1) one-point integration
单点积分
1.
An 8-node hexahedral element finite element dynamic explicit program,combining one-point integration with viscosity damping hourglass control algorithm,was developed for studying the material flowing deformation in ironing process.
为研究变薄拉深工艺中材料流动变形,开发了基于单点积分和粘性阻尼沙漏控制算法相结合的八节点六面体单元的有限元动力显式算法程序。
2.
A special-purpose finite element simulation system CoinForm was developed to analyze embossing process of commemorative coin,and one-point integration solid element finite element dynamic explicit program was designed.
开发了纪念币压印成形专用有限元分析系统CoinForm,设计了单点积分的实体单元有限元动力显式程序。
3.
Based on viscosity damping hourglass control method,a one-point integrational hexahedral finite element dynamic explicit algorithm was developed and ironing process simulation was also carried out.
采用黏性阻尼沙漏控制算法,开发了单点积分的八节点六面体单元的有限元动力显式算法程序,用于模拟厚钣金件的变薄拉深成形过程。
2) single point precise integration
单点精细积分
1.
A single point precise integration method of two level four point explicit difference schemes with higher stability for dispresive equation;
色散方程的高稳定性两层四点显格式的单点精细积分法
3) meticulous integration of one point subdomain
单点子域精细积分法
1.
For solving three dimensional diffusion equation, a meticulous integration of one point subdomain is established.
建立三维扩散方程的单点子域精细积分法 ,并通过稳定性分析 ,表明单点子域精细积分法相对于差分法的优越性 。
4) generalized single point precise integration
广义单点精细积分法
5) point-by-point integration
逐点积分
1.
The calculation of spot welding current is determined by the way of point-by-point integration,the software and hardware system is constituted based on 80C196KC single chip computer.
确定了以逐点积分法作为电流有效值的计算方法,建立了以80C196KC单片机为中心控制器件的软件、硬件系统。
6) the points of Gaussian integration
Gauss积分点
1.
By using this model method in which the vertical spring elements were located at the points of Gaussian integration, hysteretic course, skeleton curve, and ductility characteristic of the shear walls were analyzed.
通过对某大型火电厂主厂房纵向框架-剪力墙模型结构进行的伪静力试验,研究了此类工业厂房中纵向带边框柱剪力墙结构的抗震性能问题,并采用宏观有限元方法将这种剪力墙模型结构简化为一个多垂直杆模型,通过将竖向弹簧杆元放置在Gauss积分点处,不仅可以模拟出剪力墙结构的滞回曲线、骨架曲线以及延性等性能,还明显提高了计算效率。
补充资料:闭式单点、双点压力机
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主要参数内容 | 国际先进 | 国内先进 | 国内一般 | 国内落后 | 评定方法及说明 | ||
(一)加工精度 | 参照GB10924-89、GB10933-89、JB5200-91 | ||||||
1、滑块下平面对工作台上平面的平行度(mm) | 30%精度储备 | 20%精度储备 | 达到规定值 | 大于规定值 | |||
0.02+0.10/100×滑块下平面的被测长度 | |||||||
2、滑块行程对工作台上平面的垂直度 | 30%精度储备 | 20%精度储备 | 达到规定值 | 大于规定值 | |||
0.05+0.02/100×滑块行程长度 | |||||||
(二)结构性能 | |||||||
1、离合器、制动器接通率,当滑块行程次数≤16次/分时为70%,≤25次/分时为60%,≤45次/分时为50% | 大于规定值10% | 大于规定值 | 达到规定值 | 达不到规定值 | |||
2、液压超负荷保险装置、微调装置、吨位指示器 | 全部具有 | 全部具有 | 部分具有 | 没有 | |||
(三)噪声dB(A) | |||||||
1、公称力≤400kN | ≤85 | ≤87 | ≤88 | >88 | |||
2、公称力>400kN | ≤87 | ≤88 | ≤90 | >90 |
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条