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Manufacturing process similarity measurement model and application based on process constituent elements

机译:基于过程构成元素的制造工艺相似性测量模型与应用

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摘要

Planners and designers of production systems must frequently evaluate the similarities in the manufacturing process of various products to achieve efficient and economical production. The purpose is to reasonably arrange mixed production. The similarity of manufacturing technique processes is an important basis for classifying product manufacturing processes. This study proposes an innovative method based on process constituent elements model to objectively calculate the similarity of product manufacturing processes. Firstly, the similarity model of the manufacturing technique process is established on the basis of six dimensions of process constituent elements, namely, input, output, resource, environment, value-added processing activity and quality control & inspection. Secondly, the characteristics of the six dimensions of the process constituent elements are determined. Corresponding methods are applied to solve the similarity of process constituent elements in each dimension on the basis of the characteristic attributes of process constituent elements of different dimensions. Thirdly, extended interval analytic hierarchy process and quantitative calculation method based on angle information entropy are integrated to determine the weights of dimensions of the six elements. Lastly, the proposed method is applied to the process classification of a group of product manufacturing technique processes, and the feasibility and effectiveness of the method are proven.
机译:生产系统的规划人员和设计人员必须经常评估各种产品的制造过程中的相似性,以实现高效和经济的生产。目的是合理安排混合生产。制造技术过程的相似性是对产品制造过程进行分类的重要依据。本研究提出了一种基于过程组成元素模型的创新方法,客观地计算产品制造过程的相似性。首先,制造技术过程的相似性模型是基于过程组成元素的六个维度的基础建立,即输入,输出,资源,环境,增值处理活动和质量控制和检查。其次,确定了工艺构成元件的六个维度的特征。应用相应的方法以基于不同尺寸的过程组成元素的特征属性来解决每个维度中的过程组成元素的相似性。第三,基于角度信息熵的扩展间隔分析层次处理和定量计算方法被集成,以确定六个元素的尺寸的权重。最后,将所提出的方法应用于一组产品制造技术过程的过程分类,并且证明了该方法的可行性和有效性。

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