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Carbon nanotubes improve the adhesion strength of a ceramic splat to the steel substrate

机译:碳纳米管提高了陶瓷片与钢基底的粘合强度

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A scratch technique was used to measure the adhesion strength of plasma sprayed carbon nanotube (CNT) reinforced aluminum oxide (Al2O3) splat on the steel substrate. The effect of adding carbon nanotube on the adhesion strength of a single splat was studied by varying the CNT content as 0,4 and 8 wt.% in the Al2O3 matrix. Higher lateral force was required by the nanoindenter tip to detach CNT reinforced Al2O3 splats as compared to Al2O3 splat. The adhesion strength increased significantly from 0.52 ± 0.05 MPa for Al2O3 splat to 4.21 ± 0.49 MPa for Al2O3-4 wt.% CNT splat and 7.36 ± 3.96 MPa for Al2O3-8 wt.% CNT splat. A high variation in the adhesion strength of Al2O3-8 wt.% CNT splat was due to varying degree of CNT dispersion in the matrix. A significant increase in the adhesion strength of Al2O3-CNT splat was attributed to its better mechanical interlocking with the substrate as a result of enhanced melting and spreading caused by the higher thermal conductivity of nanotubes. CNTs also form anchors between the splat and the substrate resulting in higher adhesion strength.
机译:使用刮擦技术来测量等离子喷涂碳纳米管(CNT)增强的氧化铝(Al2O3)在钢基材上的附着强度。通过将碳纳米管在Al2O3基质中的含量更改为0.4和8 wt。%,研究了添加碳纳米管对单个splat附着强度的影响。与Al2O3板相比,纳米压头尖端需要更高的侧向力才能分离CNT增强的Al2O3板。粘附强度从Al2O3飞溅的0.52±0.05 MPa显着增加到Al2O3-4 wt。%的CNT的4.21±0.49 MPa和Al2O3-8 wt。%的CNT的7.36±3.96 MPa。 Al2O3-8 wt。%CNT splat的附着强度变化很大是由于CNT在基质中的分散程度不同。 Al2O3-CNT splat的附着强度显着增加归因于其与基材的更好的机械互锁,这是由于纳米管较高的热导率导致熔化和扩散增强所致。 CNT还可以在splat与基材之间形成锚固,从而提高粘合强度。

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