AbstractDifferent existing metal additive manufacturing (AM) processes have many shortcomings and a lo'/> A metal additive manufacturing method: semi-solid metal extrusion and deposition
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A metal additive manufacturing method: semi-solid metal extrusion and deposition

机译:金属添加剂制造方法:半固态金属挤出和沉积

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AbstractDifferent existing metal additive manufacturing (AM) processes have many shortcomings and a lot of activities are centered on improving the final printed metal product. A new method of metal additive manufacturing has been proposed in this paper. Unlike most of the metal additive manufacturing processes, it does not use metal powder. The proposed method utilizes semi-solid metal (SSM) forming combined with deposition process as used in the most common additive manufacturing process for polymers. SSM forming is a promising near net shape technology with several advantages, such as being a porosity-free product and having reduced shrinkage, controlled microstructure, and excellent mechanical performance. Implementation of this technology in metallic additive manufacturing improves the mechanical properties and cost savings. Complicated time-dependent behavior of SSM makes it a challenging issue to utilize in additive manufacturing. A wire feedstock as a metallic filament was employed for the proposed process. However, some material preparations were necessary to get the desired rheological properties at the deposition head. In this study, the strain-induced melt-activated (SIMA) process was applied on a low-melting-temperature Sn-Pb alloy to obtain the desired globular feedstock microstructure. Then, preconditioned wire was fed in a thixo-extruder, which was designed and built for the proposed method in this research. A semi-melted alloy was deposited on the moving substrate to build a metallic part layer by layer. Various parameters of SIMA and thixo-extrusion processes, including wire thermomechanical cycle, feed rate, solid fraction, nozzle and chamber geometry, and others, were examined experimentally, and a sustainable semi-solid metal extrusion and deposition (SSMED) process was achieved. Finally, an acceptable metallurgical layer bonding was obtained at the interface of the deposited layers, with good mechanical properties of the fabricated parts. The new proposed method seems to have great potentials for metal additive manufacturing parts.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>不同现有的金属添加剂制造(AM)流程有很多缺点和大量活动是以改善最终印刷金属产品的缺点。本文提出了一种新的金属添加剂制造方法。与大多数金属添加剂制造过程不同,它不使用金属粉末。该方法利用与最常见的聚合物中最常见的添加剂制造方法相结合的半固态金属(SSM)结合沉积方法。 SSM成型是近期净形态技术的有希望的具有多种优点,例如自由孔隙产品,并降低收缩,控制的微观结构和优异的机械性能。在金属添加剂制造中实现这一技术改善了机械性能和节约成本。 SSM的复杂时间依赖行为使其具有充满挑战性的问题,以利用添加剂制造。用电线原料作为金属丝的用途用于该方法。然而,需要一些材料制剂以在沉积头处获得所需的流变性质。在该研究中,将应变诱导的熔融活化(SiMA)方法施加在低熔点 - 温度Sn-Pb合金上,以获得所需的球状原料微观结构。然后,将预处理的丝网送入旋转挤出机中,该挤出机被设计和构建,以实现该研究的提出方法。将半熔化的合金沉积在移动基板上以通过层构建金属部分层。实验检查了辛巴和ZIXO挤出工艺的各种参数,包括线热机械循环,进料速度,固体级分,喷嘴和室几何形状,并实现了可持续的半固体金属挤出和沉积(SSMED)过程。最后,在沉积层的界面处获得可接受的冶金层键合,具有良好的制造部件的机械性能。新的拟议方法似乎对金属添加剂制造部件具有很大的潜力。 ]]>

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