Hence, in composite material design and interface engineering, some instructive suggestion are proposed on the basis of the interface effect on the fracture.
复合材料的设计思想,以及界面工程中的很多指导思想,均人为地利用了界面对断裂行为的影响。
In this thesis, we force on the interface compounds of steel-aluminum composite material in high temperature systematically and find the way to inhibiting the generation of interface compounds.
要获得高品质的复合带材,就必须在高温时能抑制界面化合物的生成,提高钢铝结合强度和加工性能。
The interface structure of composite consists of core material diffusion layer, chilling solidified layer, directional growth layer, and cellular granular layer.
复合材料界面结构由芯材扩散层、激冷凝固层、方向性生长层和胞状晶粒层组成。
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