TY - JOUR
T1 - Generating Gn parametric blending surfaces based on partial reparameterization of base surfaces
AU - Song, Qiuzhi
AU - Wang, Jianzhong
PY - 2007/11
Y1 - 2007/11
N2 - A method for generating parametric Gn blending surfaces based on reparameterization of partial surface patches of the base surfaces is presented. In the method, partial regions, called reparameterized local base surfaces, near the contact curves on both base surfaces are reparameterized first. Then a parametric Gn blending surface is generated by a linear combination of the two reparameterized local base surface patches by using Erich Hartmann's method. Here, contact curves can be arbitrarily defined by users according to practical requirements. Some methods for determining the reparameterized local base surfaces are given, and thereafter the influences of the reparameterized local base surfaces on the blending surface are discussed in detail. In addition, in order to achieve the fairness of the blending surface, a shape optimization method for minimizing the strain energy of the surface is proposed. Finally, some examples, including a G2 blending surface generated with the method between an aerofoil and a missile body, are given to demonstrate the effectiveness of the proposed approach.
AB - A method for generating parametric Gn blending surfaces based on reparameterization of partial surface patches of the base surfaces is presented. In the method, partial regions, called reparameterized local base surfaces, near the contact curves on both base surfaces are reparameterized first. Then a parametric Gn blending surface is generated by a linear combination of the two reparameterized local base surface patches by using Erich Hartmann's method. Here, contact curves can be arbitrarily defined by users according to practical requirements. Some methods for determining the reparameterized local base surfaces are given, and thereafter the influences of the reparameterized local base surfaces on the blending surface are discussed in detail. In addition, in order to achieve the fairness of the blending surface, a shape optimization method for minimizing the strain energy of the surface is proposed. Finally, some examples, including a G2 blending surface generated with the method between an aerofoil and a missile body, are given to demonstrate the effectiveness of the proposed approach.
KW - Base surface
KW - Blending surface
KW - Contact curve
KW - Linear combination
KW - Reparameterized local base surface
KW - Shape optimization
UR - http://www.scopus.com/inward/record.url?scp=35148872708&partnerID=8YFLogxK
U2 - 10.1016/j.cad.2007.06.009
DO - 10.1016/j.cad.2007.06.009
M3 - Article
AN - SCOPUS:35148872708
SN - 0010-4485
VL - 39
SP - 953
EP - 963
JO - CAD Computer Aided Design
JF - CAD Computer Aided Design
IS - 11
ER -