Heterogeneous Fibre Optic sensor Arrays to Monitor Composite Manufacture (H-FOAM)
Heterogeneous Fibre Optic sensor Arrays to Monitor Composite Manufacture (H-FOAM)
批准号:
EP/W025108/1
负责人:
James Gilbert
金额:
$128.92万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --
中文摘要
受航空航天、汽车、海洋和可再生能源等行业对轻质、节能结构的需求推动,到2030年,英国复合材料行业有可能从23亿英镑增长到120亿英镑。除了经济方面的考虑,复合材料制造业的增长也是实现政府净零排放目标的关键,例如,增加英国制造的风力涡轮机的部署。英国在复合材料制造方面拥有世界领先的研究能力,专注于设计,工艺创新,新颖和可持续的材料组合以及建模工具。通过监测复合材料制造过程来支持这一研究社区的仪器已经落后,这将潜在地阻碍当前研究活动的全部价值的实现。研究人员和制造商需要更好的关于树脂注入和固化过程中发生的复杂机械-热化学过程的数据,以提高产量,减少浪费并加快新组件设计和材料组合的引入。我们已经证明,光纤传感器能够在许多测量点实时监测树脂流前沿位置、速度和固化程度以及温度和应变等关键工艺参数。然而,为了制造一种可用的仪器,在提取多个测量值时,有必要使用共存位置的传感器的异构组合,并进行适当的信号处理,以分解所需的信息。我们将采用光纤光栅传感器的组合来监测温度和应变,使用长周期光栅来监测树脂的运动和折射率,从而监测固化程度。为了解决这些传感器的交叉灵敏度,我们将采用复杂的信号处理技术来分解测量结果,并以适合用户的形式提取所需的测量结果。此外,传感器需要以易于操作和部署的方式封装和连接。我们将开发提供健壮性的包装解决方案和网格配置。我们将努力将这项技术发展成一种成本效益高的仪器,供科学家和工程师使用,他们不是光子学专家,但他们寻求更好地理解复合材料制造过程中复杂但关键的过程。
英文摘要
The UK composites sector has the potential to grow from £2.3Bn to £12Bn by 2030, driven by demand for light weight, energy efficient structures across sectors including aerospace, automotive, marine and renewable energy. In addition to economic considerations, the growth of composites manufacturing is also key to meeting the Government's Net Zero targets through, for instance, increased deployment of UK manufactured wind turbines.The UK has world leading research capability in composites manufacturing focussed on design, process innovation, novel and sustainable material combinations and modelling tools. Instrumentation to support this research community, by monitoring composites manufacturing processes, has fallen behind and this will potentially hinder the realisation of the full value of current research activities. Researchers and manufacturers need better data about the complex mechano-thermo-chemical processes which occur during resin infusion and curing in order to improve yield, reduce waste and speed the introduction of new component designs and material combinations. We have demonstrated that fibre optic sensors, are able to monitor individual key process parameters of resin flow front position and velocity and degree of curing, as well as temperature and strain, in real time at many measurement points. However, to make a useable instrument, where multiple measurands are extracted, it is necessary to use heterogeneous combinations of co-located sensors with appropriate signal processing to disaggregate the desired information. We will adopt combinations of Fibre Bragg Grating sensors to monitor temperature and strain with Long Period Gratings to monitor resin motion and refractive index and hence degree of curing. In order to address the cross sensitivity of these sensors, we will adopt sophisticated signal processing techniques to disaggregate measurements and extract the desired measurands in a form appropriate to users. In addition, sensors need to be encapsulated and connected in a manner which makes them easy to handle and deploy. We will develop packaging solutions and mesh configurations which provide robustness. We will seek to develop this technology into a cost effective instrument which can be used by scientists and engineers, who are not photonics experts, but who seek to gain better understanding of the complex but critical processes which occur during composite manufacture.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Tidal Turbine Benchmarking Project: Stage I - Steady Flow Experiments
潮汐涡轮机基准测试项目:第一阶段 - 稳流实验
DOI:
10.36688/ewtec-2023-553
发表时间:
2023
期刊:
Proceedings of the European Wave and Tidal Energy Conference
影响因子:
--
作者:
[Tucker Harvey S]
通讯作者:
Tucker Harvey S
Resilience of pollinators in a changing world: impact of developmental environment on metabolism and energetic budgets in social and solitary bees
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批准号:BB/X016641/1
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项目类别:Research Grant
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资助金额:$88.1万
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财政年份:2024
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负责人:James Gilbert
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依托单位:
海外基金