基于区域机械设备数据库的数控车床工艺设计

V. Epifanov
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引用次数: 0

摘要

数控机床制造商很少注意对大多数设备客户的典型生产和技术条件的消费者要求进行分析。工作目的是在分析机床设备特性的基础上,优化数控车床的技术潜力。这项工作的科学新颖性在于一种新的方法来证实数控车床参数,基于它们与机械特性的相互联系,形成乌里扬诺夫斯克地区公司部分的原始数据库(200,000项),呈现不同的工业分支:飞机制造、船舶制造、机床制造、汽车工业、仪器仪表制造等,在ESKD分类器的基础上,应用聚类分析对零部件进行了分阶段分组。研究结果揭示了八组旋转固体的设计工艺特征,可作为数控车床设计和选择的工艺依据。对于所有组件,都有开发的复杂零件(CP),它概括了组件的所有设计工艺特征和生产的组工艺操作(GTO)。根据所示成本表对GTO形成方案进行了验证。用于加工复杂零件。GTO形成的设计工艺特征和方案是确定新系列NCL基本工艺参数或选择最合适的现有NCL的初始数据。得到了加工八组零件的NCL基本参数。所有八个ncl的设计和生产应根据基于单个公共元素基础的块模块化原则进行组织。为了实现这一原则,建立了一个统一的机器功能单元结构,用于创造具有不同技术潜力的所有ncl。
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TECHNOLOGICAL DESIGNING NC LATHES BASED ON REGIONAL MACHINERY AND DEVICE DATA BANK
The manufacturers of NC machine-tools pay little attention to the analysis of consumer requests that is to production and technological conditions typical to the majority of equipment customers. The work purpose consists in the optimization of NC lathe (NCL) technological potentialities based on the analysis of machinery and device characteristics. The scientific novelty of the work consists in a new approach to the substantiation of NC lathes parameters based on their interconnection with machinery characteristics, formation of original data bank on parts of the Uliyanovsk region companies (200,000 of items) presenting different branches of industry: aircraft manufacturing, shipbuilding, machine tool construction, automotive industry, instrument making et al. stage-by-stage parts grouping on the basis of ESKD classifier and the application of a cluster analysis. As a result of investigations there are revealed eight parts groups of revolution solids, design-technological characteristics which should be used as a technological basis for designing and choice of NC lathes (NCL). For all groups of parts there are developed complex parts (CP) generalizing all design-technological characteristics of group parts and group technological operations (GTO) for their production. The substantiation of GTO formation scheme was carried out according to shown costs Cmanuf. for machining a complex part. The design-technological characteristics and schemes of GTO formation are initial data for the definition of basic technological parameters of a new range of NCLs or the choice of the most suitable existing NCL. As a result there are substantiated NCL basic parameters for machining eight groups of parts. The design and production of all eight NCLs should be organized according to block-modular principle that is on a single common element base. To realize this principle there is substantiated a unified structure of functional units of the machine for the creation of all NCLs with different technological potentialities.
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