1) coupling flange
接头法兰<液>
2) Flange Joint
法兰接头
1.
Finite Element Analysis and Optimum Design of the Failure of the Inlet Pipeline on the Smoke Gas Machine and its Flange Jointsin a Catalyst Cracking Plant;
催化裂化装置烟机入口管线及其法兰接头失效的有限元分析及优化设计
2.
In this paper, only based on the current application of the flange joints used in the liquidated gas stations, the problems existing were discussed, some of which should be improved or, at least, be attached importance.
影响法兰接头密封性能的因素很多,本文也仅仅结合当前液化气站法兰接头应用的现状和存在问题进行分析并提出改进或应引起重视的几个问题,供有关部门参考。
3.
In order to solve the leakage problem of the flange joints in braking pipeline system for present freight cars,analysis and investigation are made on the present flange joints structure and operation of freight cars in field,and improvement is made on the flange joints.
为解决现有货车制动系统管系法兰接头漏泄问题,对现有货车用法兰接头结构、现场运用情况等进行了分析、调查,并对法兰接头做了较大改进。
3) flanged joint
法兰接头
1.
Creep relaxation of bolted flanged joints often gradually results in residual stress reduction of the gasket,which gradually makes the joints reliability lower and finally leads to leakage failure at elevated temperature.
长期工作在高温下的螺栓法兰接头,由于密封垫片和螺栓的蠕变松弛,使得垫片上的残余应力逐渐减小,法兰接头的密封可靠性逐渐降低,并最终导致泄漏失效。
2.
The static temperature field distribution of flanged joints was simulated by 3-D FEA,the results show that the calculative values accord well with data of the measurement.
利用3-D有限元法模拟了法兰接头的稳态温度场分布,结果表明计算值与实测数据吻合较好。
4) joint flange
接头法兰
5) flange fitting
法兰管接头
6) flanged fitting
法兰式接头
补充资料:无柄液滴法、躺滴法、座滴法等
分子式:
CAS号:
性质:又称无柄液滴法、躺滴法、座滴法等。根据液面外形求算表(界)面张力的一种方法。当待测液液滴稳定地停在水平固体表面上,其外形与液体表面张力γ有关。根据巴什弗思–亚当斯(Bashforth-Adams)方程可有以下关系式ρ1和ρ2分别为待测液体及液滴外介质的密度,g为重力加速度,β为形状因子,b为大小因子。当液体与固体表面接触角大于90°时可根据测出的液滴的赤道半径及其与液滴顶点的垂直距离数值查表得出相应的β及b值,从而算出表面张力γ。本法简便,适用于吸附平衡时间长的体系和低表面张力的测定;也能用于测定界面张力及熔融金属的表(界)面张力。
CAS号:
性质:又称无柄液滴法、躺滴法、座滴法等。根据液面外形求算表(界)面张力的一种方法。当待测液液滴稳定地停在水平固体表面上,其外形与液体表面张力γ有关。根据巴什弗思–亚当斯(Bashforth-Adams)方程可有以下关系式ρ1和ρ2分别为待测液体及液滴外介质的密度,g为重力加速度,β为形状因子,b为大小因子。当液体与固体表面接触角大于90°时可根据测出的液滴的赤道半径及其与液滴顶点的垂直距离数值查表得出相应的β及b值,从而算出表面张力γ。本法简便,适用于吸附平衡时间长的体系和低表面张力的测定;也能用于测定界面张力及熔融金属的表(界)面张力。
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