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Integration of operation allocation and material handling in the design of flexible manufacturing systems.

机译:在柔性制造系统的设计中集成了操作分配和物料处理。

摘要

Operation Allocation and Material Handling Systems Selection are important functions of a manufacturing system and as such must be considered within an integrated approach to manufacturing systems design. This work, an extension to the work done by Paulo (1999) proposes to integrate two important functions of manufacturing, i.e. operation allocation and material handling systems selection, and solve them iteratively. The objective of the operation allocation model is to select a group of machines where the operations of the part types will be performed and then to assign those operations to the selected machines. The material handling equipment is allocated by the material handling system selection model to transport a part type from one machine to the other for the next operation. The operation allocation model obtains one of its inputs from the material handling system selection model in the form of material handling equipment to be used for transporting a part type from one machine to another machine. The operation allocation model interfaces with the material handling system selection model by providing input data in the form of the manufacturing operations to be performed at each machining center. The material handling system is selected on the basis of the parts visiting a machining center to perform a manufacturing operation and the abilities of the handling devices to perform the required material handling functions of those part types. The material handling system selection model provides the feedback to the first model to complete the iteration. A program was developed to solve the two models iteratively so as to obtain an optimal solution.Dept. of Industrial and Manufacturing Systems Engineering. Paper copy at Leddy Library: Theses u26 Major Papers - Basement, West Bldg. / Call Number: Thesis2001 .B67. Source: Masters Abstracts International, Volume: 40-03, page: 0763. Adviser: R. Lashkari. Thesis (M.A.Sc.)--University of Windsor (Canada), 2001.
机译:操作分配和物料搬运系统选择是制造系统的重要功能,因此必须在制造系统设计的集成方法中加以考虑。这项工作是Paulo(1999)所做工作的扩展,提出将制造的两个重要功能集成在一起,即操作分配和物料搬运系统选择,并迭代地解决它们。操作分配模型的目标是选择一组将在其中执行零件类型操作的机器,然后将这些操作分配给选定的机器。物料搬运系统选择模型分配了物料搬运设备,以将零件类型从一台机器传输到另一台机器,以进行下一个操作。操作分配模型以物料搬运设备的形式从物料搬运系统选择模型中获取其输入之一,该物料搬运设备用于将零件类型从一台机器运输到另一台机器。通过以将在每个加工中心执行的制造操作的形式提供输入数据,操作分配模型与物料搬运系统选择模型对接。物料处理系统是根据零件到达加工中心以执行制造操作以及处理设备执行这些零件类型所需的物料处理功能的能力来选择的。物料搬运系统选择模型将反馈提供给第一个模型以完成迭代。开发了一个程序来迭代求解这两个模型,以获得最佳解决方案。工业和制造系统工程系。莱迪图书馆的纸质副本:论文主要论文-西楼地下室。 /电话号码:Thesis2001 .B67。资料来源:国际硕士摘要,第40卷,第0763页,顾问。R. Lashkari。论文(硕士)-温莎大学(加拿大),2001。

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    Boparai Ramanpreet.;

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  • 年度 2001
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  • 入库时间 2022-08-31 14:59:57

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