軸向柱塞泵 的英文怎麼說

中文拼音 [zhóuxiàngzhùbèng]
軸向柱塞泵 英文
axial piston pump
  • : 軸Ⅰ名詞1. (圓柱形的零件) axle; shaft 2. (對稱部分的直線) axis 3. (圓柱形的纏繞器物) roller; spool Ⅱ量詞(用於纏在軸上的線以及裝裱帶軸子的字畫)
  • : 名詞(吸入和排出流體的機械) pump
  1. A volume speed controlling system is selected on the fluid drive system of sugarcane mill, which consists of cam type axial piston variable pump and ram marathon fixed motor. an individual hydraulic system is adopted by the up - axis of the mill

    甘蔗壓榨機液壓驅動系統採用斜盤式變量與橫梁傳力內曲線馬拉松式定量液壓馬達組成容積調速閉式系統。
  2. Repair, installation and adjustment of zbs - h915f axial plunger pump

    軸向柱塞泵的維護安裝調試
  3. The application of fuzzy synthetic judgment in fault diagnosis of axial plunger pump

    模糊綜合評判在軸向柱塞泵故障診斷中的應用
  4. Axial plunger pump

    軸向柱塞泵
  5. Kinematics of the axial piston pump with swash plate yoke ' s angle were analysed. there was a lot of analysis about relative movement between piston and cylinder block, between piston and swash plate, between slipper and swash plate. at same time, the movement simulation curves were given

    軸向柱塞泵進行運動學分析,重點是對與缸體之間,與斜盤之間以及滑靴與斜盤之間的相對運動進行分析,並且分別給出了模擬曲線; 2
  6. A. hydraulic pressure adapts constant power variable axial piston pump for energy saving

    液壓採用恆功率自動變量軸向柱塞泵,以節省能源。
  7. The thesis consists two parts : failure analysis of hydraulic axial piston pump and maintenance of hydraulic system

    論文主要有兩個部分的內容:液壓軸向柱塞泵的故障分析和工程施工企業液壓設備的管理和維護。
  8. On research of water hydraulics, the development of water hydraulic axial piston pump is extremely vital and is much difficult

    在水壓技術的研究中,以軸向柱塞泵為代表的水壓的開發是極其關鍵的,也具有較大難度。
  9. As one of the four important parts of water hydraulic axial piston pump, the design of sliding shoes friction matching mainly takes hydrostatic bearing

    作為水壓軸向柱塞泵的四個關鍵組件之一,滑靴摩擦副的設計主要採用靜壓支承的方法。
  10. Ma yan ? ying, liu jia ? qi. experimental investigation of oil film of port plate / cylinder block in axial piston pump j. lubrication engineering, 1999, 3 : 3539

    鄭煒, ?有雄,魯寶香.軸向柱塞泵配流副油膜的實驗研究j .潤滑與密封, 1995 , 5 : 3739
  11. Zhou shi ? yu, duan zhan ? xu. experimental investigation of gap of port plate / cylinder block in axial piston pump j. chinese hydraulic & pneumatic, 1986, 3 : 1214

    許耀銘.軸向柱塞泵滑靴和配流盤摩擦副的設計與實驗研究j .液壓與氣動, 1977 , 2 : 312
  12. The forces acting on a sliding hoot, the key element of swash - plate axial piston pump. are analyzed and the formulas computing squeezing and repelling forces are derived ; the redundant squeezing force method is presented, including the selection of parts materials, squeezing force factor and the determination of geometric parameters of a sliding hoot

    摘要分析了斜盤式軸向柱塞泵的關鍵摩擦副零件滑靴的受力,導出了壓緊力和分離力的計算公式;介紹了滑靴設計方法中的剩餘壓緊力法,包括零件材料、壓緊力系數的選擇以及滑靴關鍵幾何參數的確定。
  13. In the third chapter, the mathematical models of project system have been established, and simulation has been done on the simulink enviroment of matlab software kits. the simulation focus on the effects of main parameters on the dynamic characteristics of speed control system, and the main parameters include viscosity damp coefficient and friction torque of electrical motor shaft, internal leakage coefficient of pump / motor of hydraulic circuits, gas volume of pressure accumulator, viscosity damp coefficient of cylinder piston and different running building floors, etc. at last, theoretical research effects of the flow and pressure pulsation of pump / motor on car speed and oil volume leakage theory are discussed. the fourth chapter of this thesis concerns the research on the key items about hydraulic power control system according to the ens 1 - 2 and other hydraulic elevator standards

