材料韌性 的英文怎麼說

中文拼音 [cáiliàorènxìng]
材料韌性 英文
toughness of material
  • : 名詞1 (木料) timber 2 (泛指可以直接製成成品的東西; 材料) material 3 (供寫作或參考的資料) ma...
  • : 名詞1 (材料; 原料) material; stuff 2 (喂牲口用的穀物) feed; fodder 3 (料器) glassware 4 (...
  • : 形容詞(不易折斷; 柔軟而結實) pliable but strong; tenacious; tough
  • : Ⅰ名詞1 (性格) nature; character; disposition 2 (性能; 性質) property; quality 3 (性別) sex ...
  • 材料 : 1. (原料) material 2. (資料) data; material 3. (適于做某種事的人才) makings; stuff
  • 韌性 : 1. (指頑強持久的精神) tenacity 2. [力學] toughness; ductility; ductibility
  1. Pliable self - recovering conduits of insulating materials

    絕緣自復導管。
  2. In comparison with impact force dominated conventional pulverizing equipment, pan - mill is especially effective for the pulverization of polymer materials. experimental results show that not only commodity polymers such as polystyrene and polypropylene but also coriaceous engineerin g plastics such as pa6 can be effectively pulverized by pan - mill

    磨盤形力化學反應器對聚合物的粉碎具有獨特的優勢,研究結果表明,常溫操作條件下,磨盤形力化學反應器不但可以有效粉碎通用聚合物,如聚丙烯,也可以粉碎強工程塑尼龍6 。
  3. Especially for the tough, ductile materials used in nuclear plant piping, ordinary plastic collapse analyses will possibly suffice.

    尤其是對于核電管道的,一般的塑失穩分析可能足夠了。
  4. High modulus and ductile hybrid composite rebar

    混雜型高模量高復合加強筋
  5. Standard specification for flexible cellular materials - sponge or expanded rubber

    多孔的標準規范.海綿狀或膨脹橡膠
  6. Metallic materials - standard test method for jic, a measure of ductile fracture toughness

    金屬斷裂度jic試驗方法
  7. Test method for flexibility of resilient flooring materials with cylindrical mandrel apparatus

    用圓柱形芯軸裝置對彈地板材料韌性的試驗方法
  8. But calcium phosphate ceramic with high porosity is such brittle and low toughness that it ca n ' t fit to bone tissue engineering. in order to provide appropriate scaffolds for bone tissue engineering, calcium phosphate was combined with plla to prepare porous material

    但磷酸鈣多孔陶瓷大,在生理環境中的疲勞與破壞強度不高,尤其在濕環境下斷裂很低,不能制得滿足組織工程要求的高孔隙率,力學能較高的支架
  9. Micromechanics analysis and test on the ductile fracture of pressure vessel materials

    壓力容器材料韌性斷裂細觀力學分析與測試
  10. Study on decompression and toughness of dynamic fractures for steel gas pipelines

    管道動態斷裂的氣體減壓模式和材料韌性研究
  11. Abstract : according to the probability fracture mechanics, distribution characters of some parameters related presure vessel and allowance failure probability are discussed in the paper, and then the probability calculation method of pressure vessel is analyzed in thd case of the two kinds of distribution of material strength. finally, one of the complete assessment methods, failure probability of pressure vessel, is introduced

    文摘:應用概率斷裂力學的觀點,討論了壓力容器各有關參數的分佈特點及允許的失效概率,分析了材料韌性為兩種不同分佈時壓力容器可靠計算方法,說明了進行壓力容器失效概率分析是全面評價壓力容器的方法之一。
  12. Eurocode 3. design of steel structures - material toughness and through - thickness properties

    歐洲法規3 .鋼結構的設計.材料韌性和貫穿厚度特
  13. Methods of testing plastics - mechanical properties - determination of softness number of flexible plastics materials

    試驗方法.第3部分:機械能.試驗方法365a :撓材料韌性度值測定
  14. Now reinforcement and improve toughness is the core topic study of the ceramic materials, and fiber reinforcement is the most obvious method, it can improve not only the toughness but also the hardness of materials

