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Conductive films of silver nanoparticles as novel susceptors for induction welding of thermoplastic composites

机译:银纳米粒子的导电薄膜作为热塑性复合材料的诱导焊接的新型感受器

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In the present work, a conductive film of silver nanoparticles (nAg) as a novel heating element type, called susceptor, was developed and tested for induction welding of carbon fiber/polyphenylene sulfide (CF/PPS) thermoplastic composites, i.e., unidirectional pre-impregnated 16 plies of CF/PPS compression-molded in a quasi-isotropic stacking sequence. The nAg were synthesized, dispersed in deionized (DI) water and casted onto a pure PPS film, resulting in a conductive film upon the evaporation of DI water and thermal post-annealing. The thermal annealing at 250 degrees C significantly (by 7 orders) decreased the film's electrical resistivity from 9.4 x 10(3) down to 3.1 x 10(-4) Omega cm. The new susceptors led to fast heating rates in induction welding when compared to the standard stainless steel mesh susceptors under similar welding conditions. Lap shear mechanical testing revealed that the apparent lap shear strength (LSS) is sensitive to the susceptors' resistivity and the input current. A relatively high LSS value was achieved for the specimens welded using the new susceptors which exceeded the value of those welded using stainless steel mesh susceptors (28.3 MPa compared to 20 MPa). The weld interface and specimens' cross-section observation revealed that the nAg were dispersed and embedded into the resin upon welding. This study contains preliminary results that show high potential of nanoparticles as effective susceptors to further improve the mechanical performance of the joints in welding of thermoplastic composites.
机译:在本作工作中,开发并测试了作为新型加热元件型的银纳米颗粒(NAG)的导电膜,用于碳纤维/聚苯硫醚(CF / PPS)热塑性复合材料的感应焊接,即单向预测在准各向同性堆叠序列中浸渍了16层CF / PPS压缩模塑。合成NAG,分散在去离子(DI)水中并浇铸到纯PPS膜上,导致在DI水的蒸发和热退火后蒸发导电膜。在250℃下显着(7个订单)在250摄氏度下,从9.4×10(3)下降至3.1×10(-4)ωcm,降低薄膜的电阻率。与在类似焊接条件下的标准不锈钢网状丝带相比,新的基座导致感应焊接的快速加热速率。 LAP剪切机械测试显示,表观圈剪切强度(LSS)对基座电阻率和输入电流敏感。使用新的粘接器焊接的标本达到相对高的LSS值,该样品使用超过使用不锈钢网感染仪(28.3MPa)的焊接的那些值(与20MPa相比)焊接的那些值。焊接界面和样本的横截面观察显示,在焊接时纳格分散并嵌入树脂中。该研究含有初步结果,其显示纳米粒子的高潜力,作为有效的感受器,以进一步提高热塑性复合材料焊接接头的机械性能。

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