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Study on Running Deviation and Adjusting Deviation of Belt Conveyor's Structure Based on Synchronous Technology

机译:基于同步技术的皮带输送机结构运行偏差及调整偏差研究

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Belt conveyor is widely used in a variety of automated production lines and bulk material transportation is one of the most important applications. In order to improve the accuracy of the belt conveyors, it is need not only to strictly control the production crafts, more importantly, to improve the rationality of the structure and design level. Running deviation and adjusting deviation problem are important issues to be considered in a belt conveyor design process. In this study, the 3D synchronous technology of Solid Edge ST4 will be applied in the design of the belt conveyor to design a new type of anti-deviation structure. In the design process, we combine the synchronous technology with modular technology and top-down assembly modeling techniques to confirm the subject and adjust deviation. The key is the application of synchronous technology in 3D design and the new structure in Running Deviation and Adjusting Deviation. It turned out that the application of above technology can reduce design errors and avoids the repeated design, thus greatly improving the efficiency of the engineer's design. Meanwhile, the study of running deviation can make the structure of adjusting deviation come true.
机译:皮带输送机广泛用于各种自动化生产线,散装材料运输是最重要的应用之一。为了提高皮带输送机的准确性,不仅需要严格控制生产工艺,更重要的是,更重要地提高结构和设计水平的合理性。运行偏差和调整偏差问题是在皮带输送机设计过程中考虑的重要问题。在本研究中,固体边缘ST4的3D同步技术将应用于皮带输送机的设计,以设计一种新型的防偏差结构。在设计过程中,我们将同步技术与模块化技术和自上而下的装配建模技术相结合,以确认主题并调整偏差。关键是在运行偏差和调整偏差中的三维设计中同步技术的应用。事实证明,上述技术的应用可以减少设计误差并避免重复的设计,从而大大提高了工程师设计的效率。同时,运行偏差的研究可以使调整偏差的结构成真。

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