無粘性 的英文怎麼說

中文拼音 [niánxìng]
無粘性 英文
incoherent
  • : 無Ⅰ動詞(沒有) not have; there is not; be without Ⅱ名詞1 (沒有) nothing; nil 2 (姓氏) a surn...
  • : 粘動詞(粘附) glue; stick; paste; adhere to; bond
  • : Ⅰ名詞1 (性格) nature; character; disposition 2 (性能; 性質) property; quality 3 (性別) sex ...
  1. It is suitable for automatic packaging of loose, nonsticky, granular and thick powder products in the pharmarceeutical, the food, the plant, the chemical products, such as instant drink, pellet, monosodium glutamate, white sugar, soup stuff, black coffee, wheat groats etc

    適用於醫藥、食品、植物種子、化工等產品的鬆散狀無粘性粗粉狀、顆粒狀物料的自動包裝,如:沖劑、小丸、味精、白糖、湯料、麥片等。
  2. Nonviscous fluid, inviscid fluid

    無粘性流體
  3. Influence of materials on water intended for human consumption - influence due to migration - test method for non - metallic and non - cementitious site - applied materials

    材料對人類用水的影響.由遷移造成的影響.非金屬無粘性的現場使用材料的試驗方法
  4. Influence of materials on water intended for human consumption - influence due to migration - part 2 : test method for non - metallic and non - cementitious site - applied materials

    材料對人類用水的影響.由遷移造成的影響.第2部分:非金屬無粘性的現場使用材料的試驗方法
  5. Angle of repose of cohesionless soils test

    室內土工試驗無粘性土天然坡角試驗
  6. Abstract : on the basis of general principles of mechanics and critical state soil mechanics theory, a theoretical formula determining the coefficient of earth pressure at rest for cohesionless soil is derived by means of combining hypoplasticity with critical state soil mechanics. the formula has a simple form and is only related to the effective angle of internal friction of soil. there is a slight difference between the calculated value of the formula and that of other formulae. the further investigation of the formula shows that it can be used to determine the coefficient of earth pressure at rest of cohesionless soil

    文摘:在滿足一般力學原理和臨界狀態土力學理論的基礎上,本文將亞塑理論與臨界狀態土力學相結合,推出了一個計算無粘性土靜止土壓力系數的理論公式.該公式形式簡單,僅與土的有效內摩擦角有關,其計算結果與常見的多個經驗公式的計算結果只有微小的差別.文中討論結果表明,該公式可用於確定無粘性土的靜止土壓力系數
  7. Moreover, it is a compatible raw material under the terms of the food sanitation law. also, through the use of newly developed complex technology, we have given this coating excellent non - adhesion, low friction and sliding capabilities, etc. thanks to these capabilities it has become possible to adjust the surface treatment performance to match a wide range of application purposes, equipment, etc

    聚氨酯本身具有耐磨損,高摩擦系數特,還有防止靜電的導電特,保證工廠安全的自動溶解特,亦可用作食品衛生法對應的原料,此外通過最新開發的復合技術具備了無粘性,低摩擦,光滑等諸多優點,用途更廣泛,可適用於各種器械的表面處理施工。
  8. The instability in the natural convection boundary layer initiates with the buoyancy eigenmode and develops into non - linear stage with the turbulization of the buoyancy eigenmode. in the mean time, the invisid eigenmode at the inflexion point appears and begins to increase at the outer layer. experimental results show that the turbulent layer near the maximum velocity point can be detected while the reformed grashof number

    自然對流邊界層的穩定由浮力振型失穩開始,並隨著浮力振型的湍流化進入非線階段,與此同時,無粘性振型在外層開始失穩。實驗結果表明,修正格拉斯霍夫數grashof
  9. The resonant flow was researched in this paper, which is an incompressible, inviscid fluid with surface tension and different variational bottoms ; the effects of different variational walls on the nonlinear surface waves were analyzed

    本文通過對具有表面張力的、不可壓縮、無粘性流體流過不同壁面時的共振流動進行研究,分析了壁面變化對非線表面波的影響。
  10. The exponent of singularity is determined through asymptotic analyses, and the plastic shock is eliminated that exists in non - viscosity solutions

    經過對奇異場的漸近分析確定冪奇異的階次,消除了無粘性解中存在的塑激波。
  11. It is suitable for automatically packaging of loose nonsticky , granular and poedered products such as foodstuffs , medicines tea , chemicals and seed etc

    適用於食品醫藥、茶葉、植物種子化工等產品的鬆散無粘性粉狀,粒狀物品自動包裝。
  12. The flow equations are solved using finite difference technique. using body - fitted curvilinear coordinate system treated the boundary conditions. by iteratively solving the flow governing equation and the blade equation, the design of axial flow pump impeller in the quasi - three - dimensional rotational flow can be performed according to the angular momentum distribution, the blade which was designed in the lifting method, flow channel and the blade thickness given

