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首页> 外文期刊>Journal of the European Ceramic Society >Ceramic micro parts. Part 1: How thermal debinding can be utilized to enhance surface finish and mechanical properties
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Ceramic micro parts. Part 1: How thermal debinding can be utilized to enhance surface finish and mechanical properties

机译:陶瓷微零件。第1部分:如何利用热脱脂来增强表面光洁度和机械性能

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摘要

Thermal debinding represents the most critical processing step of powder injection moulding (P1M) of ceramics. Defects such as cracks and porvs might be caused, when the process cannot be controlled properly. Considering low-pressure injection moulding (LP1M), however, thermal debinding opens up the possibility to enhance the mechanical properties of ceramic micro parts. In this study, the unique effect of surface defect healing is presented, which takes place during debinding. It enables improved surface finish and results in increased mechanical strength and reliability. As a model, 3Y-TZP micro bending bars with dimensions of 200 μm x 200 μm x 1200 μm were selected. It could be revealed that thetmal debinding can be utilized to increase the characteristic 3-point-bending strength up to 3235 MPa with Weibull modulus of 21.4. This result corresponds to macroscopic bending strength of 1727 MPa, which can be achieved only by exhausting fabrication methods and surface post-processing.
机译:热脱脂是陶瓷粉末注射成型(P1M)的最关键的加工步骤。当无法正确控制过程时,可能会导致诸如裂纹和孔洞之类的缺陷。然而,考虑到低压注塑成型(LP1M),热脱脂为增强陶瓷微型零件的机械性能提供了可能性。在这项研究中,提出了表面缺陷修复的独特作用,这种作用发生在脱脂过程中。它可以改善表面光洁度,并提高机械强度和可靠性。作为模型,选择尺寸为200μmx 200μmx 1200μm的3Y-TZP微弯钢筋。可以发现,可以利用热脱脂将特征性的三点弯曲强度提高到3235 MPa,韦布尔模量为21.4。该结果对应于1727 MPa的宏观弯曲强度,这只能通过穷尽制造方法和表面后处理来实现。

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