Development of high performance stable phase replacement material
2020
0 views
0 downloads
Advisor: Prof. Çağlayan Açıkgöz ; Dr. Öğr. Üyesi Şenay Balbay
Abstract (EN)
Phase Changing Materials ( PCM) are substances that store thermal energy as latent heat.In this study; composite Organic Phase Change Material (OFDM) was produced using Paraffin (PAR), PEG600, 4 different Surfactant (LABSA, MER-İZ, Dehyquart ACA (CTAC) and Dehyton PK 45) and recycled carbon (GKK) obtained by chemical degradation of the waste tire. For the preparation of OFDMs; simple mixing and vacuum impregnation method is used. The absorption of surfactant, PEG600 and PAR onto GKK was achieved by the vacuum system. The samples with the highest temperature difference were determined by performing phase change temperature difference tests. In order to determine the physical, chemical and thermal properties of these samples (Coded FM7; FM13; FM20 and FM26); sealing, FT-IR, and DSC analyzes were performed. The sample with the highest energy storage capacity (85.6 j / g) was determined to be the FM-26 code sample.
Author
İsmail Dal
Institution
How to Cite
İsmail Dal (Master Thesis). Development of high performance stable phase replacement material, 2020, Bilecik Şeyh Edebali Üniversity.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Bilecik Şeyh Edebali Üniversity
- Perception of organizational culture among the employees of the newly established universities: sample of Bilecik university(2011)
- Design and manufacturing of lab/pilot scale membrane bioreactor for the textile wastewater treatment(2012)
- The political philosophy of Anthony Giddens(2013)
- The criminality of intentional contamination of the environment(2016)
- Determining plasticity model effects on finite element analysis in sheet metal forming processes(2019)
- Bilecik-Bozüyük region granite and feldspar raw materials and eti maden boric acid and borax investigation of the possibilities of using decahydrate wastes in glaze bodies(2025)
