课题基金 / 基金详情

STFC - Swansea University / TWI Regional B4I Pilot Centre, Wales.

STFC - Swansea University / TWI Regional B4I Pilot Centre, Wales.
STFC - 斯旺西大学/TWI 地区 B4I 试点中心,威尔士。
批准号:
ST/R006105/1
负责人:
Cameron Pleydell-Pearce
金额:
$90.58万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2018
资助国家:
英国
项目状态:
已结题
起止时间:
2018 至 --

项目摘要

项目成果

相似基金

相关文献

中文摘要
翻译
这项提议的目标是为威尔士创建一个以工业为重点的梁线桥梁中心。光束线桥梁是一项活动(由当地专业设施和专业知识支持),以支持(桥梁)进入STFC的国家级科学设施,特别是(但不限于)ISIS的中子和钻石光源光束线(因此而得名)。威尔士拥有比英国其他地区更高的制造业职位比例,拥有大量规模不一的企业集群,从锚定公司到中小企业,涉及从冶金和绿色能源到医疗解决方案和半导体制造等各种行业。然而,该地区与英格兰南部和东部的类似企业不能在同一级别访问STFC设施。这项活动旨在通过以下方式解决这一差距:第一:向当地行业通报当地和国家设施的能力并邀请意向书;第二:协助设计实验并在当地完成概念验证研究;第三:支持使用STFC设施,包括收购后数据分析和解释。拟建的中心将建立在南威尔士焊接研究所(TWI)和斯旺西大学(SU)先进材料成像(AIM)设施的现有设施和专业知识的基础上。这些设施加在一起,代表了该地区无与伦比的关键特征能力和专业知识。然而,为当地工业和学术合作伙伴提供服务的丰富经验突显了这些只能在国家级设施(如STFC提供的设施)中解决的这些先进技术在能力方面的局限性。正是这些设施以及这些知识和经验,TWI和AIM将利用这些设施和经验来支持当地企业通往光束线的道路。该中心将聘用业务发展干事(BIBO),他们最初将借调到STFC,然后返回该地区,利用他们获得的人脉和专业知识与当地行业接触,评估兴趣水平,并从证据概念到数据分析为他们提供支持。当地行业将首先通过TWIS和SU自己的行业参与机制(代表该地区的数百家公司)进行接触。然而,Bibos将在相关的行业会议上宣传该中心的活动,战略合作伙伴EEF(制造商组织-拥有25,000家公司的网络)将显著扩大参与。该中心将与威尔士创新威尔士、威尔士政府(WG)智能专业化实施计划密切结合,WG作为中心的合作伙伴。该中心将与这一战略中确定的关键集群的代表进行互动,例如具体的IKC和化合物半导体集群。这些活动的预期直接影响包括:威尔士最先进的表征设施的使用增加,工业研究和开发活动的增加和改善,泛供应链、行业间和行业学术研究活动的增加,以及关键的是,改善了威尔士内部STFC设施的利用。然而,预计这些直接好处将逐步转化为间接影响,例如:增加就业机会,增加威尔士的经济产出(和GVA),以及为英国的技术和环境目标做出贡献。
英文摘要
This goal of this proposal is to create a beamline-bridging industry-focussed centre for Wales. A beamline bridge is an activity (supported by local specialist facilities and expertise) that supports (bridges) access to STFC's national level scientific facilities and in particular (but not limited to) the ISIS neutron and Diamond light source beamlines (hence the name). Wales has a higher proportion of manufacturing based jobs than the rest of the UK and has clusters of large numbers of businesses of varying size from anchor companies to SMEs in a variety of sectors from metallurgy and green energy, to health solutions and semiconductor fabrication. However, this region does not access STFC facilities at the same level as similar businesses based in the South and East of England. This activity aims to address this disparity by First: Informing local industry of the capabilities of the local and national facilities and inviting expressions of interest, Second: Aiding in design of experimentation and completing proof of concept studies locally and Third: Supporting access to STFC facilities including post-acquisition data analysis and interpretation. The proposed centre will be built on existing facilities and expertise based at both The Welding Institute - South Wales (TWI) and Swansea University's (SU) Advanced Imaging of Materials (AIM) Facility. Together these facilities represent a critical mass of characterisation capability and expertise un-paralleled in the region. However, significant experience serving both local industry and academic partners has highlighted the limitations in capability even of these advanced techniques that can only be addressed at national level facilities, such as those provided by STFC. It is these facilities and this knowledge and experience that TWI and AIM will draw on to support local businesses on their pathway to the beamlines. The centre will employ business development officers (BIBOs) that will initially be seconded to STFC and then return to the region to utilise the contacts and expertise they have acquired to engage local industry, assess levels of interest and support them from proof concept to data analysis. Local industry will be engaged first and foremost via TWIs and SU's own industry engagement mechanisms (representing hundreds of companies in the region). However, BIBOs will publicise the centre's activities at relevant industry conferences and strategic partners EEF (The Manufacturers Organisation -who have a network of 25,000 companies) will broaden engagement significantly.The centre will be closely aligned to Innovation Wales, Welsh Government's (WG) Smart Specialisation implementation plan with WG as a partner in the centre. The centre will interact with representatives of key clusters identified in this strategy such as the SPECIFIC IKC and the compound semiconductor cluster. Expected direct impacts of the activities include: Increased utilisation of state-of-the-art characterisation facilities with Wales, Increased and improved industrial research and development activity, Increase in pan-supply chain, inter-industrial and industry-academic research activity and critically, Improved utilisation of STFC facilities from within Wales. However, it is also expected that these direct benefits will cascade into indirect impact such as: increased job creation, increased economic output (and GVA) in Wales and contributions to UK technological and environmental targets.
期刊论文(6)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1016/j.engfailanal.2020.105057
发表时间: 2021-02
期刊: Engineering Failure Analysis
影响因子: 4
作者: [A. Elrefaey;Yuchen Gu;J. D. James;C. Kneen;I. Crabbe;J. Sienz]
通讯作者: A. Elrefaey;Yuchen Gu;J. D. James;C. Kneen;I. Crabbe;J. Sienz
Indentation Plastometry of Welds
焊缝压痕塑性测量
DOI: 10.1002/adem.202101645
发表时间: 2022
期刊: Advanced Engineering Materials
影响因子: 3.6
作者: [Gu W]
通讯作者: Gu W
Bridging Industry to Beamline through an Advanced Laboratory-Based Characterisation Facility
通过先进的基于实验室的表征设施将工业与光束线连接起来
DOI: 10.1017/s1431927619004665
发表时间: 2019
期刊: Microscopy and Microanalysis
影响因子: 2.8
作者: [Johnston R]
通讯作者: Johnston R
海外基金