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1)  lip forge
锻制法兰盘[悬臂]
2)  flanged overhungpump
法兰悬臂泵
3)  flange forgings
法兰锻件
1.
Flow regulation of metal point particle is analyzed for flange forgings during caul forging.
分析了法兰锻件在胎模锻过程中金属质点流动规律,应用主应力法求得分流面位置来确定制坯高度,从而保证了锻件质量。
4)  forging flanges
锻造法兰
1.
At present,this formula and contexture demands have already been used in the forging flanges design for the 1 000 kV Huainan-Shanghai(Anhui-to-shanghai-Electricity-Diverting Project) transmission and distribution Engineering.
针对钢管塔构件法兰连接形式,以真型试验和理论分析为研究方法,提出输电线路钢管塔用锻造法兰连接中螺栓的计算公式和相关构造要求,并分析了锻造法兰螺栓受力影响因素。
5)  cantilever beam method
悬臂梁法
1.
Mean and local residual stresses in Cu films and Ag films on 4Cr13 substrates are evaluated by cantilever beam method.
用悬臂梁法研究了不锈钢4Cr13基体上的Cu膜和Ag膜的平均残余应力和残余应力分布。
2.
The damping vibration isolating characteristic affection on the reinforcement content of the coating materical was studied by means of the cantilever beam method.
利用悬臂梁法研究该阻尼涂料中增强体的含量对其阻尼减振特性的影响 。
3.
The cantilever beam method and X ray diffraction are used to measure the internal stresses in the films.
用电镀工艺在不锈钢基体上镀制了Cu,Ag,Ni膜和Ti基体上制备了Ni膜,并用悬臂梁法和X射线法测量了膜中的残余应力。
6)  microcantilever deflection
悬臂梁法
1.
The primary influence factors wes analyzed synthetically for measuring the elastic modulus on a nano indenter by the method of microcantilever deflection, which include stiffness of suspending springs of the loading system, local penetration of the indenter tip, curvature across the micro cantilever beam’s width, and compliance of the beam support.
对在纳米压入仪上进行悬臂梁法测量弹性模量的主要影响因素进行了综合分析,主要包括加载系统悬置弹簧刚度、压头压入、梁沿截面宽度方向挠曲、梁支座附加挠曲等影响。
2.
The primary uncertain factors in the elastic modulus measurement of microcomponent by microcantilever deflection are analyzed and the fuzzy mathematic method is introduced to the evaluation process.
在介绍悬臂梁法测量微构件弹性模量原理的基础上,分析了测量和评价过程的主要不确定因素,将模糊数学方法引入弹性模量的评价过程。
补充资料:锻件圆角半径


锻件圆角半径
corner radius of forging

  duanlian yuanliao baniing锻件圆角半径(eorner radius of forging) 锻件图上光滑地连接锻件各交接面的圆弧半径,作用是使金属易于流动而充满模槽。如图所示,锻件凸部的圆角半径叫外圆角半径,用r表示;锻件凹部的圆危半径叫内圆角半径,用R表示。内圆角半径R应比外圆角半径r取大些,以利于锻件脱模。秘 国角半径示意图 (李体彬)
  
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