Department of Mechanical Engineering and Materials Science and Engineering

103800_img.png picture
Organization name
Department of Mechanical Engineering and Materials Science and Engineering
Description
Departmental Committees Departmental Staff Undergraduate Studies Graduate Studies Research Employment Vacancies News-Announcements Contact eLearning (moodle)

eLearning (moodle) Webmail

Webmail Grades - Exomoiosi (SIS)

Grades - Exomoiosi (SIS) Candidate Students

Candidate Students General Information History What is ME and MSE? Vision and Objectives Acquired Skills and Employment Opportunities Mechanical Engineering (ME) and Materials Science and Engineering (MSE) are among the broadest engineering disciplines; the objectives of these fields are to utilize the scientific principles of physics, mathematics, chemistry and biology for the analysis, design, development, optimization, and production of components, machines, processes and systems. The profile of the engineering field has changed so dramatically over the years that it is no longer an easy task to define a “typical” mechanical engineer. Indeed, the level of education afforded to the mechanical engineer of today permits him or her to work in diverse areas ranging from research, design, development, consulting, fabrication, processing, testing, and characterization to operation, planning, marketing, sales and management. In fact, as they mature professionally, many mechanical engineers move from the more technical environment of design and development to the more business-oriented environment of operations, sales and management. Thus, it is perhaps more appropriate to talk about a typical career path rather than a typical mechanical engineer. In recognition of the diversity of the mechanical engineering discipline, the Department of Mechanical Engineering and Materials Science and Engineering aims to foster the appropriate learning environment for its students that will allow them to meet their educational aspirations and pursue their career goals in Cyprus. The single feature that characterises and distinguishes engineers from other professionals is design, and that could entail design of machinery (Mechanical Engineering), design of major highways (Civil Engineering), design of electronic materials/devices and systems (Materials Engineering and Electrical Engineering), and many others. In order for design to have practical significance, however, it must culminate in the production or fabrication of a device, structure or system. Fabrication of any product, however, requires the selection of the appropriate materials. In fact, materials selection is so important from both engineering and economic perspectives that it constitutes an integral and often the most important component of engineering design. If one also takes into account the fact that the rapid technological advancements of recent years have brought into the forefront novel materials like composite and smart materials that allow the design of materials with enhanced properties and characteristics, then one appreciates that the term “modern mechanical engineering design” entails the design of not only a product or a structure but also the material itself. Thus, it is logical that a Department that combines the fields of Mechanical Engineering and Materials Science and Engineering will be able to arm its graduates with the necessary tools to effect complete engineering design beginning with the preliminary stages of design of not only the product or structure but also of the appropriate material and culminating in the last stages of production. In our Department therefore, integrated with the field of Mechanical Engineering is the field of Materials Science and Engineering. Materials Science and Engineering is an interdisciplinary field that has only recently come into the forefront of technology. The stature of the field has grown from that of a support field to that of an independent engineering discipline when it became evident that the activities in various materials categories such as metals, ceramics and polymers have a lot of common features among them involving both their processing and experimental characterization techniques as well as the micromechanical (numerical and analytical) methodologies for the assessment of their properties. Materials Science and Engineering, therefore, has emerged from the integration of these activities. Materials Science and Engineering may be defined as the field of study of the structure and properties of different materials that has the objective of appreciating the relationships between the structural characteristics, processing techniques, and properties of a certain product. Materials Science and Engineering is the utilization of the accumulated knowledgebase for the purpose of effecting specific design, synthesis, control and modification of appropriate materials for engineering and general technological applications. The interdisciplinary nature of the field has its foundations in the fact that one needs to appreciate both the underlying scientific foundations of the pertinent materials – beginning from their fundamental building blocks at the nanoscopic level to their macroscopic behaviour – as well as the specific mechanics characterising their applications. Thus, it is a very broad field attracting scientists and engineers that come from a wide range of educational and research backgrounds such as Physics, Chemistry, Biology, and Engineering. Moreover, it has been observed that, in the recent years, many leading Universities throughout the world are offering both undergraduate and graduate degrees in Materials Science and Engineering. This trend will continue as more countries realise the importance of the field in the achievement of innovative and ambitious technological goals.

OrgUnit's Researchers publications
(Dept/Workgroup Publication)

Refined By:
Publisher:  Elsevier

Results 101-120 of 193 (Search time: 0.007 seconds).

