关键词:活性元素;铜一金刚石复合材料;界面结合强度;接触角 [gap=747]Key words:Active element;Cu—diamond composites;Interface bonding strength;Wetting angle
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Higher interface bonding strength, lower matrix hardness and less disparity of the matrix hardness can do good to the bending level of the composites.
复合后界面结合力越强,基体硬度越低,复层间硬度差别越小,材料的弯曲性能越好。
参考来源 - 贵金属层叠复合材料的制备工艺与界面研究·2,447,543篇论文数据,部分数据来源于NoteExpress
In the present paper, a new model, a layered composite beam, is presented for determining the interface bonding strength of materials.
本文提出了一个确定层状复合材料界面结合强度的新模型,即由两种材料交替完全粘结在一起的复合梁。
Interface bonding strength of clad transition joints welded in two different welding procedures is compared and a proper welding procedure is determined.
对两组不同焊接规范下复合过渡接头的界面结合强度进行了对比,确定了合适的焊接工艺参数。
The effects of particle volume fraction, tensile rate and interface bonding strength on the properties of GB/HDPE composites were studied by tensile test and SEM observation.
通过GB/HDPE的拉伸实验和断口形貌分析, 研究了颗粒体积分数、拉伸速率、界面强度对GB/HDPE复合材料力学性能的影响。
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