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Semisolid Die-casting Process of Mg-20Al-0.8Zn Magnesium Alloy

机译:Mg-20Al-0.8Zn镁合金的半固体压铸过程

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Based on microstructure evolution of Mg-20Al-0.8Zn magnesium alloys realized by semisolid isothermal heat-treatment (SSIT), we obtained the non-dendrite or spherical grains microstructure under the suitable technological parameters that isothermal temperature is 495°C and holding time is 120 min. With the help of special experimental equipment, the semisolid die-casting process has been studied and the specimens have been analyzed. The effects of different parameters as injection speed and pressure on tensile strength, elongation rate, hardness, etc have been investigated. The results indicate that tensile strength was improved along with increasing injection speed and pressure. However, excessive speed will involve gas, which formed defects and reduced the mechanical properties. When the injection pressure is 40MPa and injection speed is 4m/s, the tensile strength and elongation rate can reach maximal 220MPa and 5.63% respectively. Its fracture mechanism was intercrystalline cracking.
机译:基于半固体等温热处理(SSIT)实现的Mg-20Al-0.8Zn合金的微观结构演化,我们在等温温度为495°C和保持时间的合适技术参数下获得非枝晶或球形晶粒微观结构120分钟。借助特殊的实验设备,研究了半固体压铸过程,并分析了标本。已经研究了不同参数作为抗拉强度,伸长率,硬度等的注射速度和压力的影响。结果表明,提高注射速度和压力,提高了拉伸强度。然而,过度的速度将涉及气体,其形成缺陷并降低了机械性能。当注射压力为40MPa时,注射速度为4m / s,拉伸强度和伸长率分别可以达到最大220mPa和5.63%。其骨折机制是间断的裂缝。

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