Issue DateTitleAuthor(s)
1011-May-2022Magnesium ribbon and anaerobic granular sludge for conversion of CO2 to CH4 or biogas upgradingAndronikou, Maria ; Adamou, Vasiliki ; Koutsokeras, Loukas E. ; Constantinides, Georgios ; Vyrides, Ioannis 
102Feb-2011Maximum power point tracking using a GA optimized fuzzy logic controller and its FPGA implementationMessai, Adnane ; Mellit, Adel ; Guessoum, Abderrezak Mellit Et M.A. ; Kalogirou, Soteris A. 
103Apr-2016Measurement and analysis of thermal properties of rocks for the compilation of geothermal maps of CyprusIosif-Stylianou, Iosifina ; Tassou, Savvas A. ; Christodoulides, Paul ; Panayides, Ioannis ; Florides, Georgios A. 
104Feb-2011Measurements of ground temperatures in Cyprus for ground thermal applicationsPouloupatis, Panayiotis ; Florides, Georgios A. ; Tassou, Savvas A. 
105Jul-2010Mechanical and high pressure tribological properties of nanocrystalline Ti(N,C) and amorphous c: h nanocomposite coatingsConstantinides, Georgios ; Tsotsos, Chrysostomos ; Polychronopoulou, Kyriaki 
10615-May-2017Mechanistic aspects (SSITKA-DRIFTS) of the catalytic denitrification of water with hydrogen on Pd-Cu supported catalystsTheologidis, Christodoulos ; Olympiou, Georgios ; Savva, Petros G. ; Kapnisis, Konstantinos ; Anayiotos, Andreas ; Costa, Costas 
10715-Nov-2018Mesoporous implantable Pt/SrTiO3:C,N nanocuboids delivering enhanced photocatalytic H2-production activity via plasmon-induced interfacial electron transferTamiolakis, Ioannis ; Liu, Dong ; Xiao, Fangxing ; Xie, Jian ; Papadas, Ioannis T. ; Salim, Teddy ; Liu, Bin ; Zhang, Qichun ; Choulis, Stelios A. ; Armatas, Gerasimos S. 
108May-2017Methodology for estimating the ground heat absorption rate of Ground Heat ExchangersStylianou, Iosifina Iosif ; Florides, Georgios A. ; Tassou, Savvas A. ; Tsiolakis, Efthymios ; Christodoulides, Paul 
1092013Microfluidics in Microstructure Optical Fibers: Heat Flux and Pressure-driven and Other FlowsFlorides, Georgios A. ; Kalli, Kyriacos ; Lazari, Lazaros ; Komodromos, Michael ; Dias, Frederic ; Christodoulides, Paul ; Koutsides, Charalambos 
110Jun-2008Micromechanical analysis of grid-reinforced thin composite generally orthotropic shellsChallagulla, Krishna S. ; Saha, Gobinda ; Kalamkarov, Alexander L. ; Georgiades, Tasos 
1111-Mar-2021Micromechanical analysis of thermoelastic and magnetoelectric composite and reinforced shellsChristofi, Iraklis M. ; Hadjiloizi, Demetra ; Kalamkarov, Alexander L. ; Georgiades, Tasos 
112May-2013Micromechanical modeling of piezo-magneto-thermo-elastic composite structures: part I - TheoryJothi, Sathiskumar ; Georgiades, Tasos ; Hadjiloizi, Demetra ; Kalamkarov, A. L. 
11315-Jul-2017Micromechanical modeling of thin composite and reinforced magnetoelectric plates – Effective elastic, piezoelectric and piezomagnetic coefficientsHadjiloizi, Demetra ; Kalamkarov, Alexander L. ; Saha, Gobinda ; Christoforidis, K.G. ; Georgiades, Tasos 
11415-Mar-2017Micromechanical modeling of thin composite and reinforced magnetoelectric plates – Effective electrical, magnetic, thermal and product propertiesHadjiloizi, Demetra ; Kalamkarov, Alexander L. ; Saha, Gobinda ; Christofi, I. ; Georgiades, Tasos 
11525-Sep-2016Microstructure and nanomechanical properties of magnetron sputtered Ti − Nb filmsPhotiou, Demetris ; Panagiotopoulos, Nikolaos T. ; Koutsokeras, Loukas E. ; Evangelakis, Georgios Antomiou ; Constantinides, Georgios 
11615-Jan-2017Microstructure and nanomechanical properties of pulsed excimer laser deposited DLC:Ag films: Enhanced nanotribological responseConstantinou, Marios ; Pervolaraki, Maria ; Nikolaou, Petros ; Prouskas, Costis ; Patsalas, Panos A. ; Kelires, Pantelis C. ; Giapintzakis, J. ; Constantinides, Georgios 
11710-Dec-2021miR-223-3p and miR-24-3p as novel serum-based biomarkers for myotonic dystrophy type 1Koutalianos, Demetris ; Koutsoulidou, Andrie ; Mytidou, Chrystalla ; Kakouri, Andrea C. ; Oulas, Anastasis ; Tomazou, Marios ; Kyriakides, Tassos C ; Prokopi, Marianna ; Kapnisis, Konstantinos ; Nikolenko, Nikoletta ; Turner, Chris ; Lusakowska, Anna ; Janiszewska, Katarzyna ; Papadimas, George K ; Papadopoulos, Constantinos Ε. ; Kararizou, Evangelia ; Spyrou, George M. ; Gourdon, Geneviève ; Zamba Papanicolaou, Eleni ; Gorman, Grainne ; Anayiotos, Andreas ; Lochmüller, Hanns ; Phylactou, Leonidas A. 
11815-Feb-2016Mock target IR thermography for indoor air temperature measurementFokaides, Paris A. ; Jurelionis, Andrius ; Gagyte, Laura ; Kalogirou, Soteris A. 
1191-Sep-2013Modeling and assessment of the efficiency of horizontal and vertical ground heat exchangersFlorides, Georgios A. ; Iosif-Stylianou, Iosifina ; Tassou, Savvas A. ; Zomeni, Zomenia ; Tsiolakis, Efthymios ; Pouloupatis, Panayiotis ; Kalogirou, Soteris A. ; Christodoulides, Paul ; Messaritis, Vassilios ; Panagiotou, Gregoris ; Theofanous, Elisavet 
1201-Jun-2019Modeling of vertical ground heat exchangers in the presence of groundwater flow and underground temperature gradientIosif-Stylianou, Iosifina ; Tassou, Savvas A. ; Christodoulides, Paul ; Aresti, Lazaros ; Florides, Georgios A.