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关注:1
2013-05-23 12:21
求翻译:由上图对比可知,在不同外场作用下熔体内外分布情况有所差别,在组合电磁场作用下的Al3Ti颗粒形貌与无外场和单一磁场情况下相比,Al3Ti颗粒相的尖角发生明显钝化,颗粒尺寸约为1-3um,与图1、2相比熔体内外颗粒分布较均匀,Al3Ti颗粒的尖角发生了更为明显的钝化,这对提高复合材料的性能十分有利。是什么意思?![]() ![]() 由上图对比可知,在不同外场作用下熔体内外分布情况有所差别,在组合电磁场作用下的Al3Ti颗粒形貌与无外场和单一磁场情况下相比,Al3Ti颗粒相的尖角发生明显钝化,颗粒尺寸约为1-3um,与图1、2相比熔体内外颗粒分布较均匀,Al3Ti颗粒的尖角发生了更为明显的钝化,这对提高复合材料的性能十分有利。
问题补充: |
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2013-05-23 12:21:38
The figure contrast shows that the melt inside and outside in the field under the distribution of different particle morphology in the combined electromagnetic field al3ti compared to the case without external field and a single magnetic field, the al3ti particle sharp corners occur significantly bl
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2013-05-23 12:23:18
From the figure, in a different role within and outside the melt distribution vary, the electromagnetic fields in the combination of 3 Al Ti particles with no outside appearance and a single magnetic field than 3 Al Ti particles, which occurs at the edges of the clear passivation, particle size is a
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2013-05-23 12:24:58
May know by on chart contrast, inside and outside the melt the distribution situation has a difference under the different outfield function, with does not have in the outfield and the sole magnetic field situation under the combination electromagnetic field function Al3Ti pellet appearance compares
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2013-05-23 12:26:38
By Shang figure contrast known, in different outfield role Xia melt body both within and outside the distribution situation has difference, in combination electric magnetic field role Xia of Al3Ti particles morphology and no outfield and single magnetic field situation Xia compared to, Al3Ti particl
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2013-05-23 12:28:18
正在翻译,请等待...
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