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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Densification behavior of copper powder during the coupled multi-physics fields-activated microforming
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Densification behavior of copper powder during the coupled multi-physics fields-activated microforming

机译:耦合多物理场激活微成型过程中铜粉的致密化行为

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External electric field-activated sintering techniques have been widely investigated and applied for the forming of large-sized components. These techniques are, however, rarely utilized for the manufacture of miniature and microsized components. In this paper, a novel, coupled forming, and sintering method is reported, which has been used for the fabrication of microcomponents, wherein the loose powder is loaded directly into the die, followed by simultaneous electrical forming and electric sintering (named coupled multi-physics-fields activation). In the study, the gears with the module of 0.2 and the pitch diameter of 1.6 mm were formed from copper powder. The coupled multi-fields activations were enabled using a Gleeble-1500D thermal simulation machine. Sintered samples with a relative density of 97.20% have been fabricated at a sintering temperature of 700℃, heating rate of 50℃/s, forming pressure of 100 MPa, while these parameters were applied cyclically. The study showed that the axial reduction of the samples increased rapidly with the increase of temperature during the sintering, while the external pressure was maintained. Based on the experimental observations, it can be concluded that the deformation of the particles resulted in an increase in, and then subsequent disappearance of, the interface areas among the particles, which feature plays a key role in the densification of the copper powder.
机译:外部电场激活的烧结技术已被广泛研究并应用于大型零件的成型。但是,这些技术很少用于制造微型和微型组件。本文报道了一种新颖的,耦合成形和烧结的方法,该方法已用于制造微零件,其中将散装粉末直接装入模具中,然后同时进行电成形和电烧结(称为耦合多次烧结)。物理场激活)。在研究中,模数为0.2,节圆直径为1.6 mm的齿轮是由铜粉制成的。使用Gleeble-1500D热模拟机启用了耦合的多场激活。在循环使用这些参数的条件下,以700℃的烧结温度,50℃/ s的加热速率,100 MPa的成型压力制备了相对密度为97.20%的烧结样品。研究表明,在烧结过程中,样品的轴向压缩率随温度的升高而迅速增加,同时保持了外部压力。基于实验观察,可以得出结论,颗粒的变形导致颗粒之间的界面面积增加,然后消失,这在铜粉的致密化中起关键作用。

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