1.
Comparative Teaching Method on Heat Transfer of Heat Preserver and Rib outside Cylinder Wall;
圆筒壁外加设肋片以及保温层传热的比较教学
2.
Study of the System of Cylinder Wall's Roundness Error Measurement Online

圆筒内壁圆度误差在线检测系统研究
3.
The molecules of air would bombard all sides and both ends of the cylinder.

空气的分子会撞击圆筒的整个筒壁和上下两端。
4.
Study of Thermal Stress Distribution on Thick Wall Cylinder by Thermal Shock Treatment;

厚壁圆筒热冲击作用下应力分布研究
5.
Cylinder Wall Thickness Calculation in A-317 of ASME Code Section Ⅰ Power Boilers (2007 Edition)
ASME CODEI卷中圆筒体壁厚的计算式
6.
The research on the load bearing capacity of wedged-ring joint structure of thin-wall cylinder
薄壁圆筒楔环连接结构承载能力研究
7.
Cylinder Wall's Roundness Testing System Online and the Accuracy on Research

圆筒内壁圆度误差在线检测系统及精度研究
8.
Analysis of Circumferentially Arc Welded Thin-Walled Cylinders to Investigate the Residual Stress Fields
圆弧焊接薄壁圆筒残余应力场的分析研究
9.
Unified incremental solution of thin cylinder under step deformation path

薄壁圆筒在阶形变形路径下的统一增量解
10.
Research on the Design of Large Steel Cylinder Quay Structure;

插入式钢质大圆筒岸壁结构的设计研究
11.
The Optimum Autofrettage Analysis of Thick-Walled Cylinder of the Material of Different Tension and Compression;
拉压异性材料厚壁圆筒的最佳自增强分析
12.
Study on the Thickness Calculation Method of Viscoelastic Materials Cylinder Liquid Tank

圆筒形黏弹性材料液体储罐壁厚计算方法研究
13.
The Study of Spinning Precision Control for Thin Wall Cylinder with Large Length-diameter Ratio
大长径比薄壁圆筒旋压精度控制工艺研究
14.
Test Research on Static Strength of Steel Thin Wall Short Cylinder at Internal Pressure

钢制薄壁内压短圆筒静强度的试验研究
15.
FEM analysis of pressing material installment axial compressive loads cylinder of sintering machine
烧结机压料装置中轴压厚壁圆筒有限元分析
16.
Effect of Choker Clearance on Roundness of Thinwall Cylinder of Super Invar Steel

闷头间隙对超因瓦钢薄壁筒件圆度的影响
17.
By solving an inverse heat conduction problem, one method is given about to compute wall thickness of cylinder-shaped equipment based on the outer surface tempereture.
利用红外测温技术,结合导热反问题求解,给出了一种根据圆筒外壁温度计算筒壁厚的方法。
18.
Fatigue experiment of thick-walled cylinders under 3500kg/cm2 superpressure and autofrettage
3500公斤/厘米~2超高压厚壁圆筒的疲劳试验与自紧