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    7D68铝合金薄壁转筒碎裂原因

    Causes of fragmentation of 7D68 aluminum alloy thin-walled rotary drum

    • 摘要: 某7D68铝合金薄壁转筒在试验过程中发生高周疲劳碎裂,采用化学成分分析、硬度测试、扫描电镜分析、X射线荧光光谱分析等方法系统研究了碎裂转筒的显微组织与断裂机制。结果表明:碎裂转筒与正常转筒的组织和成分存在显著差异,碎裂转筒中存在异常富集的铁、硅夹杂相;这些夹杂相不仅降低了材料的抗拉强度,更在循环载荷作用下成为疲劳裂纹源,显著加速了裂纹扩展速率,最终导致试验过程中转筒发生碎裂。

       

      Abstract: High cycle fatigue fracture occurred in a 7D68 aluminum alloy thin-walled rotary drum during the test. The microstructure and fracture mechanism of the fractured rotary drum were systematically studied by means of chemical composition analysis, hardness test, scanning electron microscopy analysis, and energy dispersive X-ray spectroscopy. The results show that there were significant differences in the microstructure and composition between the fragmented drum and the normal drum. There were abnormally enriched iron and silicon inclusions in the fragmented drum. These inclusions not only reduced the tensile strength of the material, but also became the sources of fatigue cracks under cyclic loading, which significantly accelerated the crack growth rate and eventually led to the fragmentation of the rotary drum during the test.

       

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