roughness of surface 中文意思是什麼

roughness of surface 解釋
表面粗糙度
  • roughness : n. 1. 粗糙;凹凸不平,崎嶇;蓬亂。2. 粗暴;狂風暴雨。3. 未加工。4. 難聽,刺耳;味澀;不調和。5. 概略。6. 【工業】粗糙程度。
  • of : OF =Old French 古法語。
  • surface : n 1 表面;地面;水面;廣場,空地。2 外觀,外表,皮毛。3 【幾】面;切口;【航空】翼面。adj 表面的...
  1. For a good bond, an adhesive must counteract the effect of surface roughness and boundary layers.

    為了取得很好的粘結,粘結劑必須能克服表面粗糙和邊界層的反應。
  2. Secondly, the steel balls millstone is used to grind steel ball in ones steel ball factory, and process flocculus the steel balls that possess reticulate veins surface. measure the result as follows : ra ( surface roughness of steel ball ) = 0. 015 u m, wavmess = 0. 06 um, sph ( deviation from spherical form ) = 0. 010 u m, vdwl ( variation of ball lot diameter ) = 0. 015 u m

    然後利用製成的鋼球研磨板對鋼球進行超精磨削加工,加工出了表面具有網狀紋理形貌的「絨面」鋼球,利用儀器測量鋼球表面的粗糙度值達到了0 . 015 m ,表面波紋度值達到了0 . 006 m ,圓度達到了0 . 010 m ,球批直徑變動量小於0 . 015 m 。
  3. Variations in surface roughness of both guide and fiber surfaces have a marked effect on friction.

    導紗器和纖維表面粗糙度的變動,對摩擦力都有顯著影響。
  4. The results indicate : ( 1 ) the photocatalytic activity and hydrophilicity of tio2 film are affected by the factors of thickness, porosity and heat - treated temperature which lead to the changes of the hydroxyl content, adsorbability and surface roughness of the film

    熱處理溫度、薄膜厚度、孔隙率等因素對摻銀的tio :薄膜、 tioz一snoz 、 tioz一fezo3復合薄膜光催化和親水性能的影響與對純tio :薄膜的影響相似。
  5. Surface roughness of coatings affects the bioacitivity of materials, in order to change the roughness of coatings, the granularity of coating powders was changed firstly. nanometeral anatase titanium dioxide powders were prepared by hydrolysis of titanium - tetrabutoxide with ethanol in this paper. the main particle size is between 5nm and 10nm, while the size of ordinary titanium dioxide powders is about 100nm

    為了改變塗層表面的粗糙度,實驗中從改變塗層粉末的粒度入手,以鈦酸丁酯為原料,通過醇鹽水解法制備了納米級銳鈦礦型tio _ 2超細粉,粒徑約為5 10nm ,而普通二氧化鈦粉體的粒徑多在100nm左右。
  6. According to the method in paper, roughness of bedrock surface of north anchor pit of runyang bridge is described in quantitative fractal dimension, and the method of determining frictional resistance of the whole anchor under many factors is discussed, which offers a new ideal and approach for precise determination of frictional resistance of rock mass engineering

    依據文中方法,對潤揚大橋北錨碇基坑建基面粗糙度進行了定量分維描述,探討了考慮多種因素條件下整個錨碇摩阻力的確定方法,為巖體工程摩阻力的準確確定探索了一條新的思路和途徑。
  7. Influence of incidence angle on the measurement of surface roughness by laser speckle

    激光入射角對光聲信號大小的影響
  8. A ( 9, sr ) is a function of surface roughness and radar incident angle, and b is only influenced by incident angle

    通過與實測地表土壤水分含量對比,反演結果均方根誤差( rmse )為0 . 44 。
  9. Through the experiment of the interfacial bonding shear strength and the shrinkage strain of concrete, the influence of the interfacial roughness of used concrete surface and interfacial bonding agent to interfacial bonding strength is revealed ; new concrete component and the shape and size of concrete slab are main factor affecting the shearing stress in layers

