Minimizing the complexity of performing a set of auxiliary actions for machining operations

I. Khrustaleva, Michail Borisovich Khrustalev, Vladimir Nikolaevich Khokhlovskiy, Larisa Georgievna Chernyh, Vyacheslav Petrovich Shkodyrev
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Abstract

Abstract. The technological process of manufacturing mechanical engineering products using metal-cutting machines is a structurally complex process. This process can be described by the combination of two types of actions: the working stroke, which results in a change in the structure and properties of the workpiece, and an auxiliary transition, the task of which is to prepare the technological system for the execution of the working process. The execution of auxiliary transitions does not entail a change in the structure and properties of the product, but leads to an increase in the complexity of its manufacture, therefore, increasing the efficiency of technological processes of mechanical processing largely depends on optimizing the complexity of performing a complex of auxiliary transitions. The purpose of the work is to develop a model for optimizing the parameters of a complex of auxiliary transitions for machining operations. The structure of the control object “Technological system” is described, within which two subcategories of control objects are defined: the control object “Technological equipment” and the control object “Wearable equipment”. Hypergraphs of changes in their intermediate states are presented for these subcategories of control objects. According to the presented models, the subcategory of the control object “Technological equipment” has 4 levels of control, the subcategory of the control object “Wearable tooling” has 3 levels of control. Lists of single and vector optimization criteria have been formed for the intermediate states of control objects. A description of a set of actions for the transition of control objects from the (i – 1) state to thei-estate is presented. A list of control parameters has been defined for each subcategory of the control object. The use of the presented model contributes to increasing the efficiency of the technological process by optimizing the values of the parameters of the complex of auxiliary actions at the stage of technological preparation of production.
最大限度地降低加工操作中执行一系列辅助操作的复杂性
摘要使用金属切削机床制造机械工程产品的技术过程是一个结构复杂的过程。这个过程可以用两类动作的组合来描述:一是工作行程,它导致工件的结构和性能发生变化;二是辅助过渡,其任务是为执行工作过程的技术系统做好准备。辅助过渡的执行不会导致产品结构和性能的改变,但会增加产品制造的复杂性,因此,提高机械加工技术过程的效率在很大程度上取决于优化执行辅助过渡复杂性。这项工作的目的是开发一个模型,用于优化机械加工辅助过渡复合参数。描述了控制对象 "技术系统 "的结构,并在其中定义了两个控制对象子类别:控制对象 "技术设备 "和控制对象 "可穿戴设备"。这些控制对象子类别的中间状态变化超图被呈现出来。根据所提出的模型,控制对象 "技术设备 "子类别有 4 个控制级别,控制对象 "可穿戴工具 "子类别有 3 个控制级别。为控制目标的中间状态制定了单一和矢量优化标准列表。描述了控制对象从(i - 1)状态过渡到(ii-)状态的一系列操作。为控制对象的每个子类别定义了控制参数列表。通过优化生产技术准备阶段的辅助动作综合参数值,使用所介绍的模型有助于提高技术流程的效率。
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