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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
321

Siekte en gebrokenheid teenoor genesing en restourasie in Johannes (Afrikaans)

Kok, Jacobus (Kobus) 07 November 2008 (has links)
In this dissertation the healing acts of Jesus in John are investigated against the ancient Mediterranean socio-religious and cultural background in which it realized. All sickness and healing realities realize within a particular socio-cultural context and may differ significantly within different cultures. For example, less than one hundred years ago depression was not diagnosed as an illness and there existed no therapeutic processes for the disease. When one investigates ancient healing narratives which tell of sickness realities almost 2000 years ago, before the dawn of the Western Bio-Medical research system and modernism, one must remember that the sickness realities of that time will differ to a great extent from the modern project‘s sickness realities and its constructs. The researcher must in other words be very sensitive about anachronistic misinterpretations and ethnocentrism - that is, a reductionistic view of sickness (and other) realities through your own worldview. For this reason the term sickness is used as an umbrella term, and a distinction is made between the curing of a disease and the healing of an illness. The word group curing and disease are words that are used in the Western Bio-Medical world, and are also deeply imbedded within the modernistic philosophical worldview. On the other hand the word group healing of an illness is more inclusive in the sense that it is sensitive to sickness realities as experienced and constructed in ancient Mediterranean societies. In the first century ancient Mediterranean temple oriented Judaism for example, a particular disease (like skin disease), unlike today, also had negative socio-religious implications for the afflicted person which sometimes resulted in marginalization and status deconstruction. Turning to John‘s healing narratives it should also be taken into account that his healing acts are presented as σημετα that is, signs which illustrate that Jesus is the Son of God, the source of life (cf. John 20:30-31; 10:32; 6:14). The question to be answered is, in what way does John present the healing narratives in order to illustrate that Jesus is the true source of Life (cf. John 1:4). The thesis is thus developed that John presents sickness realities that closely represent ¯"death”, crisis, disorientation, brokenness and loss of life possibilities within the ancient Mediterranean symbolic universe. John then presents Jesus as the divine transformation Agent, who restores and recreates life possibilities after a transformational interaction with the sick person. It is also argued that John‘s understanding of healing is not to be limited to the traditional Western Biomedical paradigm revolving around the curing of disease but also includes a view of Jesus‘ role as healer and restorer of spiritual brokenness, a tradition which originated in the Old Testament. The narrative regarding the discussion between Jesus and the Samaritan woman is used as an example of a situation in which Jesus offers someone the gift of life and spiritual restoration or healing which resulted in the representation of reality. Lastly it will be argued why the resurrection could be understood as a Johannine σημετον and also be interpreted as the culminating healing act in John‘s Gospel, illustrating that Jesus is the true source of life in abundance (cf. John 1:4; 10:10). / Thesis (PhD)--University of Pretoria, 2008. / New Testament Studies / PhD / Unrestricted
322

Modélisation multi-physiques et simulations numériques du moulage par injection mono et bi matières thermoplastique / silicone liquide / Multiphysics modeling and numerical simulation of mono and bi materials injection molding of thermoplastic / liquid silicone

