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Integrated adaptive interface design system development of the magnetic separator considering the shapes of the hopper for a powder line

机译:考虑粉末线的料斗形状的磁性分离器的集成自适应界面设计系统开发

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Foreign metal removal is a key process of quality control in the food and pharmaceutical industries and can possibly be achieved using a magnet separator. Typically, magnetic separators are installed at existing production facilities by remodeling because they have the ability to deal with the problems that arise in production facilities. However, when measuring for remodeling, problems such as measurement error, forgotten measurements, change in location, detail proposal changes, or impossibility to measure occur because of complex, distorted or dented shapes, dimensional inaccuracy, and the surroundings. Additionally, the magnet separators designed to fit an existing production have problems in that the dimensions differ from those of the existing facilities, and deficiency is expected in the performance. To solve these problems using a non-conventional method, we developed an adaptive interface design system that combines high accuracy measurement by means of 3D scan to reproduce the existing production facilities as distorted shape and dented shape by reverse engineering, and the optimized finite element method analysis for magnet field to satisfy an expected performance of the surface flux density, and inspect the shape of the design, dimensions, and performance, using computer aided engineering.
机译:国外金属去除是食品和制药行业质量控制的关键过程,并且可以使用磁铁分离器实现。通常,磁性分离器通过重塑安装在现有的生产设施中,因为它们有能力处理生产设施中出现的问题。然而,在测量重塑时,由于复杂,扭曲或凹陷的形状,尺寸不准确和周围环境,测量误差,遗忘测量,位置,详细建议改变或不可能进行测量的问题。另外,设计适合现有生产的磁体分离器具有问题,因为尺寸与现有设施的尺寸不同,并且在性能方面预期缺陷。为了使用非传统方法解决这些问题,我们开发了一种自适应界面设计系统,通过3D扫描结合了高精度测量,以通过逆向工程再现现有的生产设施,以及逆向工程的扭曲形状和凹陷形状,以及优化的有限元方法磁场分析满足表面磁通密度的预期性能,采用计算机辅助工程检查设计,尺寸和性能的形状。

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