Evans Llion Marc, Sözümert Emrah, Keenan Bethany E, Wood Charles E, du Plessis Anton
Faculty of Science and Engineering, Swansea University, Swansea, SA1 8EN UK.
United Kingdom Atomic Energy Authority, Culham Science Centre, Abingdon, Oxfordshire OX14 3DB UK.
Arch Comput Methods Eng. 2023;30(3):1495-1552. doi: 10.1007/s11831-022-09836-2. Epub 2023 Jan 18.
Image-Based Simulation (IBSim) is the process by which a digital representation of a real geometry is generated from image data for the purpose of performing a simulation with greater accuracy than with idealised Computer Aided Design (CAD) based simulations. Whilst IBSim originates in the biomedical field, the wider adoption of imaging for non-destructive testing and evaluation (NDT/NDE) within the High-Value Manufacturing (HVM) sector has allowed wider use of IBSim in recent years. IBSim is invaluable in scenarios where there exists a non-negligible variation between the 'as designed' and 'as manufactured' state of parts. It has also been used for characterisation of geometries too complex to accurately draw with CAD. IBSim simulations are unique to the geometry being imaged, therefore it is possible to perform part-specific virtual testing within batches of manufactured parts. This novel review presents the applications of IBSim within HVM, whereby HVM is the value provided by a manufactured part (or conversely the potential cost should the part fail) rather than the actual cost of manufacturing the part itself. Examples include fibre and aggregate composite materials, additive manufacturing, foams, and interface bonding such as welding. This review is divided into the following sections: Material Characterisation; Characterisation of Manufacturing Techniques; Impact of Deviations from Idealised Design Geometry on Product Design and Performance; Customisation and Personalisation of Products; IBSim in Biomimicry. Finally, conclusions are drawn, and observations made on future trends based on the current state of the literature.
基于图像的模拟(IBSim)是一种从图像数据生成真实几何形状数字表示的过程,其目的是进行比基于理想化计算机辅助设计(CAD)的模拟更精确的模拟。虽然IBSim起源于生物医学领域,但近年来,高价值制造(HVM)部门对用于无损检测和评估(NDT/NDE)的成像技术的更广泛采用,使得IBSim得到了更广泛的应用。在零件的“设计状态”和“制造状态”之间存在不可忽略的差异的情况下,IBSim非常有价值。它还被用于表征过于复杂而无法用CAD精确绘制的几何形状。IBSim模拟对于所成像的几何形状是独特的,因此可以在一批制造零件中进行特定零件的虚拟测试。这篇新颖的综述介绍了IBSim在HVM中的应用,其中HVM是指制造零件所提供的价值(或者相反,如果零件出现故障可能产生的成本),而不是制造零件本身的实际成本。示例包括纤维和骨料复合材料、增材制造、泡沫以及诸如焊接之类的界面结合。本综述分为以下几个部分:材料表征;制造技术表征;偏离理想化设计几何形状对产品设计和性能的影响;产品的定制与个性化;生物模拟中的IBSim。最后得出结论,并根据当前文献状况对未来趋势进行了观察。