Ou, Huibin 02 February 2015 (has links)
La famille des élastomères silicones LSR (Liquid Silicone Rubber) de haute technicité est identifiée comme celle possédant les plus forts arguments de développement au cours des prochaines décennies en raison de leurs propriétés spécifiques et de leurs facilités de mise en forme en grande série. Notamment, le moulage par injection du LSR sur d’autres matières telles que les thermoplastiques ou les métaux est aujourd’hui possible, ce qui ouvre la possibilité d’obtenir des composants multi-matières, multi-couleurs et de nouvelles fonctionnalités. Cette thèse se concentre sur la transformation des élastomères silicones LSR dans le but de mieux appréhender les phénomènes impliqués, afin d’améliorer les procédés d’élaboration et d’optimiser les conditions de transformation des composants élastométriques mono ou bi-matières à géométrie et propriété fonctionnelle bien définie. Les comportements rhéologique, cinétique et thermique des élastomères silicones ont été étudiés et caractérisés sous des conditions réelles de mise en œuvre par différentes méthodes associées. Un modèle thermo-rhéo-cinétique a été développé et ensuite implémenté dans un code de calcul de remplissage Cadmould® pour simuler le moulage par injection des élastomères silicones LSR ou encore le surmoulage de thermoplastiques. Pour la validation des modèles choisis et des paramètres identifiés, les essais d’injection sur l’outillage industrielle instrumenté ont été réalisés et confrontés à des résultats numériques obtenus. Enfin, la caractérisation de l’adhésion et l’adhérence interfaciale entre les thermoplastiques et les élastomères silicones a été réalisé sous différentes sollicitations complexes. De plus, l’évolution d’adhérence interfaciale des assemblages collés au cours de la vulcanisation des élastomères silicones a été caractérisée par l’essai de traction en utilisant un rhéomètre rotatif sous différentes modes de chauffage. / The family of high technology silicone elastomers LSR (Liquid Silicone Rubber) is identified as having the strongest arguments for development in the coming decades due to their unique properties and easy forming in large series. In particular, the injection molding of LSR on other materials such as thermoplastics or metals is possible today, which opens the possibility of obtaining multi-material, multi-color and new features components. The work presented in this thesis focuses on the transformation of silicone elastomers in order to better understand the phenomena involved, as to improve production processes and optimize processing conditions for mono or bi-material components in geometry and property functional well defined. The rheological, curing kinetic and thermal behaviors of silicone elastomers have been studied and characterized under real conditions of production by different methods combined. A thermo-rheo-kinetic model was then developed and implemented in commercial computer software Cadmould® to simulate the injection molding process of LSR or the overmolding process of LSR on to thermoplastics. For the validation of the models chosen and the parameters identified, the injection molding tests on industrial instrumented tools were performed and compared to numerical results. Finally, the characterization of interfacial adhesion between the thermoplastic and silicone elastomers was carried out under various adhesion tests. Moreover, the evolution of interfacial adhesion in thermoplastic/silicone components during the vulcanization of silicone elastomers has been characterized by the tensile test using a rotating rheometer in different heating cycles
323

Optimalizace teploty vytvrzování při práškovém lakování / Optimalization of curing temperature during powder coating

Blažek, Jaroslav January 2009 (has links)
The work deals with the determination of optimal curing temperature by powder coating. The thesis includes a literary study of powder coating. In the experimental part of the thesis will be performed pre-treatment and coated several test samples. It will be carried out verification of the properties of powdered coating
324

Volba vhodného systému vytvrzování pro práškové nátěrové hmoty / The Choice of the Suitable Hardening Solution for Powder Coating

Donabauer, Petr January 2013 (has links)
The thesis deals with the comparison and selection of a suitable system of curing powder coatings. The work includes a literature review focused on the issue of powder coating. In the experimental part of the work will be carried out techno-economic analysis of the suitability of each technology for curing parts in a conventional and catalytic infrared oven.
325

Estudo do carbonato de cálcio tratado com agente de acoplamento Chartwell na substituição parcial de sílica em compósitos de borracha natural /

Ribeiro, Gabriel Deltrejo January 2020 (has links)
Orientador: Renivaldo José dos Santos / Resumo: Durante o processo de fabricação dos artefatos de borracha natural (BN), é possível adicionar cargas, podendo ser combinadas em função das propriedades finais pretendidas. Nesse sentido o carbonato de cálcio vem sendo utilizado como carga de enchimento nas formulações com borracha natural, apenas para aumentar o volume da amostra para a mesma quantidade de borracha implementada, buscando apenas a redução do custo final. Devido a demanda industrial, surge a necessidade de investigar a possibilidade de fazer com que uma carga, ora antes utilizada como enchimento, passe a atuar como carga de reforço mecânico, ou seja, a realização de tratamentos superficiais se torna uma possibilidade viável, para que a carga consiga realizar ligações cruzadas entre as cadeias de carbono da BN. Dessa forma, foi proposto neste trabalho o estudo de compósitos de borracha natural tipo crepe claro com carbonato de cálcio ultrafino tratado com 2% do Chartwell C-515.71HR^® para substituição parcial da sílica comercial tratada com silano, buscando identificar a influência deste agente de acoplamento no processo de vulcanização, a fim de melhorar a interação entre a borracha natural e carbonato de cálcio ultrafino. O preparo ocorreu em um misturador aberto de cilindros com a variação de 10 em 10 phr para as cargas, nos híbridos, iniciou-se em 40/00 até 00/40 (sílica/carbonato de cálcio ultrafino), e foi produzida uma amostra controle, com a mesma formulação, porém sem carga, denominada goma pura. Foi po... (Resumo completo, clicar acesso eletrônico abaixo) / Abstract: During the manufacturing process of natural rubber (BN) artifacts, it is possible to add loads, which can be combined depending on the desired final properties. In this sense, calcium carbonate has been used as filler in formulations with natural rubber, just to increase the sample volume for the same amount of rubber implemented, seeking only to reduce the final cost. Due to industrial demand, there is a need to investigate the possibility of causing a load, previously used as a filler, to act as a mechanical reinforcement load, that is, the performance of surface treatments becomes a viable possibility, so that the cargo is able to cross-link the BN carbon chains. Thus, the main objective of this work is the study of natural rubber composites of light crepe type with ultrafine calcium carbonate treated with 2% of Chartwell C-515.71HR^® for partial replacement of commercial silica treated with silane, seeking to identify the influence of this coupling agent in the vulcanization process, in order to improve the interaction between natural rubber and ultrafine calcium carbonate. The preparation took place in an open cylinder mixer with a variation of 10 in 10 phr for the loads, in the hybrids, it started in 40/00 until 00/40 (silica / ultrafine calcium carbonate), and a control sample was produced , with the same formulation, but without load, called pure gum. It was possible to replace up to 75% of the silica with treated calcium carbonate, but the best response was to replac... (Complete abstract click electronic access below) / Mestre
326

