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Mode Research on Space Weapons Systems Innovation Based Quality Function Deployment

机译:基于空间武器系统创新的质量功能部署模式研究

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in the aviation industry, experts are enthusiastic over the research of sophisticated weapons. Little specialist pays attention to the innovation modes and methods. Up to now little quantization method suitable for aviation weapon systems innovation is presented. Base on the deep analysis and study on features of aviation weapon systems innovation and different innovation mode from the mass production, we have designed process model and quality chain model of aviation weapon systems innovation. Compared with the process model of large-scale innovation, the process models are more complex including many feedbacks and adding five steps: task decomposition, analysis of knowledge gap, accumulation of key knowledge, outsourcing selection, system integration. Meanwhile manufacturing process and R&D process are preformed simultaneously, and are involved in the process of module development. Technology application and diffusion are preformed with delivering the final innovation product to user. Quality function deployment and quality house are adopted to deal with the quality transfer among nodes. Quality demands of one node are converted into the technique features of another node in the quality house. We designed the top-down technique features transfer model and bottom-up demands transfer model to solve the quality transfer problems among nodes. At last an example is given to illustrate that this approach can accelerate to blaze the aviation weapon systems trails more than the existing methods and effectively reach quality management of aviation weapon systems innovation.
机译:在航空工业中,专家们对复杂武器的研究充满热情。很少有专家关注创新模式和方法。迄今为止,很少提出适用于航空武器系统创新的量化方法。在深入分析和研究航空武器系统创新特点以及与批量生产不同的创新模式的基础上,设计了航空武器系统创新的过程模型和质量链模型。与大规模创新的过程模型相比,该过程模型更为复杂,包括许多反馈并添加了五个步骤:任务分解,知识差距分析,关键知识的积累,外包选择,系统集成。同时,制造过程和研发过程同时进行,并参与模块开发过程。通过向用户提供最终的创新产品来执行技术应用和推广。采用质量功能部署和质量屋来处理节点之间的质量传递。一个节点的质量要求转换为质量屋中另一个节点的技术特征。我们设计了自上而下的技术特征传递模型和自下而上的需求传递模型,以解决节点之间的质量传递问题。最后通过一个例子说明,该方法比现有方法可以更快地突破航空武器系统的痕迹,并有效地达到航空武器系统创新的质量管理。

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