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1)  interfacial shear strength
界面剪切强度
1.
The results showed that the interfacial shear strength between PBO fiber and epoxy resin were greatly improved after the modification,the.
通过单丝拔出实验研究了偶联剂对不同表面形态纤维的表面处理情况,结果表明:用偶联剂表面处理后,纤维与树脂间的界面剪切强度得到提高,偶联剂对未经烘干纤维表面处理比对烘干纤维处理的效果要好,与原丝相比,提高率可达69。
2.
A method of preparing single fiber pull-out specimens was designed,and the interfacial shear strength(IFSS) of Bf/epoxy resin composites was measured by single fiber pull-out rest.
设计了一种单根硼纤维拔出试样制备方法,并测试了不同树脂基体的硼纤维/环氧复合材料的界面剪切强度;研究了单根硼纤维拔出界面破坏过程。
3.
The single fiber fragmentation test has been used to determine the interfacial shear strength of composite materials.
单纤维段裂试验作为复合材料界面剪切强度的一种测试方法被沿用至今。
2)  IFSS
界面剪切强度
1.
Results showed that the interfacial shear strength (IFSS) values of the CF with modified sizing and unmodified sizing were in.
结果表明:炭纤维经改性乳液上浆剂和未改性乳液上浆剂上浆后,与未上浆相比,其单纤维复合材料的界面剪切强度(IFSS)分别提高了79%和41%,复合材料的层间剪切强度(ILSS)分别提高了14%和9%。
2.
The interfacial shear strength (IFSS) between fibers and resin was measured by the microbond test.
用Microbond测试方法表征了纤维与树脂基体的界面剪切强度,并用SEM观察微复合材料破坏形貌。
3.
Surface morphology,chemical composition,surface wettability,interfacial shear strengths(IFSS) to epoxy and fiber strength for PBO fibers were determined using scanning electron microscope(SEM),X-ray photoelectron spectroscopy(XPS),water contact angle measurements,micro-bond pull out tests and single fiber tensile tests,respectively.
通过SEM、XPS和静态接触角测试对处理前后纤维的表面形态、元素组成和表面浸润性能进行分析与表征,并采用Micro-bond测试方法测量纤维/环氧间界面剪切强度IFSS,利用单纤维拉伸测试评价等离子体处理对纤维力学性能的损伤。
3)  interfacial shearing strength
界面强度剪切
4)  test method of interfacial shear strength
界面剪切强度试验方法
5)  microindenter
界面摩擦剪切强度
1.
A microindenter, made by Xian Jiaotong Univerity, is used to apply a force to the end of the single fiber and depress it below the matrix.
由于试件很薄、可估算得界面摩擦剪切强度。
6)  interfacial shear viscosity
界面剪切黏度
1.
Effects of petroleum compound system on oil-water interfacial shear viscosity of crude oil treated with alkali
复合体系对与碱反应后原油油水界面剪切黏度的影响
2.
The interfacial film properties of resin and asphaltene separated from Saudi Arabia crude oil were investigated by interfacial shear viscosity,and explained by the molecular properties of the resin and asphaltene studied by IR,UV and VOP.
对含有胶质、沥青质的模拟油和模拟水体系,测定了其界面张力和界面剪切黏度。
3.
The molecular structures of asphaltenes and resins in Shengli crude oil were studied by IR,UV,and intensity of the interfacial film between oil and water was investigated by interfacial shear viscosity measurements,and the stability of emulsions was also researched.
采用红外和紫外光谱分析了胜利原油中胶质和沥青质的结构,采用界面剪切黏度对其油、水界面膜强度进行了表征,测定了胶质和沥青质模拟油油包水乳状液的稳定性。
补充资料:层间剪切强度
分子式:
CAS号:

性质:层压件和纤维增强复合材料中层与层之间的最大剪切强度。作用于面上的应力与面相平行。其值较小。如树脂为环氧体系,增强材料为玻璃纤维时,纤维方向的拉伸强度达103MPa,而层间剪切强度为40~50MPa。

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