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锻造液压机成套设备可视化集成平台开发
英文标题:Development of visual integration platform for forging hydraulic press equipment
作者:赵国栋 王丽薇 刘振宇 裘辿 
单位:太原重工股份有限公司 浙江大学 
关键词:锻造液压机 数字样机 可视化平台 
分类号:TG315;TP319
出版年,卷(期):页码:2015,40(6):79-83
摘要:

基于Virtools渲染引擎和C++语言编写的可视化集成仿真引擎,开发了锻造液压机成套设备可视化集成平台,介绍了三维模型文件转换格式、成套设备场景布置和整合处理、联合仿真曲线和云图数据提取方法,以及平台运行脚本定义和平台架构等,进行了锻造液压机、锻造操作机、厂房和配套设施的全景展示,并以曲线和云图方式集成显示机、电、液联合仿真软件和有限元软件获取的分析结果,实现了对成套设备组成、基本运动、工艺过程和工作性能的可视化仿真。
 

The visual integration platform for forging hydraulic press equipment was developed based on the Virtools renders engine and visual integration simulation engine coded by C++. It was introduced the format transformation of three-dimensional model file, arrangement and integration of scenes, simulated curves and nephogram data extraction method, operation script definition and architecture of visualization platform. A panoptic display on forging hydraulic press, forging manipulator, workshop and affiliated establishment was carried out. Furtherly, analysis results from mechanical-electrical-hydraulic co-simulation software and finite element analysis software were showed with curves and nephogram. The visual simulation of equipment composition, basic movement, technological process and working performance was realized.

基金项目:
山西省自然科学基金资助项目(2010011026-1);太原市一流自主创新基地项目(20-200 MN双柱式快速锻造液压机及操作机系列产业化)
作者简介:
赵国栋(1967-),男,学士,高级工程师
参考文献:


[1]冯培锋,孔祥林,王仲仁.塑性加工过程的数值模拟与可视化[J].模具工业,2000,26(9):14-16.Feng P F,Kong X L,Wang Z R.Numerical simulation and visualization of plastic processing [J].Die & Mould Industry,2000,26(9):14-16.
[2]田永利,颜云辉.多领域系统可视化建模仿真平台集成开发[J].计算机辅助设计与图形学学报,2008,20(4):526-531.Tian Y L,Yan Y H.Integrated development of a visualized modeling and simulation platform for multi-domain systems [J].Journal of Computer-aided Design & Computer Graphics,2008,20(4):526-531.
[3]刘希,朱凡,蔡满意,等.飞行控制系统可视化仿真平台设计[J].计算机工程,2011,37(16):260-266.Liu X,Zhu F,Cai M Y,et al.Design of visual simulation platform for flight control system[J].Computer Engineering,2011,37(16):260-266.
[4]陆灏铭,陈玮.船舶运动可视化仿真平台的设计与实现[J].计算机仿真,2012,29(8):277-281.Lu H M,Chen W.Design and realization of visualizing simulation platform for ship motion [J].Computer Simulation,2012,29(8):277-281.
[5]梁蓓蓓,陈志云.基于数据可视化的开放式虚拟教学平台的研究[J].现代计算机,2008,(9):51-53.Liang B B,Chen Z Y.Research on the open virtual teaching platform based on data visualization [J].Modern Computer,2008,(9):51-53.
[6]何耀光,陆培军,胡郁华.基于三维全景的可视化平台技术的研究与实践[J].计算机与现代化,2010,(12):145-148.He Y G,Lu P J,Hu Y H.Research and practice of visualization platform technology based on three-dimensional panoramic[J].Computer and Modernization,2010,(12):145-148.
[7]王赟,刘苏醒,李文星.三维计算模型的网格划分及可视化平台的开发[J].兰州理工大学学报,2012,38(4):31-34.Wang Y,Liu S X,Li W X.Development of platform for meshing and visualization of 3-D computational model [J].Journal of Lanzhou University of Technology,2012,38(4):31-34.
[8]程汉涛,王学俊,孔新伟,等.贴片机可视化运动仿真系统设计与实现[J].电子器件,2014,37(2):270-274.Cheng H T,Wang X J,Kong X W,et al.Research and implementation of a visual simulation system on chip mounter [J].Chinese Journal of Electron Devices,2014,37(2):270-274.
[9]胡志刚,邹恒华,钟掘.一个可视化并行程序开发平台的构架及实现[J].计算机工程与应用,2001,(9):111-113.Hu Z G,Zou H H,Zhong J.Framework and realization of a visual parallel programming platform [J].Computer Engineering and Applications,2001,(9):111-113.
[10]陈伟文.注塑机可视化虚拟设计平台的开发[J].轻工机械,2006,24(4):1-3.Chen W W.Research on visual virtual design platform for the injection molding machines [J].Light Industry Machinery,2006,24(4):1-3.

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