    論文第三章針對組成系統的各個模塊進行了機理建模,並且通過matlab軟體中的simulink圖形化模擬環境進行了本課題系統的模擬研究,主要針對影響系統特性的主要參數變化,動態分析系統的輸出特性,在上下行工況中,分析了電機系粘性阻尼系數、系摩擦力矩、主迴路蓄能器迴路液壓馬達內泄漏系數、蓄能器氣體容積、液壓缸粘性阻尼摩擦系數以及不同運行樓層工況等參數對系統特性的影響;最後對軸向柱塞泵馬達的流量壓力脈動對電梯轎廂速度的影響和蓄能器內油液體積損失機理進行了理論研究。
  14. The derivation of the leakage flow rate formula of the special annular clearance between the piston and cylinder under condition of variable viscosity in the axial piston pumps was carried out. at same time, considering the questions of the eccentricity and the variable sealing length of piston friction pair, the modified coefficient of the calculation formula of the flow - rate of the leakage was given

    在變粘度、偏心以及變密封長度條件下,對軸向柱塞泵與缸孔之間的特殊圓環縫隙的泄漏流量公式進行推導,得到了該計算公式的修正系數; 6
  15. It drew the failure analysis flow sheet of hydraulic axial pump, calculated temperature increase of hydraulic system, and finished the test of hydraulic axial piston double pump. at last. through the discussion about daily maintenance & management methods and repair of hydraulic axial piston pump, it introduced the management system & contents for our corporation

    論文結合上述問題,詳細介紹了液壓系統故障分析方法,液壓系統故障分類和故障特性,建立了液壓軸向柱塞泵的故障分析流程圖,計算液壓系統的溫升與液壓功率損耗之間關系,並對工程機械用雙朕軸向柱塞泵進行了實驗。
  16. Scm as control core applied in the variable axial piston pump is introduced briefly in the paper, including structure and work principle

    摘要本文介紹了基於單片機控制的數字變量軸向柱塞泵的結構組成、工作原理,並理論推導了數字的輸出流量與輸入脈沖信號呈線性關系。
  17. According to the characteristics of the piston pump when it works with the diesel engine, the different outer load leads to different rotational speed and mechanics characteristics of the piston. in order to learn the property of the movement and mechanics of the piston but not experimentalize, simulink which is the simulation toolbox of matlab ( the most popular large - scale mathematic software ) is carried out to simulate the process of the movement and the receiving force of the piston

    根據發動機和全功率軸向柱塞泵的工作特性,在受到的外負載不同時,的轉速和受力情況就不一樣,為了能在不做實驗的情況下就能了解的運動特性和受力特點,利用現在最為流行的大型數學軟體matlab的模擬工具箱simulink對其進行了運動和受力的模擬分析。
  18. The first emphasis of the thesis is the failure analysis of hydraulic axial piston pump, the second is the example about the high temperature analysis of the k3v112dt type double pump

    其中論文主要集中在液壓軸向柱塞泵的故障理論分析及實踐中k3v112dt型雙朕溫度過高故障的實例分析上。
  19. Owing to the cylindrical surface of piston and jar hole, radial piston pump can be assembled accurately. compared with the axial piston pump, the radial piston pump is better against impact, moreover, it has longer life, higher cubage efficiency and higher control precision

    由於徑具有與缸體內孔均為圓面,易達到高精度的配合等結構特點,因此,比軸向柱塞泵耐沖擊、壽命長、容積效率高、控制精度高。
  20. Numerical simulation equation of two - dimensional large eddy current and its solution

    數字式軸向柱塞泵
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