Molecular Transportation in Polymer and Composite Materials: Barrier Performance and Mechanical Property Evaluation

Md Nuruddin (8738436) 21 April 2020 (has links)
<p>Transport of gasses and liquids through polymers and composites is an important factor to be considered when designing a material for structure and packaging applications. For structural engineering applications, more focus has been given to the transportation of water, vapor and organic liquids rather than gases as diffusion of these liquids into the polymers and polymer-based composites can significantly lower service life. In addition, much attention has been given to the leaching of unreacted reactant molecules, solvents, additives, degradation products from the polymers and composites to the atmosphere (water, soil etc.). We studied the transport of volatile organic compounds and water in cured-in-place-pipe (CIPP) (a representative of FRPC) and gas permeability of highly engineered cellulose nanocrystals (CNC) films.</p> <p>Cured-in-place-pipe (CIPP) is a popular technology which uses fiber reinforced polymer composite to repair sanitary sewer, stormwater, and drinking water pipe. The liner is installed in the field and exposed to flowing water immediately after installation (curing of the liner) is done. Curing conditions dictate liner properties as undercured liners can contain unreacted styrene monomers, additives, degradation products. These agents can leach out and enter the environment (soil, water, air). The objective of this work was to investigate the curing behavior, volatile content, thermal stability of steam-cured and UV-cured CIPP liners collected from Indiana and New York installation sites. The liner specimens were also exposed to water and other aggressive environmental conditions (saltwater, concrete pore solution at 50 °C) to explore the leaching of unreacted styrene and other organic chemicals from the liners. The influence of transportation of water, salt solution and pore solution through liners on mechanical and thermo-mechanical properties was also examined to study the durability of the liners. Study suggested that the durability of the liners depends on the curing condition and exposed environment conditions.</p> <p>The function of polymer packaging materials is mainly to inhibit gas and moisture permeation through the films. Cellulose nanocrystals (CNCs) have drawn growing interest for the packaging due to their non-toxicity, abundance in nature, biodegradability and high barrier properties. The objective of this work was to corelate the alignment of CNC with free volume and barrier performance of the film. Furthermore, citric acid (CA) was added to the CNC suspensions with varying quantity to explore the effect of CA on coating quality and barrier performance of CNC coated polypropylene (PP) film. Study revealed that CA addition in CNC suspension can enhance the hydrophobicity and gas barrier performance of coated PP films while retaining the high optical transparency. </p>
327

