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Optimal Shape Design of Excavator Boom Using the Semi-Analytical Method

민감도 근사해석법을 이용한 굴삭기 붐의 최적형상설계

  • 임오강 (부산대학교 기계기술연구소) ;
  • 조헌 (부산대학교 대학원)
  • Published : 1995.01.01

Abstract

Shape optimal design of an excavator boom to minimize weight can be formulated as a nonlinear programming problem with an automesh refinement carried out by using the finite element method. The design variables are the radii and the coordinates of the circle to describe the excavator boundary shape. In addition to the displacement and stress constraints, geometric constraints are imposed such that the nodes cannot cross the certain range. The optimum design is obtained by using the PLBA nonlinear programming code. The sensitivity derivatives are calculated using the semi-analytical scheme. Numerical results of an excavator boom show potential for weight reduction of 4.4%(65.6 kgf) when considering the displacement, stress and geometric constraints.

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