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Journal articles on the topic 'Ceramic inks'

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1

Rodrigues, Douglas de Souza, Luana Góes Soares, Sérgio Renato da Silva Soares, Carlos Leonardo Pandolfo Carone, Daiana Cristina Metz Arnold, and Annelise Kopp Alves. "Synthesis and optical transitions of digital inks for ceramic application." REVISTA DELOS 18, no. 67 (2025): e5206. https://doi.org/10.55905/rdelosv18.n67-152.

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Digital inks for application in ceramics represented a great advance since their origin, which allowed them to be implemented industrially in a massive way for the manufacture of ceramic plates. Within this context, this research presents a colorimetric study on the synthesis and application of digital inks on ceramics (tile) and 3 different types of paper, aiming to find out if the inks can be applied to new colors, or as pigments. The blue, black, beige and yellow ink samples were characterized by: x-ray diffraction (XRD) to understand how compositions and phases can influence color, scannin
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2

Oset, María, Alejandro Moya, Guillermo Paulo-Redondo, and Isaac Nebot-Díaz. "Nanoparticle Black Ceramic Pigment Obtained by Hydrotalcite-like Compound Microwave Treatment." ChemEngineering 6, no. 4 (2022): 54. http://dx.doi.org/10.3390/chemengineering6040054.

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Development of ceramic pigments with controlled particle sizes below 1 µm is essential for the preparation of ceramic inks used in inkjet digital decoration that is currently being applied in the ceramics sector. A black ceramic pigment based on NiCoCrFe composition has been prepared using thermal decomposition of hydrotalcite-like compounds. The stoichiometry ratio between different cations was studied to obtain the blackest pigment, giving Ni0,5Co0,5CrFeO4 the better cation ratio, also the thermal treatment, comparing traditional firing in an electric furnace with microwave treatment. Sample
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3

Legett, Shelbie A., Xavier Torres, Andrew M. Schmalzer, et al. "Balancing Functionality and Printability: High-Loading Polymer Resins for Direct Ink Writing." Polymers 14, no. 21 (2022): 4661. http://dx.doi.org/10.3390/polym14214661.

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Although direct ink writing (DIW) allows the rapid fabrication of unique 3D printed objects, the resins—or “inks”—available for this technique are in short supply and often offer little functionality, leading to the development of new, custom inks. However, when creating new inks, the ability of the ink to lead to a successful print, or the “printability,” must be considered. Thus, this work examined the effect of filler composition/concentration, printing parameters, and lattice structure on the printability of new polysiloxane inks incorporating high concentrations (50–70 wt%) of metallic an
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De Keukeleere, Katrien, Glenn Pollefeyt, Jonas Feys, et al. "Chemical solution deposition of functional ceramic coatings using ink-jet printing." Pure and Applied Chemistry 87, no. 3 (2015): 231–38. http://dx.doi.org/10.1515/pac-2014-0938.

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AbstractThis paper discusses the development of environmentally-friendly precursor inks suited for ink-jet printing of functional ceramic coatings. We synthesized superconducting materials, SrTiO3 thin films for coated conductor applications and transparent TiO2 photocatalytic coatings. Here, we discuss all aspects of ink formulation, including the stabilization of metal ions, nanoparticle inks or combination of both. This demands the investigation and determination of the inks rheological parameters. Ceramic nanoparticles are often incorporated in our inks to decrease thermal processing tempe
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Zhu, Zhongqi, Zhiyuan Gong, Piao Qu, et al. "Additive manufacturing of thin electrolyte layers via inkjet printing of highly-stable ceramic inks." Journal of Advanced Ceramics 10, no. 2 (2021): 279–90. http://dx.doi.org/10.1007/s40145-020-0439-9.

