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remaining intensity
相关语句
  残余强度
     Studies have shown: Along with the increase of the surrounding press, the elastic mould amount, intensity of limit, remaining intensity of the coal rock body increase and at the same time. In the effect of high surrounding press, though the coal body has appeared relatively evidence out of shape after destroying, but still have higher remnants intensity;
     研究表明:随围压增加,煤岩体的弹性模量、极限强度、残余强度均随之增大,在较高围压作用下,破坏后煤体虽然出现了较大变形,但仍具有较高的残余强度;
短句来源
  剩余强度
     Aiming at the existing problems of the safety evaluation for hoisting mining steel rope, this paper studies the technology of the real-time measure and the method of deciding the remaining intensity, which is based on the steel rope damage detection. It puts forward the concept and the calculation method of dynamic safety coefficient and minimum safety coefficient in full distance. It offers a new technologic way and a practical method for evaluating the safety of steel rope scientifically.
     针对目前矿井提升钢丝绳安全评价存在的问题,研究了基于钢丝绳损伤检测确定钢丝绳损伤后剩余强度的方法以及钢丝绳张力实时在线检测技术,提出了钢丝绳动态安全系数与全程最小安全系数的概念和计算方法,为科学评价钢丝绳的安全性提供了新的技术途径和实用方法。
短句来源
     The remaining intensity factors of the pipe are obtained to judge if the wellbore is burn through according to the result of calculation.
     根据温度计算结果,获得管道的剩余强度因子,进而判定管壁是否烧穿。
短句来源
  相似匹配句对
     The intensity of stresses(?)
     并计算了应力强度(?)
短句来源
     The intensity of the pulp reaction was correlated with the remaining dentin thickness(RDT).
     牙髓组织的反应程度与牙预备体的剩余牙本质厚度(RDT)有关;
短句来源
     On Appropriate Intensity in WAnT
     WAnT适宜强度的探讨
短句来源
     The remaining intensity factors of the pipe are obtained to judge if the wellbore is burn through according to the result of calculation.
     根据温度计算结果,获得管道的剩余强度因子,进而判定管壁是否烧穿。
短句来源
     The Influence of Microstructure on Remaining Oil
     微构造对剩余油分布的影响——以高尚堡油田104-5区块为例
短句来源
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  remaining intensity
The remaining intensity is distributed in a small tail that stretches out to 6 ns.
      


Aiming at the existing problems of the safety evaluation for hoisting mining steel rope, this paper studies the technology of the real-time measure and the method of deciding the remaining intensity, which is based on the steel rope damage detection. It puts forward the concept and the calculation method of dynamic safety coefficient and minimum safety coefficient in full distance. It offers a new technologic way and a practical method for evaluating the safety of steel rope scientifically.

针对目前矿井提升钢丝绳安全评价存在的问题,研究了基于钢丝绳损伤检测确定钢丝绳损伤后剩余强度的方法以及钢丝绳张力实时在线检测技术,提出了钢丝绳动态安全系数与全程最小安全系数的概念和计算方法,为科学评价钢丝绳的安全性提供了新的技术途径和实用方法。

A finite element method is used to conduct a numerical simulation on the temperature field of in-service welding underdifferent media flow velocities. The influence of internal media flow on the welding temperature field is taken into account by determining the media and thermal exchange coefficient of wellbore. The remaining intensity factors of the pipe are obtained to judge if the wellbore is burn through according to the result of calculation. The study indicates that the peak value on the external...

A finite element method is used to conduct a numerical simulation on the temperature field of in-service welding underdifferent media flow velocities. The influence of internal media flow on the welding temperature field is taken into account by determining the media and thermal exchange coefficient of wellbore. The remaining intensity factors of the pipe are obtained to judge if the wellbore is burn through according to the result of calculation. The study indicates that the peak value on the external wall of welding seam is not obviously changed with the increase of flow velocity, while the peak temperature on the internal wall decreases with it. The remaining intensity factors of in-service welding pipes and the limit pressure that they can stand is raised and it is raised greatly in a certain range. Thus the characteristics of flow-velocity changes should be adequately considered for the purpose of establishing the optimal operation conditions.

运用有限元法对不同介质流速下在线焊接时的温度场进行了数值模拟,内部介质流动对焊接温度场的影响通过确定介质与管壁的换热系数来考虑;根据温度计算结果,获得管道的剩余强度因子,进而判定管壁是否烧穿。研究表明,随着流速的增大,焊缝位置处外壁上的峰值温度无明显变化,而内壁上的峰值温度随之下降;在线焊接管道的剩余强度因子及所能承受的极限压力呈上升趋势,且在一定范围内增大明显,故应充分利用该流速变化范围的特点以确定最佳施工条件。

 
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