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首页> 外文期刊>Nanotechnology >Simple co-electrodeposition of functionalized multi-walled carbon nanotubes/chitosan composite coating on mainspring for enhanced modulus of elasticity
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Simple co-electrodeposition of functionalized multi-walled carbon nanotubes/chitosan composite coating on mainspring for enhanced modulus of elasticity

机译:在主发条上简单共电沉积功能化的多壁碳纳米管/壳聚糖复合涂层,以提高弹性模量

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摘要

Co-electrodeposition of functionalized multi-walled carbon nanotubes (f-MWCNTs) with chitosan was performed on pieces of a stainless steel mainspring. Under moderate conditions, composite coatings with controllable thickness from a few hundred nanometers to tens of micrometers can be achieved. After coating an 8 mu m composite layer on a piece of mainspring 120 mu m thick (i.e. 6.7% increase in thickness), the Young's modulus of the mainspring was found to have increased by more than similar to 25%. Moreover, the coated mainsprings possess much stronger mechanical strength as demonstrated by fatigue tests. The significant enhancement of Young's modulus and intrinsic strength are mostly attributed to the effect exerted by the subtle combination of chitosan and MWCNT. In the current study, the intensive cross-linkages formed between the -COOH groups in f-MWCNTs and the hydroxyl (-OH) and amino (-NH2) groups in chitosan were exploited. The chitosan molecular chains and f-MWCNTs both chemically react and physically knot with each other, leading to a three-dimensional interlaced f-MWCNT/chitosan composite coating. The reported co-electrodeposition provides a simple approach to form a stable, reproducible and rigid f-MWCNTs composite coating, which leads to the realization of a high-performance mainspring with reinforced mechanical strength.
机译:功能化的多壁碳纳米管(f-MWCNT)与壳聚糖的共电沉积是在不锈钢主发条上进行的。在适度的条件下,可以获得厚度可控制在几百纳米到几十微米之间的复合涂层。在一块120微米厚的主发条上涂覆8微米复合材料层(即厚度增加了6.7%)后,发现主发条的杨氏模量增加了25%以上。此外,经疲劳测试证明,带涂层的发条具有更强的机械强度。杨氏模量和内在强度的显着提高主要归因于壳聚糖和MWCNT的微妙组合所产生的作用。在当前的研究中,利用了在f-MWCNT中的-COOH基团与壳聚糖中的羟基(-OH)和氨基(-NH2)基团之间形成的强烈的交联。壳聚糖分子链和f-MWCNT彼此发生化学反应和物理结,从而形成了三维交错的f-MWCNT /壳聚糖复合涂层。报道的共电沉积提供了一种简单的方法来形成稳定,可再现和刚性的f-MWCNTs复合涂层,从而实现了具有增强的机械强度的高性能发条。

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