Strukturelle Klebungen mit UV- und lichthärtenden Acrylaten

Vogt, Iris 30 March 2009 (has links)
UV- und lichthärtenden Acrylatklebstoffen steht ein breites Anwendungsspektrum im Konstruktiven Glasbau offen. Ihr farbloses und klares Erscheinungsbild fördert eine Konstruktion, die transparent und leicht wirken soll. Kurze Aushärtezeiten, die sich im Sekunden- oder einstelligen Minutenbereich bewegen, ermöglichen eine schnelle Herstellung und reduzieren die Lagerzeiten. Die geklebten Konstruktionen können direkt weiterverarbeitet werden. Durch diese Vorteile heben sie sich von den Silikonklebstoffen ab, die für ausge-wählte Anwendungen im Fassadenbau (Structural-Sealant-Glazing-Systems - SSGS) bauaufsichtlich zugelassen sind. Gegenstand dieser Arbeit ist die Aufstellung von Empfehlungen zur Planung und Berechnung struktureller Klebungen mit strahlungshärtenden Acrylaten. Dafür werden Klebstoffe an dem reinen Material sowie in Verbindungen mit Glas und Metall untersucht. Für ein umfangreiches Bild über das Verhalten des Materials bieten sich Substanzprüfkörper an, die mit überschaubarem Aufwand eine Auswertung verschiedener Einflüsse - beispielsweise Temperatur und Prüfgeschwindigkeit - erlauben. An in-situ-Prüfkörpern kann der Klebstoff in der Verbindung betrachtet werden. Durch Wechselwirkungen zwischen Klebstoff und Fügeteil bildet sich eine sogenannte Grenzschicht aus, die gradierte Eigenschaften besitzt und die Materialkennwerte - besonders bei dünnen Klebfugen - beeinflusst. Weiterhin erlauben diese Prüfkörper eine Aussage über das Tragverhalten der Klebverbindung. Um das Potenzial der Acrylatklebungen in der Glasarchitektur aufzuzeigen und in der Anwendung zu prüfen, werden Bauteile mit punktförmig geklebten Halterungen untersucht. Absturzsicherungen werden statischen und dynamischen Belastungen unterworfen. An Überkopfverglasungen werden Trag- und Resttragfähigkeitsuntersuchungen durchgeführt. Bauteile im Freien geben Aufschluss über das Alterungsverhalten unter natürlichen klimatischen Bedingungen. / UV and light curing acrylates present a whole host of possibilities for the implementation of glass construction. Their clear and colourless appearance produces a transparent and lightweight construction. Short curing times consisting of no more than mere minutes allow for quick production with minimal downtime within the overall process. Processing can be resumed immediately once bonding has occurred. The advantages of acrylates can be compared to the characteristics and properties of adhesive silicones which have been widely approved by building authorities for specific façade applications (Structural-Sealant-Glazing-Systems - SSGS). The subject matter of this study is the development of auxiliary tools to plan and design adhesively bonded joints of UV and light curing acrylates. These adhesives are, therefore, analysed both generally as bulk material and in applications as a joint between glass and metal. The use of dog bone shaped specimens is recommended to analyze the material behaviour under a variety of influence factors such as temperature and testing rate. The bonded joints of test specimens provide an opportunity to examine the interaction between the adhesive and the materials to which they are adhered. An interface with graded properties is formed based upon the interactions between adhesive joints and each particular substrate. Further on, bonded specimens enable the development of a statement concerning the load-bearing capacity of joints. Constructions having spot bonded joints are tested to demonstrate the potential use of acrylic joints in architectural glass treatments. Safety barriers are tested under both static and dynamic loads. Sloped roof systems are tested to substantiate load-bearing capacity and to verify any residual carrying capacity. Components are exposed to natural weathering in order to examine the affects of ageing on the adhesive.
328

UV laser patterning of silicone-based soft electrode grids

Jakobsson, Maria January 2023 (has links)
Roughly 123 million people worldwide are affected by conditions such as epilepsy, dementia, and cardiovascular diseases. Wearable electrodes are currently used to monitor these conditions short-term. Long-term monitoring would allow for predicting seizures and could be used as a preventive treatment. As opposed to the currently used electrodes, wearables that are intended for long-term use must be soft and flexible in order not to cause harm or discomfort for the user. The electrodes should also have high resolution, meaning that the electrode paths should be as narrow as possible without negatively affecting the performance of the electrode. In this thesis, soft and flexible electrode grids based on silicones are developed using UV laser patterning. Two different methods are evaluated: laser curing of silicones with the addition of a photoinitiator, and laser ablation of conductive composite. The results found in this thesis are that photocuring silicones gives a too low resolution to be useful for patterning soft electrode grids. UV laser ablation on the other hand showed high resolution while the electrodes retained stretchability. / <p>Examensarbetet är utfört vid Institutionen för teknik och naturvetenskap (ITN) vid Tekniska fakulteten, Linköpings universitet</p>
329

The influence of delayed light curing on the polymerization contraction stress and degree of conversion in dual-cured resin luting agents

