457 research outputs found

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    Dying to starve: A comparative analysis of legal aspects relating to consent in force-feeding of both minor and adult anorexic patients

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    The authors explore the legal complexities surrounding the force-feeding of anorexic patients. Due to the myriad of difficulties relating to anorexia nervosa, treatment is intricate. The aim of this exposition is to clarify legal issues of consent and self-determination, with regard to both adult and minor patients. In addition, the distinction between ‘irrational’ and ‘incompetent’ refusal will be discussed, with the authors maintaining that the ‘irrational’ refusal of an adult patient should be respected by the law. To come to an informed conclusion, the authors will first analyse the medical and psychological aspects of anorexia nervosa. Secondly, the South African position as shaped by the Mental Health Care Act, the Children’s Act and the National Health Act will be contrasted with the position in Great Britain in order to determine the international perspective and its contrast, or not, to South African law

    A process planning framework for milling of titanium alloys

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    Titanium alloys are being used increasingly in new generation aircraft, creating a market for high value components. It is argued that knowledge development is the key factor for South African machining suppliers to penetrate the global aerospace supply chains. This paper discusses current results of a collaborative project aiming at systematic research towards improved and more efficient utilisation of the High Speed Cutting (HSC), and particularly the High Performance Machining (HPM) technologies for selected titanium alloys. A process planning framework for milling of titanium alloys has been developed. Using as point of departure prominent tool demands, this framework combines a tool wear map approach and cost modelling that enables process planners as well as machine operators to act towards optimised machining. In this way the targeted cost minimisation and lead time shortening could be modelled and practically achieved

    Distributed manufacturing systems and the internet of things : a case study

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    In order to stay competitive in today's global market, manufacturing companies need to be flexible. To ensure flexible production, shorten processing times, and reduce time-tomarket, companies are utilizing the distributed manufacturing system paradigm, wherein geographically distributed, local resources are used for product development and production. In this context, the Internet of Things (IoT) has emerged as a concept which uses existing communication technologies, such as local wireless networks and the Internet to ensure visibility of anything from anywhere and at any time. In the paper, a case study of applying the IoT to the manufacturing domain is discussed. A distributed agent-based system for virtual monitoring and control of 3-axis CNC milling machine tools is designed and developed. The machines' 3D models and process states are shown through a web interface in real-time. The potential and challenges of implementing this system and the basic building blocks for decentralized value creation are discussed

    A numerical analysis of machining induced residual stresses of Grade 5 Titanium Alloy

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    In general most manufacturing techniques alter the surface integrity of the final component. Surface integrity refers to the surface properties and their influence on the functional performance of manufactured components1. Machining induced residual stress is a surface integrity descriptor that may have a significant influence on the mechanical behavior of metallic parts subjected to dynamic loads2. Most manufacturing processes introduce some form of residual stress to the material. Cutting or more specifically machining involves large plastic deformation and elevated temperatures that may induce significant residual stresses in the surface and near surface region. When turning steel these stresses are largely tensile in nature and extend to a depth of approximately 200 ÎŒm1

    Genome-Wide snp analysis of southern african populations provides new insights into the dispersal of bantu-Speaking groups

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    The expansion of Bantu-speaking agropastoralist populations had a great impact on the genetic, linguistic, and cultural variation of sub-Saharan Africa. It isgenerally accepted that Bantulanguages originated inanarea around thepresent borderbetweenCameroon and Nigeria approximately 5,000 years ago, from where they spread South and East becoming the largest African linguistic branch. The demic consequences of this event are reflected in the relatively high genetic homogeneity observed acrossmost of sub-Saharan Africapopulations. Inthiswork, weexploredgenome-wide singlenucleotidepolymorphismdata from28populations to characterize the genetic components present in sub-Saharan African populations. Combining novel data from four SouthernAfrican populations withpreviouslypublishedresults,we reject the hypothesis that the" non-Bantu" geneticcomponent reported inSouth-Eastern Africa (Mozambique) reflects extensive gene flow between incoming agriculturalist and resident hunter-gatherer communities.We alternatively suggest that this novel component is the result of demographic dynamics associated with the Bantu dispersal

    Towards energy management during the machining of titanium alloys

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    The manufacturing industry needs to address challenges as regards to the machining process in the multifaceted context of sustainability. The current cost of energy and the reduction in material reserves highlights the need for machining systems to be more energy-efficient. This paper aims to provide a systematic overview of advanced approaches to manage energy and resource efficiency in cutting operations. The research experimentation focuses on the machining of a selected titanium alloy, Ti6Al4V, using carbide cutting tools. Tool wear, chip formation, cutting force and energy use were measured and analysed for selected cutting parameters. The experimental results illustrate the importance of selecting optimum cutting parameters and machining strategy. The results further help to define the boundary conditions for the various input parameters. Future research is also discussed

    Investigating the effects of composite materials in solar cell encapsulation

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    In the past few decades our society’s increasing demands for energy have naturally resulted in increased utilization of renewable resources such as solar energy. Due to this strong demand the solar car endurance race was established to challenge researchers in this field. A competitive vehicle needs around six square meters of solar cells that produce approximately one kilowatt of power. This equates to 514 monocrystalline silicon half cells. The manufacturing challenge is to protect these cells from the terrestrial elements over a prolonged period of time. In this research study a composite encapsulation method was developed for solar cells and tested. Experiments were conducted to assess the processing of composite materials to improve the mechanical strength of the fragile solar cells. The effects of composites on reinforcement, electrical efficiency and thermal efficiency of the photovoltaic (PV) cells were evaluated. Impact testing to simulate a hailstone shows that the fibreglass sandwich panel structure will protect the surface of the cells, whilst reducing their efficiency by less than 5%

    Aborsie: ’n Juridiese, etiese en regsetiese vraagstuk

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    In die geledere van skokkende en onetiese dade in die menslike samelewing, beklee aborsie ’n besondere plek. Vir wetenskaplike doeleindes kan aborsie oor die algemeen gedefinieer word as die skeiding van of afdrywing uit die moederlyf van die „produk” van konsepsie, synde ’n fetus (Geldenhuys, 1974:11; O’Donovan 1975:2). ’n Verdere element van die definisie, wat die blote afdrywing van die vrug gewoonlik kwalifiseer, is dat die fetus, met betrekking tot nageboortelike lewe gesproke, nie lewensvatbaar moes gewees het nie. Met die byvoeging van hierdie element tot die eie definisie word tans egter vertoef ten einde eers die belangrike vraag wanneer lewe ontstaan, te beantwoord

    Manufacturing challenges for custom made solar vehicles in South Africa

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    Solar challenges are designed to test the reliability and efficiency of solar powered vehicles in endurance races. In the past these manufactured vehicles were technology drivers and led to advances in electric motors and solar cell efficiency. The speed in relation to power consumption is one of the main design considerations, with the only energy source being solar power. In the design and manufacturing of these vehicles a number of requirements need to be met in order to pass the safety standards. The Sasol Solar Challenge (SSC) created an opportunity for South African universities to design and manufacture custom made solar powered vehicles. This paper explores and discusses the challenges for manufacturing solar vehicles in South Africa. Key elements like the communication gap between design and manufacturing, the cost of lightweight solar encapsulation, the shortage of local suppliers and expertise in composite manufacturing are evaluated. These insights can be used as foundation for strategic decisions by future stakeholders
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