Novel NTC thermistor material based on nickel oxide
A thermistor and oxide technology, applied in the direction of resistors with negative temperature coefficient, resistors, non-adjustable metal resistors, etc., can solve the problems of structure relaxation, low volatilization temperature, volatilization of raw material components, etc., and achieve material The effect of simple composition, low sintering temperature and abundant raw materials
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Embodiment 1
[0020] This embodiment according to the molecular formula Ni 1-x-y Y x Mg y O is dosed, where x=0.01, y=0.01. The initial raw material is selected from basic nickel carbonate NiCO 3 2Ni(OH) 2 4H 2 O, Yttrium trioxide Y 2 o 3 , Magnesium oxide MgO. Materials were prepared according to the following experimental process steps:
[0021] (1) The initial raw material is Ni 0.98 Y 0.01 Mg 0.01 O formula ingredients, weigh NiCO 3 2Ni(OH) 2 4H 2 O30.7205g, Y 2 o 3 0.2823g, MgO 0.1007g;
[0022] (2) The raw materials taken in the previous step are dissolved in dilute nitric acid respectively;
[0023] (3) Mix the two solutions prepared in the previous step together, and use a magnetic stirring heater to stir and mix evenly, heat and dry;
[0024] (4) Calcining the powder obtained in the previous step at a temperature of 900° C. and keeping it warm for 2 hours;
[0025] (5) The powder synthesized in the previous step is granulated and pressed into a green body; the g...
Embodiment 2
[0031] This embodiment according to the molecular formula Ni 1-x-y Y x Mg y O was dosed, where x=0.02, y=0.01. The initial raw material is selected from basic nickel carbonate NiCO 3 2Ni(OH) 2 4H 2 O, Yttrium trioxide Y 2 o 3 , Magnesium oxide MgO. Materials were prepared according to the following experimental process steps:
[0032] (1) The initial raw material is Ni 0.97 Y 0.02 Mg 0.01 O formula ingredients, weigh NiCO 3 2Ni(OH) 2 4H 2 O30.4070g, Y 2 o 3 0.5646g, MgO 0.1007g;
[0033] (2) The preparation process is the same as steps (2)-(8) in Example 1.
[0034] The properties of the prepared materials are shown in Table 1. figure 1 with figure 2 shown.
Embodiment 3
[0036] This embodiment according to the molecular formula Ni 1-x-y Y x Mg y O was dosed where x=0.03, y=0.003. The initial raw material is selected from basic nickel carbonate NiCO 3 2Ni(OH) 2 4H 2 O, Yttrium trioxide Y 2 o 3 , Magnesium oxide MgO. Materials were prepared according to the following experimental process steps:
[0037] (1) The initial raw material is Ni 0.967 Y 0.03 Mg 0.003 O formula ingredients, weigh NiCO 3 2Ni(OH) 2 4H 2 O30.3130g, Y 2 o 3 0.8468g, MgO 0.0302g;
[0038] (2) The preparation process is the same as steps (2)-(8) in Example 1.
[0039] The properties of the prepared materials are shown in Table 1. figure 1 with figure 2 shown.
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