|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | The Sendai Framework for Disaster Risk Reduction and Its Indicators——Where Does Health Fit in?显示文摘The Sendai Framework for Disaster Risk Reduction 2015–2030 recognizes the strong connection between health and disasters and promotes the concept of health resilience throughout.Several of the seven global targets stated in the Sendai Framework are directly related to health in terms of reducing disaster mortality,the number of affected people,disaster damage to critical infrastructure,and disruption of basic services such as health facilities.The Sendai Framework also maintains close coordination with other United Nations landmark agreements relevant to health such as the Sustainable Development Goals.However,the measurement of healthrelated indicators is challenging.Issues arise,for example,in linking deaths to disasters because of the complex interplay between exposure,risk,vulnerability,and hazards.The lack of a universal classification of disasters also means that recording of health data in disasters is not standardized.Developing the guidelines to enable data onthe indicators to be collected and reported to support the Sendai targets requires detailed thinking,time,and consultation with a diverse range of stakeholders.Strong collaboration and partnership will be vital to achieving success. | Rishma Maini Lorcan Clarke Kevin Blanchard Virginia Murray | 2017 | International Journal of Disaster Risk Science2017,8,2: | 4 |
| 2 | An Assessment of Case- based Reasoning for Spare Fiherlng显示文摘 | Sarah Jane Delany Padraig Cunningham Lorcan Coyle | | The Artificial Intelligence Review0,23,4: | 1 |
| 3 | An assement of case-based reasoning for spam filtering 显示文摘 | Sarah Jane Delany Padraig Cunningham Lorcan Coyle | 2005 | Artificial Intelligence Review2005,24,: | 1 |
| 4 | Libraries and the Long Tail: Some Thoughts about Libraries in a Network Age显示文摘 | Lorcan Dempsey | 2006 | D-Lib Magazine2006,12,4: | 1 |
| 5 | SJES14110700433954显示文摘 | Laura K Barger Erin E Flynn-Evans Alan Kubey Lorcan Walsh Joseph M Ronda Wei Wang Kenneth P Wright Charles A Czeisler | 2014 | Lancet Neurology2014,,9: | 1 |
| 6 | Quantitative falls risk estimation through multi-sensor assessment of standing balance显示文摘 | Barry R Greene Denise McGrath Lorcan Walsh Emer P Doheny David McKeown Chiara Garattini Clodagh Cunningham Lisa Crosby Brian Caulfield Rose A Kenny | 2012 | Physiological Measurement2012,,12: | 1 |
| 7 | Activity recognition using temporal evidence theory显示文摘 | Susan McKeever Juan Ye Lorcan Coyle Chris Bleakley Simon Dobson | 2010 | Journal of Ambient Intelligence and Smart Environments2010,,: | 1 |
| 8 | An assessment of case-based reasoning for spam filtering显示文摘 | Sarah Jane Delany Padraig Cunningham Lorcan Coyle | 2005 | Artificial Intelligence Review2005,24,: | 1 |
| 9 | Libraries and the Long Tail显示文摘 | Lorcan Dempsey | 2006 | D-Lib Magazine2006,12,4: | 1 |
| 10 | Libraries and the Long Tail显示文摘 | Lorcan Dempsey D | 2006 | Lib Magazine2006,,4: | 1 |
| 11 | Supramoleeular photonic therapeutic agents 显示文摘 | Shane O M Michael J H Lorcan T | 2005 | J Am Chem Soc2005,127,16: | 1 |
| 12 | Beyond 1923: Characteristics of Potentially In-copyright Print Books in Librat3, Collections 显示文摘 | Dempsey Lorcan Brian Lavoie | 2009 | Lib Magazine2009,15,: | 1 |
| 13 | Surface-induced changes in protein adsorption and implications for cellular phenotypic responses to surface interaction显示文摘 | Allen Lorcan T Tosetto Miriam Miller Ian S | 2006 | Biomaterials2006,27,16: | 1 |
| 14 | Optimal tool design in micro-milling of difficult-to-machine materials显示文摘The limitations of significant tool wear and tool breakage of commercially available fluted micro-end mill tools often lead to ineffective and inefficient manufacturing,while surface quality and geometric dimensions remain unacceptably poor.This is especially true for machining of difficult-to-machine(DTM)materials,such as super alloys and ceramics.Such conventional fluted micro-tool designs are generally down scaled from the macro-milling tool designs.However,simply scaling such designs from the macro to micro domain leads to inherent design flaws,such as poor tool rigidity,poor tool strength and weak cutting edges,ultimately ending in tool failure.Therefore,in this article a design process is first established to determine optimal micro-end mill tool designs for machining some typical DTM materials commonly used in manufacturing orthopaedic implants and micro-feature moulds.The design process focuses on achieving robust stiffness and mechanical strength to reduce tool wear,avoid tool chipping and tool breakage in order to efficiently machine very hard materials.Then,static stress and deflection finite element analysis(FEA)is carried out to identify stiffness and rigidity of the tool design in relation to the maximum deformations,as well as the Von Mises stress distribution at the cutting edge of the designed tools.Following analysis and further optimisation of the FEA results,a verified optimum tool design is established for micro-milling DTM materials.An experimental study is then carried out to compare the optimum tool design to commercial tools,in regards to cutting forces,tool wear and surface quality. | Lorcan O'Toole Feng-Zhou Fang | 2023 | Advances in Manufacturing2023,11,2: | 0 |
| 15 | Precision micro-milling process:state of the art显示文摘Micro-milling is a precision manufacturing process with broad applications across the biomedical,electronics,aerospace,and aeronautical industries owing to its versatility,capability,economy,and efficiency in a wide range of materials.In particular,the micro-milling process is highly suitable for very precise and accurate machining of mold prototypes with high aspect ratios in the microdomain,as well as for rapid micro-texturing and micro-patterning,which will have great importance in the near future in bio-implant manufacturing.This is particularly true for machining of typical difficult-to-machine materials commonly found in both the mold and orthopedic implant industries.However,inherent physical process constraints of machining arise as macromilling is scaled down to the microdomain.This leads to some physical phenomena during micromilling such as chip formation,size effect,and process instabilities.These dynamic physical process phenomena are introduced and discussed in detail.It is important to remember that these phenomena have multifactor effects during micro-milling,which must be taken into consideration to maximize the performance of the process.The most recent research on the micro-milling process inputs is discussed in detail from a process output perspective to determine how the process as a whole can be improved.Additionally,newly developed processes that combine conventional micro-milling with other technologies,which have great prospects in reducing the issues related to the physical process phenomena,are also introduced.Finally,the major applications of this versatile precision machining process are discussed with important insights into how the application range may be further broadened. | Lorcan O’Toole Cheng-Wei Kang Feng-Zhou Fang | 2021 | Advances in Manufacturing2021,9,2: | 0 |