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1)  interfacial bonding
界面结合
1.
The reason is believed to be the improved interfacial bonding.
研究表明,在碳化硅复合材料表面化学镀一层镍,能够较好地改善增强体与基体的界面结合,使得碳化硅复合材料的抗弯强度、冲击韧性及宏观硬度均有了明显的提高。
2.
The fracture surface of the wires studied by scanning electron microscopy (SEM) shows a suitable interfacial bonding between the fiber and aluminum.
复合丝拉伸断口的扫描电镜(SEM) 观察可见断面有一定起伏,部分纤维拔出但长度较短,表明纤维与基体具有适当的界面结合
3.
Al/Diamond composites were fabricated by Spark Plasma Sintering(SPS) under Solid-phase sintering,changes of interfacial bonding during sintering process were investigated mainly.
使用放电等离子烧结(SPS)固相烧结条件下制备Al/Diamond复合材料,重点研究烧结过程中基体与增强体两相界面结合状态随烧结时间的变化规律。
2)  interface bonding
界面结合
1.
The changes of the surface smooth degree and the interface bonding after the level off rolling were investigated.
研究了高温平整轧制前后钢带表面平整度及界面结合情况的变化 ,并进一步探讨了轧制参数对界面结合强度的影响·分析了带坯复合界面的演化机理·结果表明 :平整轧制可明显改善钢带表面的平整度 ,提高界面结合强度 ;轧制温度、轧制压下量等工艺参数对界面结合有较大影响 ,而轧制速度影响不大 ;平整轧制时 ,反向凝固带坯复合界面发生演化 ,使界面结合增强 ,其机理为咬合机制、互扩散机制及固溶作用机制
2.
The influence of laser power and scanning velocity on interface bonding between clad layer and substrate and uniformity of microstructure in composite surface layer was studied.
研究了激光功率、扫描速度对原位合成TiCp/Al表层复合材料与基底的界面结合和熔覆层组织均匀性的影响。
3.
In this paper, it is mainly from dispersion and interface bonding point of view suggested that the multi-walled carbon nanotubes (MWNTs) were filled into polymer matrix.
本文主要从分散和界面结合的角度出发研究了多壁纳米碳管(MWNTs)与聚合物的复合,通过对复合材料微结构和力学性能的表征,分析了碳管在聚合物中的作用机理。
3)  Interfacial adhesion
界面结合
1.
The interfacial adhesion between SGF and matrix was enhanced.
SGF与基体间的界面结合得到显著增强,且EOC-g-MAH在SGF表面形成了颗粒黏附结构,大幅提高了SGF/PP泡沫复合材料的冲击韧度,并在质量分数为8%时达到最大值,增幅为77%。
2.
The dispersion stability of pristine VGCF and silanized VGCF in solvents,dispersion in composites and interfacial adhesion with matrix,are investigated by optical observation and scanning electron microscopy.
结果显示:不同浓度硅烷功能化处理的VGCF在溶剂中具有不同的分散稳定性;在制备的气相生长碳纤维/形状记忆聚氨酯复合材料中,不同浓度硅烷功能化处理的VGCF在基体中分散性不同;不同浓度硅烷功能化处理的VGCF在复合材料中与基体的界面结合均得到一定程度提高,将有利于有效增强复合材料的力学性能。
4)  interface combining
界面结合
1.
The result shows that the low the humidity is,the better the interface combining effect is.
研究不同湿度预处理对新老混凝土的结合影响,采用拉拔试验及显微硬度评价界面结合效果。
2.
The mechanism of the interface combining of cement & fly ash composite sandwich panels is discussed.
以聚苯乙烯泡沫塑料板、水泥、粉煤灰、增强纤维和外加剂为主要原料生产的水泥/粉煤灰复合夹芯墙板,具有节能保温效果优异和工业废物粉煤灰利用率高的特点,初步探讨水泥/粉煤灰复合夹芯墙板的界面结合机理。
5)  interfacial bond
界面结合
1.
Computer-simulation technique was used in the present study to probe the effect of interfacial bonding strength on the tensile fracture behavior of a metal-matrix composite by improving the as-verified computer program simulating the fracture process of the composite.
在改进已验证的金属基复合材料拉伸断裂过程微机模拟程序的基础上,模拟研究了界面结合强度对该材料断裂行为的影响。
6)  interface binding
界面结合
1.
This paper is focused on improving the interface bonding strength of hard grain phase and copper alloy matrix in the WC particle reinforced composite to raise its wear resistance, and revealing the relationship between the wear resistance and interface binding, the wear resistance and microstructure, and the wear resistance and abrasion mechanism.
为了提高硬质颗粒复合合金材料的耐磨性并揭示其与界面结合、微观组织及磨损机理之间的关系,本文设计并通过钎焊法,在普通铸钢件表面制得了厚度可达30mm的WC颗粒增强铜基合金覆层,测试分析了上述各种因素对此覆层耐磨性的影响。
补充资料:再结合
分子式:
CAS号:

性质:又称复合。(一)由两个增长游离基结合形成一饱和大分子而终止反应,称为再结合。(二)半导体中电子受光作用从价带激发到导带,创造了电子-空穴对,该固体表面可能会通过“复合中心”俘获少数载流子和多数载流子,造成电子-空穴对的部分消失,从而达到稳定状态,这一过程称为复合。

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