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composite can造句

"composite can"是什么意思   

例句與造句

  1. With increasing the temperature , the de - hydrogenation capacity and the kinetics of the dehydriding were increased . after hydrogenation at 473 k , and dehydrogenation at 523 k , the maximum desorption capacity of mg - 15 wt % mg2ni - 0 . 5 wt % tio2 composites can reach 5 . 8 wt %
    納米tio _ 2對(duì)mg - mg _ 2ni復(fù)相合金放氫動(dòng)力學(xué)性能也有一定的催化作用,添加了納米tio _ 2的合金可以有更好的放氫速度和放氫量。
  2. The results of static firing test shows that the thermal erosion properties , mechanical properties , tand thermal shock resistance of the c / sic composites can meet a demand for thermal - structure application in the area of aerospace such as liquid rocket thruster
    試驗(yàn)發(fā)動(dòng)機(jī)地面熱試車(chē)結(jié)果表明,該c / sic復(fù)合材料的力學(xué)性能、燒蝕性能和熱震性能優(yōu)良,可滿足宇航工程中諸如液體火箭發(fā)動(dòng)機(jī)推力室等對(duì)熱結(jié)構(gòu)材料的使用性能要求。
  3. ? he resistant impact of rootstalks is from 30 . 2j to 60 . 4j . the resistant impact of rootstalks from the areas one crop a year increases 37 % more than that from areas two crop a year ; ( 3 ) the direct shear strength of soil rootstalk composite can be scribed by coulomb equation
    玉米根茬的抗沖擊能量為30 . 2j 60 . 4j ,在相同試驗(yàn)條件下,一年一熟玉米根茬的抗沖擊能量比一年兩熟玉米根茬的抗沖擊能量增大14 23 ;根茬徑向抗沖擊的沖擊能量比軸向大約23 。
  4. With an even increasing use of composites , they are truly the material of today and the near future because composites can be designed to be stronger , lighter , stiffer , and more heat resistant than natural materials or to possess properties required by technology that are not available in a single material
    隨著復(fù)合材料應(yīng)用的越來(lái)越多,實(shí)際上,它們已經(jīng)成為目前以及不久的將來(lái)使用的主要材料;因?yàn)樗鼈兛梢员辉O(shè)計(jì)成更強(qiáng)的,更輕的,更硬的以及更好的耐熱性的材料,而且擁有單一的天然材料無(wú)法比擬的工藝特性。
  5. The outcome indicates that the graded composite can effectively reduce the residual thermal stress . when the distribution p is 1 . 2 , the relaxation effect is m ost conspicuous and up to 60 % . finally , the atio5 / al2o3 functionally graded material is fabricated by the power stacking - method based on the fabrication technique and structure design discussed above
    計(jì)算結(jié)果表明,通過(guò)梯度復(fù)合可以有效地緩和梯度材料制備過(guò)程中所產(chǎn)生的殘余熱應(yīng)力,當(dāng)梯度材料分布指數(shù)p值為1 . 2時(shí),熱應(yīng)力緩和的作用最顯著,緩和效果達(dá)60 。
  6. It's difficult to find composite can in a sentence. 用composite can造句挺難的
  7. The questions the researcher concerned are which system will be chosen and how to obtain the good lithium ionic conductor materials , which is the basic departure of the paper . the addition of second phase in composite can change the interface structure and the conduction mechanism , improve the matrix conductivity and other function such as the sintering , crisping and so on , so the research of composites are an interesting field of the ionic conductors . the synthesis of lithium ionic conductor is often by solid state reaction , but this method needs high temperature and leads to the volatility of lithium which not only causes the drift of the compounds but gets the no well - distributed materials
