首页> 外文会议>International conference on processing manufacturing of advanced materials;THERMEC 2009 >ANALYSIS OF THE REDUNDANT DEFORMATION FACTOR IN THE AXISYMMETRIC DRAWING OF AISI 304 STAINLESS STEEL BARS THROUGH EXPERIMENTAL TECHNIQUES
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ANALYSIS OF THE REDUNDANT DEFORMATION FACTOR IN THE AXISYMMETRIC DRAWING OF AISI 304 STAINLESS STEEL BARS THROUGH EXPERIMENTAL TECHNIQUES

机译:AISI 304不锈钢轴对称拔形的冗余变形因子实验研究。

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One of the most significant aspects of the axisymmetric drawing operation is the occurrence of non-homogeneous deformation in the cross section of the metal. This phenomenon is associated with an internal distortion process that takes place in the bar as it flows through the die, leading to the development of higher drawing forces and affecting the subsequent mechanical behavior of the material. An adequate analysis of the process and of the work hardening of the drawn metal, therefore, must involve a detailed study of the deformation features in the forming operation. In the present work, the deformation in the single-pass drawing of AISI 304 stainless steel bars was investigated through the evaluation of the relationship between the redundant deformation factor and the parameter A. Two experimetal procedures were employed in the study: the visioplasticity and the stress-strain curves superposition techniques. The first one, previously considered as the method leading to the most realistic solutions to various forming processes, allowed the establishment of an increasing linear relationship between de redundant deformation factor and the parameter A. A similar behavior was observed through the stress-strain curves superposition technique. In this case, however, the redundant deformation factor values were lower or higher than those obtained through visioplasticity according to the drawing conditions and more sensitive to variations of the parameter A. The results were compared to those exhibited by the AISI 420 stainless steel, revealing the influence of the structural features on the behavior of the metal.
机译:轴对称拉拔操作最重要的方面之一是在金属的横截面中发生非均匀变形。这种现象与棒材流经模具时在棒材中发生的内部变形过程有关,从而导致产生更高的拉伸力并影响材料的后续机械性能。因此,对拉制金属的过程和加工硬化的充分分析必须包括对成形操作中变形特征的详细研究。在本工作中,通过评估冗余变形系数与参数A之间的关系,研究了AISI 304不锈钢棒材的单道次拉拔变形。研究中采用了两种实验方法:粘塑性和塑性。应力-应变曲线叠加技术。第一种方法,以前被认为是导致对各种成形过程进行最现实的解决的方法,它允许在冗余变形因子和参数A之间建立增加的线性关系。通过应力-应变曲线叠加观察到了相似的行为。技术。但是,在这种情况下,多余的变形因子值低于或高于根据拉伸条件通过粘塑性获得的变形因子值,并且对参数A的变化更为敏感。将结果与AISI 420不锈钢的结果进行了比较,表明结构特征对金属性能的影响。

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