首页> 外国专利> Low temperature conductive ceramic material - based on barium-titanate is made of vary small grain size to improve breakdown voltage and homogeneity

Low temperature conductive ceramic material - based on barium-titanate is made of vary small grain size to improve breakdown voltage and homogeneity

机译:低温导电陶瓷材料-基于钛酸钡,由不同的小晶粒尺寸制成,以提高击穿电压和均匀性

摘要

The ceramic material consists of a Ba/Ca-mixed titanate with fine grains. The grains consist of a core of Ba-rich and a shell of Ca-rich titanate. The material is prepared by addition of CaCO3, pref. 15-30 mole.%, to the doped Ba-titanate and using standard ceramic processing. The mixed materials are calcinated at 800-1200 deg.C and sintered at a temp. in the range 1250-1450 deg.C. The proportions of the elements Ba, Ca, Sr and Pb to that of Ti are related as follows: (Ba+Ca+Sr+Pb)/Ti = 1. Sr and Pb are added to affect the transition temp. USE/ADVANTAGE - During calcination Ca-rich and Ba-rich titanates are formed alongsidem each other. During sintering the Ba-rich phases act as crystallisation seeds by building a Ca-rich shell around them. This process allows many seeds to be formed, which keeps the grainsize low, e.g. 5 +/- 2 micron. The process is used to mfr. material for low resistance PTC-resistors with a high breakdown voltage.
机译:陶瓷材料由细晶粒的Ba / Ca混合钛酸盐组成。晶粒由富含Ba的核和富含Ca的钛酸盐的壳组成。该材料通过添加优选的碳酸钙来制备。掺杂的钛酸钡的含量为15-30摩尔%,并使用标准陶瓷加工。将混合的材料在800-1200℃下煅烧并在一定温度下烧结。在1250-1450摄氏度范围内。元素Ba,Ca,Sr和Pb与Ti的比例关系如下:(Ba + Ca + Sr + Pb)/ Ti =1。添加Sr和Pb以影响转变温度。使用/优点-在煅烧过程中,富含Ca和Ba的钛酸盐彼此并存。在烧结过程中,富Ba相通过在其周围构建富Ca壳而充当晶种。该过程允许形成许多种子,这保持了较低的晶粒尺寸,例如。 5 +/- 2微米。该过程用于制造。具有高击穿电压的低电阻PTC电阻材料。

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