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1)  burst pressure
爆破压强
1.
On the basis of the netting analysis,the calculating methods of the wall thickness and the burst pressure of the filamentwound cylinder for the solid rocket motor are obtained.
基于网格理论,得到了固体火箭发动机纤维缠绕壳体圆筒壁厚和爆破压强的计算方法,给出了用模拟实验压力容器确定纤维发挥强度的方法。
2)  bursting strength
爆破强度
1.
The reflection of adding different kinds of CaCO, and dispersing agent on the mechanical properties of PE layer in Al/plastic pipe was studied, and the hoop tensile force, bursting strength and time resisting the static pressure of the modified Al/Plas-tic pipe were also tested.
研究了在铝塑复合管的PE层配方中加入不同种类CaCO_3和分散剂对PE层力学性能的影响,并对改性后的铝塑复合管的爆破强度、耐静压时间、环拉力等进行了测试。
2.
The static internal pressure, bursting strength, and hoop tensile strength are 2.
48MPa ,爆破强度可达 8。
3.
In this article,the cylinder testing pressure and safe factor is researched from controlling its fuzzy reliability range of bursting strength of ultrahigh pressure cylinder during pressure test and normal operation based on the reliability design theory and methods of random-fuzzy probability model.
文章基于随机-模糊概率模型的可靠性设计理论与方法,从控制超高压圆筒爆破强度在耐压试验和正常操作时模糊可靠度范围的角度,对其试验压力和安全系数进行探索。
3)  burst strength
爆破强度
1.
Carbon/epoxy composite overwrapped pressure vessels are very susceptible to outside impact;Lower energy impact will cause damage of vessels construction and further lead to significant reduction in burst strength.
碳/环氧复合材料缠绕压力容器对外界冲击非常敏感,较低能量的冲击就有可能造成容器结构的严重损伤,进而导致爆破强度的显著降低。
4)  hydraulic control explosion
水压控制强松动爆破
1.
The social and economic efficiency are remarkable due to the utilization of hydraulic control explosion.
施工中采用水压控制强松动爆破工艺拆除 ,效果极其显著 ,取得了良好的社会效益和经济效
5)  extrusion blasting
挤压爆破
1.
Feasibilty study on extrusion blasting application in cemented filling mining method;
挤压爆破在胶结充填采矿法中应用可行性研究
6)  burst pressure
爆破压力
1.
Study of burst pressure calculation method of pipelines with axial flaws;
含轴向缺陷管道的爆破压力计算方法研究
2.
The burst pressure of filament wound pressure vessels and the ratio of strength transfer of fiber;
纤维缠绕压力容器的爆破压力与纤维强度转换率
3.
The prediction of the burst pressure of pressure vessels with miter pipe
轴向斜接管内压容器爆破压力的预测
补充资料:等离子体压强和磁压强
      在流体近似下,可以把等离子体看成是彼此相互作用的电子和离子两种气体的混合物。它们各具有动力压强,上述两种气体成分的分压强之和P=k(niTi+neTe)称为等离子体压强,k是玻耳兹曼常数,角标i、e分别表示离子和电子。
  
  经常遇到的处在静磁场 B中的等离子体,除了等离子体压强外,它还受到磁力 作用,j是电流密度。当磁力线是直的并互相平行时,(B·墷)B项等于零,相当于压强,称为等离子体磁压强。
  
  在等离子体压强和磁压强并存之时,常用参数表示磁压强的相对重要性。这个参数称为比压。
  

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