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气压伺服系统的英文

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"气压伺服系统"怎么读用"气压伺服系统"造句

英文翻译手机手机版

  • pneumatic servo

例句与用法

  • Power - mechanism characteristic analysis of a new kind of pneumatic servo system
    一种新型气压伺服系统的动力机构特性分析
  • But it is gas medium with compressibility and low viscosity that leads to low natural frequency , small damping ratio , low positional precision and rigidity , bad low speed characteristics , which limit the application of pneumatic servo technique
    但因为气体的可压缩性和低粘性,导致气压伺服系统固有频率低、阻尼比小、定位精度和定位刚度低、低速性能差,使得气压伺服技术的应用受到限制。
  • The results of simulation and experiments show that phcc system achieves a better tracking performance of typical signals than conventional pneumatic servo system , also realizes location without overshoot as well as higher position stiffness and accuracy
    仿真和试验结果表明,气液联控伺服系统的正弦信号跟踪能力、低速性能均高于常规气压伺服系统,系统可实现无超调定位,且具有较高的位置刚度和精度。
  • The pneumatic servo system is used in automation and military industry wildly as the transmission medium has the advantages including noncombustibility , no pollution , strong ability of anti - interference to electromagnetic radiation , fitness for bad work environment
    气压伺服系统由于其介质的不易燃、不易爆,系统抗电磁干扰和抗辐射能力强,工作介质无污染,适于在恶劣环境下工作等一些特点,在自动化和军事领域都得到了应用。
  • To remedy the disadvantages of conventional pneumatic servo system , pneumatic - hydraulic - combination - control ( phcc ) servo system is put forward , where the liquid medium is led into the conventional pneumatic servo system and controlled in closed - loop simultaneously
    摘要为从根本上克服常规气压伺服系统的缺点,将液体介质引入到气压伺服系统中,并对气、液进行闭环控制,从而构成了一种气、液复合介质控制系统气液联控伺服系统。
  • Therefore , it is proved that the control with high - speed on - off valves can realize the servo control function that be carried out with analog control whose control flowrate is proportional to is value . secondly , the paper builds up the mathematics model of the normal pneumatic servo system based on the symmetry structure , and the main characteristic parameters are analyzed and then introduce the theories to increase
    论文基于易于进行分析的对称结构的高速开关阀阀控气缸,建立了气压伺服系统动力机构的数学模型,分析了其主要性能参数,提出了提高纯气动伺服系统阻尼比的方法,并从理论上分析了其实现的可能性。
  • Firstly , the research and development situation of pneumatic servo system in recent years is summed up . meanwhile , the development history and present situation of interrelated control theory is reviewed . considering the cost and the capability of control of phcc servo system , high - speed on - off valves are used as control valves and controlled with pulse width modulation ( pwm ) in this system
    论文首先综述了近年来气压伺服系统的研究和发展状况,考虑到气液联控伺服系统的成本和控制的可能性,确定采用气液高速开关阀作为系统的控制阀,应用脉宽调制( pwm , pulsewidthmodulation )方法进行控制。
  • Aiming at the essential defect of pneumatic medium , pneumatic hydraulic combination control ( phcc ) servo system is formed , in which the liquid medium with low compressibility and high viscosity is introduced into a normal pneumatic servo system and is closed - looped controlled simultaneously
    气液联控伺服系统正是基于克服或者补偿气体介质的根本缺点,将可压缩性小、粘度较大的液体介质引入到常规气压伺服系统中,并进行控制而构成的一种新型的气、液介质复合控制系统。
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