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A PROCESS FOR THE PREPARATION OF LOW TEMPERATURE SINTERABLE NANOSIZED PET POWDER

机译:低温可烧结纳米化PET粉的制备方法

摘要

The invention relates to a method of making nanosized PZT[Pb(Zro.52Tio.48)O3] powder by a modified citrate-nitrate gel method at a temperature of 500°C. The synthesized powder can be sintered at a temperature in the range of 750-800°C by adding a small amount of sintering aid like LiBiO2. This contrasts to normally required sintering temperature of 1200-1300°C and hence the process is cost-effective. Also there is no need to atmosphere control during sintering to contain lead volatilization, as the sintering temperature is low. Above all, the piezoelectric properties of the sintered samples are equivalent or superior to those made by conventional sintering at a high temperature. For example, the sintered PZT pellets made by the invented process followed by poling at 100-130°C under an electric field of 1-3kV/mm showed ε33 in the range of 970-1225, d33 in the range of 230-465 pC/N, g33 in the range of 27-43x10"3 V-m/N, kp in the range of 0.41-0.63, Qm in the range of 23-54, whereas for PZT sintered above 1200°C, the literature reported values areε33 = 730, d33= 223 pC/N, g33 = 34.5 V-m/N, kp= 0.51, Qm= 500 (Qm for the soft PZT formulation is in the range of 60-80). Hence, the PZT ceramics made by the invented method will be cost-effective and can be used for low-power ultrasonics, sensors, pickups, acoustic devices and actuators. 19[IN-DEL-2007-00396A]
机译:本发明涉及通过改进的柠檬酸-硝酸盐凝胶法在500℃的温度下制备纳米级PZT [Pb(Zro.52Tio.48)O3]粉末的方法。通过添加少量的烧结助剂如LiBiO 2,可以在750-800℃的温度范围内烧结合成的粉末。这与通常要求的1200-1300°C的烧结温度形成对比,因此该工艺具有成本效益。此外,由于烧结温度低,因此在烧结期间也不需要控制气氛以抑制铅挥发。最重要的是,烧结样品的压电性能与在高温下通过常规烧结获得的压电性能相当或更高。例如,通过本发明的方法制造的烧结的PZT球粒,然后在1-3kV / mm的电场下于100-130°C极化,其ε33在970-1225范围内,d33在230-465 pC范围内/ N,g33在27-43x10“ 3 Vm / N的范围内,kp在0.41-0.63的范围内,Qm在23-54的范围内,而对于1200°C以上烧结的PZT,文献报道的值为ε33= 730,d33 = 223 pC / N,g33 = 34.5 Vm / N,kp = 0.51,Qm = 500(软PZT配方的Qm在60-80范围内),因此,用本发明方法制造的PZT陶瓷19 [IN-DEL-2007-00396A]将具有成本效益,可用于低功率超声,传感器,拾音器,声学设备和执行器。

著录项

  • 公开/公告号IN292979B

    专利类型

  • 公开/公告日2018-02-23

    原文格式PDF

  • 申请/专利权人

    申请/专利号IN396/DEL/2007

  • 发明设计人

    申请日2007-02-26

  • 分类号A23K1/00;

  • 国家 IN

  • 入库时间 2022-08-21 12:51:33

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