系统研究了Mn Co Ni系厚膜NTC热敏电阻器的电阻性能与玻璃助剂质量分数的关系,结果表明:当玻璃助剂质量分数为(10~30)×10-2时,电阻性能参数(RT,ρT,B和αT)随玻璃助剂质量分数的增加而显著增长;当玻璃助剂质量分数继续增加,则电...系统研究了Mn Co Ni系厚膜NTC热敏电阻器的电阻性能与玻璃助剂质量分数的关系,结果表明:当玻璃助剂质量分数为(10~30)×10-2时,电阻性能参数(RT,ρT,B和αT)随玻璃助剂质量分数的增加而显著增长;当玻璃助剂质量分数继续增加,则电阻性能参数基本不变。但当玻璃助剂质量分数为5×10-2时,厚膜电阻因烧结性能变差而导致电阻性能不稳定,同时,电阻性能参数均异常增大。当玻璃助剂质量分数为30×10-2以上时,采用本工艺制备的厚膜NTC热敏电阻器具有良好的工艺性和热稳定性。展开更多
Al electrodes are well known as ohmic contact electrodes for the PTC component , the influence of their thickness on final component properties was investigated by comparing their ohmic characteristics with the ones ...Al electrodes are well known as ohmic contact electrodes for the PTC component , the influence of their thickness on final component properties was investigated by comparing their ohmic characteristics with the ones of InGa electrodes . After observing the Al paste physical and chemical behaviors during rising temperature by thermal analysis (DTA), the firing operation of Al electrodes could be divided into three main subsections: the temperature rising time (t-r), the peak firing temperature (T-p) and the hold time at peak firing temperature (t-h). The effects of these three parameters on final component properties were discussed in detail.展开更多
文摘系统研究了Mn Co Ni系厚膜NTC热敏电阻器的电阻性能与玻璃助剂质量分数的关系,结果表明:当玻璃助剂质量分数为(10~30)×10-2时,电阻性能参数(RT,ρT,B和αT)随玻璃助剂质量分数的增加而显著增长;当玻璃助剂质量分数继续增加,则电阻性能参数基本不变。但当玻璃助剂质量分数为5×10-2时,厚膜电阻因烧结性能变差而导致电阻性能不稳定,同时,电阻性能参数均异常增大。当玻璃助剂质量分数为30×10-2以上时,采用本工艺制备的厚膜NTC热敏电阻器具有良好的工艺性和热稳定性。
文摘Al electrodes are well known as ohmic contact electrodes for the PTC component , the influence of their thickness on final component properties was investigated by comparing their ohmic characteristics with the ones of InGa electrodes . After observing the Al paste physical and chemical behaviors during rising temperature by thermal analysis (DTA), the firing operation of Al electrodes could be divided into three main subsections: the temperature rising time (t-r), the peak firing temperature (T-p) and the hold time at peak firing temperature (t-h). The effects of these three parameters on final component properties were discussed in detail.