1) Power spinning
强旋
1.
In order to simulate power spinning of cylindrical workpiece better dynamically,a new 3D mechanical model is proposed by refering mechanical models discussed by predecessors after a simple review about the research work of spinning.
本文在参考了前人在旋压方面所提出的力学模型基础上,为更好地对筒形件强旋进行三维动态模拟,提出了一种新的力学模型。
2.
In power spinning process of conical parts with transverse inner ribs,the roller parameters have an obvi-ous effect on the formability of inner ribs.
在带横向内筋锥形件强旋成形过程中,旋轮参数对内筋的成形性能有很大的影响。
2) swirl intensity
旋流强度
1.
The effect of swirl intensity on flame features,temperature field and formation characteristics of NOx in gas stove was studied by means of gas stove and analytical instruments for flue gas.
采用燃气实验炉和综合烟气分析仪等设备,研究了旋流强度对平焰燃气炉内火焰特性、温度场和烟气中NOx生成特性的影响规律。
2.
Effects of air swirl intensity on atomization and combustion performance of effervescent atomized spray were investigated under different conditions.
对不同空气旋流强度下气泡雾化喷嘴出口下游喷雾流场特性及燃烧特行进行了诊断与分析。
3.
In order to use low caloric value and components variable exhaust gas and raw gas from polygeneration system,a swirl premixed burner,whose swirl intensity is adjustable,was designed to obtain a highly efficient,less polluted and stable combustion.
针对多联产系统中热值较低、成份可变的弛放气和粗煤气的燃烧利用,设计了可调旋流强度预混合燃烧器来获得弛放气和粗煤气的高效、低污染稳定燃烧。
3) power spinning
强力旋压
1.
Research on power spinning forming process of aluminium alloy cylinders with inner ribs;
带内筋铝合金筒形件强力旋压成形工艺研究
2.
The development and present situation analysis of power spinning of cylinders;
筒形件强力旋压发展过程及其现状分析
3.
Analysis of power spinning process parameters selection mode for cylinders;
筒形件强力旋压工艺参数选取方式分析
5) swirling flow
强旋流
6) swirling intensity
旋转强度
1.
The actions of gas swirling intensity on the instability of the jets were analyzed.
为研究旋转气流对液体射流分裂与雾化的影响,建立了旋转气流中的空心柱形黏性液体射流三维模型,对气流旋转强度在射流分裂与雾化的作用进行分析计算。
补充资料:强制旋涡
分子式:
CAS号:
性质:是指在涡流中,随回转曲率半径r的增加,回转圆周速度也成比例增加的一种流动。由于强制旋涡流动的特点和回转固体一样,所以它又可称为刚体回转流动。回转流是与自由旋涡流动正好相对应的一种流动。
CAS号:
性质:是指在涡流中,随回转曲率半径r的增加,回转圆周速度也成比例增加的一种流动。由于强制旋涡流动的特点和回转固体一样,所以它又可称为刚体回转流动。回转流是与自由旋涡流动正好相对应的一种流动。
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