1) hydraulic resistance
液压阻力
1.
Applying principles from hydrodynamics, and considering local losses caused from the complex structures a new hydraulic resistance model for the recoil brake is established An example for this model accords well with the classical theor
利用液压流体力学理论 ,考虑制退机内复杂结构所造成的局部损失 ,建立起液压阻力数学模型。
2) hydraulic resistance control
液压阻力控制
3) hydraulic
液压
1.
Constructional and Technical Features of Hydraulic Nine-roller Hot Plate Leveler in Shaogang;
韶钢全液压九辊热矫直机的结构和技术特点
2.
Improving of the Hydraulic System for Ladle Turntable;
钢包回转台液压系统改造
3.
The leak of the machine tool hydraulic system and solutions of it;
机床液压系统的泄漏与解决办法
4) hydraulic pressure
液压
1.
GK400N mixer hydraulic pressure and lubrication system analysis;
GK400N密炼机液压和润滑系统分析
2.
Y3180H gear-hobbing machine hydraulic pressure principle of work and fault analysis;
Y3180H型滚齿机液压工作原理和故障分析
3.
Design of round wood non-center peeling machine based on thickness detecting and hydraulic pressure;
基于测厚控制与液压的无卡轴旋切机设计
5) hydraulic system
液压
1.
Study on the Arm Structure and Hydraulic System of Intelligent Bridge_detection Vehicle;
智能桥梁检测车臂架结构及液压系统的研究
2.
The design means of the hydraulic system and the circuitry were introduced .
文章给出了旋转升降舞台总体设计思路,详细介绍了液压系统、电气控制系统设计方案,以及该液压系统的一例典型故障的诊断与维修过程。
3.
This paper analyzes the working processes of hydraulic and mechanical driving systems in caterpillar combines and focuses on the configuration method of the hydraulic driving system, the selection of the hydraulic components, the specification of the hydraulic system, the calculation and testing of the performance of the hydraulic system in some combines.
液压行走系统因其结构简单、操纵方便、转向灵活等特点已广泛在联合收割机中采用。
6) hydraulic transmission
液压
1.
Method In ordinary traction beds designed by mechanical- electrical- microprocessor controlling method,this paper put a new method useing hydraulic transmission.
方法应用液压传动技术、采用计算机专家系统控制的方法。
参考词条
补充资料:肺循环阻力(或全肺阻力)
肺循环阻力(或全肺阻力)
pulmonary circulation resistance
血液在肺部血管内流动时和血管壁之间的摩擦力和血液内部的摩擦阻力。肺动脉管壁较薄,分支短而管径大,故肺动脉的可扩性较大,对血流的阻力很小,仅0.12PRU(外周阻力单位)。肺循环动脉部分总的阻力和静脉部分总的阻力相等,故血液流动时在动脉部分的压力降落和静脉部分的压力降落相等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。