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大小头筒状纬编针织物建模及其线圈长度逆向设计 被引量:1
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作者 胡旭东 宋炎锋 +1 位作者 汝欣 彭来湖 《纺织学报》 EI CAS CSCD 北大核心 2021年第4期80-84,共5页
为解决针织物成形存在工艺设计目标与成形织物差异大的问题,提出一种从目标织物出发的织物线圈长度设计方法。根据圆形纬编针织机和纬编针织物的特性,将织物在周向和轴向划分为单元,提出基于Pierce模型改进的梯形线圈模型,并对大小头筒... 为解决针织物成形存在工艺设计目标与成形织物差异大的问题,提出一种从目标织物出发的织物线圈长度设计方法。根据圆形纬编针织机和纬编针织物的特性,将织物在周向和轴向划分为单元,提出基于Pierce模型改进的梯形线圈模型,并对大小头筒状纬编针织物建模。在此基础上得到各线圈长度与目标织物参数间关系,实现从目标织物出发的织物线圈长度计算,根据此控制线圈长度实现大小头筒状织物的设计。实验结果表明,大小头筒状纬编针织物中线圈长度的变化,理论与实际结果基本一致。根据提出的基于梯形线圈模型的建模方法,可依据大小头筒状纬编针织物参数得到任意线圈长度,实现线圈长度逆向设计。 展开更多
关键词 大小头筒状纬编针织物 几何建模 梯形线圈模型 线性划分 线圈长度
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Magnetic pressure in electromagnetic tube forming with echelon coil
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作者 赵志衡 于海平 +1 位作者 李春峰 李忠 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2008年第5期598-601,共4页
The effects of geometrical characteristics of echelon coil on the magnetic pressure distribution and their contribution to the final shape of parts were focused and investigated through experiments and numerical simul... The effects of geometrical characteristics of echelon coil on the magnetic pressure distribution and their contribution to the final shape of parts were focused and investigated through experiments and numerical simulation using FEM software ANSYS. The results show that the geometrical characteristics of echelon coil play a key role in controlling the magnetic pressure acting on the tube. They show a hump-like distribution near the interface between bigger diameter region and transition region of echelon coil, and affect the final shape of tubular parts then. With the reduction of relative diameter, the magnetic pressure in smaller diameter region decreases and its distribution gradient in transition region increases. With the augment of relative length, the magnetic pressure increases in bigger diameter region, while it almost remains constant in smaller diameter region, and the gradient in transition region enhances sharply. The distribution of magnetic pressure in the axial direction of tube agrees well with the profile of specimen. 展开更多
关键词 electromagnetic forming echelon coil numerical simulation magnetic pressure distribution
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