sliding under load 中文意思是什麼

sliding under load 解釋
載荷滑動
  • sliding : adj. 滑動的;易變的,不穩定的。n. 滑動。
  • under : adv 1 在下,從屬著,服從著。 bring under get under keep under 等〈參看各該動詞條〉。 The ship wen...
  • load : n 1 裝載,擔子;負擔;工作(負荷)量。2 (車船等的)裝載量;一馱,一車,一飛機。3 【電、機】(機...
  1. The effect of the friction condition including the load and the sliding velocity on the wear of the composites was studied under water - lubricated condition and dry condition

    本文還討論了在水潤滑與干摩擦條件下,載荷與滑動速率對納米復合材料摩擦磨損性能的影響。
  2. Thus it improves the lubricating performance of friction pairs. 2 ) under heavy load and high - temperature conditions, the nanometer cao particles between two friction surfaces are flattened and form a sliding system

    ( 2 )在重載和高溫條件下,兩摩擦表面間的納米氧化鈣顆粒被壓平,形成一滑動系,降低了摩擦和磨損。
  3. Under a constant applied load and sliding speed, the wear rate of cu - nanosized tib2 in - situ composites was increased with increasing the electric current. the predominant electric wear mechanisms of the cu - nanosized tib2 in - situ composites are abrasive wear and arc erosion

    在一定載荷和滑動速度下,隨電流的增加, cu -納米tib2原位復合材料的磨損率增加, cu -納米tib2原位復合材料的電接觸滑動磨損機制主要為磨粒磨損和電侵蝕磨損。
  4. The weight loss of the composites is larger under the synergism of the parameters than the simply superimpose of weight loss under the single parameter. micro - cutting is the mainly abrasion mechanism under low sliding speed and light - load

    利用磨損圖綜合分析了復合材料的摩擦磨損性能與各因素間的關系: ( 1 )各因素協同作用時復合材料的磨損失重要大於各因素單獨作用時磨損失重量的簡單疊加。
  5. In this paper, ptfe and ptfe composited with sicp, sicw, mos2p and sicp + mos2p with various ratios respectively have been obtained by compression molding. under the condition of dry friction, a systematic study has been done on the weight loss and the friction coefficient of composites and the relations between the properties and content of the filling, the load and the sliding velocity

    在干摩擦滑動磨損條件下,對ptfe材料及其復合材料的磨損失重、摩擦系數及磨損機理進行了研究,同時對其與磨損外部條件(載荷、滑動速度)和材料的內部因素(填料的含量、粒徑、種類)的關系進行了較為系統的研究。
  6. The fea model of a novel cylinder action hydraulic press has been established in commercialized software ansys by adopting coupling dofs to simulate the sliding link in the frame with analysis and calculation of the stress and the displacement of the crossbeam and the column when the frame was under centric uniform distributed load and eccentric distributed load

    摘要在商品化軟體ansys中,建立了一種新型壓力機整機的有限元模型,運用節點耦合的方法模擬滑動連接,隨後分析計算了機架承受均布載荷及偏載時橫梁和立柱的受力與變形。
  7. Owing to the interfacial cracking which occurs under higher applied load conditions, the composite with high content of tib _ 2 phase exhibited a transition from mild wear to severe wear over the applied load range from 10 n to 80 n. under moderate applied load, increasing the sliding speed caused a decrease in wear rate and friction coefficient of the in - situ composites because the formation of a protective oxide film occurred on the sliding surface and the hardness of the subsurface layer was maintained due to reinforcement of tib2 nanoparticles in the cu matrix

    隨著載荷的增加, cu -納米tib2原位復合材料的磨損率和摩擦系數增加;由於在較高載荷下發生表面開裂,高含量的tib2相增強原位復合材料發生了由輕度磨損向嚴重磨損形式的轉化。在中等載荷下由於表面保護性氧化膜的形成和基體中納米tib2相的存在使復合材料具有良好的抗軟化能力, cu -納米tib2原位復合材料的磨損率和摩擦系數隨著滑動速度的增加而下降。
  8. The paper deals with the load distribution law and the development of side resistance and end resistance of single bored pile in loess under vertical load through a great number of tests in field on single pile employing some advanced equipments such as sliding micrometers. some examples are given to demonstrate the application of these laws into optimization design of piles

    本文通過大量的單樁現場試驗,利用瑞士滑動測微等先進測試手段,分析和研究了黃土地基中鉆孔灌注樁單樁在豎向荷載作用下側阻力和端阻力的發揮特徵及荷載分佈規律,並用實例說明了如何利用這些規律進行工程優化設計。
  9. It was found that the friction force reduced when the sliding velocity increased under a relatively low applied load. the friction properties of the aligned carbon nanotube film were very uniform in test region. the film on aao template had a considerable self - lubricating effect and the friction coefficient of the film was only 0. 082

    結果表明:多孔aao模板上的定向納米碳管薄膜在干滑動條件下其摩擦力隨滑動速度的增加而減小;多孔aao模板上的定向納米碳管薄膜在大范圍內具有相同的摩擦性能,其摩擦系數僅為0 . 082 。
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