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Design, manufacture and materials; their interaction and role in engineering failures

机译:设计,制造和材料;它们在工程故障中的相互作用和作用

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摘要

The performance of components and structures, particularly under dynamic loading is strongly influenced by the interaction between design, manufacture and materials. Optimisation of this interaction, via the concepts of concurrent integrated design, offers the potential for innovation in geometry, performance and materials engineering. In contrast, poor management of this interplay in the design process can lead to premature and unexpected in-service failures. The likelihood of such problems occurring is markedly increased in complex and/or technologically advanced structures where plant and equipment are operating at the forefront of current knowledge. It is equally true, however, that many engineering failures occur in commonplace components and structures, often as a result of poor technology transfer, inadequate staff training and unfounded assumptions regarding materials, operation, load conditions, and maintenance. This paper will highlight the effects of some of these problems through the medium of in-service failure case studies. These failures have occurred primarily as a result of the manufacturing or fabrication process, but often reflect the intertwined roles of materials performance and design detailing. Its aim is to illustrate the large detrimental effect on business performance that can arise from relatively trivial oversights and poor information handling during engineering design and fabrication. The examples chosen will highlight the effectiveness of welds, residual stresses, castings, machining and coatings as common sources of failure.
机译:零件和结构的性能,特别是在动态载荷下,受设计,制造和材料之间相互作用的强烈影响。通过并发集成设计的概念来优化这种交互,为几何,性能和材料工程方面的创新提供了潜力。相反,在设计过程中对此相互作用的不良管理会导致过早和意外的服务中故障。在工厂和设备处于当前知识前沿的复杂和/或技术先进的结构中,发生此类问题的可能性显着增加。但是,同样普遍的是,通常由于不良的技术转让,人员培训不足以及对材料,操作,负载条件和维护的无根据的假设,在普通部件和结构中会发生许多工程故障。本文将通过在役故障案例研究的方法,重点介绍其中一些问题的影响。这些故障主要是由于制造或制造过程而发生的,但通常反映出材料性能和设计细节的相互联系。其目的是说明工程设计和制造过程中相对琐碎的疏忽和较差的信息处理可能对业务绩效产生巨大的不利影响。选择的示例将突出显示焊接,残余应力,铸件,机械加工和涂层作为常见故障源的有效性。

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