@article{KleinerRoesslerVogtetal., author = {Kleiner, Florian and R{\"o}ßler, Christiane and Vogt, Franziska and Osburg, Andrea and Ludwig, Horst-Michael}, title = {Reconstruction of calcium silicate hydrates using multiple 2D and 3D imaging techniques: Light microscopy, μ-CT, SEM, FIB-nT combined with EDX}, series = {Journal of Microscopy}, volume = {2021}, journal = {Journal of Microscopy}, publisher = {John Wiley \& Sons Ltd}, address = {Oxford}, doi = {10.1111/jmi.13081}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20220106-45458}, pages = {1 -- 6}, abstract = {This study demonstrates the application and combination of multiple imaging techniques [light microscopy, micro-X-ray computer tomography (μ-CT), scanning electron microscopy (SEM) and focussed ion beam - nano-tomography (FIB-nT)] to the analysis of the microstructure of hydrated alite across multiple scales. However, by comparing findings with mercury intrusion porosimetry (MIP), it becomes obvious that the imaged 3D volumes and 2D images do not sufficiently overlap at certain scales to allow a continuous quantification of the pore size distribution (PSD). This can be overcome by improving the resolution and increasing the measured volume. Furthermore, results show that the fibrous morphology of calcium-silicate-hydrates (C-S-H) phases is preserved during FIB-nT. This is a requirement for characterisation of nano-scale porosity. Finally, it was proven that the combination of FIB-nT with energy-dispersive X-ray spectroscopy (EDX) data facilitates the phase segmentation of a 11 × 11 × 7.7 μm3 volume of hydrated alite.}, subject = {Zementklinker}, language = {en} } @article{JiangRoesslerWellmannetal., author = {Jiang, Mingze and R{\"o}ßler, Christiane and Wellmann, Eva and Klaver, Jop and Kleiner, Florian and Schmatz, Joyce}, title = {Workflow for high-resolution phase segmentation of cement clinker fromcombined BSE image and EDX spectral data}, series = {Journal of Microscopy}, volume = {2021}, journal = {Journal of Microscopy}, publisher = {Wiley-Blackwell}, address = {Oxford}, doi = {10.1111/jmi.13072}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20211215-45449}, pages = {1 -- 7}, abstract = {Burning of clinker is the most influencing step of cement quality during the production process. Appropriate characterisation for quality control and decision-making is therefore the critical point to maintain a stable production but also for the development of alternative cements. Scanning electron microscopy (SEM) in combination with energy dispersive X-ray spectroscopy (EDX) delivers spatially resolved phase and chemical information for cement clinker. This data can be used to quantify phase fractions and chemical composition of identified phases. The contribution aims to provide an overview of phase fraction quantification by semi-automatic phase segmentation using high-resolution backscattered electron (BSE) images and lower-resolved EDX element maps. Therefore, a tool for image analysis was developed that uses state-of-the-art algorithms for pixel-wise image segmentation and labelling in combination with a decision tree that allows searching for specific clinker phases. Results show that this tool can be applied to segment sub-micron scale clinker phases and to get a quantification of all phase fractions. In addition, statistical evaluation of the data is implemented within the tool to reveal whether the imaged area is representative for all clinker phases.}, subject = {Zementklinker}, language = {en} } @article{Kleiner, author = {Kleiner, Florian}, title = {Optimization and semi-automatic evaluation of a frosting process for a soda lime silicate glass based on phosphoric acid}, series = {International Journal of Applied Glass Science}, journal = {International Journal of Applied Glass Science}, publisher = {John Wiley \& Sons}, doi = {10.1111/ijag.15866}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20210701-44548}, pages = {1 -- 8}, abstract = {Chemical glass frosting processes are widely used to create visual attractive glass surfaces. A commonly used frosting bath mainly contains ammonium bifluoride (NH4HF2) mixed with hydrochloric acid (HCl). The frosting process consists of several baths. Firstly, the preliminary bath to clean the object. Secondly, the frosting bath which etches the rough light scattering structure into the glass surface. Finally, the washing baths to clean the frosted object. This is where the constituents of the preceding steps accumulate and have to be filtered from the sewage. In the present contribution, phosphoric acid (H3PO4) was used as a substitute for HCl to reduce the amount of ammonium (NH4+) and chloride (Cl-) dissolved in the waste water. In combination with magnesium carbonate (MgCO3), it allows the precipitation of ammonium within the sewage as ammonium magnesium phosphate (MgNH4PO4). However, a trivial replacement of HCl by H3PO4 within the frosting process causes extensive frosting errors, such as inhomogeneous size distributions of the structures or domains that are not fully covered by these structures. By modifying the preliminary bath composition, it was possible to improve the frosting result considerably. To determine the optimal composition of the preliminary bath, a semi-automatic evaluation method has been developed. This method renders the objective comparison of the resulting surface quality possible.