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首页> 外文期刊>Advances in Science and Technology Research Journal >Influence of Machining Strategies and Technological History of Semi-Finished Product on the Deformation of Thin-Wall Elements After Milling
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Influence of Machining Strategies and Technological History of Semi-Finished Product on the Deformation of Thin-Wall Elements After Milling

机译:半成品的加工策略和技术历史对铣削后薄壁元件变形的影响

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The paper presents an analysis of the influence of machining strategy and the technological history of semi-finished product on the deformation of thin-walled elements made of aluminium alloy EN-AW 2024 after milling. As a part of this research work, five machining strategies are analysed. Additionally, the rolling direction of the plate (longitudinal and transversal) is taken into account as a technological history. During the research, the focus is set on the effects of the machining strategies i.e. HPC, HSM and conventional machining as well as their combinations on the post-machining stresses and deformations. Each of these strategies has a different range of technological parameters, which results in differences in machining efficiency and introduces post-machining stresses to the surface layer of the workpiece that vary in values and nature (i.e. compressive stresses or tensile stresses). The conducted study shows that larger deformations were obtained for transversal rolling direction in each analyzed case. The lowest deformation both for transversal and longitudinal rolling direction were achieved for the HSM and CM strategy.
机译:本文分析了加工策略和半成品技术历史对铣削后铝合金EN-AW 2024制成的薄壁元件变形的影响。作为这项研究工作的一部分,分析了五种加工策略。另外,将板的滚动方向(纵向和横向)作为技术历史考虑在内。在研究过程中,重点放在HPC,HSM和常规加工等加工策略的影响上,以及它们的组合对加工后应力和变形的影响。这些策略中的每一个都有不同的技术参数范围,这导致加工效率的差异,并且将加工后应力施加到工件的表面层,该应力的值和性质不同(即压缩应力或拉伸应力)。进行的研究表明,在每种分析情况下,横向轧制方向都可获得较大的变形。对于HSM和CM策略,横向和纵向轧制方向的变形均最低。

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