Please wait a minute...
水泥技术, 2019, 1(4): 79-82    doi: 10.19698/j.cnki.1001-6171.20194079
  节能减排 本期目录 | 过刊浏览 | 高级检索 |
基于solid edge脱硫系统管路设计的新思路及应用
1中材装备集团有限公司  2中材株洲水泥有限责任公司
New Design Ideas and Applications of Desulfurization System Based on Solid Edge
1. Sinoma Technology and Equipment Group Co., Ltd.  2. Sinoma Zhuzhou Cement Co., Ltd.
下载:  PDF (2900KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 简要介绍了solid edge三维管路设计软件,描述了采用solid edge软件设计脱硫系统管路的步骤,并利用三维模型生成对应的工程图纸,在三维视图上按顺序标记出对应管道的编号,从而有效地解决了设计中的管道干涉和空间布置问题,有效地避免了现场管道错装、漏装、少装等问题的发生,大大提高了从设计到安装的工作效率。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
宁波
肖胜星
关键词:  solid edge软件  三维设计  管路设计  脱硫系统  工程图    
Abstract: Desulfurization system of one foreign desulfurization field is the research object in this paper, which is built the desulfurization system equipment and 3D piping model through Solid Edge, meanwhile the system will be generated engineering drawings by 3D models, then the 3D view system will be marked the pipes so as to effectively solve the design of piping interference and spatial layout problems; Effectively solve the piping mistake packing, packing, short-ship error problem and so on. Greatly improve the efficiency from design to installation.
Key words:  solid edge    3D design    piping design    desulfurization system    engineering drawing
收稿日期:  2019-04-01                出版日期:  2019-07-25      发布日期:  2019-08-15      整期出版日期:  2019-07-25
ZTFLH:  TQ172.688.9  
引用本文:    
宁波, 肖胜星. 基于solid edge脱硫系统管路设计的新思路及应用[J]. 水泥技术, 2019, 1(4): 79-82.
NING Bo, XIAO Shengxing. New Design Ideas and Applications of Desulfurization System Based on Solid Edge. Cement Technology, 2019, 1(4): 79-82.
链接本文:  
http://www.cemteck.com/CN/10.19698/j.cnki.1001-6171.20194079  或          http://www.cemteck.com/CN/Y2019/V1/I4/79
[1] 李俊, 闫羽, 相冲.
DTⅡ型胶带输送机三维设计软件的开发与应用
[J]. 水泥技术, 2018, 1(4): 45-48.
[2] 赵翔, 鲁承桂, 邢利伟, 朴志友.
基于Surpac的水泥矿山三维建模与设计
[J]. 水泥技术, 2014, 1(1): 93-96.
[3] 相冲, 郭天代, 陈刚, 刘晔.
三维设计方法在水泥工厂设计中的应用
[J]. 水泥技术, 2009, 1(6): 27-30.
[1] . Review and Prospect of Engineering Practice of Waste Disposal in Cement Kiln in China[J]. Cement Technology, 2018, 1(1): 17 -21 .
[2] DI Dongren, TAO Congxi, CHAI Xingteng. Revision of Cement Energy Consumption Standards and Energy Saving Technology(Ⅰ)[J]. Cement Technology, 2018, 1(1): 22 -26 .
[3] LIU Yonggang, GAO Hongwei, XIAO Guiqing. Design Method of Road Structure Using Lean Concrete Base[J]. Cement Technology, 2018, 1(1): 27 -31 .
[4] LIU Xu, LI Liang. Investigation of New Medium Temperature Wear-resistant Alloy Steel[J]. Cement Technology, 2018, 1(1): 32 -34 .
[5] MA Debao. Finite Element Analysis of Inverted Cone in Raw Meal Silo[J]. Cement Technology, 2018, 1(1): 35 -38 .
[6] HAN Zhongqi. [J]. Cement Technology, 2018, 1(1): 38 -48 .
[7] XIE Jianzhong, LIAN Xuewen. Analysis and Solution of Segregation of the Kiln Ash in Continuous Raw Meal Homogenization Silo#br#[J]. Cement Technology, 2018, 1(1): 49 -53 .
[8] GUAN Laiqing, HE Yongxian. [J]. Cement Technology, 2018, 1(1): 54 -59 .
[9] WEI Can, ZHANG Yuanyuan, AI Jun. Application of Cement Intelligent Control System in Overseas Projects[J]. Cement Technology, 2018, 1(1): 60 -64 .
[10] WANG Qingjiang. Analysis on Mechanical Performance of Typical Joints in Tubular Frame Structure[J]. Cement Technology, 2018, 1(1): 83 -88 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
    PDF Preview