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首页> 外文期刊>Chemistry Letters >Enhanced Mechanical Strength of Nickel-Copper-coated Carbon Fiber/Magnesium Alloy Composites Fabricated Using Powder Metallurgy
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Enhanced Mechanical Strength of Nickel-Copper-coated Carbon Fiber/Magnesium Alloy Composites Fabricated Using Powder Metallurgy

机译:粉末冶金法制备镍铜涂层碳纤维/镁合金复合材料的增强的机械强度

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摘要

Carbon fibers could be deposited uniformly with duplex coatings of nickel (the internal layer) and copper (the external layer) using an electroplating process. The thickness of Ni and Cu coatings was about 1-2 um. Furthermore alloying between Ni and Cu films and alloying between Cu and base Mg alloy occurred respectively after hot pressing (673 K, 2.5 MPa). In particular the strain to failure of magnesium composites with Ni-Cu-coated carbon fibers was 0.7% higher than that (1.81%) of magnesium composites with untreated carbon fibers.
机译:碳纤维可以使用电镀工艺在镍(内层)和铜(外层)的双重涂层中均匀沉积。 Ni和Cu涂层的厚度为约1-2μm。此外,在热压(673 K,2.5 MPa)之后,分别发生了Ni和Cu膜之间的合金化以及Cu和Mg基合金之间的合金化。特别地,具有Ni-Cu涂覆的碳纤维的镁复合材料的破坏应变比具有未经处理的碳纤维的镁复合材料的破坏应变高(1.81%)。

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