adhesion wear 中文意思是什麼

adhesion wear 解釋
粘附性磨耗
  • adhesion : n. 1. 黏附,附著,膠著。2. 黏附力;黏附(現象)。3. 追隨;皈依;信奉;同意,加入。4. 【醫學】黏連(物)。
  • wear : vt (wore ; worn )1 穿著,戴著,掛著,佩著,帶著。2 留著(胡須等);有著(記憶等)。3 帶著(某...
  1. The result shows that with the addition of rare earth elements, ultrasonic irradiation and magnetic field, the chemical component, surface configuration, microstructure and properties of electroless co - ni - b and co - fe - b alloy changes remarkably. such kind of change can be described as the followings. firstly the depositing speed of electroless alloy bath is raised while the polarizability and cathodic overpotential are reduced ; secondly the surface quality of the alloy coating and adhesion of the coating and matrix are improved ; thirdly in the coatings the content of the elements in the transient group increases, but the content of cobalt decreased ; fourthly the amorphous structure is transformed to microcrystal structure and polycrystal structure ; fifthly the microhardness and wear resistance of the coating are enhanced ; sixthly coercitive force is reduced, and magnetoconductivity of the coating is increased ; lastly the magnetic intensity of the coating increases with the addition of energy and light rare earth elements such as ce, la and decreases with the addition of heavy rare earth elements such as y. on the other side, when the alloy coatings passes through the heat treatment under the temperature of 250 or 500, their properties will change

    結果顯示化學沉積co - ni - b 、 co - fe - b工藝在稀土元素( ce 、 la 、 y 、 dy ) 、能量(超聲波、磁場)介入后,沉積過程、合金成分、鍍層形貌結構和性能都有顯著變化,表現在:鍍液的陰極極化過電位和極化度降低,沉積速度提高;鍍層的結合力、表面質量改善;鍍層中過渡族元素的含量增加,輕元素硼的含量降低,同時證實了稀土元素與過渡族元素共沉積的可能性;鍍層的顯微結構由非晶態向微晶和多晶態轉變;鍍層的顯微硬度與耐磨性提高,力學性能優化;鍍層的矯頑力降低;磁導率提高;鍍層的磁化強度在能量(超聲波、磁場)和輕稀土元素ce 、 la介入后提高,重稀土元素y介入后降低。
  2. Friction coefficient caused by adhesion and ploughing relevant to impact wear

    與沖蝕有關的粘著與犁溝摩擦系數
  3. This was related to the changes in the wear mechanisms induced by the introduction of the mmt as the filler, under water - lubricated condition, up was dominated by adhesion wear and fatigue peeling off in water - lubricated sliding against the steel, though the adhesion wear and fatigue peeling off were considerably abated for the nanocomposite under the same test condition

    這是由於蒙脫土的加入改變了材料的摩擦磨損機理。不飽和聚酯主要是粘著磨損與疲勞開裂。在水潤滑條件下,納米復合材料的磨損形式發生改變,而在干摩擦條件下,納米復合材料的磨損形式依舊以粘著磨損為主。
  4. Abstract : the paper analyzes the wear resistance and anti - adhesion of 20 and 45 steel formed in austenitic ion - nitrocarburising and comparisons to the general ion - nitrocarburising. the experiment shows that austenitization - nitrocarburising can be carried out at 590 700, its wear resistance and anti - adhesion is the best at 630 , the worst at 660 and anti - adhesion is the best at 630 , the worst at 660 and the mediate at 570 600. with the help of raising processing temperature properly and speeding up the process the wear behavior can be improved

    文摘:研究20鋼、 45鋼經奧氏體離子氮碳共滲后的耐磨性和抗咬合性,並與普通離子氮碳共滲后的作了比較,試驗表明:在570 700范圍內進行離子氮碳共滲后,其耐磨性和抗咬合性以630處理時為最佳, 660處理時最差,而570 600處理時則介於兩者之間,通過適當提高共滲溫度,再提高滲速,從而縮短共滲時間的同時,可以提高耐磨損性能。
  5. The main wear mechanisms are adhesion, diffusion and fatigue

    磨損機理主要是粘結磨損、擴散磨損以及疲勞磨損。
  6. The sem photos show the wear mechanisms of pure up are fatigue detachment and light cut form, but wear mechanisms of nanocomposites are abrasive filler wear and adhesion wear

    並通過sem照片分析確定純不飽和聚酯的磨損為疲勞剝離和擦傷形式,復合材料為磨料磨損和粘著磨損。
  7. In order to apply it more widely some mechanical properties of the coating and physical properties of it, including both tensile and shear adhesion strength, the coating cohesion strength, hardness, wear resistance and thermal expansion are investigated

    為了使其得到更大范圍的應用,對電弧噴塗鋁青銅塗層的某些力學性能(塗層與鋼基體的抗拉結合強度、塗層與鋼基體的剪切強度、塗層自身結合強度、塗層的硬度、塗層的摩擦磨損性能)進行了測試與研究。
  8. Five times using time with low wear prevent the adhesion of materials

    延壽5倍以上無明顯磨損,大大降低材料黏附現象
  9. The varnish has excellent adhesion, and high wear resistance, excellent impact resistance, water resistance with good corrosion resistance, temperature curing

    該漆具有極好的附著力,極高地耐磨性,耐沖擊性能優良,耐水耐酸堿性較好,可常溫固化。
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