Iskandar, Mounir January 2010 (has links)
Indiana University-Purdue University Indianapolis (IUPUI) / The purpose of this study was 1) To determine the impact of eliminating or delaying the photo-activation procedure on the polymerization contraction stress (PCS)and degree of conversion (DC) of a dual-cured resin luting agent, and 2) To determine the amount of delay in photo-initiation of the dual-cured resin cements that can achieve a reduced PCS value with the highest possible DC. The amount of PCS and DC of a dual-cured resin luting agent was determined using a tensometer and ATR spectroscopic technique, respectively. Photo-activation delay in seven tested groups was 0 min, 2 min, 4 min, 6 min, 8 min, 10 min and no photoactivation. Five samples for each group were tested. There were two hypotheses for this study: 1) A significant decrease in the amount of PCS associated with delayed photo-activation, and 2) A significant increase in DC associated with delayed photo-activation.The PCS of the chemical-cure luting agent had significantly lower value than all of the light-cure groups. For the light-cure groups, those with a 4-min delay had higher PCS than those with delays of 0 min, 2 min, 6 min, 8 min, and 10 min. The zero (0)-min and 2-min delay had higher PCS than the 6-min, 8-min, and 10-min delay; and the 6-min delay had higher PCS than the 8-min and 10-min delay. The PCS decreased 0.086 MPa per minute of delay. The DC of the chemical-cure luting agent had significantly lower value than the 2-min, 4-min, 6-min, 8-min, and 10-min delaylight cure. For the light-cure groups, 0-min delay had a lower DC than the 2-min, 4-min, 6-min, 8-min, and 10-min delay; 2-min delay had lower DC than 4-min, 6-min, 8-min, and 10-min delay. The 4-min and 6-min delay had lower DC than the 8-min and 10-min delay; and the 8-min delay had a lower degree of conversion by peak area than the 10- minute delay. The DC increased 0.021 per minute of delay. Extending the stress relief period of the dual-cured luting agents by delaying light activation has a significant impact on PCS and DC values. There was significant decrease in PCS with the delayed light curing of the resin luting agent. Significant increase in DC was noticed when light activation was delayed in the dual-cured resin luting agents.
330

Evaluation of Membrane Aerated Biofilm Reactor and Tertiary Treatment for the Removal of Organic Micropollutants in Municipal Wastewater

Sanchez Huerta, Claudia 11 1900 (has links)
Occurrence of organic micropollutants (OMPs) in aquatic environment is a worldwide concern. A long list of anthropogenic substances, including pharmaceuticals, hormones, etc., are frequently detected in natural water sources. Wastewater treatment plants are one main source of OMPs pollution, but also a key step to control OMPs dissemination into the environment. This dissertation focuses on the evaluation of Membrane Aerated Biofilm Reactor (MABR) as a sustainable process to treat wastewater polluted by OMPs. Furthermore, application of high intensity pulsed light is proposed as an innovative tertiary treatment to produce reclaimed water of high quality. In Chapter 1, a literature review was performed to investigate the occurrence and toxicity of 12 selected organic micropollutants (OMPs) in surface and ground water and the limitations of current available biological processes. Among these technologies, systems with enriched nitrifying activity were able to enhance the removal of specific OMPs through cometabolic activities. Thus, I proposed the use of a MABR with enriched nitrifying biomass to treat OMP polluted water. In Chapter 2, I studied the influence of biofilm thickness on the removal of 13 OMPs via MABR. Results demonstrated OMP removal was dependent on biofilm thickness and bacterial cell density. MABR demonstrated important efficiencies in the removal of ammonium, COD, acetaminophen and triclosan at early stages of biofilm thickness. However, the removal of nonpolar, hydrophobic 4 OMPs and anionic, acidic OMPs required thicker biofilms, achieving maximum removal at biofilm with 1.02 mm thickness and 2.2 × 106 cell mL-1. In Chapter 3, the contribution of sorption and biodegradation in the removal of OMPs via MABR was evaluated. At three stages of biofilm thickness studied, biodegradation dominated the removal for most OMPs. Heterotrophs played an important role in OMP biodegradation at all biofilm thickness, while autotrophic nitrifiers enhanced their contribution at thickness beyond 0.58 mm. Increased removal of pollutants like estrone and ethinyl estradiol were linked to the MABR enrichment with nitrifying bacteria. Sorption was essential for the removal of lipophilic and recalcitrant pollutants like triclosan. Finally, to provide high quality treated water for reuse, Chapter 4 explores the use of high-intensity pulsed light (HIPL) as post-treatment. The number of pulses and optical energy dose have a significant impact on the OMPs removal. HIPL demonstrated fast kinetics and efficient photodegradation – with significant OMPs removal within milliseconds. The findings from my Ph.D. dissertation indicate that MABR combined with high-intensity pulse light may be an effective treatment train for the efficient removal OMPs present in municipal wastewaters. This combined treatment process could potentially pave the way to produce high quality reclaimed water for various reuse purposes.

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