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AbstractInkjet printing is a promising alternative for the fabrication of thin film components for solid oxide fuel cells (SOFCs) due to its contactless, mask free, and controllable printing process. In order to obtain satisfying electrolyte thin layer structures in anode-supported SOFCs, the preparation of suitable electrolyte ceramic inks is a key. At present, such a kind of 8 mol% Y2O3-stabilized ZrO2 (8YSZ) electrolyte ceramic ink with long-term stability and high solid loading (> 15 wt%) seems rare for precise inkjet printing, and a number of characterization and performance aspects of
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6

M. Sivaraman and G. Bharathiraja. "Rheological and Mechanical Properties of Aluminum-ceramic Inks with Nanomaterials Using the Taguchi Method." Journal of Environmental Nanotechnology 14, no. 1 (2025): 124–36. https://doi.org/10.13074/jent.2025.03.2511220.

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The use of aluminum ceramic nanoparticles allows for the three-dimensional printing of a wide variety of biomedical goods, such as dental instruments, sutures, blades, and dental tools. Cutting instruments, medicines, bioengineering, and abrasives all use ceramics and other non-metallic materials as heat sources. These are the primary applications of ceramic powder, and they represent a major paradigm change in biological applications generally and dental and skeletal applications in particular. A DIW machine combines ceramic and aluminum to create artificial teeth. The liquid material enables
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Trandabat, Alexandru Florentin, Romeo Cristian Ciobanu, Oliver Daniel Schreiner, Mihaela Aradoaei, and Sebastian Teodor Aradoaei. "Manufacturing of TiO2, Al2O3 and Y2O3 Ceramic Nanotubes for Application as Electrodes for Printable Electrochemical Sensors." Crystals 14, no. 5 (2024): 454. http://dx.doi.org/10.3390/cryst14050454.

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This paper describes the process to obtain ceramic nanotubes from titanium dioxide, alumina and yttrium oxide by a feasible, replicable and reliable technology, including three stages, starting from an electrospinning process of poly(methyl methacrylate) solutions. A minimum diameter of 0.3 μm was considered optimal for PMMA nanofibers in order to maintain the structural stability of covered fibers, which, after ceramic film deposition, leads to a fiber diameter of 0.5–0.6 μm. After a chemical and physical analysis of the stages of obtaining ceramic nanotubes, in all cases, uniform deposition
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8

Gardini, Davide, Michele Dondi, Anna Luisa Costa, et al. "Nano-Sized Ceramic Inks for Drop-on-Demand Ink-Jet Printing in Quadrichromy." Journal of Nanoscience and Nanotechnology 8, no. 4 (2008): 1979–88. http://dx.doi.org/10.1166/jnn.2008.048.

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Nano-sized ceramic inks suitable for ink-jet printing have been developed for the four-colours CMYK (cyan, magenta, yellow, black) process. Nano-inks of different pigment composition (Co1–xO, Au0, Ti1–x–ySbxCryO2, CoFe2O4) have been prepared with various solid loadings and their chemico-physical properties (particle size, viscosity, surface tension, ζ-potential) were tailored for the ink-jet application. The pigment particle size is in the 20–80 nm range. All these nano-suspensions are stable for long time (i.e., several months) due to either electrostatic (high ζ-potential values) or steric s
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9

Li, Ya-yun, Long-tu Li, and Bo Li. "Direct ink writing of special-shaped structures based on TiO2 inks." Modern Physics Letters B 30, no. 11 (2016): 1650212. http://dx.doi.org/10.1142/s0217984916502122.

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Direct ink writing (DIW) method is a novel kind of ceramic fabrication approach which allows one to design and rapidly construct ceramic products in complex shapes without the need for any lithographic masks, dies or expensive moulds. A 40 wt.% water-based titanium dioxide (TiO2) suspension was formulated. With the help of DIW technique, two-dimensional (2D) spiral structures, three-dimensional (3D) woodpile structures, cylindrical structures and half conical structures at micrometer scale were fabricated. According to the rheological test, the ink shows a shear-thinning behavior and appropria
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10

Li, Haibing, Linyu Yang, Feng Li, and Qinglong Xian. "Development and Characterizations of Novel Aqueous-Based Ceramic Inks for Inkjet Printing." Materials 16, no. 1 (2022): 21. http://dx.doi.org/10.3390/ma16010021.

