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设计载荷
相关语句
  design load
    Determination of the design load of Ω-ring connections
    Ω环螺栓法兰连接设计载荷确定
短句来源
    The suitable modification parameters of engaging gear teeth can be computed according to the conditions of engagement geometry and the design load.
    给出恒定设计载荷条件下 ,保持齿轮传动误差为定值齿廓修形参数的计算方法 ;
短句来源
    The structure analysis of Ω ringed bolted flanged connections is carried out. By considering the cases whether with a gasket between the rigid rings or not, the formulae for calculating the design load of the connections are derived, and some suggestions to the design of Ω rings are also put forward.
    对Ω环 -螺栓 -法兰密封连接结构的受力状态进行了分析 ,针对Ω环环圈间是否设置辅助垫片的不同情况 ,提出了Ω环和螺栓设计载荷的计算公式 ,讨论了Ω环设计过程中应注意的问题
短句来源
    The article discuss the temporary saddle special for multi-saddle design at design load, design temperature, saddle quantity, saddle arrange plan and impact load in the hydraulic process ,PWHT process and transport process.
    本文在大型塔器的水压试验过程、热处理过程及运输过程中,从设计载荷、设计温度、鞍座数量、鞍座布置及冲击载荷等方面讨论临时鞍座特别是多鞍座的具体设计。
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  design load
A design is performed for the hyperbolic cooling tower (Grand Gulf cooling tower) to check the design strength under a consistent design load; therefore, to verify the adequacy of the design algorithm developed.
      
Based on these concepts, the following procedure for establishing case depth is suggested: 1) From design load and gear geometry data, compute the applied shear stress gradient at the most severe location along the path of contact.
      
A number of panels were then removed one by one and the hull was retested to the design load after each panel had been removed.
      
After nine panels had been removed, from all the different areas of the hull, it could still carry the design load, although with considerable nonreversible deformations of the hull girder.
      
The hull was eventually loaded to final failure, which occurred at 25% above the design load.
      
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Takingtipreliefandvibrationreductionof theoreticalinvolute gearsastheaimthis paperanalyzedthe geometricalconditionsofreducingerrorflunctuationof gear transmissionandofsatisfyingsyntheticaltipreliefparametersofengaginggearpair.Undertheconditionofconstantdesigningload ,thealgorithmoftooth profiletipreliefparametersfor keepingthe geartransmissionerrorasafixedvaluehasbeen presented.Baseduponthistipreliefcalculationmethodthe formulaofsynthesizedtipreliefcurveexpressedby quadratic polynomialhasbeenadvanced...

Takingtipreliefandvibrationreductionof theoreticalinvolute gearsastheaimthis paperanalyzedthe geometricalconditionsofreducingerrorflunctuationof gear transmissionandofsatisfyingsyntheticaltipreliefparametersofengaginggearpair.Undertheconditionofconstantdesigningload ,thealgorithmoftooth profiletipreliefparametersfor keepingthe geartransmissionerrorasafixedvaluehasbeen presented.Baseduponthistipreliefcalculationmethodthe formulaofsynthesizedtipreliefcurveexpressedby quadratic polynomialhasbeenadvanced ,andacomparisoniscarriedout withtheexistingtipreliefexpression .

以理论渐开线齿轮修缘减振为目的 ,分析了减少齿轮传动误差波动 ,啮合齿对综合修缘参数应满足的几何条件 ;给出了恒定设计载荷条件下 ,保持齿轮传动误差为定值齿廓修缘参数的计算方法 ;依据该修缘计算方法 ,提出了用二次多项式表达的齿廓综合修缘曲线公式 ,并与已有的修缘表达式进行了比较

In order to minimize the fluctuation of gear transmission error,a procedure for deciding tooth profile modification curves was developed for involute spur gears.The suitable modification parameters of engaging gear teeth can be computed according to the conditions of engagement geometry and the design load.A dynamic calculation of a transmitting system of spur gears with tooth profile modifications was given.It indicates the toothrelieved engaging gears have ideal effect on depressing vibration.

以理论渐开线直齿轮修形减振为目的 ,分析减小齿轮传动误差波动 ,啮合齿对齿廓综合修形参数应满足的几何条件 ;给出恒定设计载荷条件下 ,保持齿轮传动误差为定值齿廓修形参数的计算方法 ;动态计算结果表明 ,用该方法所获得的修形齿轮具有较好的减振效果

The structure analysis of Ω ringed bolted flanged connections is carried out. By considering the cases whether with a gasket between the rigid rings or not, the formulae for calculating the design load of the connections are derived, and some suggestions to the design of Ω rings are also put forward.

对Ω环 -螺栓 -法兰密封连接结构的受力状态进行了分析 ,针对Ω环环圈间是否设置辅助垫片的不同情况 ,提出了Ω环和螺栓设计载荷的计算公式 ,讨论了Ω环设计过程中应注意的问题

 
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