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多截面异形喷丝组件及其纺丝工艺探讨 被引量:2
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作者 刘宏午 《合成纤维》 CAS 1999年第5期15-17,共3页
在POY-DTY生产线上,采用一种新型的喷丝组件,可在同一喷丝组件下纺制出具有两种以上异形截面的多截面异形纤维,探讨了多截面异形喷丝组件的纺丝稳定性及其在纺丝过程中工艺条件对纤维异形度的影响.
关键词 POY DTY 多截面异形 喷丝 纺丝 工艺 聚酯纤维
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Design of two dimensional nonsingular internal-external cloaks with arbitrary cross-section 被引量:1
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作者 HE Xiao WU LinZhi 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第7期1373-1383,共11页
According to the combination of the complementary medium and transformation optics, the shape of two-dimensional (2D) internal-external cloaks has been generalized into any geometry to adapt to the variety of object s... According to the combination of the complementary medium and transformation optics, the shape of two-dimensional (2D) internal-external cloaks has been generalized into any geometry to adapt to the variety of object shapes. In order to adapt to the practical application, some approximations have been introduced to eliminate the infinite singularity of the parameters in the compressed region by adjusting the principle sketch out of the plane. Firstly, the general parameter equations of the nonsingular cloak with arbitrary cross-section are deduced strictly by the mathematical method based on coordinate transformations in the cylindrical coordinate system. Secondly, taking into account the discontinuous property of the curve functions of arbitrary polygons, a supplementary investigation is given for the nonsingular cloak with arbitrary polygonal cross-section. The transformations in the supplementary study are carried out in the Cartesian coordinate system directly and referred to the coordinates of the polygon's vertices rather than the curve function of the polygon. Last, the invisibility effect of the corresponding cloak is studied by full-wave simulations based on the finite element method. The applicable scope of the 2D internal-external cloak is expanded greatly by the methods and results given in this paper. 展开更多
关键词 nonsingular internal-external cloaks arbitrary geometry arbitrary polygon transformation optics complementary medium simulations
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