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Stable rheological properties of ceramic ink are a key requirement for inkjet printing (IJP), which should be satisfied in terms of the Reynolds and Weber numbers. In this paper, the reverse microemulsion was introduced for the synthesis of monodispersed nanosized ceramic powders, and the average size was less than 100 nm. A comparison of two different dispersants, i.e., polyacrylic ammonium (PAANH4) and polyacrylic aid (PAA), revealed that the former exerted a good dispersion effect on the ceramic ink. The sedimentation ratio, zeta potential, surface tension, viscosity, and density of the ink
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11

Leyland, N. S., J. R. G. Evans, and D. J. Harrison. "Flexible ceramic and metal lithographic inks." British Ceramic Transactions 100, no. 6 (2001): 274–78. http://dx.doi.org/10.1179/bct.2001.100.6.274.

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12

Silva, Bruno Medeiros da, Ésoly Madeleine Bento dos Santos, Vinícius Zancanelli Bôsco de Souza, Manuel Fellipe Rodrigues Pais Alves, Carlos Maurício Vieira, and Claudinei dos Santos. "Drying Behaviour of Al2O3 Inks Containing Carboxymethylcellulose (CMC) for Use in Colloidal Processing." Ceramics 6, no. 2 (2023): 935–47. http://dx.doi.org/10.3390/ceramics6020055.

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One of the most important steps in the extrusion processing of ceramic inks is the initial drying of the ceramic parts. This study aimed to investigate the drying behaviour of an Al2O3-based ceramic ink optimised to be processed by extrusion processing methods, e.g., direct ink writing. Carboxymethylcellulose (CMC) was singly added to a suspension of deionised water and Al2O3 (50:50 wt.%) to perform as a dispersing and plasticising agent. To assess moisture loss as a function of time, the ceramic inks were extruded into two types of polymeric moulds: one with a completely closed profile produc
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13

Ponnambalam, P., N. Ramakrishnan, P. K. Rajesh, and K. Prakasan. "Rheological Behaviour of Ceramic Inks for Direct Ceramic Inkjet Printing." Defence Science Journal 56, no. 2 (2006): 279–88. http://dx.doi.org/10.14429/dsj.56.1890.

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14

Llusar, Mario, Carina Gargori, Sara Cerro, Jose Antonio Badenes, and Guillermo Monrós. "New Ceramic Pigments for the Coloration of Ceramic Glazes." Advances in Science and Technology 92 (October 2014): 148–58. http://dx.doi.org/10.4028/www.scientific.net/ast.92.148.

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In this communication we provide some examples of hot research topics in the field of ceramic pigments. The more classical approach of finding new host lattices or chromophores is first illustrated with recent examples of new formulations for yellow-orange, reddish-brown and blue ceramic pigments based on pseudobrookites and related titanates. Then we highlight the advantages of using non-conventional preparation routes, which can provide different pigmenting alternatives for the emerging ink-jet printing technology, such as the development of nanoor sub-micron pigments and “ceramic inks”, or
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15

Buj-Corral, Irene, José Antonio Padilla, Joaquim Minguella-Canela, Lourdes Rodero, Lluís Marco, and Elena Xuriguera. "Design of Pastes for Direct Ink Writing of Zirconia Parts with Medical Applications." Key Engineering Materials 958 (October 5, 2023): 157–63. http://dx.doi.org/10.4028/p-izk9dd.

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Direct ink writing (DIW) is an extrusion additive manufacturing (AM) technique in which inks are extruded through a nozzle and then deposited layer-by-layer. This technology allows 3D printing many different materials such as ceramics, metals, food, etc. In this work, the performance of zirconia pastes is addressed. The pastes are composed of yttria stabilized zirconia (YSZ) powder and a polymeric binder. Ceramic content is a mix of two components: A and B. Both the total content of ceramic and the content of component A in the paste are varied, according to a 32 design of experiments. The pas
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16

Graf, Dennis, Afnan Qazzazie, and Thomas Hanemann. "Investigations on the Processing of Ceramic Filled Inks for 3D InkJet Printing." Materials 13, no. 11 (2020): 2587. http://dx.doi.org/10.3390/ma13112587.

