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压缩强度

"压缩强度"的翻译和解释

例句与用法

  • Methods of test for production control of concrete - method of rapid test for compressive strength of concrete by warm water curing
    混凝土生产控制试验方法.热水养护法测定混凝土压缩强度的快速试验方法
  • Products and systems for the protection and repair of concrete structures - test methods - determination of compressive strength of repair mortar
    混凝土结构的保护和修复的系统和产品.试验方法.修复砖压缩强度的测定
  • Unbound and hydraulically bound mixtures - part 41 : test method for the determination of the compressive strength of hydraulically bound mixtures
    松散的和液力粘合的混合料.第41部分:液力粘合混合料的压缩强度测定的试验方法
  • Textile - glass - reinforced plastics - determination of mechanical properties on rods made of roving - reinforced resin - determination of compressive strength
    纺织玻璃纤维增强塑料.无捻粗纱增强树脂棒力学性能的测定.压缩强度的测定
  • Textile - glass - reinforced plastics - determination of mechanical properties on rods made of roving - reinforced resin - part 3 : determination of compressive strength
    纺织玻璃纤维增强塑料.无捻粗纱增强树脂棒力学性能的测定.第3部分:压缩强度的测定
  • The composite foams showed a significant improvement in mechanical properties over pure polymer foams . composite scaffolds of ladder - like structure have better mechanical ability than scaffolds of round structure
    复合后材料的抗压缩强度和弹性模量较纯plla支架有所提高,梯状结构的材料力学性能优于圆孔结构的材料。
  • Fiber - reinforced composites will dissipate energy by all sorts of damage when they are subject to low - velocity impact . the damage in the composites influences the mechanical properties of the composites , including bending strength and compressive strength
    纤维增强复合材料在受到低速冲击时,会通过各种形式的损伤耗散冲击能,这些产生于材料内部的损伤严重影响材料的弯曲强度、压缩强度等力学性能。
  • 4 . the choice reference of medium belt material is came up with : with higher compress intensity , pull intensity and bend fatigue intensity , with middle or low elastic modulus , besides fine heat - resistant , wearable , oil - fast , water - fast anti - impactive capabilities
    4 、提出并分析了介质带材料的合理选择原则:压缩强度、拉伸强度和弯曲疲劳强度高和韧性好的中低弹性模量复合材料,此外还需具有良好的耐热、耐油耐水性、耐磨性、抗冲击性、耐候性等。
  • The main research is below : ( 1 ) the influence to intensity and rigid with corner angle ( 60 , 75 and 90 degree ) of crack and the board axes ( 2 ) do a fem stress / strain and crack growth simulation analysis when the corner angle of crack and the board axes is 60 degree ( 3 ) do a intensity resume analysis for the structure which is repaired with a titanium patch in a mechanical way when the corner angle of crack and the board axes is 60 degree through simulation analysis for three failure criterion , we have : ( 1 ) in 60 , damage extend quickly with damage analysis in hashin criterion ; it is slower for analysis in maximum stress or hashin - rotem criterion . ( 2 ) in special term ( physical condition incision , shape or maximum load ) the compression strength of the stiffened plate will decline 45 % ~ 50 % under compression loads
    通过采用三个不同损伤判据的数值仿真模拟,得到如下结论: ( 1 )在60时,用hashin判据进行的损伤分析,损伤扩展较快;最大应力及hashin - rotem判据进行的损伤分析,损伤扩展基本相当,且较慢; ( 2 )在所给加筋板的物理条件、切口大小及形状、最大载荷等一定的条件下,该加筋板在压缩载荷作用下,其压缩强度下降了45 50 ; ( 3 )在本文提及到的机械连接修理方法以及载荷条件下,修理后的结构强度恢复能够满足战时要求。
  • Under the careful retrospection and analysis on the previous and recent experiments about mechanical behavior of nanocrystalline metals performed by almost main investigators , the dislocation and atomic diffusion is believed to contribute hardly to the deformation of nanocrystalline alloy , and a model based on thermal activation process was applied to fit the experimental data of nanocrystalline ag
    结果表明,纳米晶金属ag的不仅具有比粗晶ag高2 - 6倍的拉伸和压缩强度,而且在大范性形变阶段显示了极低的加工硬化和应变速率敏感性。结合位错理路和非晶合金形变特征,提出纳米晶金属ag的塑性变形主要由于晶界滑移贡献。
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