Influence of characteristic inclusion parameters on crack initiation and propagation in ultra-high strength steels for aerospace application under tensile and low cyclic fatigue loading
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摘要: 為了研究非金屬夾雜物對航空用超高強度鋼性能的影響,采用掃描電鏡原位觀測的方法,跟蹤觀察了拉伸和低周疲勞載荷作用下兩種航空用超高強度鋼中不同種類、形態和尺寸的夾雜物導致裂紋萌生與擴展的微觀行為.結果表明,對于單個TiN和AlN夾雜,在拉伸載荷作用下,裂紋均首先在夾雜內部萌生.夾雜面積越大,夾雜內萌生的裂紋條數越多,第1條裂紋萌生所需的應力越小.在疲勞載荷作用下,對于單個TiN夾雜,裂紋也首先萌生于夾雜內部.但對于以點鏈狀形式存在的AlN夾雜,無論是在拉伸還是疲勞載荷作用下,裂紋均首先在點鏈狀夾雜內部兩夾雜之間的母材中萌生,然后沿點鏈狀夾雜向兩側擴展.以點鏈狀形式存在的夾雜對材料疲勞性能的危害比單個夾雜嚴重得多,夾雜物對材料疲勞性能的危害遠大于對拉伸性能的危害.Abstract: In order to study the effect of non-metallic inclusions on the mechanical properties of ultra-high strength steels for aerospace application, the micro-behavior of inclusion inducing crack initiation and propagation in two ultra-high strength steels under tensile and low cyclic fatigue loading was investigated by means of SEM in situ observations. The influence of inclusions' shape and size on crack initiation and propagation was analyzed. The results show that cracks initiate in a TiN or AIN inclusion alone under tensile loading. The larger the size of an inclusion, the more the number of cracks initiated in the inclusion is, and the lower the initiation stress of the first crack is. Cracks also initiate in a TiN inclusion alone under fatigue loading. But for a chain of AIN inclusions, cracks initiate in the matrix between two inclusions under tensile and fatigue loading. A chain of inclusions is more harmful to the fatigue properties of ultra-high strength steels than an inclusion alone, and an inclusion is more harmful to the fatigue properties than to the tensile properties.
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