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3D inkjet printing is moving from a technology of rapid prototyping to rapid manufacturing. The introduction of ultraviolet curable composites filled with functional ceramics could expand the possibilities of this technology. In this work, a simple and scalable process was investigated as a template for the production of inkjet printable functional ceramics. Pyrogenic alumina particles with an average size of 13 nm, 35 nm and 100 nm were used as fillers in an acrylate mixture. The physical coating of the ceramics with 2-[2-(2-methoxyethoxy)ethoxy] acetic acid results in a low-viscosity dispers
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17

Yu, Fei. "Talking about the Application of High-tech Elements in the Innovative Design of Daily-use Ceramics." ITM Web of Conferences 25 (2019): 03008. http://dx.doi.org/10.1051/itmconf/20192503008.

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The relationship between technology and design is an eternal discussion as well as controversial topic. In the innovative design of daily-use ceramics, the advancement of technology has brought a lot of room for development in this field. This article will elaborate some effective combination of high-tech technology in daily-use ceramic design in the following four aspects: the combination of electronic technology and daily-use ceramics; the application of double-layer thermal insulation ceramics in the molding process; the analysis of the application of materials such as temperature-sensitive
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18

Hildebrand, Gerhard, Johanna C. Sänger, Uwe Schirmer, et al. "Process Development for Additive Manufacturing of Alumina Toughened Zirconia for 3D Structures by Means of Two-Photon Absorption Technique." Ceramics 4, no. 2 (2021): 224–39. http://dx.doi.org/10.3390/ceramics4020017.

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Additive manufacturing is well established for plastics and metals, and it gets more and more implemented in a variety of industrial processes. Beside these well-established material platforms, additive manufacturing processes are highly interesting for ceramics, especially regarding resource conservation and for the production of complex three-dimensional shapes and structures with specific feature sizes in the µm and mm range with high accuracy. The usage of ceramics in 3D printing is, however, just at the beginning of a technical implementation in a continuously and fast rising field of res
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19

Wang, Jian, and Julian R. G. Evans. "Library Preparation using an Aspirating-Dispensing Ink-Jet Printer for Combinatorial Studies in Ceramics." Journal of Materials Research 20, no. 10 (2005): 2733–40. http://dx.doi.org/10.1557/jmr.2005.0348.

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This paper describes an aspirating-dispensing ink-jet printer embedded in a combinatorial robot for high throughput studies in ceramics; LUSI, the London University Search Instrument. The process of reformatting well-plates from source inks and printing ceramic samples is described. Precautions against evaporation, sedimentation of colloidal suspensions, and segregation of mixtures during drying are taken to convert compositions specified in a spreadsheet into the form of ∼1 mm radius drops. It is concluded that when these precautions are taken, commercially available powders can be combinator
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20

Song, Jin Hua, Mohan J. Edirisinghe, and Julian R. G. Evans. "Formulation and Multilayer Jet Printing of Ceramic Inks." Journal of the American Ceramic Society 82, no. 12 (2004): 3374–80. http://dx.doi.org/10.1111/j.1151-2916.1999.tb02253.x.

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Feilden, Ezra, Esther García-Tuñón Blanca, Finn Giuliani, Eduardo Saiz, and Luc Vandeperre. "Robocasting of structural ceramic parts with hydrogel inks." Journal of the European Ceramic Society 36, no. 10 (2016): 2525–33. http://dx.doi.org/10.1016/j.jeurceramsoc.2016.03.001.

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22

Salaoru, Iulia, Dave Morris, Ecaterina Ware, and Krishna Nama Manjunatha. "Influence of Surface Chemical and Topographical Properties on Morphology, Wettability and Surface Coverage of Inkjet-Printed Graphene-Based Materials." Micromachines 15, no. 6 (2024): 681. http://dx.doi.org/10.3390/mi15060681.

