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AN INTELLIGENT DESIGN SYSTEM FOR AGILE DESIGN AND MANUFACTURING OF MECHANICAL TRANSMISSION SYSTEMS

机译:机械传动系统敏捷设计与制造的智能设计系统

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Product development is a process with complicated procedures, which incorporate many aspects of knowledge, experience and teamwork. Specifically, mechanical system design requires an iterative process to determine the desired component design parameters that would satisfy kinematic, performance and manufacturability requirements, which would result in an efficient and reliable operation of speed reduction units. This article describes an approach towards the development of intelligent design support environments for mechanical transmission systems, along with implementation details of a distributed knowledge-based gearing design and manufacturing system that is deployed over the Internet. The system embodies the various tasks of the design process, with modules that address: performance evaluation, process optimization, manufacturability analysis, and provides reasoning and decision-making capabilities for reducing the time between gear tooth creation, detailed design and final production. This methodology is highly desirable in that it is able to simulate real working conditions, evaluate and optimize the design effectively, prevent designers from time-consuming iterations and reduce long and expensive test phases. In an application example relating to process design of a forged gearing system, once a successful power rating is achieved within the design environment through FEA based techniques, the system automatically feeds input parameters into the manufacturing module which carries out all process design and planning stages. Estimation of the number of preforming stages, generation of detail die drawings, and forging load and energy requirements are calculated based on available material design databases, knowledge-based rules and feature-level calculations. Utilization of the World Wide Web, as a medium for the implementation of gear design and its agile manufacturing over the Internet is also being demonstrated. A combination of HTML, JavaScript, VRML, CGI Script and C++ based procedures is used to bring this capability to users distributed anywhere in the world. With the above developments, the problems of experience and expertise for the designers are overcome and unexpected design iterations that cause wastage of engineering time and effort, are avoided. The environment can be easily enhanced with other types of gearing systems.
机译:产品开发是一个过程复杂的过程,其中包含知识,经验和团队合作的许多方面。具体地,机械系统设计需要迭代过程以确定满足运动学,性能和可制造性要求的期望的部件设计参数,这将导致减速单元的有效且可靠的操作。本文介绍了一种用于机械传动系统的智能设计支持环境的开发方法,以及通过Internet部署的基于知识的分布式齿轮传动设计和制造系统的实现细节。该系统体现了设计过程中的各种任务,并具有解决以下问题的模块:性能评估,过程优化,可制造性分析,并提供推理和决策能力,以减少齿轮齿创建,详细设计和最终生产之间的时间。这种方法非常可取,因为它能够模拟实际的工作条件,有效地评估和优化设计,防止设计人员进行耗时的迭代并减少冗长而昂贵的测试阶段。在与锻造齿轮系统的过程设计有关的应用示例中,一旦通过基于FEA的技术在设计环境中获得成功的额定功率,系统就会自动将输入参数输入到制造模块中,以执行所有过程设计和计划阶段。基于可用的材料设计数据库,基于知识的规则和特征级别的计算,可以计算出预成型阶段的数量,生成详细的模具图以及锻造的载荷和能量需求的估计值。还展示了利用Internet作为实现齿轮设计及其通过Internet进行敏捷制造的媒介。结合使用HTML,JavaScript,VRML,CGI脚本和基于C ++的过程将此功能带给分布在世界各地的用户。通过上述发展,克服了设计师的经验和专业知识的问题,并避免了导致工程时间和精力浪费的意外的设计迭代。使用其他类型的齿轮系统可以轻松地改善环境。

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