Grain reinement limit of commercial pure Al inoculated by Al-Ti-C(B) master alloys

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The grain refi nement limits of commercial pure Al inoculated by Al-5Ti-1B, Al-5Ti-0.25C and Al-5Ti-0.3C-0.2B master alloys were studied, and the infl uence of melting temperature on the grain refi ning performance of these three master alloys was investigated using a high scope video microscope(HSVM), a fi eld-emission scanning electron microscope(FESEM), an electron probe micro-analyzer(EPMA) and X–ray diffraction(XRD) method. Results show that there is a grain refi nement limit of commercial pure Al refi ned by these three master alloys; with the same addition level of 1.5% under the present experimental conditions, the grain refi nement limits(smallest average grain size) of commercial pure Al refi ned by Al-5Ti-1B, Al-5Ti-0.25C and Al-5Ti-0.3C-0.2B master alloys are 50 μm, 80 μm and 80 μm, respectively. In addition, with an increase in the melting temperature of the pure Al, the grain refi ning performance of Al-5Ti-1B and Al-5Ti-0.25C master alloys decreases, but the grain refi ning performance of Al-5Ti-0.3C-0.2B changes little. The grain refi nement limits of commercial pure Al inoculated by Al-5Ti-1B, Al-5Ti-0.25C and Al-5Ti-0.3C-0.2B master alloys were studied, and the infl uence of melting temperature on the grain refi ning performance of these three master alloys was investigated using a high scope video microscope (HSVM), a fi eld-emission scanning electron microscope (FESEM), an electron probe micro-analyzer (EPMA) and X-ray diffraction show that there is a grain refi nement limit of commercial pure Al refi ned by these three master alloys; with the same addition level of 1.5% under the present experimental conditions, the grain refi nement limits (smallest average grain size) of commercial pure Al refi ned by Al-5Ti-1B, Al-5Ti-0.25C and Al-5Ti-0.3C-0.2B master alloys are 50 μm, 80 μm and 80 μm, respectively. the pure Al, the grain refi ning performance of Al-5Ti-1B and Al-5Ti-0.25C master alloys decreases, but the grain r efi ning performance of Al-5Ti-0.3C-0.2B changes little.
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