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The inkjet printing of water-based graphene and graphene oxide inks on five substrates, two rigid (silicon and glass) and three flexible (cellulose, indium tin oxide-coated polyethylene terephthalate (ITO-PET) and ceramic coated paper (PEL paper)), is reported in this work. The physical properties of the inks, the chemical/topographical properties of selected substrates, and the inkjet printing (IJP) of the graphene-based materials, including the optimisation of the printing parameters together with the morphological characterisation of the printed layers, are investigated and described in thi
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23

Paul D L, Belgin, Ayyappan Susila Praveen, Lenka Čepová, and Muniyandy Elangovan. "Rheological Behavior and Printability Study of Tri-Calcium Phosphate Ceramic Inks for Direct Ink Writing Method." Polymers 15, no. 6 (2023): 1433. http://dx.doi.org/10.3390/polym15061433.

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In the biomedical industry, tricalcium phosphate is a bioceramic substance that is frequently employed in the fabrication of scaffolds and bone structures. Fabrication of porous ceramic structures using conventional manufacturing techniques is very challenging because of the brittle nature of the ceramics, which has led to a newly adapted direct ink writing additive manufacturing method. This work investigates the rheology and extrudability of TCP inks to produce near-net-shape structures. Viscosity and extrudability tests found that stable TCP: Pluronic ink of 50 vol.% was more reliable compa
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Dondi, M., F. Matteucci, Davide Gardini, et al. "Industrial Ink-Jet Application of Nano-Sized Ceramic Inks." Advances in Science and Technology 51 (October 2006): 174–80. http://dx.doi.org/10.4028/www.scientific.net/ast.51.174.

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Ink-jet printing is becoming a leading technology for traditional ceramics, due to its capacity of reproducing highly resolved and customized images on tile surfaces. Nano-sized inks, produced by the polyol synthesis route, proved to fulfil the printing requirements, tailoring their chemico-physical properties (e.g. viscosity, surface tension) on industrial ink-jet devices, so representing a major breakthrough in the quadrichromy process.
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Güngör, Gülşen L., Alpagut Kara, Davide Gardini, Magda Blosi, Michele Dondi, and Chiara Zanelli. "Ink-jet printability of aqueous ceramic inks for digital decoration of ceramic tiles." Dyes and Pigments 127 (April 2016): 148–54. http://dx.doi.org/10.1016/j.dyepig.2015.12.018.

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26

Xiu, Xiao Jie, and Hong Jun Tang. "Automatic Block Detection for Ink Jet Head." Applied Mechanics and Materials 310 (February 2013): 424–27. http://dx.doi.org/10.4028/www.scientific.net/amm.310.424.

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Inkjet printing technology has been used in several areas and the inkjet printer uses different inks, for example oil ink for cloth printing, color glaze ink for ceramic printing and so on. The printer ink jet head uses these inks are blocked frequently. An automatic block detection system has been presented in this paper. The system provides droplet deposition apparatus comprising of: a fluid chamber; a nozzle in fluid communication with the chamber for ejection of fluid; a monitor; CCD camera; image capturing and processing module. The system has applied to ink jet and droplet image detectio
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27

Teng, Wan D., and Mohan J. Edirisinghe. "Development of Ceramic Inks for Direct Continuous Jet Printing." Journal of the American Ceramic Society 81, no. 4 (2005): 1033–36. http://dx.doi.org/10.1111/j.1151-2916.1998.tb02443.x.

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28

Atkinson, A., J. Doorbar, A. Hudd, D. L. Segal, and P. J. White. "Continuous ink-jet printing using sol-gel “Ceramic” inks." Journal of Sol-Gel Science and Technology 8, no. 1-3 (1997): 1093–97. http://dx.doi.org/10.1007/bf02436989.

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29

Wu, Rina, Chaochao Wang, Guodong Xu, et al. "Preparation and Characteristics of Porous Mullite Ceramics by 3D Printing and In-Situ Synthesis." Materials 18, no. 5 (2025): 956. https://doi.org/10.3390/ma18050956.

