通过混合和双制造为航空,海军和火车大型部件的实现开辟新的机会

Q2 Engineering Journal of Machine Engineering Pub Date : 2022-11-04 DOI:10.36897/jme/155812
M. Rauch, J. Hascoet
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引用次数: 0

摘要

增材制造(AM)是通过连续层沉积材料来生产零件。这些循序渐进的过程为高价值组件提出了新的创新方向:复杂的几何形状无需强大的努力就可以获得(例如空心或晶格结构,在保持至少相似的机械性能的同时显着降低了组件重量),组件可以简化,备件可以按需实现……因此,增材制造在过去十年中受益于大量的研究工作,几乎所有现有的工业部门都从中受益。本文介绍了增材制造为海军航空和火车工业生产大型金属部件所带来的机遇和相关挑战。详细讨论了两种创新方法:混合制造和孪生制造。混合制造包括将增材制造与其他工艺集成在一起以实现组件,目的是从每个工艺的利益中受益,同时避免其缺点。因此,增材制造可以实现复杂的几何形状或提供低买飞比,而高速加工产生非常好的表面性能(位置,粗糙度)。加工过程可以按顺序或同时对要制造的特征进行,找到最佳的制造工作计划可能具有挑战性。本文介绍了在实验室开发的几种混合方法。孪生制造使用模型和多物理场仿真方法在制造环境中创建过程实现的数字克隆。制造准备和优化可以在虚拟车间进行,各种配置和选择可以在选择之前进行测试。为了提高其准确性,还可以通过监控过程中捕获的数据来馈送数字孪生。提供了几个在实验室开发的数字双胞胎。本文以实验室中使用SLM、LMD、WAAM和混合方法制作的几个概念验证部件为例进行说明。其中,中空螺旋桨具有相同的流体动力效率,为海军工业减轻了重量,飞机结构面板展示了简化的组件,提高了性能/质量比,火车组件显示了按需生产结构部件的能力。
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Opening New Opportunities For Aeronautic, Naval And Train Large Components Realization With Hybrid And Twin Manufacturing
Additive Manufacturing (AM) consist in producing parts by depositing material in successive layers. These step-by-step processes proposes new innovative directions for high value components: complex geometries are accessible without strong efforts (such as hollow or lattice structures which dramatically reduce the component weight while keeping their at least similar mechanical properties), assemblies can be simplified, spare parts can be realized at demand… Hence, AM has benefitted from large research efforts over the last decade, almost all existing industrial sectors have benefitted from them. This paper introduces some opportunities and the associated challenges attached to Additive Manufacturing, to produce large metallic components for naval aeronautics and train industries. In particular, two innovative approaches are discussed in details: hybrid manufacturing and twin manufacturing. Hybrid manufacturing consists in integrating AM together with other processes for the realization of components, with the objective to benefit from the interests of each process while avoiding its drawbacks. Hence, AM can realize complex geometries or offer low buy-to-fly ratios while high speed machining generates very good surface properties (position, roughness). Processes can be carried out sequentially or simultaneously on the features to manufacture and finding the optimal manufacturing work plan can be challenging. The paper introduces some hybrid approaches developed in the laboratory. Twin manufacturing uses models and multiphysics simulation methods to create a digital clone of the process implementation within the manufacturing environment. Manufacturing preparation and optimization can be carried in the virtual workshop where various configurations and choices can be tested before being selected. To enhance its accuracy, the digital twin can also be fed by monitoring data captured during the process. Several digital twins developed in the laboratory are provided. The paper is illustrated with several proof-of-concept parts made with SLM, LMD, WAAM and hybrid approaches in the laboratory. Among them, a hollow propellers that has the same hydrodynamics efficiency for a reduced weight for the naval industry, an aircraft structural panel that demonstrates simplified assemblies increased performance/mass ratio, a train component that shows the ability to produce structural parts at demand.
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来源期刊
Journal of Machine Engineering
Journal of Machine Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.70
自引率
0.00%
发文量
36
审稿时长
25 weeks
期刊介绍: ournal of Machine Engineering is a scientific journal devoted to current issues of design and manufacturing - aided by innovative computer techniques and state-of-the-art computer systems - of products which meet the demands of the current global market. It favours solutions harmonizing with the up-to-date manufacturing strategies, the quality requirements and the needs of design, planning, scheduling and production process management. The Journal'' s subject matter also covers the design and operation of high efficient, precision, process machines. The Journal is a continuator of Machine Engineering Publisher for five years. The Journal appears quarterly, with a circulation of 100 copies, with each issue devoted entirely to a different topic. The papers are carefully selected and reviewed by distinguished world famous scientists and practitioners. The authors of the publications are eminent specialists from all over the world and Poland. Journal of Machine Engineering provides the best assistance to factories and universities. It enables factories to solve their difficult problems and manufacture good products at a low cost and fast rate. It enables educators to update their teaching and scientists to deepen their knowledge and pursue their research in the right direction.
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