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Microstructures of Cu-based alloys (including CuO.8CrO.05La, CuO.8CrO.lLa, CuO.8CrO.4La, CuO.8CrO.05Y, CuO.8CrO.lY and CuO.8CrO.4Y) were studied by optical microscope, X-ray diffractometer, Scanning electron microscope and Energy-dispersive X-ray spectroscopy. The results show that La and Y refine the grains and change the distribution of microstructures of Cu-Cr alloys. The sizes of Cr particles are smaller in CuCrRE alloys than in CuCr alloy. In CuCrLa and CuCrY alloys, La and Y usually respectively exist as compounds of CugLa and Cu5Y. These compounds distribute in the grains with sphere shape and on the grain-boundaries with slice shape.
Microstructures of Cu-based alloys (including CuO.8CrO.05La, CuO.8CrO.lLa, CuO.8CrO.4La, CuO.8CrO.05Y, CuO.8CrO.lY and CuO.8CrO.4Y) were studied by optical microscope, X-ray diffractometer, Scanning electron microscope and Energy-dispersive X-ray spectroscopy. The results show that La and Y refine the grains and change the distribution of microstructures of Cu-Cr alloys. The sizes of Cr particles are smaller in CuCrRE alloys than In CuCr alloy. In CuCrLa and CuCrY alloys, La and Y usually exist as compounds of CugLa and Cu5Y. These compounds distribute in the grains with sphere shape and on the grain-boundaries with slice shape.