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Hybridization of additive manufacturing processes to build ceramic/metal parts: Example of LTCC

机译:添加剂制造工艺的杂交,构建陶瓷/金属部件:LTCC的示例

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摘要

Stereolithography is an additive manufacturing process which makes it possible to fabricate useful complex 3D ceramic parts with a high dimensional resolution and a good surface finish. By coupling the latter process with a second, to deposit an other material, it will be possible to obtain multi-material parts using a hybrid machine. This machine is therefore composed of two additive manufacturing processes: stereolithography and robocasting. During this work, we decided to study ceramic - metal assemblies and more particularly the LTCC materials. These materials have low sintering temperatures, generally less than 1000 °C. The mechanical and electrical properties will be studied of the development of parts with complex and innovative geometries to improve the characteristics of current circuits. Finally, our substrate have an excellent permittivity (ε_r = 5.05) and dielectric loss (tanδ = 1.8.10~(-3)).
机译:立体刻度是一种添加剂制造工艺,其使得可以制造具有高尺寸分辨率和良好表面光洁度的有用的复合3D陶瓷部件。 通过将后一过程耦合,秒将沉积其他材料,可以使用混合机器获得多材料部件。 因此,该机器由两种添加剂制造工艺组成:立体光刻和抢劫。 在这项工作期间,我们决定研究陶瓷 - 金属组件,更具体地说是LTCC材料。 这些材料具有低烧结温度,通常小于1000℃。 将研究具有复杂和创新的几何形状的部件的开发,以改善电流电路的特性。 最后,我们的基材具有出色的介电常数(ε_R= 5.05)和介电损耗(Tanδ= 1.8.10〜(-3))。

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