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Fixtureless profile inspection of non-rigid parts using the numerical inspection fixture with improved definition of displacement boundary conditions

机译:使用改进了位移边界条件定义的数字检查夹具对非刚性零件进行无夹具轮廓检查

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摘要

Quality control is an important factor for manufacturing companies looking to prosper in an era of globalization, market pressures, and technological advance. The functionality and product quality cannot be guaranteed without this important aspect. Manufactured parts have deviations from their nominal (CAD) shape caused by the manufacturing process. Thus, geometric inspection is a very important element in the quality control of mechanical parts. We have focused here on the profile inspection of non-rigid parts which are widely used in the aeronautic and automotive industries. Non-rigid parts can have different forms in a free-state condition compared with their nominal models due to residual stress and gravity loads. To solve this problem, dedicated inspection fixtures are generally used in industry to compensate for the displacement of such parts for simulating the use state in order to perform geometric inspections. These fixtures and the inspection process are expensive and time-consuming. Our aim is therefore to develop an inspection method which eliminates the need for specialized fixtures by acquiring a point cloud from the displaced part using a contactless measuring system such as optical scanning and comparing it with the CAD model for the identification of deviations. Using a non-rigid registration method and finite element analysis, we will numerically inspect the profile of a non-rigid part. To do so, a simulated displacement is performed using an improved definition of boundary conditions for simulating unfixed parts. In this paper, we will apply an improved method on two industrial non-rigid parts with free-form surfaces simulated with different types of displacement, defect, and measurement noise.
机译:质量控制是希望在全球化,市场压力和技术进步时代繁荣发展的制造公司的重要因素。没有这个重要方面,就无法保证功能和产品质量。所制造的零件会因制造过程而偏离其标称(CAD)形状。因此,几何检查是机械零件质量控制中非常重要的元素。我们在这里集中于非刚性零件的轮廓检查,这些零件在航空和汽车工业中广泛使用。由于其残余应力和重力载荷,非刚性零件在自由状态下与名义模型相比可能具有不同的形式。为了解决这个问题,工业上通常使用专用的检查夹具来补偿这些部件的位移,以模拟使用状态以进行几何检查。这些固定装置和检查过程既昂贵又费时。因此,我们的目标是开发一种检测方法,该方法通过使用非接触式测量系统(例如光学扫描)从位移部分获取点云并将其与CAD模型进行比较以识别偏差,从而消除了对专用夹具的需求。使用非刚性配准方法和有限元分析,我们将在数字上检查非刚性零件的轮廓。为此,使用边界条件的改进定义来执行模拟位移,以模拟未固定零件。在本文中,我们将对两个工业非刚性零件应用改进的方法,这些零件的自由曲面模拟了不同类型的位移,缺陷和测量噪声。

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