首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Computer numerical control machine tool information reusability within virtual machining systems
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Computer numerical control machine tool information reusability within virtual machining systems

机译:计算机数值控制机床信息虚拟加工系统内的可重用性

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Virtual machining allows simulation of the machining process by realistically representing kinematic, static and dynamic behaviour of the intended machine tools. Using this method, manufacturing-related issues can be brought to light and corrected before the product is physically manufactured. Machining systems utilised in the manufacturing processes are represented in the virtual machining environment, and there is a plethora of commercial virtual machining software used in the industry. Each software system has a different focus and approach towards virtual machining; more than one system may be needed to complete machining verification. Thus, the significant increase in the use of virtual machining systems in the industry has increased the need for information reusability. Substantial time and money has been put into the research of virtual machining systems. However, very little of this research has been deployed within industrial best practice, and its acceptance by the end user remains unclear. This article reviews current research trends in the domain of virtual machining and also discusses how much of this research has been taken on board by software vendors in order to facilitate machine tool information reusability. The authors present use cases which utilise the novel concept of machining capability profile and the emerging STEP-NC compliant process planning framework for resource allocation. The use cases clearly demonstrate the benefits of using a neutral file format for representing machining capability profiles, as opposed to remodelling and/or reconfiguring of this information multiple times for different scenarios. This article has shown through the use cases that machining capability profiles are critical for representing recourse information from a kinematic, static and dynamic perspective that commercial software vendors can subsequently use. The impact of this on mainstream manufacturing industry is potentially significant as it will enable a true realisation of interoperability.
机译:虚拟加工允许通过现实地表示预期机床的运动,静态和动态行为来仿真加工过程。使用这种方法,在物理制造的产品之前,可以使制造相关的问题亮起并纠正。制造过程中使用的加工系统在虚拟加工环境中表示,并且在该行业中使用过多的商业虚拟加工软件。每个软件系统都有不同的焦点和朝向虚拟加工的方法;可能需要多个系统来完成加工验证。因此,在业内虚拟加工系统使用的显着增加增加了对信息可重用性的需求。大量的时间和金钱已经进入虚拟加工系统的研究。然而,在工业最佳实践中部署了这项研究的很少,最终用户的接受仍然不清楚。本文审查了虚拟加工领域的当前研究趋势,并讨论了软件供应商在船上采取了多大的研究,以便于机床信息可重用性。作者呈现了利用加工能力简介的新颖概念的使用情况和用于资源分配的新出现的STEP-NC兼容过程规划框架。用例清楚地展示了使用中性文件格式来表示加工能力配置文件的好处,而不是多次改造和/或重新配置不同方案的多次重新配置和/或重新配置。本文已通过使用情况显示加工能力配置文件对于代表商业软件供应商随后可以使用的运动,静态和动态视角来表示追索权信息至关重要。这对主流制造业的影响可能是重要的,因为它可以实现互操作性的真正实现。

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