首页> 外文会议>ASME international manufacturing science and engineering conference >ON THE MANUFACTURE OF LIGHTWEIGHT ALLOY TUBES VIA FRICTION STIR BACK EXTRUSION: PROCESS EVALUATION AND MATERIAL PERFORMANCE
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ON THE MANUFACTURE OF LIGHTWEIGHT ALLOY TUBES VIA FRICTION STIR BACK EXTRUSION: PROCESS EVALUATION AND MATERIAL PERFORMANCE

机译:摩擦搅拌回挤法生产轻质合金管的研究:工艺评估和材料性能

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A new manufacturing approach in which the friction stirring phenomenon is used as a vehicle for facilitating the deformation of bulk lightweight materials into manufactured components has been recently introduced under the general concept of "bulk friction stir forming". In a preliminary work, the concept was applied to the back extrusion process, in what was referred to as "friction stir back extrusion" or FSBE; it was shown that the concept is practically valid and FSBE is capable of producing lightweight tubular specimens. Nevertheless, the FSBE process was claimed to have several merits over conventional processes, mainly: (ⅰ) unique process capabilities and energy efficiency (ⅱ) significant grain refinement, and thus (ⅲ) favorable mechanical properties in the formed tubes. None of these claims were adequately addressed nor quantified in earlier work. Therefore, this work presents a comprehensive study that aims to reveal the true merits of FSBE, validate the claims, and quantify its effects on the microstructure and mechanical properties of the deformed material. The outcomes of the study are presented in three major parts, each addressing one of the abovementioned claims. Force, torque and power measurements during FSBE experiments are used to address the first claim. Detailed optical microscopy and electron back scatter diffraction work is carried out in the second part to quantify the changes to the grain structure and texture of the material. Finally, the third part presents detailed mechanical characterization using digital image correlation to quantify the effects of FSBE on the performance of the produced tubes.
机译:最近,在“整体摩擦搅拌成形”的总体概念下,引入了一种新的制造方法,其中使用摩擦搅拌现象作为媒介来促进轻质散装材料变形为制造的部件。在初步工作中,该概念被应用到反向挤压工艺中,即所谓的“摩擦搅拌反向挤压”或FSBE。结果表明,该概念实际上是有效的,并且FSBE能够生产轻质管状标本。然而,据称FSBE工艺比常规工艺具有几个优点,主要是:(ⅰ)独特的工艺能力和能效(ⅱ)明显的晶粒细化,以及(ⅲ)成型管的良好机械性能。这些主张中没有一个在早期工作中得到适当解决或量化。因此,这项工作提出了一项全面的研究,旨在揭示FSBE的真正优点,验证要求并量化其对变形材料的微观结构和力学性能的影响。该研究的结果分为三个主要部分,每个部分都涉及上述权利要求之一。 FSBE实验期间的力,扭矩和功率测量用于解决第一个要求。在第二部分中进行了详细的光学显微镜和电子背散射衍射工作,以量化材料的晶粒结构和织构的变化。最后,第三部分使用数字图像相关性来详细描述机械特性,以量化FSBE对生产管的性能的影响。

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