熱反應彈 的英文怎麼說

中文拼音 [fǎnyīngdàn]
熱反應彈 英文
thermal bounce
  • : Ⅰ名詞1 (方向相背) reverse side 2 (造反) rebellion 3 (指反革命、反動派) counterrevolutionari...
  • : 應動詞1 (回答) answer; respond to; echo 2 (滿足要求) comply with; grant 3 (順應; 適應) suit...
  • : 彈名詞1. (彈子; 小球形的東西) ball; pellet 2. (內裝爆炸物, 具有破壞和殺傷能力的東西) bullet; bomb
  1. Secondly, based on the syntony frequency and the elasticity mechanics and other correlative professional knowledge, establishes a suit of fsm vibration module system, selects the structure, material and the process and treatment technique of the elastic element in the elastic system of the mirror, analyzes a lot of factors which affect the structure of the rapid controlling reflector and provides the derivation formula

    以諧振頻率為出發點,利用性力學等相關專業知識,建立一套fsm的振動模塊系統;確立了射鏡性系統中性元件的結構、材料的選擇,及加工,處理。分析了影響快速控制射鏡結構的諸多因素,給出其相關推導公式,最後用solidedge和cosmos軟體對該結構進行了計算機模擬。
  2. Nothing less than a fission bomb can ignite a thermonuclear reaction.

    威力比一個裂變炸小的任何東西都不能點燃
  3. Abstract : the rare earth - containing psbr sheet was prepared through vinyl pyridine - sbr ( psbr ) latex reacted with rare earth alkoxide, and the thermal oxidation resistance of rare earth - containing composite elastomer was studied

    文摘:利用稀土醇鹽與psbr橡膠乳液進行獲得含稀土復合性材料進行抗氧化研究。
  4. It is not, however, the source of a modern bomb ' s main explosive power, for just as the chemical explosives trigger a fission explosion by compressing the plutonium, that fission explosion is used to ignite the third stage, a still - larger fusion explosion, by compressing and heating the main part of the bomb

    然而,該連鎖並不是核主要爆炸能的源頭,因為它只是化學爆炸物通過壓縮鈈而引發分裂性爆炸,並將進一布引發核爆炸的第三個階段,即通過壓縮並加主體部位而引起的一種更大范圍的分裂性爆炸。
  5. The fem results indicated that as to the rough surfaces in sliding contact, the value of the contact pressure was very high which coursed a high value of the heat flow rate, meanwhile the sliding time was not enough for the frictional heat to transfer, thus the highest value of the body temperature occurred just on the sliding surfaces, which possessed a sharp thermal gradient in direction perpendicular to the sliding surface. so the great thermal stress was caused just by the sharp gradient and the thermal elastic distortion with which the contact pressure changed occurred simultaneously, thus this change of the contact pressure would affect the temperature distribution in return

    對于相對滑動的粗糙表面,因實際接觸面積小而導致接觸壓力很大,這樣使得流密度會很大,同時由於滑動時間很短,來不及傳導,最高溫度發生在摩擦表面,在垂直於摩擦面的方向有很大的溫度梯度,使得力很大,且最大力發生在表面,同時產生性變形,這種變形使得接觸區域內的壓力分佈發生變化,這種變化又過來影響了接觸區域的溫度分佈。
  6. Silica gels have lots of unique capabilities, nicer heat - insulating property, low density with porous structure, good transparency, low reflect index, nice mechanical elasticity, big surface area, for instance. these properties made it to be applied in many fields as optics, catalysis, sensor, high - energy physics, mechanism and so on

    二氧化硅( sio _ 2 )凝膠具有許多獨特的性能,如良好的絕性,密度低且具有多孔結構,透明性好,射指數低,機械性好,表面積大等,使其在光學、催化、傳感、高能物理、機械等領域獲得了廣泛用。
  7. On the fundamental of thermo - viscoelasticity, the rate of viscous heat generation in csp matrix in relation with stress and strain status, is obtained. the meso - scale model is put forward, in which processes or phenomena such as viscous heat in csp matrix, heat conduction between csp matrix and oxidant particulates, decomposition of oxidant and its interfacial reactions with csp matrix, are described. the control equations are derived

    理論、傳學、推進劑分解動力學等,分析推導了推進劑粘性加變的關系,建立了描述基體粘性加、基體與含能顆粒傳、含能顆粒受分解及與基體界面等過程的細觀模型,推導建立了模型控制方程。
  8. Based on the heating treatment control system of a spring steel - wire production line in a factory, hubei province, the paper deals with the design of fully automatically monitoring system across its manufacturing process. through research of parameters of temperature control during the period of heating, annealing and tempering in steel wire manufacturing process, the corresponding composite intelligence fuzzy controller is designed. in light with the way of fast heating, a composite intelligent fuzzy controller combined with on - off control & pi control is set up

    本文以湖北某鋼絲繩廠簧鋼絲處理生產線控制系統為依託,論述了整個生產過程的監控系統的設計,通過對該類鋼絲生產中的快速加過程、退火、回火等過程中的溫度控制參數的研究,設計了相的智能型復合模糊控制器,根據快速加過程的實現方式,對于快速的被控對象,給出了以模糊控制為基礎的結合開關控制、 pi控制的快速升溫,且不超調的一種智能型復合模糊控制器,對于退火、回火等工藝過程,採用電加方式,該類工藝過程作為控制對象屬于具有純滯后的大慣性系統,作者設計出模型預測自適模糊控制器,並對所設計的控制器進行計算機模擬實驗,取得了滿意的效果。
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