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基于点集贝塞尔曲线优化的激光振镜加工算法 被引量:2
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作者 沈志飞 刘晓东 +1 位作者 费锡磊 康恺 《激光技术》 CAS CSCD 北大核心 2021年第5期548-553,共6页
为了解决激光振镜加工中由于数据点集过于密集导致激光在单点停滞时间过长引起激光烧蚀问题,将原始数据点集经过稀疏化、曲线点集分段、三角二分法贝塞尔曲线拟合数据处理,转换成由少量直线和曲线构成的实体,在激光路径输出时,根据输出... 为了解决激光振镜加工中由于数据点集过于密集导致激光在单点停滞时间过长引起激光烧蚀问题,将原始数据点集经过稀疏化、曲线点集分段、三角二分法贝塞尔曲线拟合数据处理,转换成由少量直线和曲线构成的实体,在激光路径输出时,根据输出放大倍数的大小及曲线曲率大小对曲线进行整体的适应性插补,从而解决因放大倍数不同引起的数据点过密或过疏的问题,并通过对前后数据以不同的标刻分辨率进行标刻。结果表明,在保证拟合后的加工误差不超过2μm下,解决了数据过密引起的激光烧蚀问题;在高放大倍数下也具有平滑的加工效果,具有更高的加工效率和质量。此研究为高密集数据激光加工提供了参考,在高质量激光加工领域如激光精密刻蚀有良好的应用前景。 展开更多
关键词 激光技术 激光振镜加工 贝塞尔曲线优化 三角二分法 弦高误差分割 激光烧蚀
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Compliant mechanisms design based on pairs of curves 被引量:9
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作者 WANG NianFeng ZHANG XianMin 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第8期2099-2106,共8页
The success of compliant mechanism design by structural topology optimization approach depends,to a large extent,on its structural geometry representation scheme.In this work,a novel representation scheme based on pai... The success of compliant mechanism design by structural topology optimization approach depends,to a large extent,on its structural geometry representation scheme.In this work,a novel representation scheme based on pairs of curves is presented.In the representation,the structure is characterized by a set of input/output(I/O) regions.While it is still unknown how the rest of the design space will be occupied by the structure,the I/O regions must exist somewhere because any structure must have parts which interact with its surroundings by way of at least one loading region,one support region,and one output region.For a valid structural design,pairs of Bezier curves are used to connect I/O regions in order to form one single connected load-bearing structure.The boundary is explicitly described,so the need for smoothening of the blurred and jagged edges can be avoided by developing such a representation scheme to directly generate smooth boundary structures.With the scheme,shape and topology can be optimized simultaneously,and the obtained topology solutions have no check-board phenomena nor intermediate zones.A multi-objective genetic algorithm is then applied to couple with the representation scheme for defining and encoding the structural geometry in the form of graph.The solution framework is integrated with a nonlinear fixed grid finite element method(FG-FEM) code for large-displacement analyses of the compliant structures.Simulation results from a displacement inverter indicated that the proposed representation scheme is appropriate. 展开更多
关键词 compliant mechanism pair of curves topology optimization genetic algorithm
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