1) interfacial adhesion strength
界面粘接强度
2) interface bond strength
界面粘结强度
1.
Experimental studies on interface bond strength of non-metallic anchors;
非金属锚杆界面粘结强度试验研究
2.
Based on the test in field,the interface bond strength of the soil nail is analized and calculated.
在现场试验的基础上对界面粘结强度进行了分析计算,对今后土钉的设计、施工有一定的参考价值。
3) interfacial debonding strength
界面脱粘强度
1.
The interfacial debonding strength between polypropylene filament and cement paste and its affecting factors were studied by use of pull out method.
采用纤维单丝自水泥基体中拔出方法研究了聚丙烯纤维单丝与水泥石之间的界面脱粘强度及其影响因素 。
4) interfacial bond strength
界面粘结强度
1.
Reinforcement methods of concrete interfacial bond strength
增强混凝土界面粘结强度的方法
2.
Based on pullout tests of 48 specimens,interfacial bond strength between CFRP strand anchors and different bonding agents was systematically studied.
在此基础上,通过48个试件的拉拔试验,在国内首次对碳纤维塑料筋锚杆与多种粘结介质之间的界面粘结强度进行了研究。
3.
The results show that the interfacial bond strength of different embedding lengths in M30 mortar almost is a constant 3.
试验表明:在M 30砂浆中,纤维不同埋置长度的界面粘结强度基本为一常数3。
5) bonding strength
界面粘结强度
1.
The experiment methods of the bonding strength between deformed steel fiber and concrete was self-designed.
试验结果表明:混凝土基体强度、钢纤维形状以及钢纤维埋角是影响钢纤维与混凝土界面粘结强度以及异形钢纤维在拔出过程中所耗能量的主要因素;界面粘结强度随混凝土基体强度的提高而增大;B型(书钉型)钢纤维的粘结性能和拔出时所耗能量均优于J型(剪切平直型)钢纤维;界面粘结强度以及钢纤维拔出时的总耗能随钢纤维埋角的增大而降低。
2.
The test results indicate the shape and the embedding angle of the steel-fiber are the key factors of the pull out load-displacement curve and the bonding strength, the bonding performance of hooked steel-fiber is better than that of the smooth steel-fiber, the bonding strength decreases in .
试验结果表明,钢纤维形状、钢纤维埋角是影响拔出荷载位移—曲线以及界面粘结强度的重要因素,贝卡尔特双弯钩钢纤维与混凝土基体界面粘结性能优于剪切平直型钢纤维,界面粘结强度随埋角的增大而减小。
6) interfacial adhesion
界面粘接
1.
Surface performance and effects on interfacial adhesion of several high performance fibers;
几种高性能纤维的表面性能及其对界面粘接的影响
2.
Study on interfacial adhesion of PE and UPR based composite material;
PE/UPR玻璃钢界面粘接研究
3.
A new method of improving the interfacial adhesion of incompatible polymer blend is introduced.
介绍了改善不相容聚合物共混物界面粘接的一种崭新方法,应用SEM技术以动态热力学进行研究。
补充资料:剥离粘接强度
分子式:
CAS号:
性质:在规定的剥离条件下,使胶接试样分离时单位宽度所能承受的载荷,用kN/m表示。
CAS号:
性质:在规定的剥离条件下,使胶接试样分离时单位宽度所能承受的载荷,用kN/m表示。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条