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In-situ porous mullite ceramics with varying pore size and porosity were fabricated using 3D printing. The pore size was controlled by adjusting the size of polymethyl methacrylate (PMMA) microspheres. The effect of sintering temperature on phase evolution was also examined. Additionally, the impact of PMMA microsphere size and content on the rheological properties of the printing inks was investigated. The results indicated that alumina and microsilica fully transformed into mullite at 1550 °C. The influence of PMMA microsphere content and size on the porosity, mechanical properties, and ther
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Jamnicki Hanzer, Sonja, Rahela Kulčar, Marina Vukoje, and Ana Marošević Dolovski. "Assessment of Thermochromic Packaging Prints’ Resistance to UV Radiation and Various Chemical Agents." Polymers 15, no. 5 (2023): 1208. http://dx.doi.org/10.3390/polym15051208.

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Thermochromic inks, also known as color changing inks, are becoming increasingly important for various applications that range from smart packaging, product labels, security printing, and anti-counterfeit inks to applications such as temperature-sensitive plastics and inks printed onto ceramic mugs, promotional items, and toys. These inks are also gaining more attention as part of textile decorations and can also be found in some artistic works obtained with thermochromic paints, due to their ability to change color when exposed to heat. Thermochromic inks, however, are known to be sensitive m
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Aghayar, Zahra, Massoud Malaki, and Yizhou Zhang. "MXene-Based Ink Design for Printed Applications." Nanomaterials 12, no. 23 (2022): 4346. http://dx.doi.org/10.3390/nano12234346.

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MXenes are a class of two-dimensional nanomaterials with a rich chemistry, hydrophilic surface and mechano-ceramic nature, and have been employed in a wide variety of applications ranging from medical and sensing devises to electronics, supercapacitors, electromagnetic shielding, and environmental applications, to name a few. To date, the main focus has mostly been paid to studying the chemical and physical properties of MXenes and MXene-based hybrids, while relatively less attention has been paid to the optimal application forms of these materials. It has been frequently observed that MXenes
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Maazouz, Y., E. B. Montufar, J. Guillem-Marti, et al. "Robocasting of biomimetic hydroxyapatite scaffolds using self-setting inks." J. Mater. Chem. B 2, no. 33 (2014): 5378–86. http://dx.doi.org/10.1039/c4tb00438h.

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A new self-setting ceramic ink was developed for robocasting of biomimetic hydroxyapatite scaffolds, based on alpha-tricalcium phosphate and gelatine. After setting a biomimetic hydroxyapatite is obtained, with higher reactivity and resorbability than high-temperature sintered hydroxyapatite. The setting reaction of the ink results in a significant increase of the mechanical properties of the scaffolds.
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Teng, Wan D., and Mohan J. Edirisinghe. "Development of Ceramic Inks for Jet Printing: Effect of Conductivity." Key Engineering Materials 132-136 (April 1997): 337–40. http://dx.doi.org/10.4028/www.scientific.net/kem.132-136.337.

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Wickham, Martin, Kate Clayton, Ana Robador, and Christine Thorogood. "Organic Hybrids for Circuit Assemblies – Initial environmental testing of a low cost alternative to ceramic substrate based assemblies." Additional Conferences (Device Packaging, HiTEC, HiTEN, and CICMT) 2018, HiTEC (2018): 000022–27. http://dx.doi.org/10.4071/2380-4491-2018-hiten-000022.

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Abstract There are an increasing number of electronics applications in aerospace, automotive, shale/gas and power management, which are required to operate at or above 200 °C. Organic matrix reinforced substrates such as polyimide, have maximum operating temperatures in the region of 175 °C. Reliable operation of electronics at temperatures higher than this requires a combination of performance improvements in components, interconnects and substrates. Ceramic based substrate options are based on alumina substrates with printed inks fired at ~ 600 °C and can be costly, heavy and prone to mechan
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35

Villa, Alice, Pardeep Kumar Gianchandani, and Francesco Baino. "Sustainable Approaches for the Additive Manufacturing of Ceramic Materials." Ceramics 7, no. 1 (2024): 291–309. http://dx.doi.org/10.3390/ceramics7010019.