    其次在流動無粘性、不可壓及考慮葉片厚度的條件下,依據葉輪內的流動特,推導了葉輪內三維流動周向平均流動控制方程以及葉片方程;在貼體坐標系中,採用有限差分法求解流動方程和葉片方程;在採用升力法設計出的葉片作為初始葉片、給定葉片速度矩分佈、葉片厚度分佈和葉輪軸面流道幾何形狀條件下,迭代求解流動控制方程及葉片方程,實現了軸流泵葉輪的準三維方法設計。
  13. The presence of small amount of liquid at grain boundaries tends to form thin viscous layer which surrounds the finer grains. intergranular fracture may occur at the grain boundaries between two fine grains not covered by viscous phases. the high ductility achieved at low strain rates is generally attributed to dislocation glide - creep accommodation mechanisms

    原始晶界上產生少量液相,形成薄的固液共存層並包圍細化的晶粒,沿晶斷裂主要發生在無粘性層的細晶粒間;而在較低應變速率下,三叉晶界位錯攀援?蠕變協調機制鬆弛晶界滑移產生的應力集中,晶界上產生較多液相,有利於晶界滑移進行。
  14. The influencing element and the equation of the shear strength of the no viscous moraine and gravel, and strain softening, dilatancy ( shrinkage ) were analyzed

    分析了堆石料等無粘性粒狀土的抗剪強度影響因素和合理抗剪強度表達式,應變軟化、剪脹等質。
  15. Through test and research of zipingpu reservoir concrete faced rockfill dam ' s material and finite element analysis of the dam, physics and mechanical characteristics were studied, such as characteristics of rock, compaction, permeability, compressibility and so on, of the no viscous moraine and gravel. at the same time, the mutual relation of physics and mechanical characteristics were studied

    對紫坪鋪面板堆石壩築壩料試驗研究,了解堆石料等無粘性粒狀土的巖、級配、壓實、滲透、壓縮等物理力學質,以及物理與力學之間的相互關系。
  16. According to the coulomb ' s earth pressure theory, from the condition of the static equilibrium of the force when the slide wedge was in limit equilibrium, a formula was derivated for the calculation of active earth pressure of cohesive or non - cohesive backfill soils

    摘要根據庫倫土壓力的計算原理,從滑動楔體處于極限平衡狀態時力的靜力平衡條件出發,推導出了計算土或無粘性土主動土壓力的公式。
  17. In our opinion, firm is a kind of coherent contract, while market is not

    企業是一種有的契約,而市場是一種無粘性的契約。
  18. The stress distribution in sandpile

    無粘性顆粒堆底的應力分佈
  19. This feature reflects the physical phenomenon of breaking of waves and development of shock waves. in the fields of fulid dynamics, ( 0. 2. 1 ) is an approximation of small visvosity phenomenon. if viscosity ( or the diffusion term, two derivatives ) are added to ( 0. 2. 1 ), it can be researched in the classical way which say that the solutions become very smooth immediately even for coarse inital data because of the diffusion of viscosity. a natural idea ( method of regularity ) is obtained as follows : solutions of the viscous convection - diffusion pr oblem approachs to the solutions of ( 0. 2. 1 ) when the viscosity goes to zeros. another method is numerical method such as difference methods, finite element method, spectrum method or finite volume method etc. numerical solutions which is constructed from the numerical scheme approximate to the solutions of the hyperbolic con - ervation laws ( 0. 2. 1 ) as the discretation parameter goes to zero. the aim of these two methods is to construct approximate solutions and then to conside the stability of approximate so - lutions ( i, e. the upper bound of approximate solutions in the suitable norms, especally for that independent of the approximate parameters ). using the compactness framework ( such as bv compactness, l1 compactness and compensated compactness etc ) and the fact that the truncation is small, the approximate function consquence approch to a function which is exactly the solutions of ( 0. 2. 1 ) in some sense of definiton

    當考慮后,即在數學上反映為( 0 . 1 . 1 )中多了擴散項(二階導數項) ,即使很粗糙的初始數據,解在瞬間內變的很光滑,這由於流體的擴散引起,這種對流-擴散問題可用古典的微分方程來研究。自然的想法就是當趨于零時,帶的對流-擴散問題的解在某意義下趨于無粘性問題( 0 . 1 . 1 )的解,這就是正則化方法。另一辦法從離散(數值)角度上研究僅有對流項的守恆律( 0 . 1 . 1 ) ,如構造它的差分格式,甚至更一般的有限體積格式,有限元及譜方法等,從這些格式構造近似解(常表現為分片多項式)來逼近原守恆律的解。
  20. It is suitable for automatic packging of loose, granular and thick powder products in the pharmarceeutical, the food, the plant germ, the chemical products, suchas instant drink, pellet, monosodium glutamate, white sugar, soup stuff, black coffee wheatgroats etc

    適用於醫藥、食品、植物種子、化工等產品中的鬆散狀無粘性粗粉狀、顆粒狀和料的自動包裝如:沖劑、小丸、味精、白糖、湯料、麥片等。
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