In-situ observation of MnS effect on the tensile strength anisotropy of non-quenched and tempered steel
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摘要: 利用激光共聚焦掃描顯微鏡原位觀察S質量分數為0.065%的非調質鋼縱向與橫向拉伸過程中MnS的行為,研究MnS形貌與分布對非調質鋼各向異性的影響.原位觀察表明鍛后鋼中存在大量長條形MnS,橫向與縱向拉伸過程中MnS長度方向與拉力方向取向不同.橫向拉伸過程中MnS更易與基體分離產生裂紋,裂紋隨MnS長度方向擴展長大,最終導致基體的斷裂.MnS在縱向拉伸時不易與基體分離,因此對縱向拉伸性能影響較小.鋼中群聚分布的MnS有利于裂紋的聚合長大,會促進基體的斷裂.Abstract: In-situ observation of the behavior of MnS inclusions in non-quenched and tempered steel with a sulfur mass fraction of 0.065% was performed during tensile tests by using a laser confocal scanning microscope (LCSM) to investigate the effects of the morphology and distribution of MnS inclusions on the tensile property anisotropy of the steel. The result shows that there exist a large number of rod-like MnS inclusions in the forged steel, which have different orientations with the load during transverse and longitudinal tensile tests. The rod-like MnS inclusions separate much easier from the steel base during transverse tensile tests to form initial cracks, and then the cracks spread along the MnS inclusions. In this way, the cracks grow up and lead to the fracture of the steel. In contrast, the MnS inclusions have little effects on the longitudinal tensile properties because the length direction of MnS is parallel to the tensile force. MnS inclusion aggregation promotes the assembling and growth of single cracks, thus accelerating the fracture of the steel during tensile tests.
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