The results showed the interracial bonding was a decisive cause to influence the mechanical properties and fiber efficiency factors.
结果表明:界面粘结作用是影响力学性能和纤维效率系数的关键因素。
The toughening efficiency was related to morphology, interfacial bonding, thermoplastic particle deformation and matrix deformation of the system.
体系增韧效果与相态结构、 界面粘合、 热塑性粒子的延展性和双马基体的延展性有关。
Based on the analysis, the heat sink materials, cooling liquid, the heatsink structure, and the bonding of laser bar are optimized in order to increase the transfer efficiency.
通过分析,对微通道热沉材料、冷却液、微通道热沉的结构参数以及热沉与激光器列阵条的封装等进行了优化设计。
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