    研究者所關(guān)注的問(wèn)題是選擇新的體系進(jìn)行研究,以期得到性能更好的鋰離子導(dǎo)體材料,這也正是本論文的基本出發(fā)點(diǎn);復(fù)合離子導(dǎo)體中第二相的加入改善了基質(zhì)的界面結(jié)構(gòu)和導(dǎo)電機(jī)制,不僅可以提高基質(zhì)材料的電導(dǎo)率,還可以在一定程度上改善材料的其它性能,如燒結(jié)性能、脆性和機(jī)械強(qiáng)度等。因此復(fù)合材料的研究是離子導(dǎo)體一個(gè)有廣闊前景的發(fā)展方向;合成鋰離子導(dǎo)體,特別是成分復(fù)雜的體系以傳統(tǒng)的固相合成法為主,但這種方法需要較高的溫度,容易引起鋰的揮發(fā),從而造成產(chǎn)物組成的偏移,而且不易得到顯微結(jié)構(gòu)均勻的材料。
  8. For some typical configurations of the inclusions , for example , for spherical or ellipsoidal inclusions , the thermal conduction problem of the composite can be solved without much difficulty using self - consistent method . but for arbitrary geometry of particulates , such as polygon or other irregular configurations , the analytical solution is impossible or hard to obtain
    自洽方法可以很方便的求解典型顆粒如球形和橢圓形夾雜的復(fù)合材料的熱傳導(dǎo)問(wèn)題,但是對(duì)于任意形狀?yuàn)A雜如多邊形或其它不規(guī)則形狀的復(fù)合材料的熱傳導(dǎo)問(wèn)題,多數(shù)情況下很難得到其解析解。
  9. The metastable austenitic phase of s s fiber at the interface of the fiber / cu composite would turn back to equilibrium with the interfacial energy and inter stain inducing , when the cu films were separated from s s fiber . so the magnetism value of the s s fiber declined . the information of grain - orientation at the interface of the fiber / cu composite can serve as a mechanism responsible for its declining coercivity , and a part of cu elements diffused into s s fibers
    不銹鋼纖維銅復(fù)合體去除銅層后,原有的界面能及應(yīng)力下降,使得原纖維界面處弱磁性的部分亞穩(wěn)奧氏體,恢復(fù)到平衡態(tài),它們對(duì)樣品s測(cè)試結(jié)果不再有貢獻(xiàn);不銹鋼纖維銅復(fù)合體中,處于界面處的纖維晶粒具有很強(qiáng)的軸向取向排列,當(dāng)晶粒取向性減弱,磁疇轉(zhuǎn)動(dòng)的阻力增加,磁體的矯頑力上升。
  10. With an even increasing use of composites , they are truly the material of today and the near future because composites can be designed to be stronger , lighter , stiffer , and more heat resistant than natural materials or to possess properties required by technology that are not available in a single material
    隨著合成物應(yīng)用的越來(lái)越多,實(shí)際上,它們已經(jīng)成為目前以及不久的將來(lái)使用的主要材料;因?yàn)樗鼈兛梢员辉O(shè)計(jì)成更強(qiáng)的,更輕的,更硬的以及更好的耐熱性的材料,而且擁有單一的天然材料不具備的工藝特性。
  11. The damping behavior of the multi - energy transitions mechanism is obvious only when the vgcf content is among semi - conductive area . ( 3 ) the cpe / pzt / vgcf composites can be presumed as a circuit composed of a resistance and a capacitor , which can successfully explain the phenomenon that multi - energy transitions mechanism takes effect only in the vgcf semi - conductive area
    博士論文:基于多重能量轉(zhuǎn)換的高性能減振材料的研究( 3 )可以將cpe / pzt / vgcf復(fù)合材料設(shè)計(jì)成一個(gè)包含電阻和電容的等效回路,這樣可以很好的解釋在vgcf的半導(dǎo)區(qū)間內(nèi),復(fù)合材料具有較高的電導(dǎo)率時(shí)復(fù)合材料的壓電導(dǎo)電減振作用更為明顯。
  12. Two kinds of nonlinear conduction behavior for polymer based conducting composites can be : one is the irreversibly electrical nonlinearity taking place in extreme conditions owing to application of high voltage or current ; the other one is reversibly electrical nonlinearity occurring in moderate conditions due to application of small bias or current
    摘要導(dǎo)電填料復(fù)合材料的非線性導(dǎo)電行為可分為兩大類,即在高壓或強(qiáng)電流作用下發(fā)生不可逆非線性導(dǎo)電行為,以及在低壓或弱電流作用下的宏觀可逆非線性導(dǎo)電行為。
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