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首页> 外文期刊>Journal of Manufacturing Processes >Powder injection molding of PNN-PMN-PZN doped low temperature sintering PZT ceramics
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Powder injection molding of PNN-PMN-PZN doped low temperature sintering PZT ceramics

机译:PNN-PMN-PZN掺杂低温烧结PZT陶瓷的粉末注射成型

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摘要

A complete process of powder injection molding was developed and optimized for the low temperature sintering PZT ceramics. A commercialized PNN-PMN-PZN doped PZT ceramics was used for the process development. The torque rheometer experiment was conducted to determine the optimal solids loading to injection molding rectangular type specimen. Appropriate debinding conditions were developed by thermogravimetry. Holding temperatures were determined based on the decomposition behavior of binder system and the volatilization temperature of Pb. Due to the fine particle size and low solids loading, a slow thermal debinding rate was required to prevent the crack defect. The densification behavior during sintering was analyzed by dilatometry. Low temperature sintering PZT ceramics shows a strain rate peak point at 1015 degrees C which is relatively lower than the peak point of conventional PZT ceramics. Even though a relatively long (3 h) holding time was required to achieve 98% of relative density, the powder injection molded low temperature sintering PZT ceramics showed 7.66 (10(3) kg/m(3)) of density and 635 (pC/N) of piezoelectric charge constant which are 98 and 99% of reference value of powder. (C) 2017 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:开发了粉末注射成型的完整工艺,并针对低温烧结PZT陶瓷进行了优化。商业化的PNN-PMN-PZN掺杂PZT陶瓷用于工艺开发。进行了扭矩流变仪实验,以确定注射成型矩形样品的最佳固含量。通过热重法开发了合适​​的脱脂条件。根据粘合剂体系的分解行为和Pb的挥发温度确定保持温度。由于细颗粒尺寸和低固体含量,需要缓慢的热脱脂速率以防止裂纹缺陷。通过膨胀分析法分析了烧结过程中的致密化行为。低温烧结PZT陶瓷在1015摄氏度时显示出应变率峰值,该峰值相对低于常规PZT陶瓷的峰值。即使需要相对较长的(3 h)保持时间才能达到98%的相对密度,粉末注射成型的低温烧结PZT陶瓷仍显示出7.66(10(3)kg / m(3))的密度和635(pC) / N)的压电电荷常数为粉末参考值的98%和99%。 (C)2017年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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