随着绿色可再生能源的加速推进和可持续的客观要求,使得以水介质取代传统矿物油介质成为液压技术发展的重要方向,其自身也因其来源广、无污染、高安全等诸多优势,促使这项技术重新崛起。而水液压技术也因油水不同的物化特性,对液压阀的材料、结构等方面都提出了新要求。为提高优化效率及准确率、减少仿真过程中操作者的主观因素,本文针对纯水液压阀建立协同设计信息管理流程,在此基础上建立B/S结构模式下的协同系统结构及系统数据库。采用PHP、MySQL、MVC等技术,开发一种基于网络的“协同设计信息管理系统”,实现权限管理、任务管理、数据管理、仿生模型库等功能。
With the acceleration of green energy and the objective requirement of sustainable development, it has become an important direction of hydraulic technology to replace the fossil oil medium with aqueous medium. Moreover, the re-emergence of water hydraulic technology also attributes to its own advantages, such as a variety of sources, environmental protection and safety, etc. In order to improve the efficiency and accuracy of optimization, in view of the water hydraulic valve, a collaborative optimization design process is built. And on this basis, a collaborative system structure is established in B/S structure mode, which adopts PHP, MySQL, MVC and other technologies. Eventually, a prototype system——"Collaborative Design Information Management System" is developed based on B/S structure model, which can achieve various functions in the collaborative optimization management.
2016,(s1): 93-99 收稿日期:2016-07-29
DOI:10.3404/j.issn.1672-7619.2016.S1.016
分类号:TH137.52+1
基金项目:黑龙江省自然科学基金资助项目(F2016003);高等学校博士学科点专项科研基金资助项目(20122304110014);中央高校基本业务费(HEUCFX15008)
作者简介:胡铭钰(1993-),女,硕士研究生,研究方向为水液压技术。
参考文献:
[1] 刘延俊. 液压与气压传动[M]. 北京:机械工业出版社, 2006:2-181.LIU Yan-jun. Hydraulic and pneumatic transmission[M]. Beijing:China Machine Press, 2006:2-181.
[2] 朱小明. 我国液压行业技术创新现状与分析[J]. 流体传动与控制, 2011(5):7-11.ZHU Xiao-ming. Status and analysis of Chinese hydraulic technological innovation[J]. Fluid Power Transmission and Control, 2011(5):7-11.
[3] 杨华勇, 弓永军, 周华. 纯水液压控制阀研究进展[J]. 中国机械工程, 2004, 15(15):1400-1404.YANG Hua-yong, GONG Yong-jun, ZHOU Hua. Development review of water hydraulic valve[J]. China Mechanical Engineering, 2004, 15(15):1400-1404.
[4] NIE Song-lin, HUANG Guo-he, LI Yong-ping, et al. Research on low cavitation in water hydraulic two-stage throttle poppet valve[J]. Proceedings of the Institution of Mechanical Engineers, Part E:Journal of Process Mechanical Engineering, 2006, 220(3):167-179.
[5] KRUTZ G W, CHUA P S K. Water hydraulics-theory and applications 2004[C]//Workshop on Water Hydraulics, Agricultural Equipment Technology Conference. Louisville, USA:[s.n.], 2004:1-33.
[6] 白柳. 液压传动的重要发展方向--纯水液压传动[J]. 液压气动与密封, 2011, 31(6):12-13, 42.BAI Liu. Important development direction of hydraulic:The pure water hydraulic transmission[J]. Hydraulics Pneumatics & Seals, 2011, 31(6):12-13, 42.
[7] 芮延年, 刘文杰, 郭旭红. 协同设计[M]. 北京:机械工业出版社, 2003.RUI Yan-nian, LIU Wen-jie, GUO Xu-hong. Collaborative design[M]. Beijing:China Machine Press, 2003.
[8] WULF V, ROHDE M, PIPEK V, et al. Engaging with practices:design case studies as a research framework in CSCW[C]//Proceedings of the ACM 2011 Conference on Computer Supported Cooperative Work. New York:ACM, 2011:505-512.
[9] GERSON E M. Reach, bracket, and the limits of rationalized coordination:Some challenges for CSCW[M]//ACKERMAN M S, HALVERSON C A, ERICKSON T, et al. Resources, Co-Evolution And Artifacts. London:Springer, 2008:193-220.