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Investigation of inhomogeneity in powder injection molding of nano zirconia

机译:纳米氧化锆粉末注射成型中的不均匀性研究

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摘要

Porcelain-veneered Y-TZP fixed dental prostheses often fail from fracture and wear. Zirconia with its exceptional homogenous properties contributes to alleviate the failure. Powder injection molding (PIM) has long been found to enable a much more homogeneous microstructure to components when compared to those from die pressing. However, PIM parts, however, may have a slight difference in properties for different areas due to the nature of the injection process of the feedstock. In this study, zirconia dental ceramic parts were fabricated by the powder injection molding technique that utilizes a multi-component binder system consisting of paraffin, high density polyethylene, polypropylene, and stearic acid aiming to improve the behavior in the densification of powder shaping. The nano ZrO2 powders were firstly granulated before mixing to ensure good dispersion in the feedstock. The homogeneity of sintered zirconia was characterized by determining density and hardness of ten equally thick-section zirconia and four bars. The result showed that TZ-3YS-E zirconia obtained a sintering density of 6.05 g.cm(-3) and a hardness of 1300 HV0.5 with a small fluctuation sintered at 1475 degrees C. The homogeneity in the region away-from- gate was superior to the nearer-gate region based on evaluation of density, hardness, flexural strength and observation of microstructure, as well as the simulation of the mold filling of the feedstock. The average absolute deviation of hardness of slices 1 to 5 near the injection gate was 27.0 while that of slices 6 to 10 away from the injection gate was 14.0. The differences on the homogeneity and performances were regarded as the results of the drop of temperature and pressure in the final stage of mold filling of feedstock. (C) 2018 Elsevier B.V. All rights reserved.
机译:瓷质饰面Y-TZP固定的牙科假肢经常从骨折和磨损中失败。氧化锆具有出色的均匀性质有助于缓解失败。粉末注射成型(PIM)已经发现,与来自压制的模具相比,已经发现能够使组件更加均匀的微观结构。然而,由于原料的注射过程的性质,PIM部分可能对不同区域的性质具有轻微的差异。在本研究中,通过粉末注射成型技术制造氧化锆牙科陶瓷部件,其利用由石蜡,高密度聚乙烯,聚丙烯和硬脂酸组成的多组分粘合剂系统,旨在改善粉末成型致密化的行为。首先在混合之前首先造粒纳米ZrO2粉末,以确保在原料中的良好分散。烧结氧化锆的均匀性通过确定十个同样厚的氧化锆和四个条的密度和硬度来表征。结果表明,TZ-3YS-E氧化锆获得了6.05 g.cm(-3)的烧结密度,1300 hv0.5的硬度,在1475℃下烧结的小波动。区域中的均匀性远离 - 基于密度,硬度,抗弯强度和微观结构观察的评估以及模拟原料的模拟,门优于近栅极区域。在喷射闸门附近的切片1至5的硬度的平均绝对偏差为27.0,而远离喷射栅极的切片6至10的切片为14.0。均匀性和性能的差异被认为是在原料填充的最终阶段的温度和压力下降的结果。 (c)2018 Elsevier B.v.保留所有权利。

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