厚的选择是通过遵循经验公式来实现的,目的是在处理过程中管理管壁中的应力和应变。搬运过程中的压力和应变是由多种因素引起的,包括用吊索提起,放置在支撑物上以及运输等。尽管本文主要关注避免在灰泥安装之前或期间发生水泥砂浆衬砌(CML)破裂,但也讨论了管理钢中的应变水平以防止对CML完整性产生不利影响的需要。凭借灵活的衬里,设计工程师拥​​有更大的自由度。为了避免过度的应力和应变,数十年来,设计标准和手册已经提供了经验公式,作为直径与厚度(D / t)比率的标准。考虑到在许多项目中水管承受的内部压力较低,因此初始壁厚的选择通常最终会成为钢管的最终厚度。八十年来工程师一直没有问过的问题是“设计工程师能否依靠D / t比率作为合理的指标来管理在处理过程中焊接钢管中的应力和应变?”本文的作者着手进行调查以回答这个问题。作者分享了他们的方法,结果,发现和建议,以改进当前的实践。

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