比例減壓閥 的英文怎麼說

中文拼音 [jiǎn]
比例減壓閥 英文
proportional pre ure-reducing valve
  • : Ⅰ動詞1 (比較; 較量高下、 長短、距離、好壞等) compare; compete; contrast; match; emulate 2 (比...
  • : 壓構詞成分。
  • : 名詞1 (指在某方面有支配勢力的人物或家族) established house or power group; a powerful person or...
  • 比例 : 1. (長度上縮小和放大的倍數) scale; scaling 2. (比率) proportion; ratio; proportionality
  1. Comparing and analyzing the synchronous control strategy, which brings up the new method to control the double un - symmetry jars proceed synchronously with the combination of proportional valve and servo valve, which forms closed loop control ; basing on the above methods, models are made to get mathematics models of position control system and to analyze system model theoretically by using pid controller, we can realize regulating parameters, minimizing synchronous errors and enhancing the dynamic performances ; the simulink tool box in matlab software is used to imitate the system according to the model, which not only makes the result visual and easy to adjust the parameters in interactive way but also lets us understand the effects of different parameters and optimizes the dynamic properties. the theory of plc control in dshp is discussed after advanced understanding of the system movements. hardware design and general regulation are given on the base of siemens company products s7 - 200 plc

    本文根據大量的國內外文獻,對研配液機的工作原理及設計結構進行了簡介;對位置同步的控制方法進行了較分析,提出和伺服復合控制的閉環結構來對非對稱雙缸進行同步控制電液同步控制方案;在此基礎上著重對控非對稱缸建模,最後得到位置控制系統的總體數學模型,從理論上對同步系統動態特性進行了分析,並用pid控制器進行參數整定,小雙缸同步誤差、提高系統的動態響應性能;其中控制性能的分析藉助于matlab軟體中的simulink工具箱,由已建立的數學模型形成模擬模型,得到可視化的模擬結果,從而利於交互方式下調整參數,了解不同的參數對系統的影響,優化同步系統的動態性能;在深入了解系統的動作特性后,對plc控制研配液機的原理進行了探討,針對siemens公司s7 ? 200型plc給出了硬體設計的總體規劃,編制出研配液機動作控製程序,在編程中著重研究位移傳感器與plc的通訊、雙缸同步運行的pid控制在plc上的實現及bcd碼撥盤輸入程序的植入問題。
  2. There may be exceptions to this if bypass piping is welded to the valve body or if a pressure relief hole is drilled in one side of the valve

    但是也有外,如有旁通管焊接在體上或在門的一端鉆有一個孔。
  3. Proportional valves to continuous, proportional to the implementation of components of the control, speed and direction, pressure and can prevent or to the exchange rate changes and the impact of the phenomenon of simplified systems to reduce the usage of components

    能連續地、按地控制執行元件的力、速度和方向,並能防止力或速度變化及換向時的沖擊現象簡化了系統,少了元件的使用量。
  4. Aiming at the disadvantages of present loading system applying proportional relief valve or servo valve, loading system with 3 - way proportional pressure reducing valve is proposed

    針對目前採用溢流和伺服加載存在的不足,提出在鋼坯修磨機上採用三通加載。
  5. Air filtration portfolio, air filters, valve, oil mist machine, filter valve, oil mist separator, micro - mist separator, stability activated solenoid valve, pressure gauge, micro - valve and vacuum valves, links the release of the closure - pressure valves, and pipe connection, a one - way valve, t - shelves, shelves, brackets, diaphragm - type flow switches, blades type flow switches, further growth actuator, the valve lock, precision valve, pressure switches, mechanical pressure switches, pneumatic control ratio positioning devices, and electric - gas ratio positioning devices, and telecommunications - pressure converters, electro - pneumatic proportional valve, filter valve, shuttle valve, gas - electric relay and gas indicator, delay pneumatic valve and cylinder fcl, plumbing fcl, mufflers and exhaust cleaner, the excess flow valve with silencer, a one - way valve, rapid valve, rapid joints, rapid valve with fcl, rapid joint sub - cluster gas, micro joints, gas pipes, pipe from the devices, and helical coils, pipes, channels, scissors, multiple fastener, high - speed rotary joint, 10000 threaded joints, and insert the tube joints, rotary joints began, 68. 25 rapid joints and hoses, hose fittings and rapid non - electrostatic

    空氣過濾組合空氣過濾器油霧器過濾油霧分離器微霧分離器穩定啟動電磁力表微型三通釋放式截流力開關管接頭單向t型隔板隔板托架膜片型流量開關漿葉型流量開關增速繼動器鎖定精密力開關機械式力開關氣控定位器電-氣定位器電訊號-氣轉換器電-氣過濾梭動氣-電繼電器氣源指示器氣動延時氣缸限流器管道限流器消聲器排氣潔凈器限流帶消聲器單向止回快速排氣快速接頭快速排氣帶限流器快速接頭集束分氣微型接頭氣喉管喉管脫離器螺旋管排管管道剪刀多管扣件高速旋轉接頭萬用螺紋接頭插入式管接頭旋式緊鎖接頭難燃性快速接頭和軟管不帶靜電快速接頭和軟管
  6. Electro - hydraulic control principle applied in construction machinery is analyzed in this paper ; working principle and application characteristic of electro - hydraulic proportional is lucubrated ; technique and static characteristic of electro - hydraulic proportional decompression value and electro - hydraulic proportional direction value is emphatically analyzed and studied ; electro - hydraulic proportional control mode is setup. the hydraulic circuit which can be not only suit for handle operation but also for remote operation in the same construction machinery, and the hydraulic system design methods is also introduced that the proportion control use d for the steering devices and the working devices of the machine

    本文對工程機械上應用的電液控制原理進行了分析;對電液的工作原理和應用特點進行了深入研究;重點對電液比例減壓閥和電液方向技術特徵和靜態特性進行分析研究;建立電液控制模型;提出了在同一臺工程機械上,既能滿足遙控又能滿足手控的液迴路,以及採用量控制行駛和工作裝置的液系統設計方法。
  7. Test methods for electro - hydraulic proportional pressure relief valves and electro - hydraulic proportional pressure reducing and relieving valves

    電動液安全的試驗方法
  8. Design and simulation of pneumatic proportional extra - high pressure valve

    超高氣動比例減壓閥的設計與模擬研究
  9. Test methods for electro - hydraulic proportional pressure relief valves

    電動液試驗方法
  10. That is, through analysis of the principle on flow control and " hydraulic transistor ", design and calculation of flow control characteristic as well as main parts in valve inner chamber, a piloted reducing valve will be installed between main valve and pilot valve. after a pressure - difference compensating reducing valve was added in the non - pressure compensating piloted reducing valve of the flow control valve in vlalvistor valve, the calculation on control characteristic emulation and load characteristic emulation has been carried out. the result of the calculation shows that after pressure compensating reducing valve was added, the linearity of the control characteristics has been greatly improved thus eliminating influence upon outlet flow by load pressure - change of the hydraulic system and improving performance characteristics of the hydraulic component

    文章還在對瑞典valvistor的插裝研究的基礎上,提出了一種新的流量控制原理,即:通過對流量控制和「液晶體管」原理的分析、流量控制特性及內腔主要結構件的設計計算,在主和導之間增設先導,並進一步對valvistor的流量控制之無力補償先導、加入差補償后的控制特性進行了模擬計算和負載特性模擬計算,結果表明:增設力補償先導增后,其控制特性曲線變得非常線性,從而消除了液系統負載力變化對主輸出流量的影響。
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