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Virtual processing of laser surface hardening on autobody dies

机译:车身模具激光表面硬化的虚拟处理

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摘要

A new method of collision-free path plan integrated in virtual processing is developed to improve the efficiency of laser surface hardening on dies. The path plan is based on the premise of no collision and the optimization object is the shortest path. The optimization model of collision-free path is built from traveling salesman problem (TSP). Collision-free path between two machining points is calculated in configuration space (C-Space). Ant colony optimization (ACO) algorithm is applied to TSP of all the machining points to find the shortest path, which is simulated in virtual environment set up by IGRIP software. Virtual machining time, no-collision report, etc, are put out after the simulation. An example on autobody die is processed in the virtual platform, the simulation results display that ACO has perfect optimization effect, and the method of virtual processing with integration of collision-free optimal path is practical.
机译:开发了一种虚拟处理中集成的无碰撞路径计划的新方法,以提高模具上激光表面硬化的效率。路径计划是在没有碰撞的前提下进行的,最优化对象是最短路径。基于旅行商问题(TSP)建立了无冲突路径的优化模型。在配置空间(C-Space)中计算两个加工点之间的无碰撞路径。将蚁群优化算法(ACO)应用于所有加工点的TSP,以找到最短路径,该路径在IGRIP软件设置的虚拟环境中进行了仿真。模拟后将虚拟加工时间,无冲突报告等显示出来。在虚拟平台上对车身模具进行了实例处理,仿真结果表明,ACO具有理想的优化效果,结合无碰撞最优路径的虚拟加工方法是可行的。

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