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A statistical approach to comparing wheel hub forging processes

机译:比较轮毂锻造过程的统计方法

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摘要

Structural components used in the automotive industry offer an attractive opportunity for exploring alternate material sources and different manufacturing routes because economic globalization continually intensifies competition and increases costs. While economic parameters are important in the choice of manufacturing process, the final decision is usually dictated by desirable component characteristics and reliability. Integrated process flows involving steel making, forging, and heat treatments can reduce the impact on forged and heat-treated hubs. However, speed differences in hot forging operations, sources, and heat treatment equipment differences still influence the ultimate manufacturing decision. The aim of this study is to demonstrate interdisciplinary effort in comparing two different wheel hub forging processes by quantifying final product characteristics that are linked to their microstructures and to understand the possible impacts on quality assurance of the final parts. Brinell hardness measurements were performed as part of the analysis, and both non-parametric and parametric statistical procedures were applied to data taken from samples that were manufactured under real industry conditions. In addition, scanning electron microscopy was utilized to support analytical results.
机译:汽车行业中使用的结构部件为探索替代材料来源和不同制造路线提供了诱人的机会,因为经济全球化不断加剧竞争并增加了成本。尽管经济参数在选择制造过程中很重要,但最终决定通常取决于所需的组件特性和可靠性。涉及炼钢,锻造和热处理的集成工艺流程可以减少对锻造和热处理轮毂的影响。但是,热锻操作,源和热处理设备差异中的速度差异仍会影响最终的制造决策。这项研究的目的是通过量化与其微观结构相关的最终产品特性,并展示其对最终零件质量保证的可能影响,来展示跨学科的工作,以比较两种不同的轮毂锻造工艺。作为分析的一部分,进行布氏硬度测量,并将非参数和参数统计程序应用于从在实际工业条件下制造的样品中获取的数据。另外,利用扫描电子显微镜来支持分析结果。

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