    目前研究陶瓷的核心課題是補強增,而纖維增是目前補強增方法中效果最為顯著的方法,它在提高材料韌性的同時,在大多數情況下還能提高的強度。
  15. By compounding caco3 with pp, the effect of caco3 content, diameter and shape on the crystallization, dispersion morphology and properties of pp / caco3 composites was investigated. the results showed that addition of caco3 into pp decreased the apparent crystal size in perpendicular direction to the ( 110 ), ( 040 ) and ( 130 ) crystallographic planes of ppa crystal, and with similar uniform dispersion of caco3, the dominant factor influencing toughness is the diameter of caco3 particles, but not the decrease of pp crystal size. the toughening effectiveness of nano caco3 is obviously better than that of micron caco3

    將caco _ 3與pp進行填充復合,研究了caco _ 3含量、粒徑及形狀對體系的結晶,分散形態及能的影響,發現碳酸鈣的加入使聚丙烯晶型垂直於( 110 ) 、 ( 040 )和( 130 )晶面的表觀晶體尺寸減小,揭示了在分散均勻的情況下,影響材料韌性的主導因素不是晶粒尺寸的減小,而是碳酸鈣的粒徑,納米張玲:彈體及無機剛粒子增增強聚丙烯復合的研究碳酸鈣的增效果明顯優于微米碳酸鈣。
  16. The method blending with rigid inorganic filler can improve tensile strength, while lowering impact strength of blends. so, the critic prohlem is how to increase impact strength and tensile strength simultaneously. recently hybrids of pp / clay but melting interca1ation method have been studied, and the results show that higher impact strength is obtained, while tensiie strength lost less

    改善pp的常用方法是與橡膠或彈體共混復合,但在提高材料韌性的同時,拉伸強度損失嚴重;若用無機填來改pp ,的拉伸強度得到提高,但下降較大,故提高即的和拉伸強度似乎成了一對矛盾。
  17. 16mnr and 45 # steel are taken as examples. the obtained results have been applied to analyze the safety of operation pressure and rationality of design of a kind of engineering structure - a flange joint of hemispherical head to cylindrical shell. try to seek a sort of new method to assessment the capability of structure to load beyond the traditional method which regards stress and strain as main parameters

    本文以45 ~ #調質鋼和壓力容器常用鋼16mnr為研究對象,對金屬材料韌性斷裂的斷裂模式進行細觀機理上的研究,進而分析一種工程結構? ?採用與筒體厚度不同的半球形封頭的壓力容器的筒體連接結構? ?的靜載變形特點和破壞形式,嘗試在以應力應變為主要參數的傳統方法之外,尋求一種新的結構承載能力分析的方法。
  18. However, the major limitation of composites via rtm in the aerospace industry is their lower impact damage resistance compared to those via traditional methods

    沒有有效改善rtm復合材料韌性的有效手段大大限制了rtm在航空等各個領域的應用。
  19. The reason of nano / micro - crystalline composite toughening was discussed. it was studied whether the micro - crystalline phase had to be completely closed by the nano - crystalline phase, so called full constrains, when it improved the ductility of nano - crystalline maters

    探討了納米微米晶復合增的原因;對微米晶相發揮其改善納米微米晶復合的作用時,納米晶基體相對微米晶相的包圍即封閉約束的必要進行了研究。
  20. 4. to improve the calculating accuracy, it was suggested to chang the ideal connection conditions between micro - crystalline phase and nano - crystalline phase and a midst zone should be built between them. and then the results calculated by the last step was viewed as the performance parameters of this zone, and the real connection conditions were closed

    對代表單元體兩相連接界面的假設,進行嘗試改進,即在增相與基體相之間增加一個界面過渡區域,同時將前步計算所得的代表單元形變能作為界面過渡區域能,以近似模擬真實的界面連接情況,進而提高對整個代表單元體能的計算精度。
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