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compression limitation
相关语句
  压缩极限
     Calculation for shock compression limitation of metal materials based on a free-electron gas model
     自由电子气模型计算金属材料冲击压缩极限压缩度
短句来源
     Calculation results show that the shock compression limitation of a free-electron gas is approximately equal to 4 fold of initial density.
     计算结果表明 ,自由电子气 (费米能为 5eV)的冲击压缩极限近似为初始密度的 4倍。
短句来源
  “compression limitation”译为未确定词的双语例句
     The Shock compression properties of the metals Iron、Copper、Aluminum and Lead respectively were calculated and evaluated numerically by a simple free-electron gas model. Calculations show that the materials cannot been arbitrarily compressed and have a shock compression limitation. When pressures increase the shock temperatures have also a steep rise to block continuous compression of materials and the maximum compression can be able to reach 3.9fold of initial density.
     用简单的自由电子气模型对金属铁、铜、铝、铅的冲击压缩特性进行了数值计算,计算结果表明材料并不能无限地被压缩,存在极限压缩度,随着压缩度的增加,在冲击压力增加的同时,冲击温度也急剧上升,限制了材料的进一步压缩,本文计算的这几种材料的极限压缩度为3.9.
短句来源
  相似匹配句对
     The former has its limitation.
     “企业价值最大化”有其局限性 ;
短句来源
     the historical limitation.
     具有无法超越的历史局限。
短句来源
     mechanical compression;
     机械性压迫损伤组;
短句来源
     Limitation Analysis on the Truss for Materials with Different Behavior in Tension and Compression
     拉压性能不同材料的桁架结构的极限分析
短句来源
     Compression Spring
     压缩弹簧的多目标模糊优化设计
短句来源
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The Shock compression curve (Hugoniot curve) and shock temperature of a free-electron gas with a Fermi energy of 5 eV was calculated and evaluated numerically by a free-electron gas model. Shock pressure, internal energy and shock temperature were calculated as function of compression. Calculation results show that the shock compression limitation of a free-electron gas is approximately equal to 4 fold of initial density.

用自由电子气模型对自由电子气 (费米能为 5eV)的冲击压缩雨贡纽曲线、冲击温度进行了数值计算。冲击压力、内能和冲击温度被计算为压缩度的函数。计算结果表明 ,自由电子气 (费米能为 5eV)的冲击压缩极限近似为初始密度的 4倍。

The Shock compression properties of the metals Iron、Copper、Aluminum and Lead respectively were calculated and evaluated numerically by a simple free-electron gas model.Calculations show that the materials cannot been arbitrarily compressed and have a shock compression limitation.When pressures increase the shock temperatures have also a steep rise to block continuous compression of materials and the maximum compression can be able to reach 3.9fold of initial density.

用简单的自由电子气模型对金属铁、铜、铝、铅的冲击压缩特性进行了数值计算,计算结果表明材料并不能无限地被压缩,存在极限压缩度,随着压缩度的增加,在冲击压力增加的同时,冲击温度也急剧上升,限制了材料的进一步压缩,本文计算的这几种材料的极限压缩度为3.9.

 
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