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1)  density damage increment
密度损伤增量
1.
Rock density damage increment with CT can be obtained by subtracting CT number of the undisturbed rock samples from that of the loaded rock samples.
通过对岩石试样在加载前后测得的CT数作差值运算,可获得岩石试样在不同应力阶段的CT密度损伤增量
2.
CT image analysis and density damage increment analysis are two approaches based on X-ray CT.
CT图像分析和密度损伤增量分析是X射线CT方法的两种手段。
3.
This paper analyzes the meso damage process of rock using the combination of the macroscopic axial stress with the density damage increment.
采用宏观轴向应力与密度损伤增量结合分析岩石细观损伤演化过程。
2)  density damage increment field
密度损伤增量场
3)  density damage increment image
密度损伤增量图像
1.
This paper presents a new concept concerning the density damage increment and deduces a quantitative relation formula between CT value and density damage increment, on the basis of which CT image is converted into density damage increment images.
提出了密度损伤增量的新概念 ,推出了 CT数与密度损伤增量的定量关系式 ,并把 CT图像转换成密度损伤增量图像。
4)  damage increment
损伤增量
1.
Basing on the data of the CT scanning,density damage increment,pore damage increment and total damage increment are defined.
提出了密度损伤增量、空隙损伤增量和总损伤增量的概念。
5)  threshold energy density for retinal thermal damage
热损伤能量密度阈值
6)  damage cavity density
损伤空洞密度
1.
The relationship between damage cavity density and percent composition of ∑3 sub-grain boundary structure in material was determined and the predicted result were validated.
利用该方法建立损伤空洞密度与∑3亚晶界结构百分数关系曲线,并对预测的结果进行验证。
补充资料:非密度制约因素(见密度制约因素)


非密度制约因素(见密度制约因素)


  l焦非密度制约因素见生态因素、密度制约后
  
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