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Additive manufacturing technologies collectively refer to a set of layer-wise deposition methods that typically rely on CAD-CAM approaches for obtaining products with a complex shape/geometry and high precision and reliability. If the additive manufacturing of polymers is relatively easy and scalable due to the low temperatures needed to obtain processable inks, using similar technologies to fabricate ceramic products is indeed more challenging and expensive but, on the other hand, allows for obtaining high-quality results that would not be achievable through conventional methods. Furthermore,
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Diaz-Gomez, Luis, Maryam E. Elizondo, Panayiotis D. Kontoyiannis, et al. "Three-Dimensional Extrusion Printing of Porous Scaffolds Using Storable Ceramic Inks." Tissue Engineering Part C: Methods 26, no. 6 (2020): 292–305. http://dx.doi.org/10.1089/ten.tec.2020.0050.

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Guo, R., H. Qi, D. Guo, X. Chen, Z. Yang, and Y. Chen. "Preparation of high concentration ceramic inks for forming by jet-printing." Journal of the European Ceramic Society 23, no. 1 (2003): 115–22. http://dx.doi.org/10.1016/s0955-2219(02)00088-2.

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38

Kyrpal, R., I. Dulina, and A. Ragulya. "Effect of BaTiO3Nanopowder Concentration on Rheological Behaviour of Ceramic Inkjet Inks." Journal of Physics: Conference Series 602 (April 15, 2015): 012036. http://dx.doi.org/10.1088/1742-6596/602/1/012036.

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Pan, Zhidong, Yanmin Wang, Huining Huang, Zhiyuan Ling, Yonggang Dai, and Shanjun Ke. "Recent development on preparation of ceramic inks in ink-jet printing." Ceramics International 41, no. 10 (2015): 12515–28. http://dx.doi.org/10.1016/j.ceramint.2015.06.124.

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Rodrigo, Marta, María Fernanda Gazulla, Arnaldo Moreno, Jéssica Gilabert, and Patricia Gómez. "Blue inkjet inks from E-waste: Toward a greener ceramic industry." Journal of the European Ceramic Society 45, no. 16 (2025): 117696. https://doi.org/10.1016/j.jeurceramsoc.2025.117696.

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41

Qazzazie-Hauser, Afnan, Kirsten Honnef, and Thomas Hanemann. "Development of Inkjet Printable Formulations Based on Polyorganosilazane and Divinylbenzene." Polymers 15, no. 23 (2023): 4512. http://dx.doi.org/10.3390/polym15234512.

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Within this work, ink formulations based on polyorganosilazane (OPSZ) and divinylbenzene (DVB) were developed to be processed by inkjet printing. The formulations were studied regarding their rheological, structural, and thermal properties. The rheological results show that the new formulations meet the requirements of the inkjet printer by showing both low viscosity (below 20 mPa∙s at printing temperature) and Newtonian flow behavior even at high shear rates. Additionally, the inks have surface tensions in the range of 21 to 26 mN/m2. First, printing experiments of single layers were successf
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Prasad, P. S. R. Krishna, A. Venumadhav Reddy, P. K. Rajesh, P. Ponnambalam, and K. Prakasan. "Studies on rheology of ceramic inks and spread of ink droplets for direct ceramic ink jet printing." Journal of Materials Processing Technology 176, no. 1-3 (2006): 222–29. http://dx.doi.org/10.1016/j.jmatprotec.2006.04.001.

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Paulo-Redondo, Guillermo, and Isaac Nebot-Díaz. "Study of the Synthesis Variables in the Preparation of CoAl2O4 Pigment Using Microwaves to Reduce Energetic Consumption." Eng 4, no. 4 (2023): 2826–39. http://dx.doi.org/10.3390/eng4040159.

