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Institute
- Zentrum für Forschung, Entwicklung und Transfer (80) (remove)
Der Beitrag beschäftigt sich mit der CE-Kennzeichnung von Brettschichtholz (BSH) und zeigt auf, woraus die Anforderungen an die verschiedenen Wesentlichen Merkmale von BSH resultieren (u.a. "Anwendungsnorm" DIN 20000-3). Dabei wird ein Schwerpunkt auf den Themenbereich Brandschutz gelegt, dennoch aufgezeigt wie viele andere Quellen von Anforderungen es gibt.
Cellulosefaserverstärktes Polypropylen – Eigenschaftsbeeinflussung durch die Schmelzeaufbereitung
(2023)
Verarbeitungstemperaturen, Verweilzeit und Scherkräfte sind entscheidend, um die strukturelle Integrität von cellulosebasierten Fasern zu gewährleisten.
In dieser Studie wurden die Einflüsse durch die Schmelzeaufbereitung eines cellulosefaserverstärkten Polypropylens auf die Faser und den Faserverbund untersucht. Die Schmelze wurde in einem Plastographen mit verschiedenen Rotordrehzahlen, Schmelzetemperaturen und Verweilzeiten aufbereitet. Um die Auswirkung der Einspeisungsmethode auf den Faserabbau zu analysieren, wurden die Fasern entweder direkt der thermoplastischen Schmelze oder zusammen mit dem Kunststoffgranulat dem Plastographen zugeführt. Die Zugabe der Fasern in die Schmelze geht mit einer erhöhten thermischen und verminderten mechanischen Belastung der Fasern einher.
Bei der Prüfung der mechanischen Eigenschaften der verschieden aufbereiteten Compounds zeigten sich signifikante Unterschiede. Wurden die Fasern direkt der Schmelze hinzugefügt, so führte dies zu einer deutlich reduzierten Zugfestigkeit. Optische Unterschiede in den Schliffbildern der spritzgegossenen Prüfstäbe sowie in den Faserlängen nach Compoundierung konnten nicht festgestellt werden. Die verminderte Festigkeit wird folglich auf die unterschiedliche thermische Belastung der Faser während der Verarbeitung zurückgeführt.
Mit steigenden Verbrauchs- und CO2-Anforderungen, aber auch dem Wandel zur Elektrifizierung des Antriebs verändert sich durch Leichtbauweise die werkstoffliche Zusammensetzung der Fahrzeuge. Faserverstärkte thermoplastische Kunststoffe substituieren zunehmend metallische Komponenten. Diese Hochleistungswerkstof-fe (sog. Organobleche) erfüllen nicht nur die steigenden Anforderungen an Leichtbau, sondern auch an die Wirtschaftlichkeit von Produktionsprozessen, sowie an die Designfreiheit einzelner Bauteile. Das Hybrid-Spritzguss-Verfahren in Verbindung mit Organoblechen hat sich in den vergangenen Jahren für die Herstellung von Funktionsbauteilen und Leichtbaustrukturen durchgesetzt.
Der Vortrag befasst sich mit der werkstofflichen Rezyklierbarkeit von endlosglasfa-serverstärkten thermoplastischen Kunststoffen (Organobleche). Sortenreine Indust-rieabfälle werden dabei in einem Closed-Loop-Recyclingprozess zum Anspritzen von Funktionselementen in einem Serienbauteils genutzt. Die technische Machbarkeit als auch eine erste wirtschaftliche und ökologische Bewertung des Prozesses wird vorgestellt.
Corrosion of steel reinforcements in concrete constructions is a big topic for the building industry. Polymeric materials are a possible alternative due to their ability to withstand corrosion. To replace steel reinforcements, fibers with high mechanical properties and a good bonding ability between fiber and concrete are needed. Today different approaches for concrete reinforcement by polymer fibers have been investigated. The bonding ability of the fibers can be increased by mechanical anchoring, e.g. crimped or embossed fibers, as well as by a chemical bonding between concrete and fiber surface. To realize the requirements of high mechanical properties and a good bonding behavior, a fiber that is drawn from a co-extruded filament shall be produced and tested. The filament owns an innovative core-shell-structure. The core maintains the fiber-stiffness and the tensile strength while the shell allows using another material to affect the bonding behavior of the fiber. This study shows the usage of fibers with differing shell materials to examine their influence on the mechanical properties of the fiber in total and the adhesion abilities to concrete. As core material, an unfilled polypropylene (PP) is used. The shell materials are varied using different polymers e.g. polypropylene or ethylene acrylic acid copolymer, as well as two PP based compounds filled with wood particles and calcium carbonate blended with a maleic anhydride based coupling agent. The mechanical properties of the fibers are tested by fiber tensile tests to compare the younǵs modulus and the tensile strength. The influence of the shell phase on the bonding ability to concrete is evaluated by the interfacial shear strength calculated from single fiber pull-out tests. Microscopy is used to interpret changes before and after pull-out. The results depict incredible positive effects and allow new insights in possible materials for fiber reinforced concrete constructions.
