by
Doğan Kumtepe, Elvan, author.
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with finite-element analyses. Material selection is performed for the composite panels and the panel
by
Kahyaoğlu, Tuğçe, Nefise, author.
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, solid oxide fuel cells, optical glass manufacturing, coatings, and polymeric composite materials as well
by
Toptop, Evren, author.
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designed to simulate the discharge behavior of an experimental nickel-zinc battery that includes composite
by
İncel, Anıl, author.
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emitted light by composites. Lastly, piezoelectric properties of composite materials were invetigated by
by
Pala, Deniz, author.
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interrogation method which can be implemented in quasi-distributed strain sensors embedded into composite
by
Horzum Polat, Nesrin.
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structured composite nanofibers. The nanostructured materials prepared by the simultaneous electrospinning of
by
Özmıhçı Ömürlü, Filiz.
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could make an economic, weight saving, chemically resistive, optical, flexible and conductive materials
by
Sezgin, Fatma Erinç.
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mechanical properties, sandwich structures can be manufactured from various core and facesheet materials
by
Saygı, Gizem, author.
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) and doped with Ag nanoparticles, forming the Ag-ZIF8 and AgZIF8@CLN composite materials. The
by
Altıntaş, Hayri, author.
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methods of composite structures in recent years and provide the most suitable design for the purpose, are
by
Uz, Yusuf Can, author.
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prepreg-based composite laminates, the vacuum bag-only (VBO) method was performed. The fiber volume fractions of
by
Güner, Tuğrul, author.
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thesis, we fabricate polymeric composite of some of these down-converting materials to use them in white
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