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A NOVEL METHOD TO REDUCE INSPECTION PROCESS CYCLE TIME WHILE USING A COORDINATE MEASUREMENT MACHINE

机译:使用坐标测量机减少检查过程周期时间的新方法

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A touch-based probe of a coordinate measurement machine (CMM) is generally used to validate the dimensions of the artifacts and associated features which come out of the manufacturing line against its dimensions to ensure to be within prescribed GD&T [Wilson 14] limits. Although there could be other applications using a CMM like reverse engineering, however the stated inspection process is quite crucial for maintaining quality factor and to regulate merits of the manufacturing process especially with the continuous wear-tear of the involved tooling. However this inspection process, which is considered as auxiliary process, needs to have minimum cycle time in order to effectively have more quality units to be produced. In this paper we describe Computer Aided Process Planning (CAPP) in order to complete Computer Aided Inspection (CAI) process using CMM on the work-piece which is created through Computer Aided Design (CAD) and Manufacturing (CAM). This leads to Computer Integrated Manufacturing (CIM) process. As a result, the features, which need to be inspected, could be recognized from its corresponding CAD file and appropriate information could be culled out by the Dassault Software System to calculate the approach and retract points to inspect the features [Choudhury 03]. The main objective of this research paper is to determine the shortest collision free trajectory from the retract point of one feature being inspected to the approach point of another feature being inspected so that the sequencing for the set of trajectories could be calculated through existing Traveling Sales Person (TSP) algorithm in order to shorten the total distance travelled by the CMM probe, which in turn would linearly reflect in reducing the cycle inspection time. Further since different features in the work-piece might need to be inspected by different probes, an overhead time and displacement for probe change, needs to consider in order to shorten the cycle time. These include clustering of similar type of features, which can be inspected by the same probe. Also clustering of similar type of features need to be assessed against spatial distance of separation between the clusters that the probe has to travel. Since the CMM travels at a constant low speed and the different probes are of similar shape, size and comparatively very small weight, the motion dynamics of the CMM does not influence the total distance travelled for the inspection process. Our main contribution is in the development of a spatial algorithm which not only reduces the inter-feature distance but also does that by avoiding the potential for any collision with the feature or the artifact without the use of any computer vision or collision avoidance sensor information. The resulting spatial algorithm has implicit embedded information of feature clustering, which when fed into an optimization algorithm generates a path planning which would eventually shorten the cycle time. The illustration is done with two separate simulations.
机译:通常使用坐标测量机(CMM)的基于触摸的探针来验证从生产线出来的工件和相关特征的尺寸及其尺寸,以确保在规定的GD&T [Wilson 14]范围内。尽管可能还会有其他应用程序使用CMM,例如逆向工程,但是规定的检查过程对于保持质量因数和调节制造过程的优劣至关重要,尤其是在涉及的工具连续磨损的情况下。但是,该检查过程(被视为辅助过程)需要具有最短的循环时间,以便有效地生产更多质量的单元。在本文中,我们描述了计算机辅助过程计划(CAPP),以便在通过计算机辅助设计(CAD)和制造(CAM)创建的工件上使用CMM来完成计算机辅助检查(CAI)过程。这导致计算机集成制造(CIM)过程。结果,可以从相应的CAD文件中识别出需要检查的特征,并且Dassault软件系统可以剔除适当的信息,以计算进近点和缩进点以检查特征[Choudhury 03]。本研究的主要目的是确定从一个被检查特征的缩回点到被检查另一特征的逼近点的最短无碰撞轨迹,以便可以通过现有的旅行销售人员计算出这组轨迹的顺序(TSP)算法,以缩短CMM测头行进的总距离,这反过来将线性反映在减少循环检查时间上。此外,由于可能需要由不同的探针检查工件中的不同特征,因此需要考虑开销时间和探针更换的位移,以缩短循环时间。这些包括相似类型特征的聚类,可以通过同一探针进行检查。同样,需要针对探针必须行进的簇之间的间隔的空间距离,评估相似类型特征的簇。由于三坐标测量机以恒定的低速行进,并且不同的探头具有相似的形状,尺寸和相对较小的重量,因此三坐标测量机的运动动态不会影响检查过程的总行进距离。我们的主要贡献在于开发了一种空间算法,该算法不仅减少了特征之间的距离,而且还通过避免在不使用任何计算机视觉或避免碰撞传感器信息的情况下避免与特征或伪像发生任何碰撞的潜在可能性。生成的空间算法具有特征聚类的隐式嵌入式信息,将其引入优化算法后会生成路径规划,这最终会缩短周期时间。该图是通过两个单独的仿真完成的。

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