tensile strain 中文意思是什麼

tensile strain 解釋
抗拉應變
  • tensile : adj 張力[拉力]的;抗張的;能伸長的。 tensile force 【物理學】張力。 tensile strain 【物理學】張應...
  • strain : vt 1 用力拉,拉緊,抽緊,扯緊。2 使緊張;盡量使用(肌肉等)。3 強迫,強制;濫用,盡量利用。4 拉傷...
  1. This shape allows only tensile strain.

    這種形狀使膜片只允承受拉伸壓力。
  2. This paper analyzes the influence of sra on the shrinkage - cracking property of hpc by designing five check - up experiments including desiccation - shrinkage, autogeous shrinkage, flat - restraint, anti - chloride ion penetration and ultimate tensile strain

    摘要設計了乾燥收縮、自收縮、平板約束、抗氯離子滲透性以及極限拉應變等5種試驗方法來檢驗減縮劑對高性能混凝土收縮開裂性能的影響。
  3. The study proved that tensile strain arose firstly in the outer shaft wall after it ' s building, then decreased gradually with decreasing of temperature, finally, it converted to compressive strain

    研究表明:外層井壁澆筑後,混凝土首先產生拉應變,而後隨井壁溫度下降而逐漸減小並轉變為壓應變。
  4. For strained si pmosfets, the hole mobility is not only determined by the tensity of strain, but also related to the strain types, which are uniaxial compressive strain and biaxial tensile strain. when electric field is high enough, the hole mobility will be deteriorated in pmosfets under biaxial tensile strain, however, in the case of uniaxial compressive strain, the deterioration will never occur

    經模型分析發現,應變硅pmosfet空穴遷移率與應力作用方式有如下關系:當橫向電場較高( > 5 105v / cm )時,雙軸張應力作用下的應變硅pmosfet的空穴遷移率將發生退化,而單軸壓應力器件則不會受到影響。
  5. N metallic materials - sheet and strip - determination of tensile strain hardening exponent n - values

    金屬薄板和薄帶拉伸應變硬化指數
  6. Method of determining the tensile strain hardening exponent for metallic sheet and strip

    測定金屬薄板材和帶材用拉伸應變硬化試樣的試驗方法
  7. Tensile strain hardening behaviours of nitrogen strengthening high manganese austenitic cryogenic steel

    氮強化高錳奧氏體低溫鋼的拉伸應變硬化行為
  8. Iron and steel - method of determination of the tensile strain hardening exponent n of steel sheet and plate

    鋼鐵.薄鋼板和鋼板拉伸應變硬化指數n的測定方法
  9. Advanced technical ceramics. ceramic composites. methods of test for reinforcements. determination of distribution of tensile strength and tensile strain to failure of filaments within a multifilament tow at ambient temperature

    高技術陶瓷.陶瓷成分.增強的試驗方法.環境溫度下多纖維牽引內纖維斷裂拉伸強度和拉伸應變分配的測定
  10. Advanced technical ceramics - ceramic composites - methods of test for reinforcements - determination of distribution of tensile strength and of tensile strain to failure of filaments within a multifilament tow at ambient temperature

    高級工業陶瓷.陶瓷復合材料.增強纖維的試驗方法.室溫下復絲束中長絲斷開時的拉伸強度和拉伸應變分佈的測定
  11. Advanced technical ceramics - ceramic composites - methods of test for reinforcements - part 5 : determination of distribution of tensile strength and of tensile strain to failure of filaments within a multifilament tow at ambient temperature

    先進工藝陶瓷.陶瓷復合材料.增強纖維的試驗方法.第5部分:周圍溫度下復絲束中長絲拉伸強度的分佈和斷裂拉伸應變的測定
  12. Simulated results showed that the position and the evolution process of necks are influenced by tensile strain rates. uniform deformation covers only a small fraction of the total deformation. however, at the steady - like flow stage, restrictions and accommodations between scattered localizations promote large uniform deformation

    數值結果表明,頸縮的位置及發展過程受拉伸應變速率影響,完全均勻變形在總變形中實際占份量較小,而似穩流動階段的分散不均勻性的相互牽制與協調,使率敏感材料得以在接近均勻的狀態下經受大的變形。
  13. When the confined shrinkage value which resulted from the confined action of all above shrinkage exceed the ultimate tensile strain, cracks occur

    各種收縮變形疊加后,混凝土的限制收縮值超過極限拉伸率導致裂縫的產生。
  14. This paper researches the influence of no treating, paving cement and fly ash paste, and paving cement mortar on rcc layer surface upon the ultimate tensile strain of placing joint of rcc layers under the condition of different interval of placement of rcc layers and different amount of binding materials

    研究在不同的層間間隔時間條件下,採用不同的膠凝材料用量,對碾壓混凝土層面分別採取不處理,鋪水泥粉煤灰漿(簡稱水泥凈漿) 、水泥砂漿等處理措施對碾壓混凝土層面極限拉伸值的影響。
  15. Considering the randomness of strength and deformation of concrete material, a mathematic approach of producing random variables series of concrete ultimate tensile strain is proposed

    摘要針對混凝土構件材料強度和變形性質的隨機性,採用數學方法提出構造混凝土極限拉應變數列的原理。
  16. The expansive property of concrete curing in water is better than that curing in air. the curing time of multiple anti - cracking and impermeability concrete can not less than 14 days. ill to take all account of the factors such as raw materials, construction, curing, and tensile strength, limit tensile strain, etc., which have effect on anti - cracking property of concrete, the overall crack probability is brought forward to access anti - cracking property of concrete, with aid of mathematics

    為了全面地考慮原材料、施工、養護、抗拉強度和極限拉伸率等因素對混凝土抗裂性能的影響,利用數學概率分析方法,引入體積開裂概率的概念評估混凝土的抗裂性能。應用材料復合技術,無機-有機多組份復合,研製出一種新型復合抗裂材料,提高混凝土的抗裂防滲性能,且滿足混凝土的強度和工作性要求。
  17. The correlation between the compressive strength and axial tensile strength of rcc with placing joint and ultimate tensile strain of placing joint of rcc layers have been obtained

    通過試驗研究給出有層面碾壓混凝土抗壓強度、層面軸拉強度與層面極限拉伸值間相關關系。
  18. N - test method for tensile strain - hardening exponents n - values of metallic sheet materials

    金屬薄板材抗拉應變-硬度指數
  19. Allowable ultimate tensile strain of reinforcement

    鋼筋拉應變限值
  20. Tensile strain recovery

    拉應變回復
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