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首页> 外文期刊>Journal of Materials Science >FRACTURE MECHANICS BEHAVIOUR OF AUSTENITIC COMPACTED GRAPHITE CAST IRON
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FRACTURE MECHANICS BEHAVIOUR OF AUSTENITIC COMPACTED GRAPHITE CAST IRON

机译:奥氏体压缩石墨铸铁的断裂力学行为

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The fracture mechanics behaviour of high-nickel austenitic compacted graphite cast iron was studied and the effects of graphite morphology, alloying elements and specimen thickness on the mechanical properties, plane stress fracture toughness, and fatigue crack growth rate were evaluated. It was found that the graphite morphology, i.e. the percentage of compacted graphite present, was the major determinant of all properties of the materials investigated. The irons with a greater amount of compacted graphite (the balance was nodular graphite in austenitic matrix) resulted in lower tensile strength, yield strength, elongation and K-C fracture toughness but higher crack-growth index values (poorer crack-growth resistance). For 25 mm thick specimens, K-C values of the austenitic compacted graphite cast irons in this study were in the range of 58-64 MPa m(1/2). This is higher than ferritic/pearlitic ductile iron of 43-53 MPa m(1/2), and is compatible to Ni-resist austenitic ductile iron of 64.1 MPa m(1/2). The addition of cobalt not only contributed to slightly higher values of mechanical properties, but also higher plane stress fracture toughness and better crack growth resistance. Optical microscopy, scanning electron microscopy and X-ray diffraction techniques were applied to correlate the microstructural features to the properties attained. [References: 15]
机译:研究了高镍奥氏体压缩石墨铸铁的断裂力学行为,并评估了石墨形态,合金元素和试样厚度对力学性能,平面应力断裂韧性和疲劳裂纹扩展速率的影响。发现石墨形态,即存在的压实石墨的百分比,是所研究材料的所有性能的主要决定因素。压实石墨含量较高的铁(其余为奥氏体基体中的球状石墨)导致较低的抗拉强度,屈服强度,伸长率和K-C断裂韧性,但裂纹扩展指数值较高(抗裂纹扩展性较差)。对于25毫米厚的试样,本研究中奥氏体压缩石墨铸铁的K-C值在58-64 MPa m(1/2)的范围内。这高于43-53 MPa m(1/2)的铁素体/珠光体球墨铸铁,并且与64.1 MPa m(1/2)的耐镍奥氏体球墨铸铁兼容。钴的添加不仅有助于提高机械性能值,而且还有助于提高平面应力断裂韧性和更好的抗裂纹扩展性。应用光学显微镜,扫描电子显微镜和X射线衍射技术将显微结构特征与所获得的性能相关联。 [参考:15]

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