用煅烧蛋壳纳米粉和干木薯淀粉制备圆盘状压块的温度相关电学特性

Q4 Materials Science Powder Metallurgy Progress Pub Date : 2020-06-01 DOI:10.2478/pmp-2020-0002
U. Robert, S. Etuk, O. Agbasi, Ubong A. Iboh, S. Ekpo
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引用次数: 4

摘要

摘要用煅烧蛋壳纳米粉和干木薯淀粉两种混合比例制备了圆盘状压块,并将其用作试样。在35-75oC的温度范围内测量的样品的电阻(R)、热敏指数(β)和电子活化能(Ea)随温度的升高呈非线性下降。还观察到,通过与NTC热敏电阻的既定值进行很好的比较,获得的结果(R=3.691E6Ω–6.210E7Ω,β=3812K–5316K和Ea=0.33 eV–0.46 eV)满足了市场要求。因此,从制造业的角度来看,回收蛋壳废料和木薯废水可以为电子工业提供有前景的替代材料,用于制造适合工程应用的温度传感/监测/控制设备。这也将有助于减少环境污染。
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Temperature-Dependent Electrical Characteristics of Disc-Shaped Compacts Fabricated using Calcined Eggshell Nano Powder and Dry Cassava Starch
Abstract Disc-shaped compacts were fabricated from two mix proportions of calcined eggshell nanopowder and dry cassava starch and then used as test samples. The electrical resistance (R), thermal sensitivity index (β) and electronic activation energy (Ea) of the samples measured over a temperature range from 35 to 75oC were found to decrease non-linearly in values with increasing temperature. It was also observed that the results obtained (R = 3.691E6 Ω – 6.210E7 Ω, β = 3812K – 5316K and Ea = 0.33 eV – 0.46 eV) fulfill market requirements by comparing very well with the established values for NTC thermistors. Hence, from manufacturing viewpoint, recycling of chicken eggshell wastes and cassava effluents can avail electronic industry with promising and alternative materials for fabrication of temperature sensing / monitoring / control devices suitable for engineering applications. This will also help to reduce environmental pollution.
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Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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