通过使用多件设备提高自动化技术综合体的生产率

A. S. Krasko, M. A. Filin
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引用次数: 0

摘要

本文讨论了通过减少非周期时间损失来提高机械加工自动化技术复合体的生产率的问题。调整刀具、夹具和夹具的时间被认为是柔性加工单元最重要的损失类型。减少调整时间以提高机械加工工艺综合体生产率的最有效解决方案是使用多件装置。多件式装置是指不需重新调整或只需最小调整即可安装不同标准尺寸工件的机器固定装置。这类装置的有效性取决于安装不同标准尺寸零件的数量,这个数量越大,装置的有效性越高。本文提出将一个多件装置的总调整时间分成几部分,考虑到装置安装调整的时间和切换到下一批零件生产时改变装置调整的时间。总调整时间的划分允许考虑到在使用多片式装置的情况下每个部分的调整时间损失。如果在同一调整期间生产了几批零件,则在制作新一批零件之前更改调整的时间分为整批或几批。设备的安装和调整时间划分为在该设备上加工的所有批次。在严格的自动化技术综合体在一定时间内运行的时间表下,这种计算显示出准确的结果。然而,对于具有灵活时间表的技术综合体,分析计算变得不可能。因此,任务是通过对自动化工艺综合体进行仿真建模,获得该装置落在一个被加工零件上的调整时间值。根据所使用的设备,进行了模拟实验以确定该复合物的性能。
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Increasing the productivity of automated technological complexes by using multipiece devices
This article deals with the issue of increasing the productivity of automated technological complexes of mechanical processing by reducing off-cycle time losses. The time for adjustment of tools, jigs and fixtures is considered the most significant type of losses for flexible machining cells. The most effective solution for reducing the adjustment time to increase the productivity of technological complexes of mechanical processing is the use of multipiece devices. Multipiece devices refer to machine retaining devices that allow installing workpieces of different standard sizes without readjustment or with minimal readjustment. The effectiveness of such devices depends on the number of installed parts of different standard sizes, and the greater this number is, the higher the effectiveness of the device is. The article proposes to divide the total time of adjustment of a multipiece device into components that take into account the time for installation and adjustment of the device and the time for changing the adjustment of the device when switching to the production of the next batch of parts. The division of the total adjustment time allows taking into account the loss of adjustment time for each part in the conditions of using a multipiece device. The time for changing the adjustment before making a new batch of parts is divided into the entire batch or several batches, if several batches of parts are made during the same adjustment. The time of installation and adjustment of the device is divided into all the batches processed on this device. With a strict schedule for the operation of an automated technological complex within a certain period of time, such a calculation shows an accurate result. However, for technological complexes with a flexible schedule, analytical calculation becomes impossible. Therefore, the task is to obtain the value of the adjustment time of the device, which falls on one processed part by conducting simulation modeling on an automated technological complex. A simulation experiment is conducted to determine the performance of the complex, depending on the device used.
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