Lu Gang, Huang Pengpeng, Yan Qingsong, Xu Pian, Pan Fei, Zhan Hongxing, Chen Yisi
National Key Laboratory of Light Alloy Processing Science and Technology, Nanchang Hangkong University, Nanchang 330063, China.
Materials (Basel). 2020 Sep 23;13(19):4232. doi: 10.3390/ma13194232.
The effect of ultrasonic temperature on density, microstructure and mechanical properties of vacuum counter-pressure casting ZL114A alloy during solidification was investigated by optical microscopy (OM), scanning electron microscope (SEM) and a tensile test. The results show that compared with the traditional vacuum counter-pressure casting aluminum alloy, the primary phase and eutectic silicon of the alloy with ultrasonic treatment has been greatly refined due to the dendrites broken by ultrasonic vibration. However, the refining effect of ultrasonic treatment on vacuum counter-pressure casting aluminum alloy will be significantly affected by ultrasonic temperature. When the ultrasonic temperature increases from 680 °C to 720 °C, the primary phase is gradually refined, and the morphology of eutectic silicon also changes from coarse needle-like flakes to fine short rods. With a further increase in the ultrasonic temperature, the microstructure will coarse again. The tensile strength and elongation of vacuum counter-pressure casting ZL114A alloy increases first and then decreases with the increase of ultrasonic temperature. The optimal mechanical properties were achieved with tensile strength of 327 MPa and the elongation of 5.57% at ultrasonic temperature of 720 °C, which is 6.3% and 8.2%, respectively, higher than that of alloy without ultrasonic treatment.
通过光学显微镜(OM)、扫描电子显微镜(SEM)和拉伸试验,研究了超声温度对真空反压铸造ZL114A合金凝固过程中密度、微观组织和力学性能的影响。结果表明,与传统真空反压铸造铝合金相比,经超声处理的合金初生相和共晶硅由于超声振动使枝晶破碎而得到了极大细化。然而,超声处理对真空反压铸造铝合金的细化效果会受到超声温度的显著影响。当超声温度从680℃升高到720℃时,初生相逐渐细化,共晶硅形态也从粗大的针状片状变为细小的短棒状。随着超声温度进一步升高,微观组织又会粗化。真空反压铸造ZL114A合金的抗拉强度和伸长率随超声温度升高先增加后降低。在超声温度为720℃时,合金获得了最佳力学性能,抗拉强度为327MPa,伸长率为5.57%,分别比未进行超声处理的合金高6.3%和8.2%。