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COMPARATIVE STUDY OF AS-BUILT GEOMETRIC AND MECHANICAL PROPERTIES OF ADDITIVELY MANUFACTURED CERAMICS

机译:增材制造陶瓷的几何和力学性能比较研究

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Additive Manufacturing (AM) encompasses a broad variety of fabrication techniques characterized by successive additions of mass and/or energy to a build domain. AM processes have been developed for a wide variety of feedstock materials, including metals, polymers, and ceramics. In the present work we study the AM of ceramics using the Direct Ink Writing (DIW) technique. We performed comparative studies between additively manufactured and conventionally manufactured test articles, in order to quantify the variations in output geometry and mechanical properties induced by the DIW process. Uniaxial tests are conducted using high-performance optical strain measurement techniques. In particular, it is shown that the DlW-produced specimens exhibit anisotropic shrinkage when fired, as well as a marked decrease in stiffness and ultimate strength. We conclude with a discussion of potential mechanisms which may be responsible for these property degradations, and introduce potential adaptations to the DIW AM process that may be effective in combating them.
机译:增材制造(AM)涵盖了多种制造技术,这些技术的特征是向制造领域连续添加质量和/或能量。已经为多种原料(包括金属,聚合物和陶瓷)开发了增材制造工艺。在当前的工作中,我们使用直接墨水书写(DIW)技术研究陶瓷的增材制造。我们在增材制造和常规制造的测试制品之间进行了比较研究,以量化DIW工艺引起的输出几何形状和机械性能的变化。使用高性能的光学应变测量技术进行单轴测试。特别地,显示出经DlW生产的样品在焙烧时表现出各向异性收缩,并且刚度和极限强度显着降低。最后,我们讨论了可能导致这些性能下降的潜在机制,并对DIW AM过程进行了潜在的调整,以有效地应对这些退化。

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