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首页> 外文期刊>Engineering Fracture Mechanics >Fracture and toughening mechanisms of GNP-based nanocomposites in modes I and II fracture
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Fracture and toughening mechanisms of GNP-based nanocomposites in modes I and II fracture

机译:GNP型纳米复合材料在I型和II型断裂中的断裂和增韧机理

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The objective of this study was to enhance the fracture response and toughness of epoxy resins in a cost-effective manner. Therefore, an experimental program was designed to examine the fracture response and toughness (both modes I and II fracture) of an epoxy resin reinforced with different concentrations of graphene-nanoplatelets and multi-wall carbon-nanotube. The resulting nanocomposites exhibited significant improvement in their mode-I fracture toughness, while their mode-H fracture toughness was slightly degraded. Scanning-electron and atomic-force microscopes produced micrographs revealed the alteration of the fracture and toughening mechanisms of the resin by evidence such as relatively larger plastic deformation, crack deflection, bridging and pinning in mode-I fracture. An empirical fracture mechanism criterion was also proposed.
机译:这项研究的目的是以经济有效的方式提高环氧树脂的断裂响应和韧性。因此,设计了一个实验程序来检查用不同浓度的石墨烯-纳米片和多壁碳纳米管增强的环氧树脂的断裂响应和韧性(I和II型断裂)。所得的纳米复合材料在其I型断裂韧性方面显示出显着改善,而其H型断裂韧性则稍有下降。扫描电子显微镜和原子力显微镜产生的显微照片通过诸如相对较大的塑性变形,裂纹变形,桥接和钉扎在I型断裂中的证据揭示了树脂断裂和增韧机理的变化。还提出了经验断裂机理准则。

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