models of adhesion interface 粘接界面模型
System of soil adhesion interface 土壤界面粘附系统
interface adhesion strength 界面粘接强度
interface adhesion mechanism 界面结合机理
It becomes clear, then, that adhesion of the fiber and the matrix at the composite interface is fundamental to the failure of the composite.
这样,显然,复合材料界面上的纤维与基体的粘接是复合材料失效的基础。
A integrated condition in interface between bioactive gradient coating and metal substrate and its influence for adhesion of coatings were explored in this experiment.
实验着重探讨了生物活性梯度涂层与金属基体的界面结合状态及其对涂层附着强度的影响。
The results show that the interfacial adhesion strength increased noticeably for composites of active aramid fiber but the fracture energy of the interface decreased.
实验结果证明,芳纶表面改性显著提高了其复合材料界面的粘结强度,相反却降低了其界面断裂能。
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