    試驗結果表明:老混凝土粘結面的粗糙度和界面粘結劑類型對新老混凝土界面粘結強度影響很大;新鋪混凝土材料和混凝土路面板形狀尺寸是影響新老混凝土粘結面收縮剪應力的主要因素。
  10. Kung k. y., hsu, c. h., chen p. c., lin, j. r., 2004, effects of surface roughness on dynamic squeeze behavior of partial journal bearings with finite width, 5th wseas international conference on applied mathematics, miami, florida

    林昭仁,梁龍驥,許政行,劉昀諭, 2004 ,圓柱與平板間之磁液動擠壓膜行為,磨潤暨材料科技學術研討會
  11. Kung k. y., hsu, c. h., chen p. c., lin, j. r. ( 2004 ), “ effects of surface roughness on dynamic squeeze behavior of partial journal bearings with finite width ”, 5th wseas international conference on applied mathematics, miami, florida

    林昭仁,梁龍驥,許政行,劉昀諭( 2004 ) , 「圓柱與平板間之磁液動擠壓膜行為」 ,磨潤暨材料科技學術研討會,虎尾技術學院
  12. 1. 2. bakelite substrate : vibration absorption, a reduction of wheel abrasion and the improvement of surface roughness

    1 .電木基材:吸震作用減少砂輪磨耗改善表面粗度。
  13. It is different from under point contact that there is no stick area under line contact in the partial slip regime, and load distribution within line contact area is uneven due to roughness of surface

    磨痕分析表明,承載區域接觸不均勻,存在虛接觸區域,其大小與表面粗糙度有關,而接觸區域沒有不磨損的粘著區,不同於點接觸形式。
  14. Theory analysis shows that surface roughness ' amplitude, wavelength, and texture on the bearing contact surface have a prominent effect on high - speed cylindrical roller bearing elasto - hydrodynamic performances ; reasonable choice of surface roughness ' amplitude, wavelength, and texture may improve effectively high - speed cylindrical roller bearing elasto - hydrodynamic performances

    理論分析表明:軸承接觸表面粗糙紋理方向、粗糙度幅值及其粗糙度波長對高速圓柱滾子軸承的彈流特性具有顯著的影響;合理選擇軸承接觸表面粗糙度幅值、波長及紋理方向,可以有效改善高速圓柱滾子軸承的彈流特性。
  15. Effect of surface roughness on boundary adhesion of magnetic s puttered tin coating

    塗層界面結合力的影響
  16. Calibration specification for contact stylus instruments of surface roughness measurement by the profile method

    觸針式表面粗糙度測量儀校準規范
  17. Preparation of steel substrates before application of paints and related products - surface roughness characteristics of blast - cleaned steel substrates - method for the calibration of iso surface profile comparators and for the determination of surface profile - stylus instrument procedure

    塗塗料和有關產品前鋼基的制備.噴丸處理鋼基體的表面粗糙度.第4部分: iso表面輪廓比較儀的校準方法和表面輪廓的測定方法.觸針儀法
  18. Preparation of steel substrates before application of paints and related products. surface roughness characteristics of blast - cleaned steel substrates. part 4 : method for the calibration of iso surface profile comparators and for the determination of surface profile. stylus instrument procedure

    塗料和有關產品使用前鋼基片的制備.噴丸處理鋼基片的表面粗糙度特性.第4部分: iso表剖面比較儀的校準方法和表剖面的測定方法.觸針儀器的程序
  19. Variation of surface roughness of a sheet during superplastic deformation

    板料超塑性變形時表面粗糙度演化
  20. The possibility of using infrared camera in heat transfer experiments was discussed and the various influential factors was analysed, such as the radiation ratio of materials, roughness of surface and the transmissivity of special materials for infrared ray transmission

    摘要探討了將紅外成像儀用於傳熱實驗的可能性,分析了幾種影響因素:如被測實驗件的材料、表面粗糙度,以及用於內流傳熱實驗時需使用的能透過紅外線的特殊材料的透射率等對實驗結果的影響。
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