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Studying the Ultrasonic Properties, DC Conductivity and Coefficient of Thermal Conductivity of PVA-Egg Shells Composites

机译:研究PVA-鸡蛋壳复合材料的超声性能,直流电导率和导热系数

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The polymer composite used in the present study were made of polyvinyl alcohol (PVA) as a matrix and Iraqi egg shells as filler. Polymer composites were fabricated by mixing PVA with (5, 10, 15, 20, 25, 30, 40 and 50) wt.% of egg shells powder by using a magnetic stirrer at temperature 90 0 C for 4hr to obtain homogeneous solution then samples were prepared by casting techniques. The ultrasonic measurements (transmittance, absorption coefficient and relaxation amplitude, acoustic impedance, compressibility and compressibility) of composites were carried out by using ultrasound technique. Measurement of DC conductivity and coefficient of thermal conductivity were done as a function to wt. % of egg shells. It was found that the samples contain additives of eggshells 5%, 10%, 20% and 30%, the attenuation decreased by increasing frequency up to 40 KHz and then increased after this frequency; while the sample contains 15% of the eggshells, the attenuation not alter significantly with increasing frequency. Sample with 50 % egg shell has two peaks at 20 and 30 kHz. As can be seen that the samples which contain a proportion of eggshells 5, 10, 20, 25, 30 and 40%, the transmittance coefficient increases with increasing frequency up to 40 kHz and then decreases and relaxation amplitude decreases with increasing frequency from 5 to 50 KHz. Generally observed acoustic impedance decreases with increasing eggshells except percentage 20%, where the highest value for the impedance. Compressibility generally increases with increasing of eggshells up to 40 % and then decreases. The electrical conductivity increase as concentrations of egg shells increase up to 30 % then conductivity decreases at 40 % then increases slightly at 50 %. It was found that coefficient of thermal conductivity increases with increasing of egg shells up to 40 % then decreases.
机译:本研究中使用的聚合物复合材料由聚乙烯醇(PVA)作为基质,伊拉克蛋壳作为填料。通过使用磁力搅拌器在90 0 C下将PVA与(5、10、15、15、20、25、30、40和50)wt。%的蛋壳粉混合以制备均质溶液,然后制备样品,从而制得聚合物复合材料由铸造技术制备。采用超声技术对复合材料进行超声测量(透射率,吸收系数和弛豫幅度,声阻抗,可压缩性和可压缩性)。直流电导率和导热系数的测量是作为重量的函数。蛋壳的百分比。发现样品中含有5%,10%,20%和30%的蛋壳添加剂,其衰减在40 KHz以下的频率下增加,然后降低。虽然样品中含有15%的蛋壳,但衰减不会随频率增加而明显改变。蛋壳含量为50%的样品在20和30 kHz处有两个峰。可以看出,包含蛋壳5、10、20、25、30和40%的蛋壳的样品,透射率系数随着频率的增加而增加,直到40 kHz,然后减小,并且弛豫幅度随频率从5到50 50 KHz。通常观察到的声阻抗会随着蛋壳的增加而降低,但百分比最高的是20%(百分比除外)。可压缩性通常随着蛋壳的增加而增加,最高可达40%,然后下降。电导率随着蛋壳浓度的增加而增加,最高可达30%,然后电导率在40%时下降,然后在50%时略有增加。已经发现,随着蛋壳的增加,热导率增加,直至40%,然后降低。

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