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Effect Of Ultrasonic Power On Microstructure And Mechanical Properties Of Az91 Alloy

机译:超声波功率对Az91合金组织和力学性能的影响

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摘要

Ultrasonic vibration with different powers from OW to 700 W was applied during the solidification process of AZ91 alloy. The microstructures and mechanical properties of the treated AZ91 alloy were characterized. Without subject to ultrasonic vibration (OW of ultrasonic power), the dendrites were coarse and large. Globular grains were obtained in AZ91 alloy subject to high intensity ultrasonic vibration. The grain size was decreased gradually from 202 μmto 146 μm with increasing ultrasonic power. The mechanical properties of the treated alloy were also improved. The ultimate tensile strength was increased from 145 MPa to 195 MPa and elongation to fracture from 2.3% to 5.2% correspondingly with increasing ultrasonic power. The mechanism by which ultrasonic power affects the microstructure and mechanical properties of AZ91 alloy is discussed.
机译:在AZ91合金的凝固过程中,使用了从OW到700 W的不同功率的超声波振动。表征了处理后的AZ91合金的显微组织和力学性能。没有受到超声波振动(超声波功率的OW)的影响,枝晶粗大。在经受高强度超声振动的AZ91合金中获得了球状晶粒。随着超声功率的增加,晶粒尺寸从202μm逐渐减小到146μm。经处理的合金的机械性能也得到改善。随着超声功率的增加,极限抗拉强度从145 MPa增加到195 MPa,断裂伸长率从2.3%增加到5.2%。讨论了超声波功率影响AZ91合金组织和力学性能的机理。

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