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Integrated approach for rotor blade manufacturing cost estimate

机译:转子叶片制造成本估算的综合方法

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Purpose - The purpose of this research is to develop an integrated model for composite rotor blade manufacturing cost estimates at the conceptual design stage. The integrated model seeks to provide a rapid and dynamic feedback based on evaluating the manufacturing cost estimate for a new product design at the conceptual design stage. This paper describes the automated estimating process for design to manufacturing cost of composite rotor blade. Design/methodology/approach - An integrated approach is implemented for evaluating the manufacturing cost estimates. The paper develops each module of the computer-aided parametric model generation, time estimation models for composite manufacturing processes and decision support system. Finally, process flow data integration is done for all the modules. An example for a complicated geometric rotor blade is shown in this research paper. The results are compared in different design parameters and discussed. Findings - The data integration for this approach was built by using ModelCenter® software. It is easier and more robust to apply than the other proposed methods. The selection of design, material and manufacturing parameters is achieved by integrated model within a short period of time. Practical implications - This paper provides an integrated concurrent approach for manufacturing cost evaluation of composite rotor blade. Manufacturing factors could be considered at the early stage of product development phase. Originality/value - This paper suggests an effective and efficient way of evaluating the manufacturing cost at the conceptual stage of the design process. The concurrent engineering and integrated product process development approaches were addressed.
机译:目的-这项研究的目的是在概念设计阶段为复合材料转子叶片制造成本估算开发一个集成模型。集成模型旨在在概念设计阶段基于评估新产品设计的制造成本估算来提供快速而动态的反馈。本文描述了从设计到复合材料转子叶片制造成本的自动估算过程。设计/方法/方法-实施集成方法来评估制造成本估算。本文开发了计算机辅助参数模型生成,复合制造过程的时间估计模型和决策支持系统的每个模块。最后,完成所有模块的流程数据集成。在这篇研究论文中给出了一个复杂的几何转子叶片的例子。结果在不同的设计参数中进行了比较和讨论。结果-此方法的数据集成是使用ModelCenter®软件构建的。与其他提议的方法相比,它更容易应用且更可靠。设计,材料和制造参数的选择是在短时间内通过集成模型实现的。实际意义-本文为复合材料转子叶片的制造成本评估提供了一种集成的并行方法。在产品开发阶段的初期就可以考虑制造因素。原创性/价值-本文提出了一种在设计过程的概念阶段评估制造成本的有效方法。解决了并行工程和集成产品过程开发方法。

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