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Sensitivity analysis of the Expansion Process for Alloy UNS N08028

机译:UNS N08028合金膨胀过程的敏感性分析

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摘要

Due to the good mechanical properties of forged parts, the forging process plays a decisive role in the manufacturing of seamless stainless steel pipes for oil country tubular goods (OCTG) lines. Tough competition between manufacturers gives them plenty of incentive to make their processes in raw material and energy usage more and more efficient. In this context the expansion process is one of the critical production steps in the manufacturing of seamless stainless steel pipes. This work presents a sensitivity analysis of a finite element method (FEM) for the simulation of the expansion of the alloy UNS N08028. The input parameters ram speed, tool angle, initial ID and final ID of the billet as well as temperature were used to describe responses like tool wear and material loss. With the aim to minimize the tool wear and to reduce the material waste, a study of influence of the input parameters on the mentioned responses were performed. This development is supported by experimental work in order to validate the simulation model. The sector demand for new materials with specific properties and the cost-intensive experimental trials justifies the use of such simulation tools and opens great opportunities for the industry.
机译:由于锻造零件的良好机械性能,锻造工艺在制造用于油井管(OCTG)管线的无缝不锈钢管中起着决定性的作用。制造商之间的激烈竞争给了他们很大的动力,以使他们在原材料和能源使用上的过程变得越来越高效。在这种情况下,膨胀工艺是无缝不锈钢管制造中的关键生产步骤之一。这项工作提出了一种用于模拟UNS N08028合金膨胀的有限元方法(FEM)的灵敏度分析。输入参数冲压速度,工具角度,坯料的初始ID和最终ID以及温度用于描述诸如工具磨损和材料损失的响应。为了最大程度地减少工具磨损并减少材料浪费,对输入参数对上述响应的影响进行了研究。为了验证仿真模型,该工作得到了实验工作的支持。业界对具有特定性能的新材料的需求以及成本密集的实验试验证明了使用此类仿真工具的合理性,并为行业带来了巨大的机会。

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