신경회로망을 이용한 선상가열공정의 가열선 위치선정에 관한 연구

Prediction of Heating-line Positions for Line Heating Process by Using a Neural Network

  • 손광재 (한국원자력연구소 동위원소이용연구부) ;
  • 양영수 (전남대학교 기계공학과) ;
  • 배강열 (진주산업대학교 산업자동화공학과)
  • 발행 : 2003.08.01

초록

Line heating is an effective and economical process for forming flat metal plates into three-dimensional shapes for plating of ships. Because the nature of the line heating process is a transient thermal process, followed by a thermo elastic plastic stress field, predicting deformed shapes of plate is very difficult and complex problem. In this paper, neural network model o3r solving the inverse problem of metal forming is proposed. The backpropagation neural network systems for determining line-heating positions from object shape of plate are reported in this paper. Two cases of the network are constructed-the first case has 18 lines which have different positions and directions and the second case has 10 parallel heating lines. The input data are vertical displacements of plate and the output data are selected heating lines. The train sets of neural network are obtained by using an analytical solution that predicts plate deformations in line heating process. This method shows the feasibility that the neural network can be used to determine the heating-line positions in line heating process.

키워드

참고문헌

  1. Journal of the Society of Naval Architectures of Japan v.130 Development of simulator for plate by line heating considering in-plane shrinkage Nomoto,T.;Takechi,S.;Shouki,K.
  2. Journal of Ship Research v.31 no.4 The mechanics of flame bending process: Theory and Applications Moshaiov,a.;Vorus,W.S.
  3. Journal of Ship Research v.35 no.2 Modified strip model for analyzing the line heating method-Part 1: Elastic plates Shin,J.G.;Moshaiov,A.
  4. Journal of Ship Research v.35 no.3 Modified strip model for analyzing the line heating method-Part 2: Thermoelastic-plastic plates Moshaiov,A.;Shin,J.G.
  5. Journal of Ship Production v.13 no.1 A Study on the Prediction of Deformations of Plates due to Line Heating using a Simplified Thermal Elasto-Plastic Analysis Method Jang,C.D.
  6. International Journal of Mechanical Science v.43 Efficient Simulation of Shell Forming by Line Heating Yu,G.;Anderson,R.J.;Maekawa,T.;Patrikalakis,N.M. https://doi.org/10.1016/S0020-7403(01)00037-6
  7. Journal of the Society of Naval Architects of Japan v.170 Development of Computer Aided Process Planning System for Plate Bending by Line Heating(1st Report), Relation Between Final Form of the Plate and Inherent Strain Ueda,Y.;Murakawa,H.;Mohamed,R.A.;Neki,I.;Kamachika,R.;Ishiyama,M.;Ogawa,J.
  8. Jounal of Japanese Welding Society v.39 no.4 A method for analysis of residual welding stresses and deformations basd on the inherent strain Tsugio Fujimoto https://doi.org/10.2207/qjjws1943.39.4_236
  9. Science and Technology of Welding and Joining v.5 no.4 Analysis of Angular Distortion in Weldments using Laminated Plate Theory Son,K.J.;Yang,Y.S.;Beom,H.G. https://doi.org/10.1179/136217100101538272
  10. Journal of the Korean Welding Society v.21 no.2 Estimation of plate deformation in thermal processing usingthe eigen strain concept Son,K.J.;Yang,Y.S.;Chang S.G.
  11. Journal of Microbiological Methods no.43 Artificial neural networks: fundamentals, computing, design and application Basheer,I.A.;Hajmeer,M.
  12. Analysis of Welded Structures Masubuchi,K.
  13. Mechanics of Materials v.31 Analysis of a Multilayered Plate Containing a Cuboidal Inclusion with Eigenstrain Beom,H.G.;Kim,I.B. https://doi.org/10.1016/S0167-6636(99)00035-6