3D CAD Model Retrieval and its Application: A Review

Hemant Dawande, Shantanu Kumar Das, Padmanabh Arun Gadge
International Journal of Analytical, Experimental and Finite Element Analysis
Volume 10: Issue 3, August 2023, pp 114-118


Author's Information

Hemant Dawande 1 

Corresponding Author
1G. H. Raisoni University , Mechanical Engineering Department, Saikheda, India
hemant.dawande.phdme@ghru.edu.in

Shantanu Kumar Das2

2Assistant Professor, Ajeenkya D Y Patil University, Pune, 412105, India

Padmanabh Arun Gadge3

3G H Raisoni University, Saikheda, Madhya Pradesh, 480337, India.


Review -- Peer Reviewed
Published online – 25 August 2023

Open Access article under Creative Commons License

Cite this article – Hemant Dawande, Shantanu Kumar Das, Padmanabh Arun Gadge “3D CAD Model Retrieval and its Application: A Review”, International Journal of Analytical, Experimental and Finite Element Analysis, RAME Publishers, vol. 10, Issue 3, pp. 114-118, August 2023.
https://doi.org/10.26706/ijaefea.3.10.20230806


Abstract:-
The use of this model is particularly important, especially in the aerospace, shipbuilding, automotive, and other fields that are producing more and more three dimensional CAD models, as most existing 3D model retrieval methods such as are based on multilevel extraction, 3D CAD model semantics. Existing model retrieval methods are limited to the retrieval between similar models,granularity as the foundation for retrieving similarities The majority of these methods begin by extracting 3D model features, compare similarity based on those attributes, and subsequently accomplish retrieval goals. applications for retrieving 3D CAD models are numerous. One crucial aspect of product development that must be addressed before product realisation is the retrieval process. Different assembly joint information (liaison), including geometric and non-geometric information, is required in order to choose the most appropriate joining procedure. An active tool must be used to capture, represent, and reuse this knowledge across domains in order for the effective selection of model retrieval to take place.The designer needs ontology-based information to analyse these multiple design requirements, functional requirements, and production requirements for the choice of joining technique. This article suggests some uses for 3D CAD model retrieval.
Index Terms:-
Reverse engineering, 3D model retrieval, Similarity, Digital model reuse.
REFERENCES
  1. Han, Z., Mo, R., Yang, H., & Hao, L. (2018). CAD assembly model retrieval based on multi-source semantics information and weighted bipartite graph. Computers in Industry, 96, 54-65.
    Crossref

  2. Katia lupinetti, franca Giannini, Marina Monti, jean- philippe pernot CDE ELSEVIER Concurrent Engineering 23(1), 40–63 (2015)

  3. Katia lupinetti jean-philippe pernot Marina Montia,Franca Giannine (2019) Content- based CAD assembly model retrieval : Survey and future challenges Computer-Aided Design 113 (2019) 62-81
    Crossref

  4. Sang Min Jeon a, Jae Hyun Lee b, Gyeong June Hahm c, Hyo Won Suh:Automatic CAD model retrieval based on design documents using semantic processing and rule processing S.M. Jeon et al. / Computers in Industry 77 (2016) 29–47
    Crossref

  5. Fei Guo a, jiahuan Liu, Xiaowei Zhou, Hui Wang, Yun Zhang, Dequn Li, Huamin Zhou An effective retrieval method for 3D models in plastic injection molding for process reuse Applied Soft Computing Journal 101 (2021) 107034
    Crossref

  6. Wenjine, Gary Mac,Nektarios Georgios Tsoutsos,Nikhil Gupta,Ramesh karri computer aided design CAD model search and retrieval using frequency domain file conversion
    Crossref

  7. Fei Jie Zhang jiazhen Pang jianfeng Yu,Pan Wang : An efficient assembly retrieval method based on Hausdorff distance.Robotics and computer-integrated Manufacturing 51 (2018) 103-111
    Crossref

  8. Zhoupeng Han, Rong Mo,Li Hao Clustering and retrieval of mechanical CAD assembly models based on multi-source attributes information (2019)
    Crossref

  9. Kaoru katayama,Member and Takashi HCRASHIMA,Nonmember IEICE TRANS.INF & SYST.VOL.103- D,No.5MAY2020

  10. K.lupinetti,F.Giannini,M.Monti,J.P Pernot Multi-Criteria similarity assessment for CAD assembly model retrieval.
    Crossref

  11. Huag Mingcong, Suishaocum, Mouwenping,mZhangshusheng,cao wenjum Three-dimensional CAD Model Retrieval Algorithm Based on ontology.procedia CIRP 56 (2016) 590-593
    Crossref

  12. M.Rezayat knowelege-based product development using XML and kes comput –Aided Des 32 (s) (2000) 299-309 Z lik Ramani ontology based design information extraction and retrieval AI EDAM 21 (2007) 137-154 13.Wenjin Li, Gary Mac, Nektarios Georgios Tsousos, Nikhil Gupta, Ramesh korri:Computer aided design (CAD) model search and retrieval using frequency domain file conversion ELSEVIER Additive Manufacturing 36 (2020) 101554
    Crossref