}, subject = {Silicatglas}, language = {en} } @article{LeNguyenLudwig, author = {Le, Ha Thanh and Nguyen, Sang Thanh and Ludwig, Horst-Michael}, title = {A Study on High Performance Fine-Grained Concrete Containing Rice Husk Ash}, series = {International Journal of Concrete Structures and Materials}, journal = {International Journal of Concrete Structures and Materials}, doi = {10.1007/s40069-014-0078-z}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20170425-31477}, pages = {301 -- 307}, abstract = {Rice husk ash (RHA) is classified as a highly reactive pozzolan. It has a very high silica content similar to that of silica fume (SF). Using less-expensive and locally available RHA as a mineral admixture in concrete brings ample benefits to the costs, the technical properties of concrete as well as to the environment. An experimental study of the effect of RHA blending on workability, strength and durability of high performance fine-grained concrete (HPFGC) is presented. The results show that the addition of RHA to HPFGC improved significantly compressive strength, splitting tensile strength and chloride penetration resistance. Interestingly, the ratio of compressive strength to splitting tensile strength of HPFGC was lower than that of ordinary concrete, especially for the concrete made with 20 \% RHA. Compressive strength and splitting tensile strength of HPFGC containing RHA was similar and slightly higher, respectively, than for HPFGC containing SF. Chloride penetration resistance of HPFGC containing 10-15 \% RHA was comparable with that of HPFGC containing 10 \% SF.}, subject = {Hochfester Beton}, language = {en} } @article{Dressel, author = {Dressel, Dennys}, title = {Reaktivit{\"a}t von H{\"u}ttensand : Thermodynamische Grundlagen und Anwendung}, doi = {10.25643/bauhaus-universitaet.2677}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20160829-26778}, pages = {178}, abstract = {Die thermodynamischen Grundlagen der Hydratation von H{\"u}ttensand als Hauptbestandteil von Zementen werden erforscht. Hierbei werden thermodynamische Bildungs- und Reaktionsdaten experimentell bestimmt und berechnet. Dar{\"u}ber hinaus wird der Prozess der Feststoffaufl{\"o}sung von H{\"u}ttensand in w{\"a}ssrigen L{\"o}sungen untersucht. L{\"o}sungs- und F{\"a}llungsprozesse werden unter verschiedenen Konditionen gemessen, ausgewertet und diskutiert. Die Ergebnisse werden im weiteren Verlauf zur Bestimmung der Hydratationsgrades in Pasten sowie zum besseren Verst{\"a}ndnis in der Wechselwirkung zwischen H{\"u}ttensanden und Mahlhilfsstoffen genutzt und angewandt.}, subject = {H{\"u}ttensand}, language = {de} } @article{KapsSchuchStaeblein, author = {Kaps, Christian and Schuch, Kai and St{\"a}blein, Stefan}, title = {Silicate coatings for concrete components with waterglass systems by means of neutral salt initiation}, doi = {10.25643/bauhaus-universitaet.2588}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20160601-25888}, pages = {1 -- 14}, abstract = {The objective of the investigations was the proof of the use of the neutral salt initiation as a construction material in the protecting silicate coating of concrete components, e.g. factory finished parts or reinforced concrete construction parts, by means of waterglass fused silica suspensions}, subject = {Silicate}, language = {en} } @article{Schuch, author = {Schuch, Kai}, title = {Theoretische Grundlagen zum Aggregationsprozess von Wassergl{\"a}sern im Hinblick auf silikatische Beschichtungen}, series = {Steuerung des Aggregationsprozesses in w{\"a}ssrigen Alkalisilikatsolen durch spezielle Gelinitiatoren und moderate W{\"a}rmebehandlung zum Aufbau einer stabilen Silikatbeschichtung}, journal = {Steuerung des Aggregationsprozesses in w{\"a}ssrigen Alkalisilikatsolen durch spezielle Gelinitiatoren und moderate W{\"a}rmebehandlung zum Aufbau einer stabilen Silikatbeschichtung}, doi = {10.25643/bauhaus-universitaet.2497}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20160113-24971}, abstract = {Der Artikel beinhaltet den theoretischen Teil und die Ergebnisse der Dissertation von Kai Schuch, Bauhaus Universit{\"a}t Weimar, Nov. 2014}, subject = {Wasserglas}, language = {de} } @article{Schuch, author = {Schuch, Kai}, title = {Theoretische Modelle zur Beschreibung des Aggregationsprozesses von w{\"a}ssrigen Alkalisilikatsolen (Wasserglas) durch spezielle Gelinitiatoren zum Aufbau von stabilen silikatischen Schichtmaterialien}, series = {Steuerung des Aggregationsprozesses in w{\"a}ssrigen Alkalisilikatsolendurch spezielle Gelinitiatoren und moderate W{\"a}rmebehandlung zum Aufbau einer stabilen Silikatbeschichtung}, journal = {Steuerung des Aggregationsprozesses in w{\"a}ssrigen Alkalisilikatsolendurch spezielle Gelinitiatoren und moderate W{\"a}rmebehandlung zum Aufbau einer stabilen Silikatbeschichtung}, doi = {10.25643/bauhaus-universitaet.2480}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20151123-24807}, abstract = {In dem Artikel werden die theoretischen Modelle und die Zusammenfassung aus der Dissertation von Kai Schuch, Bauhaus Universit{\"a}t Weimar 2014, zusammengef{\"u}hrt.}, subject = {Wasserglas}, language = {de} }