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首页> 外文期刊>Proceedings of the institution of mechanical engineers >Fabrication of polyethylene-based surface composite reinforced by carbon nano-tube and nano-clay through friction stir processing
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Fabrication of polyethylene-based surface composite reinforced by carbon nano-tube and nano-clay through friction stir processing

机译:摩擦搅拌法制备碳纳米管和纳米粘土增强的聚乙烯基表面复合材料

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In the present work, friction stir processing has been utilized to fabricate in situ polymer surface hybrid composite. The surface of polyethylene matrix was reinforced by the combination of multi wall carbon nano-tube and nano-clay powders. Here, L-9 Taguchi orthogonal array was used to design the experiment taking into account the effects of tool rotary speed, travel speed, and reinforcement type on tensile strength flexural strength and modulus of electricity. The results showed that both tensile and flexural strengths varied in a similar manner by varying the process factors. Homogeneity in reinforcement, higher value of tool rotary speed (i.e. 1600 r/min), and low value of travel speed (i.e. 40 mm/min) cause appropriate material flow and uniform dispersion of reinforcement in friction stir processed zone. Also, it was shown that the middle value of tool rotary speed (1200 r/min) and travel speed (60 mm/min) along with applying pure nano-clay enhances the elasticity modulus.
机译:在目前的工作中,已经采用摩擦搅拌工艺来原位制备聚合物表面杂化复合材料。聚乙烯基体的表面通过多壁碳纳米管和纳米粘土粉末的结合而得到增强。在这里,L-9 Taguchi正交阵列用于设计实验,同时考虑了工具转速,行进速度和补强类型对拉伸强度,弯曲强度和电模量的影响。结果表明,通过改变工艺因素,抗张强度和弯曲强度都以相似的方式变化。钢筋的均质性,较高的工具转速值(即1600 r / min)和较低的行进速度值(即40 mm / min)会导致适当的物料流动以及钢筋在搅拌摩擦加工区中的均匀分散。此外,还表明,工具转速(1200 r / min)和行进速度(60 mm / min)的中间值以及应用纯纳米粘土可提高弹性模量。

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