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Ring-Stiffness Evaluation and Optimization of Structured-Wall Polyethylene Pipes

机译:结构化 - 壁聚乙烯管的环刚度评价与优化

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Structured-wall high density polyethylene pipes up to 3m diameter are used extensively in civil engineering applications including storm water attenuation tanks, culverts, surface drainage, inter-process pipe work, sewers etc. The pipes are manufactured by extruding a hollow box section which is wound in a spiral manner onto a mandrel with successive turns welded together using PE from an auxiliary extruder. A key quality control measure is the ring stiffness to BS EN 1446: 1996. The ability to predict this accurately as a function of the pipe wall geometry is a prerequisite for optimization of the pipe design. The paper describes the development and the validation of finite element modeling of the ring stiffness test in comparison with experimental results, and considers the relationship between the test results and in-situ performance. Approaches to optimizing the pipe wall structure are also outlined.
机译:直径高达3米的结构壁高密度聚乙烯管在包括雨水衰减罐,涵洞,表面排水,工艺间管道工作,下水道等中的土木工程应用中广泛使用。管道是通过挤出空心箱部分制造的以螺旋方式缠绕到心轴上,连续转动使用PE从辅助挤出机焊接在一起。关键质量控制措施是BS EN 1446:1996的环刚度。作为管壁几何形状的函数预测这一点的能力是对管道设计优化的先决条件。本文描述了与实验结果相比,环刚度试验有限元建模的开发和验证,并考虑了测试结果与原位性能之间的关系。还概述了优化管壁结构的方法。

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