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A framework of cloud supported collaborative design in glass lens moulds based on aspheric measurement

机译:基于非球面测量的云支持的玻璃镜片模具协同设计框架

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Aspheric mould design includes the top-down design and reversal design. In this paper, a new framework of reversal design is proposed combining with cloud supported collaborative design (CSCD) based on aspheric measurement. The framework is a kind of collaborative platform, which is composed of eight modules, including the computerized aspheric precision measurement module (CAPM), computer-aided optical design of aspheric lens system (CAOD), computer-aided design of lens mould (CADLM), FEM(finite element method) simulation of lens molding module (FEMLM), computer-aided manufacture of lens & moulds (CAMLM), measurement data analysis module (MDAM), optical product lifecycle management module (OPLM) and cloud computing network module (CCNM). In this framework, the remote clients send an improved requirement or fabrication demand about optical lens system through CCNM, which transfers this signal to OPLM. In OPLM, one main server is in charge of the task distribution and collaborative work of other six modules. The first measurement data of aspheric lens are produced by clients or our proposed platform CAPM, then are sent to CAOD for optimization and the electronic drawings of lens moulds are generated in CADLM module. According the design drawings, the FEMLM could give the lens-molding simulation parameters through FEM software. The simulation data are used for the second design of moulds in CADLM module. In this case, the moulds could be fabricated in CAMLM by ultra-precision machine, and the aspheric lens could be also produced by lens-molding machine in CAMLM. At last, the final shape of aspheric lens could be measured in CAPM and the data analysis could be conducted in MDAM module. Through the proposed framework, all the work described above could be performed coordinately. And the optimum design data of lens mould could be realized and saved, then shared by all the work team.
机译:非球面模具设计包括自上而下的设计和逆向设计。本文提出了一种新的逆向设计框架,并结合了基于非球面测量的云支持协同设计(CSCD)。该框架是一种协作平台,由八个模块组成,包括计算机化非球面精密测量模块(CAPM),计算机辅助非球面镜片系统光学设计(CAOD),计算机辅助镜片模具设计(CADLM) ,镜片成型模块(FEMLM)的FEM(有限元方法)模拟,镜片和模具的计算机辅助制造(CAMLM),测量数据分析模块(MDAM),光学产品生命周期管理模块(OPLM)和云计算网络模块( CCNM)。在此框架中,远程客户端通过CCNM发送有关光学透镜系统的改进要求或制造要求,并将此信号传输到OPLM。在OPLM中,一台主服务器负责其他六个模块的任务分配和协作工作。非球面镜片的第一批测量数据由客户或我们建议的平台CAPM产生,然后发送到CAOD进行优化,并在CADLM模块中生成镜片模具的电子图纸。根据设计图,FEMLM可以通过FEM软件给出镜片成型仿真参数。仿真数据用于CADLM模块中模具的第二次设计。在这种情况下,模具可通过超精密机器在CAMLM中制造,非球面透镜也可通过CAMLM中的透镜成型机制造。最后,可以在CAPM中测量非球面透镜的最终形状,并在MDAM模块中进行数据分析。通过提议的框架,上述所有工作都可以协调进行。并且可以实现并保存最佳的镜片模具设计数据,然后由所有工作团队共享。

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