  13. Zhoupeng Han, Rong , Li Hao Clustering and retrieval of mechanical CAD assembly models based on multi - source attributes information. Robotics and Computer Integrated Manufacturing 58 (2019) 220–229
    Crossref

  14. Huang Mingconga,*, Sui Shaocuna, Mou Wenpinga, Zhangshushengb, Cao wenjun:Three-dimensional CAD Model Retrieval Algorithm Based on Ontology ELSEVIER Procedia CIRP 56 ( 2016 ) 590 – 593
    Crossref

  15. Feiwei Qin , shuming Gao, xiaoling Yang, Ming Li jing Bai, An ontology-based semantic apporoach for hetrogeneous 3D CAD Model, ELSIVIER Advanced Engineering Informatics 30 (2016) 751–768
    Crossref

  16. Jing Bareality for content-based image retrieval. In: IEEE International Conference on Multimedia and Expo, 2001. ICME 2001.(ICME).pp.4447(2001).https://doi.org/10.1109/ICME.2001.1237651.
    Crossref

  17. Henrique’s, D., Mendes, D., Pascoal, P., Trancoso, I., Ferreira, A.: Poster: Evaluation of immersive visualization techniques for 3D object retrieval. In: 2014 IEEE Symposium on 3D User Interfaces (3DUI). pp. 145–146. IEEE (2014)
    Crossref

  18. Lupinetti, K., Giannini, F., Monti, M., Pernot, J.P.: Multi-criteria retrieval of CAD assembly models. Journal of Computational Design and Engineering 5(1), 41 – 53 (2018)
    Crossref

  19. Lupinetti, K., Giannini, F., Monti, M., Pernot, J.P.: Multi-criteria similarity assessment for CAD assembly models retrieval. IMATI Report Series (18- 07), 21 (08/2018 2018), http://irs.imati.cnr.it/reports/irs18-07
    Crossref

  20. Liu, L., Huai, Y.: Dynamic hand gesture recognition using lmc for flower and plant interaction. International Journal of Pattern Recognition and Artificial Intelligence 33(01),1950003(2018)
    Crossref

  21. n, C.S., Khoury, M.: Human Motion Sensing and Recognition. Springer (2017)
    Crossref

  22. Lawson, G., Salanitri, D., Waterfield, B.: Future directions for the development of virtual reality within an automotive manufacturer. Applied ergonomics 53, 323–330 (2016)
    Crossref

  23. Cook, M.: Virtual serendipity: preserving embodied browsing activity in the 21st century research library. The Journal of Academic Librarianship 44(1), 145–149 (2018)
    Crossref

  24. Cordeiro, E., Giannini, F., Monti, M., Mendes, D., Ferreira, A.: A study on natural 3D shape manipulation in vr. In: Livesu, M., Pintore, G., Signoroni, A. (eds.) Smart Tools and Apps for Graphics - Eurographics Italian Chapter Conference. The Eurographics Association (2018).
    Crossref

  25. Cui, J., Kuijper, A., Fellner, D.W., Sourin, A.: Understanding people’s mental models of mid-air interaction for virtual assembly and shape modeling. In: Proceedings of the 29th International Conference on Computer Animation and Social Agents. pp.139–146.ACM(2016)
    Crossref

  26. Lawson, G., Salanitri, D., Water field, B.: Future directions for the development of virtual reality within an automotive manufacturer. Applied ergonomics 53, 323–330 (2016)
    Crossref

  27. Cook, M.: Virtual serendipity: preserving embodied browsing activity in the 21st century research library. The Journal of Academic Librarianship 44(1), 145–149 (2018)
    Crossref

  28. Cordeiro, E., Giannini, F., Monti, M., Mendes, D., Ferreira, A.: A study on natural 3D shape manipulation in vr. In: Livesu, M., Pintore, G., Signoroni, A. (eds.) Smart Tools and Apps for Graphics - Eurographics Italian Chapter Conference. The Eurographics Association (2018).
    Crossref

  29. Cui, J., Kuijper, A., Fellner, D.W., Sourin, A.: Understanding people’s mental models of mid-air interaction for virtual assembly and shape modeling. In: Proceedings of the 29th International Conference on Computer Animation and Social Agents. pp. 139–146. ACM (2016)
    Crossref

  30. Cui, J., Kuijper, A., Sourin, A.: Exploration of natural free-hand interaction for shape modeling using leap motion controller. In: 2016 International Conference on Cyberworlds (CW). pp. 41–48. IEEE (2016)
    Crossref

  31. Cui, J., Sourin, A.: Mid-air interaction with optical tracking for 3D modeling. Computers & Graphics 74, 1– 11 (2018)
    Crossref

  32. Gunawardane, P., Medagedara, and N.T.: Comparison of hand gesture inputs of leap motion controller & data glove in to a soft finger. In: Robotics and Intelligent Sensors (IRIS), 2017 IEEE International Symposium on. pp. 62– 68. IEEE (2017
    Crossref

