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Microdeformation of soft particles in metal matrix composites

机译:金属基复合材料中软颗粒的微变形

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In this study, microdeformation of soft particles in metal matrix composites was investigated. For that purpose, two different types of ductile iron having different metal matrix microstructures were tensile stressed and compressed. It was found that graphite nodules do not change their shape during tensile stressing, only decohesion occurs on the graphite and metal matrix interface. However, compression testing at room temperature resulted in a significant change in graphite shape. A relationship between average aspect ratio of graphite after various degrees of compression and bulk material deformation was devised. Furthermore, graphite nodule and metal matrix microdeformation was compared to bulk material deformation. This implies that deformation process is not homogenous. It strongly depends on metal matrix microstructure and can be represented with deformation ratio (K). Deformed or deformed and cracked graphite nodules were found on the fractured surface of compressed specimens, indicating that the graphite does not turn into powder during compression at room temperature, as other previous researches found.
机译:在这项研究中,研究了金属基复合材料中软颗粒的微变形。为此,对具有不同金属基体微观结构的两种不同类型的球墨铸铁进行拉伸应力和压缩。发现石墨结节在拉伸应力期间不会改变其形状,仅在石墨和金属基体的界面上发生脱粘。然而,在室温下的压缩测试导致石墨形状的显着变化。设计了不同程度的压缩后石墨的平均长径比与块状材料变形之间的关系。此外,将石墨结核和金属基体的微变形与整体材料变形进行了比较。这意味着变形过程不均匀。它在很大程度上取决于金属基体的微观结构,并可以用变形率(K)表示。在压缩样品的断裂表面上发现了变形,变形和破裂的石墨结节,这表明,如先前的其他研究发现,在室温压缩过程中,石墨不会变成粉末。

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