Building Energy Simulation (BES) tools play a key role in the optimization of the building system during the different phases, from pre-design through commissioning to operation. BES tools are increasingly used in research as well as in companies. New BES tools and updated versions are continuously being released. Each tool follows an independent validation process but rarely all the tools are compared against each other using a common case study. In this work, the modelling approaches of widespread dynamic simulation tools (i.e. EnergyPlus, TRNSYS, Simulink libraries CarnotUIBK and ALMABuild, IDA ICE, Modelica/Dymola and DALEC), as well as PHPP (a well-known quasi-steady-state tool), are described and the results of all the tools modelling the same characteristic office cell, defined within the IEA SHC Task 56, are compared on a monthly and hourly basis for the climates of Stockholm, Stuttgart and Rome. Unfortunately, different tools require different levels of input detail, which are often not matching with available data, hence the parametrization process highly influences the quality of the simulation results. In the current study to evaluate the deviation between the tools, frequently used statistical indices and normalization methods are analysed and the problems related to their application, in a cross-comparison of different tools, are investigated. In this regard, the deviation thresholds indicated by ASHRAE Guideline 14-2014 are used as a basis to identify results that suggest an acceptable level of disagreement between the predictions of a particular model and the outcomes of all models. The process of reaching a good agreement between all tools required several iterations and great effort on behalf of the modellers. To aid the definition of building component descriptions and future references for inter-model comparison a short history of the executed steps is presented in this work. Together with the comparison of the results of the tools, their computational cost is evaluated and an overview of the modelling approaches supported by the different tools for this case study is provided aiming to support the users in choosing a fit-for-purpose simulation tool.
The indigenous hardwoods in German forests have a substantial ability to store carbon, and forestry reconstruction measures are anticipated to result in an increase in availability of hardwood on the wood market. Despite this, its material usage is declining with over two thirds of the harvested quantity being used for energy production. This study aims to identify policy measures and promising strategies for increasing hardwood utilisation using a combined policy Delphi-SWOT approach with literature review undertaken to identify the barriers and driving factors for an increase in its material use. The results were then ranked by a panel of experts and used as basis for the SWOT analysis, which was then applied to an extended SWOT approach. The resulting strategies were then discussed by the panel and ranked further in the 2nd and 3rd Delphi round. After three Delphi rounds, three strategies and associated policy recommendations were ranked as most effective by the experts: innovative hardwood products including manufacturing processes, research transfer and lobbying. This study provides both strategic analyses and effective strategies to stimulate the production of hardwood-based products and ends with a concise description of these strategies and policy recommendations, which are benchmarked against current literature and best practise examples.
Background
Vertigo, dizziness and balance disorders (VDB) are common in older people and cause restrictions in mobility and social participation. Due to a multifactorial aetiology, health care is often overutilised, but many patients are also treated insufficiently in primary care. The purpose of this study was to develop a care pathway as a complex intervention to improve mobility and participation in older people with VDB in primary care.
Methods
The development process followed the UK Medical Research Council guidance using a mixed-methods design with individual and group interviews carried out with patients, physical therapists (PTs), general practitioners (GPs), nurses working in community care and a multi-professional expert panel to create a first draft of a care pathway (CPW) and implementation strategy using the Consolidated Framework of Implementation Research and the Expert recommendations for Implementing Change. Subsequently, small expert group modelling of specific components of the CPW was carried out, with GPs, medical specialists and PTs. The Behaviour Change Wheel was applied to design the intervention´s approach to behaviour change. To derive theoretical assumptions, we adopted Kellogg´s Logic Model to consolidate the hypothesized chain of causes leading to patient-relevant outcomes.
Results
Individual interviews with patients showed that VDB symptoms need to be taken more seriously by GPs. Patients demanded age-specific treatment offers, group sessions or a continuous mentoring by a PT. GPs required a specific guideline for diagnostics and treatment options including psychosocial interventions. Specific assignment to and a standardized approach during physical therapy were desired by PTs. Nurses favoured a multi-professional documentation system. The structured three-day expert workshop resulted in a first draft of CPW and potential implementation strategies. Subsequent modelling resulted in a CPW with components and appropriate training materials for involved health professionals. A specific implementation strategy is now available.
Conclusion
A mixed-methods design was suggested to be a suitable approach to develop a complex intervention and its implementation strategy. We will subsequently test the intervention for its acceptability and feasibility in a feasibility study accompanied by a comprehensive process evaluation to inform a subsequent effectiveness trial.
Trial Registration
The research project is registered in “Projektdatenbank Versorgungsforschung Deutschland” (Project-ID: VfD_MobilE-PHY_17_003910; date of registration: 30.11.2017).
One major problem of a continuous process like plastic extrusion is their incapability to deal with non-local gas pressure. This is an inherent problem because a continuous process has an open end in the feeding port where pressure can escape. In this study a novel feeding system was developed to enable granulate feeding into gas pressurized processes inside a single- or twin-screw extruder. With this apparatus gas pressure can be applied inside the extrusion process. The apparatus separates the pressurized extruder from the dosing equipment that feeds the extruder. It keeps the pressure inside the system while continuously feeding new material into the process. A small-scale prototype was designed for proof-of concept. The small size of the prototype was able to handle small amounts of granulates of around 100 - 200 g/h. An applied gas pressure of 8 bar was achieved. In future optimizations, throughput can be increased and maximum applied gas pressure towards 15-20 bar.