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Dieless drawing steel wires using a dielectric heating method and modeling the process dynamics

机译:使用电介质加热方法的无模拉拔钢丝和过程动力学建模

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摘要

Modern industries require the production of multi-functional, inorganic, micron-sized metal wires. This study suggests a novel method that could potentially offer a highly efficient dieless drawing technology for manufacturing thin stainless steel fibers. The method is based on a hot-working principle, using microwaves as the heat source and SiC as the susceptor. Experimental trials with a laboratory rig showed that the new system worked effectively for drawing the stainless steel wires and should be able to realize the diameter attenuation with a diameter reduction of up to 21%. The theoretical model describing the deformation behavior of the stainless steel wires in the working zone along with the constitutive equation of Bingham model modified with a power law and Zener-Hollomon parameter turned out to match very good with the actual results of the experiment. The coefficient of variation of the drawn wire diameter increased, as the draw ratio increased, which could be attributed to the occurrence of the narrow necking zone.
机译:现代工业要求生产多功能的,无机的,微米级的金属线。这项研究提出了一种新颖的方法,该方法可以潜在地提供一种用于制造不锈钢细纤维的高效无模拉伸技术。该方法基于热加工原理,使用微波作为热源,并使用SiC作为基座。使用实验室钻机进行的实验试验表明,该新系统可以有效地拉制不锈钢丝,并且应该能够实现直径衰减,最大直径减小了21%。描述工作区内不锈钢线变形行为的理论模型,以及用幂定律和Zener-Hollomon参数修正的宾厄姆模型的本构方程,与实验的实际结果非常吻合。随着拉伸比的增加,拉丝直径的变化系数增加,这可以归因于窄缩颈区的出现。

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