  33. Henriques, D., Mendes, D., Pascoal, P., Trancoso, I., Ferreira, A.: Poster: Evaluation of immersive visualization techniques for 3D object retrieval. In: 2014 IEEE Symposium on 3D User Interfaces (3DUI). pp. 145–146. IEEE (2014)
    Crossref

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"/> 3D CAD Model Retrieval and its Application: A Review

3D CAD Model Retrieval and its Application: A Review

Hemant Dawande
International Journal of Analytical, Experimental and Finite Element Analysis
Volume 10: Issue 1, March 2023, pp 21-28


Author's Information

Hemant Dawande 1 

Corresponding Author
1G. H. Raisoni University , Mechanical Engineering Department, Saikheda, India
hemant.dawande.phdme@ghru.edu.in

Article -- Peer Reviewed
Published online – 31 March 2023

Open Access article under Creative Commons License

Cite this article – Hemant Dawande , “3D CAD Model Retrieval and its Application: A Review”, International Journal of Analytical, Experimental and Finite Element Analysis, RAME Publishers, vol. 10, issue 1, pp. 21-28, March 2023.
https://doi.org/10.26706/ijaefea.3.10.20230806


Abstract:-
The use of this model is particularly important, especially in the aerospace, shipbuilding, automotive, and other fields that are producing more and more three dimensional CAD models, as most existing 3D model retrieval methods such as are based on multilevel extraction, 3D CAD model semantics. Existing model retrieval methods are limited to the retrieval between similar models,granularity as the foundation for retrieving similarities The majority of these methods begin by extracting 3D model features, compare similarity based on those attributes, and subsequently accomplish retrieval goals. applications for retrieving 3D CAD models are numerous. One crucial aspect of product development that must be addressed before product realisation is the retrieval process. Different assembly joint information (liaison), including geometric and non-geometric information, is required in order to choose the most appropriate joining procedure. An active tool must be used to capture, represent, and reuse this knowledge across domains in order for the effective selection of model retrieval to take place.The designer needs ontology-based information to analyse these multiple design requirements, functional requirements, and production requirements for the choice of joining technique. This article suggests some uses for 3D CAD model retrieval.
Index Terms:-
Reverse engineering, 3D model retrieval, Similarity, Digital model reuse.
REFERENCES
  1. Balakov Yu. N., Safety of power plants in questions and answers / Yu.N. Balakov - Pract. manual, part 1 - M. Ed. MPEI, 2008 .—768 p.

  2. Bogoslovsky V.N. Heating and ventilation / V.N. Bogoslovsky, V.I. Novozhilov, B.D. Simakov, V.P. Titov. Ed. V.N. Bogoslovsky, part 2, Ventilation - M., Stroyizdat, 1976.- 439 p.

  3. Bogoslovsky V.N. Thermophysics of heat recovery devices for heating, ventilation and air conditioning systems / V.N. Bogoslovsky, M. Ya. Pos.- M .: Stroyizdat, 1983. – 320 p.

  4. Golubkov B.N. Heat engineering equipment and heat supply of industrial enterprises / B.N. Golubkov, O. L. Danilov, L.V. Zosimovsky and others; Ed. B.N. Golubkov. - 2nd ed. revised - M .: Energiya, 1979 – 544 p.

  5. Krupnov B.A. Heating devices manufactured in Russia and the Near Abroad / B.A. Krupnov, D.B. Krupnov. 3rd ed. add. and revised - M.: Publishing house of the Association is building. Universities, 2010.– 152 p.

  6. Lebedev PD Heat exchange, drying and refrigeration units. - 2nd ed. revised - M.: Energiya, 1972. – 320 p.

  7. Nazmeev Yu.G. Heat power systems and energy balances of industrial enterprises. SOUTH. Nazmeev, I.A. Konokhina. - study. allowance, - M. Ed. MPEI, 2003. – 407 p.

  8. Industrial heat and mass transfer processes and installations. / Ed. A.M. Baklastova / -M.: Energoatomizdat, 1986. – 328 p.

  9. Industrial heat and power engineering and heat engineering: Handbook / Under. ed. V. A. Grigorieva and V. M. Zorin / - M .: Energoatomizdat, 1991 .-- 588 p.

  10. D. V Bhise, S. A. Choudhari, M. A. Kumbhalkar, M. M. Sardeshmukh, “Modelling the Critical Success Factors for Advanced Manufacturing Technology Implementation in Small and Medium Sized Enterprises”, 3C Empresa, Ed. 50 Vol. 11 No. 2, August - December 2022, pp 263 - 275.
    Crossref

  11. Bhise, D. V., Choudhari, S. A., Kumbhalkar, M., & Sardeshmukh, M. M., “Assimilation of advanced manufacturing technologies in small and medium sized enterprises: an empirical analysis”, Multidisciplinary Science Journal, volume 5, issue 4, 2023.
    Crossref

  12. SP 41–101–95 Designing of heating points - M.: Ministry of Construction of Russia, 1976. - 78p.


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