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Fabrication and characterization of 3D printing induced orthotropic functional ceramics

机译:3D印刷诱导的正交功能陶瓷的制造与表征

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The orthotropic functional properties of additively manufactured ceramics due to the fabrication process was characterized in this study. Spherical, environmentally benign barium titanate (BaTiO3) powders were fabricated using binder jetting 3D printing. Dielectric and piezoelectric properties of these ceramics were characterized as a function of the printing orientation. The dielectric constant of the samples tested normal to the printing layers was observed to be 20% higher than those tested in the parallel fashion. Similarly, the piezoelectric response was found to be over 35% in the normal orientation. With these results, it was shown that the electroding orientation has a direct influence on the functional properties of additively manufactured ceramics. Overall, with less than 37% of the theoretical density, the average piezoelectric coefficient for the perpendicularly tested ceramics was found to be 152.7 pC N-?1, which is 80% of the theoretical value. The high piezoelectric response obtained with such low densities can lead to the development of more mass efficient, and cost-effective sensing and energy harvesting devices, as well as structures that can be tuned to respond based on the direction of the loads applied.
机译:本研究表征了由于制造工艺引起的含有制造陶瓷的正交功能性能。使用粘合剂喷射3D印刷制造球形,环境良性钛酸钡(BATIO3)粉末。这些陶瓷的介质和压电性能被表征为印刷取向的函数。观察到正常到印刷层的样品的介电常数比以并行方式测试的那些高出20%。类似地,在正常取向中发现压电响应超过35%。利用这些结果,显示电极取向对橡皮制造陶瓷的功能性能直接影响。总体而言,占理论密度的37%不到37%,发现垂直测试陶瓷的平均压电系数为152.7pc n-Δ1,这是理论值的80%。通过这种低密度获得的高压电响应可以导致更具质量高效的开发和经济有效的感测和能量收集装置,以及可以基于所施加的负载的方向进行调谐以响应的结构。

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