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Effect of Addition of Carbon Nanotubes on Electrical Conductance and Heat Dissipation of Elastomers at Flow of Direct Current

机译:碳纳米管在直流流动下添加碳纳米管对弹性体的电导和散热的影响

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The heat effects at flow of direct current in nanomodified elastomers of two types (polyurethane and silicone compounds) were investigated. The multiwalled carbon nanotubes (MWCNT) synthesized over the (Co-Mo)/(Al_2O_3-MgO) and (Fe-Co)/_(2.1)Al_2O_3 catalysts were used for nanomodification. The particle size analysis of MWCNT was carried out because the MWCNTs with various morphological parameters were synthesized over this type of catalysts. The composite manufactured on the basis of a silicone compound modified by 7 wt % of MWCNTs synthesized over the (Co-Mo)/(Al_2O_3-MgO) catalyst has the highest electrical conductivity (1.66 × 10~(-1) S cm~(-1)), and the composite manufactured from the polyurethane compound modified by 1 wt % of MWCNT synthesized overthe (Fe-Co)/_(2.1)Al_2O_3 catalyst has the lowest electrical conductivity (6 ×10~10 S cm~(-1)). Variations in heat dissipations for various types of elastomers modified by MWCNT were detected by using the noncontact method of measuring of temperature field on the surface of samples. The manner of stabilized heat dissipation which is natural for the materials with a positive temperature coefficient of resistance was found. The highest intensity of heat dissipations combined with uniform distribution of the temperature field was observed for the samples manufactured on the basis of a silicone compound containing 7 wt % of the MWCNTs synthesized over the (Fe-Co)/_(2.1) Al_2O_3 catalyst. The maximum heating temperature for the sample operating under the voltage of 6 V of direct current was 102°C. Nonuni-formity of heat dissipations is specific to almost all samples manufactured on the basis of the polyurethane compound. In this case, the samples based on the silicone compound demonstrate uniform heating at any level of filling by the MWCNTs. As a part of the study, a honey-combed sample was obtained, which, under the voltage of 6 V of direct current, was heated to 100°C and had a uniform distribution of the temperature field.
机译:研究了两种类型(聚氨酯和硅氧烷化合物)的纳米透气弹性体中直流流动的热效应。用(Co-Mo)/(Al_2O_3-MgO)和(Fe-Co)/ _(2.1)Al_2O_3催化剂合成的多壁碳纳米管(MWCNT)用于纳米倍转。进行MWCNT的粒度分析,因为通过这种类型的催化剂合成了具有各种形态参数的MWCNT。基于由(CO-MO)/(AL_2O_3-MGO)催化剂合成的7wt%的MWCNT的硅氧烷化合物制造的复合材料具有最高的电导率(1.66×10〜(-1)Cm〜( -1)),并由由1wt%的聚氨酯化合物制造的复合材料由1wt%的MWCNT合成(Fe-Co)/ _(2.1)Al_2O_3催化剂具有最低电导率(6×10〜10scm〜( - 1))。通过使用MWCNT改性的各种类型弹性体的散热变化通过使用样品表面上的温度场测量温度场的不接触式方法来检测。发现了稳定的散热方式,其为具有正温度耐受抗性系数的材料。对于基于(Fe-Co)/ _(2.1)Al_2O_3催化剂合成的含有7wt%的MWCNT的硅氧烷化合物,可以观察到与温度场均匀分布的最高散热强度。在直流电流为6V的电压下操作的样品的最大加热温度为102℃。散热的非不正常性是特异性的几乎所有基于聚氨酯化合物制造的样品。在这种情况下,基于硅氧烷化合物的样品在MWCNT的任何填充水平下表现出均匀的加热。作为研究的一部分,获得了一种蜂蜜组合的样品,在直流电流的电压下加热至100℃并具有均匀的温度场分布。

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