...y) 6.3.2 大角度晶界的结构(Structure of Hig h Angle Grain Boundary) 6.3.3 晶界能(Grain Boundary Energy) 6.3.4 晶界的特性(Grain Boundary Chara cteristics) 6.3.5 晶界对金属塑性(Metallic Plasticit y)的影响 6....
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用热蚀刻方法测量了合金的晶界能。
The grain boundary energy was measured with thermal etching method.
再结晶晶粒的生长速度与再结晶驱动力成正比,再结晶驱动力取决于晶界能和位错密度。
The growth velocity for recrystallized grain is proportional to the driving force of recrystallization, which is determined by the grain boundary energy and dislocation density.
而不同的石墨烯面之间存在的表面能可以通过在晶界处形成空位或者位错环而得到降低。
The interface energy that exists between the sheets could be minimized by the grain boundaries by the formation of dislocations or pairs of rings.
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