首页> 外文期刊>Archives of Metallurgy and Materials >Backward Extrusion of Aluminum Alloy Sections Used in Aircraft Structural Components / Wyciskanie Przeciwbie?ne Kszta?towników Ze Stopów Aluminium Stosowanych Na Elementy Konstrukcji Lotniczych
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Backward Extrusion of Aluminum Alloy Sections Used in Aircraft Structural Components / Wyciskanie Przeciwbie?ne Kszta?towników Ze Stopów Aluminium Stosowanych Na Elementy Konstrukcji Lotniczych

机译:用于飞机结构部件的铝合金型材的向后挤压。

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The paper presents an analysis of selected aluminum alloys as structural materials used in production of aircraft parts as well as specification of technological parameters of Al alloys extrusion on a backward press with their effect on mechanical properties, microstructure and quality of the final product. Upsetting tests with backward extrusion complex cross-sectional profile tests were conducted on aluminum alloys 7075, 2024, 2099. Based on the results, specifications of forging in the form of unit stress - effective strain relations were determined using logarithmic deformation index, allowing proper choice of extrusion parameters. The range of temperatures for hot plastic treatment along with range of extrusion rate for the analyzed thin-walled aircraft profiles were determined. Tests were also conducted on the microstructure of Al alloys in the initial state as well as after the extrusion process had been completed. It has been proved that the proper choice of parameters in the case of a specific profile extruded from Aluminum alloys 2024, 7075, 2099, allows the manufacturing of products of complex crosssections and the quality required in aerospace industry. This has been demonstrated on the example of complex cross-sectional profiles using elements of varied wall thickness.
机译:本文介绍了所选铝合金作为飞机零件生产中使用的结构材料的分析,以及在向后压力机上挤压铝合金的技术参数的规格,这些参数对机械性能,微观结构和最终产品的质量都有影响。与后方挤压复杂的横截面轮廓测试扰乱测试均在铝合金中进行7075,2024,2099。基于这些结果,在单位应力的形式锻造的规格 - 使用对数变形指数测定有效应变关系,允许适当选择挤压参数。确定了用于分析的薄壁飞机轮廓的热塑处理温度范围以及挤出速率范围。还对铝合金的初始状态以及完成挤压过程后的组织进行了测试。已经证明,在从铝合金2024、7075、2099挤出的特定型材的情况下,正确选择参数可以制造出具有复杂横截面的产品,并满足航空航天工业的质量要求。在使用不同壁厚的元件的复杂横截面轮廓的示例中已证明了这一点。

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