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Experimental studies of the size effect affected microscale plastic deformation in micro upsetting process

机译:微观effect锻过程中尺寸效应影响微观塑性变形的实验研究

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Microforming is one of the promising approaches to fabricating microparts for its high productivity, low production cost and good mechanical properties. The material deformation behavior in microforming, however, is different from the one in macroforming. The macroforming knowledge is not applicable to the design and development of microparts. It is thus necessary to investigate the size effect on deformation behaviors and the physics behind in the microforming. In this research, the micro upsetting of cold-drawn and annealed pure copper with different billet sizes from macro- to micro-scale is conducted to investigate the size effect on material flow behavior, surface roughness evolution, flow stress and the hardening behavior. It is found that the compressive instability takes place for the cold-drawn specimens, resulting in the occurrence of double barreling. In addition, the inhomogeneous material flow occurs, surface roughness increases, flow stress decreases and the scattering range of the measured material properties increases with the decrease of workpiece size and the increase of grain size. To quantify the size effect, the ratio of the internal grain boundary surface area to the total grain boundary surface area of the workpiece is introduced. Based on the hardening behavior and the flow stress, the proposed modeling methodology for describing the size effect phenomena is verified. The reported experimental results and the modeling methodology thus provide an in-depth understanding of the size effect in microscale plastic deformation.
机译:由于其高生产率,低生产成本和良好的机械性能,微成形是制造微零件的有前途的方法之一。但是,微成形中的材料变形行为与宏观成形中的材料变形行为不同。宏观成型知识不适用于微型零件的设计和开发。因此,有必要研究尺寸变化对变形行为的影响以及微成型中的物理机理。在这项研究中,从宏观到微观,对具有不同坯料尺寸的冷拔和退火纯铜进行了微up粗加工,以研究尺寸对材料流动行为,表面粗糙度演变,流动应力和硬化行为的影响。发现冷拉试样发生压缩不稳定性,导致出现双桶现象。另外,随着工件尺寸的减小和晶粒尺寸的增加,发生不均匀的材料流动,表面粗糙度增加,流动应力减小,并且所测量的材料特性的散射范围增大。为了量化尺寸效应,引入了工件的内部晶界表面积与总晶界表面积之比。基于硬化行为和流动应力,验证了描述尺寸效应现象的建模方法。因此,所报道的实验结果和建模方法提供了对微观塑性变形中尺寸效应的深入了解。

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