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Due to the importance of optimizing the manufacture of ceramic pigments, motivated by the increase in prices of both raw materials and energy, and the need to control manufacturing parameters to obtain optimal conditions for the preparation of ceramic inks, two synthesis routes (traditional route and coprecipitation) and two calcination methods (traditional oven and microwave oven) are proposed to obtain the blue ceramic pigment CoAl2O4 with the aim of minimizing the use of mineralizers or flux agents and reducing energy consumption in its manufacturing. The pigments prepared were characterize
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Swiecinski, K., M. Ihle, R. Jurk, E. Dietzen, U. Partsch, and M. Eberstein. "Aerosol Jet Printing of Two Component Thick Film Resistors on LTCC." Journal of Microelectronics and Electronic Packaging 10, no. 3 (2013): 109–15. http://dx.doi.org/10.4071/imaps.384.

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Aerosol jet printing is a rather new technology for the deposition of thick film structures offering high line and space resolution. This method offers high potential for miniaturization for thick film structures. The advantages of this technology could be shown with inks carrying a single solid powder (e.g., silver, platinum, ceramic, or glass powder). One of the challenges in printing solid powder mixtures is the differences in the aerodynamic properties of different powders. Those differences result in changes of the mixing ratio within the aerosol jet and therefore poor reproducibility in
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Swiecinski, K., M. Ihle, R. Jurk, E. Dietzen, U. Partsch, and M. Eberstein. "Aerosol jet printing of two component thick film resistors on LTCC." Additional Conferences (Device Packaging, HiTEC, HiTEN, and CICMT) 2013, CICMT (2013): 000240–46. http://dx.doi.org/10.4071/cicmt-tha25.

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Aerosol jet printing is a rather new technology for the deposition of thick film structures offering high line and space resolution. This offers a high potential for miniaturization for thick film structures. The advantages of this technology could be shown with inks carrying single solid powder (e.g. silver, platinum, ceramic or glass powder). Challenging is printing of solid powder mixtures due to the differences in the aerodynamic properties of different powders. Those differences result in changes of the mixing ratio within the aerosol jet and therefore poor reproducibility in the final fi
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SUN, Jing-Bo, Bo LI, Xue-Guang HUANG, Kun-Peng CAI, Ji ZHOU, and Long-Tu LI. "Direct-write Assembly of Ceramic Three-dimensional Structures Based on Photosensitive Inks." Journal of Inorganic Materials 24, no. 6 (2009): 1147–50. http://dx.doi.org/10.3724/sp.j.1077.2009.01147.

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Rostami, Nazila, Dennis Graf, Leo Schranzhofer, Sabine Hild, and Thomas Hanemann. "Overcoming oxygen inhibition effect by TODA in acrylate-based ceramic-filled inks." Progress in Organic Coatings 130 (May 2019): 221–25. http://dx.doi.org/10.1016/j.porgcoat.2019.01.048.

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Blosi, M., S. Albonetti, F. Gatti, G. Baldi, and M. Dondi. "Au–Ag nanoparticles as red pigment in ceramic inks for digital decoration." Dyes and Pigments 94, no. 2 (2012): 355–62. http://dx.doi.org/10.1016/j.dyepig.2012.01.006.

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Ramakrishnan, N., P. K. Rajesh, P. Ponnambalam, and K. Prakasan. "Studies on preparation of ceramic inks and simulation of drop formation and spread in direct ceramic inkjet printing." Journal of Materials Processing Technology 169, no. 3 (2005): 372–81. http://dx.doi.org/10.1016/j.jmatprotec.2005.03.021.

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Wassmer, Marcel, Waldemar Diel, and Klaus Krueger. "Inkjet Printing of Fine-Line Thick-Film Inductors." Journal of Microelectronics and Electronic Packaging 7, no. 4 (2010): 205–13. http://dx.doi.org/10.4071/imaps.258.

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Inkjet printing is the emerging technology for the deposition of a variety of particles. The reliable printing of nano-silver inks shows the possibilities of digital fabrication of microelectronic circuits and raises the question for further use with other particles. To compete with common thick-film screen printing as a production method it is consequential and necessary to investigate the inkjet printing of all passive electronic thick-film components. Inductors are frequently required in electronic circuits, yet they represent a main challenge for thick-film printing. With the development o
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