Please wait a minute...
Chinese Journal of Engineering Design  2007, Vol. 14 Issue (4): 315-319    DOI:
    
Research on reverse engineering modeling of ship liquid cargo tank based on development of imageware
 ZHAO  Cui-Lian, FENG  Xiao-Wei, WANG  Huan-Long, CHEN  Yu
College of Mechatronics Engineering and Automation Shanghai University, Shanghai 200072, China
Download: HTML     PDF(445KB)
Export: BibTeX | EndNote (RIS)      

Abstract  Reverse modeling is a crucial step of reverse engineering. Development and widely application of laser measuring technology propose higher requirements on reverse modeling technology. In this paper, by taking Imageware and UG as developing platform, utilizing the inner customized development language Scoll of Imageware and UG/OPEN API, combining mid-long distance laser measure equipments, discussion on reverse modeling technology of ship liquid cargo tank is carried out. And then this technology is applied in its reverse modeling, which provides a new method for calculating the capability and rebuilding of ship liquid cargo tank.

Key wordsCAD      reverse engineering      modeling      development      ship liquid cargo tank     
Published: 28 August 2007
Cite this article:

ZHAO Cui-Lian, FENG Xiao-Wei, WANG Huan-Long, CHEN Yu. Research on reverse engineering modeling of ship liquid cargo tank based on development of imageware. Chinese Journal of Engineering Design, 2007, 14(4): 315-319.

URL:

https://www.zjujournals.com/gcsjxb/     OR     https://www.zjujournals.com/gcsjxb/Y2007/V14/I4/315


基于二次开发的液货舱逆向建模技术

逆向建模是逆向工程中的重要环节,激光测量技术的发展及其广泛应用对逆向建模技术提出了更高的要求。以Imageware和UG为开发平台,利用Imageware内嵌的Scoll二次开发语言以及UG/OPEN API技术,结合中长距离激光测量设备,进行液货舱逆向建模技术的探讨。将该项技术应用于液货舱的逆向建模中,为船舶液货舱舱容计算及船舶改造提供一种新的方法。

关键词: CAD,  逆向工程,  建模,  二次开发,  液货舱 
[1] Di ZHAO,Guo CHEN,Xiaoli CHEN,Xiongjin WANG. Terrain adaptive mechanism design and obstacle-surmounting performance analysis of wheeled search and rescue robot[J]. Chinese Journal of Engineering Design, 2023, 30(5): 579-589.
[2] Baicun WANG,Kailing ZHU,Jinsong BAO,Feng WANG,Haibo XIE,Huayong YANG. Intelligent design and scheduling optimization of painted body storage based on digital pedestal system[J]. Chinese Journal of Engineering Design, 2023, 30(4): 399-408.
[3] Zhimin GUO,Haishu DAI,Jiang ZHAI,Haocen HONG,Baicun WANG,Haibo XIE,Huayong YANG. Distributed co-simulation and dynamic optimization of axial piston pump based on FMI[J]. Chinese Journal of Engineering Design, 2023, 30(4): 495-502.
[4] Jun GUAN,Yihua DING,Qingtao GE,Shuai ZHAO,Yang LU,Jie ZHANG. Rapid manufacturing of RFID antennas based on multi-material 3D printing technology[J]. Chinese Journal of Engineering Design, 2023, 30(3): 288-296.
[5] Shaojie LIU,Zhihai LI,Zhixiang LIU,Kang ZOU. Research on spatial modeling method for excavation tunnels based on laser scanning and 3D grid map[J]. Chinese Journal of Engineering Design, 2023, 30(3): 306-314.
[6] Zhan YANG,Qipeng LI,Wei TANG,Kecheng QIN,Suifan CHEN,Kaidi WANG,Yang LIU,Jun ZOU. Design and analysis of small land-air deformable amphibious robot[J]. Chinese Journal of Engineering Design, 2023, 30(3): 325-333.
[7] Guiliang CHEN,Zihao LI,Chao CAI,Yongchao LI,Dong YANG. Design and mechanism optimization of lower limb exoskeleton based on human dynamics analysis[J]. Chinese Journal of Engineering Design, 2023, 30(3): 362-371.
[8] Ya-chao MA,Lei TAO,Zhun RONG. Review of PDC bit cutter arrangement technology[J]. Chinese Journal of Engineering Design, 2023, 30(1): 1-12.
[9] Ke-jun LI,Miao-lin CHEN,Jiang-yin WANG,Xue-jun YAO,Min-ya DENG,Long GAO. Study on brake valve performance of hydraulic brake system of wet spraying machine[J]. Chinese Journal of Engineering Design, 2022, 29(5): 579-586.
[10] Fu-qiang ZHAO,Te DU,Bao-yu CHANG,Zhi-gang NIU. Dynamics analysis and experimental research on leg lifting condition of limb-leg crawler foot mechanism[J]. Chinese Journal of Engineering Design, 2022, 29(4): 474-483.
[11] Ke-jun LI,Min-ya DENG,Wen-jing HUANG,Yu ZHANG,Jia-wang ZENG,Miao-lin CHEN. Study on working characteristics of swing system of concrete wet spraying machine[J]. Chinese Journal of Engineering Design, 2022, 29(4): 519-526.
[12] Yong-de ZHANG,Qing WANG,Wei-feng YANG. Wing docking tolerance allocation based on key measurement features[J]. Chinese Journal of Engineering Design, 2022, 29(3): 300-308.
[13] Wei GAO,Wei ZHANG,Hai-tao GU,Ling-shuai MENG,Hao GAO,Zhi-chao ZHAO. Analysis of motion characteristics of large deep-sea AUV unpowered spiral diving[J]. Chinese Journal of Engineering Design, 2022, 29(3): 370-383.
[14] LI Rui, LI Wen-qiang, QI Xiao-hua, WANG Meng, SONG Yue-gang, LIU Yang. Automatic extraction and realization of text information for multiple CAD drawings[J]. Chinese Journal of Engineering Design, 2021, 28(2): 148-154.
[15] CUI Ya-jun, GUO An-fu, JIANG Tao, LI Jun-jie, LI Yong-xin. Structural design and analysis of mobile emergency water purification trolly with continuous water intake[J]. Chinese Journal of Engineering Design, 2021, 28(1): 105-111.