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Development of systems to increase the green part strength of the three-dimensional printed Z-Corps manufactured parts by infiltration processes to improve their range of application

机译:通过渗透过程提高三维印刷Z-Corps制造零件的绿色部件强度以提高其应用范围

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The ultimate goal of this research project is to increase green part strength and accuracy of Z-Corps manufactured parts by the infiltration process to increase its mechanical properties. An accurate 3D model of intricate parts can be produced using 3D printing technology but these produced parts do not have enough tensile and compressive strength since they are plaster based (powder and binder). To date, the parts are infiltrated with wax, which results in lower tensile and compressive strength, so the parts are very delicate. It is expected that by varying the different concentrations of other highly viscous materials, relative strength, temperature, resistance and durability of these green parts can be changed, in turn the tensile and compressive strengths can be increased. With the strength increased, parts produced can be used directly for operations such as Injection moulding, casting processes, similar to the metal moulds strength would be created using this process of infiltration.
机译:该研究项目的最终目标是通过渗透过程,以增加绿色部分的强度和Z-陆战队制造的零件精度提高其机械性能。复杂的部件的精确的3D模型可使用3D印刷技术来制造,但是这些生产的部件没有足够的拉伸和压缩强度,因为它们是基于石膏(粉末和粘合剂)。迄今为止,部分渗透有蜡,这导致较低的抗拉和抗压强度,这样的部件是非常微妙的。据预计,通过改变不同浓度的其它非常粘稠的材料,相对强度,温度,电阻和这些绿色部分的耐久性可以改变的,反过来的拉伸和压缩强度可以增加。随着强度增加,生产的部件可以直接用于诸如注塑操作,浇铸过程中,类似于金属模具强度会使用浸润的过程来创建。

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