Pregled bibliografske jedinice broj: 1049602
NOVA VRSTA GRAFITNG KOMPOZITA ZA PRIMJENU U IZMJENJIVAČIMA TOPLINE
NOVA VRSTA GRAFITNG KOMPOZITA ZA PRIMJENU U IZMJENJIVAČIMA TOPLINE // Conference Proceedings - 20th International Conference on Materials - MATRIB 2019 / Šolić, Sanja ; Schauperl, Zdravko ; Pugar, Daniel (ur.).
Zagreb: Hrvatsko društvo za materijale i tribologiju (HDMT), 2019. str. 320-320 (pozvano predavanje, međunarodna recenzija, sažetak, znanstveni)
CROSBI ID: 1049602 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
NOVA VRSTA GRAFITNG KOMPOZITA ZA PRIMJENU U IZMJENJIVAČIMA TOPLINE
(NEW TYPE OF GRAPHITE COMPOSITE FOR HEAT EXCHANGE APPLICATIONS)
Autori
Šnajdar Musa, Mateja ; Huljev, Jurica
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
Conference Proceedings - 20th International Conference on Materials - MATRIB 2019
/ Šolić, Sanja ; Schauperl, Zdravko ; Pugar, Daniel - Zagreb : Hrvatsko društvo za materijale i tribologiju (HDMT), 2019, 320-320
ISBN
2459-5608-2459-56
Skup
20th International Conference on Materials (MATRIB 2019)
Mjesto i datum
Zagreb, Hrvatska, 27.06.2019. - 29.06.2019
Vrsta sudjelovanja
Pozvano predavanje
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
graphite, composite, heat exchange, conductivity
Sažetak
This study of new thermally conductive composite was conducted as a part of EU project: ˶Development of new generation of Eco Smart products for Oprema d.d. KK.01.2.1.0104.” Main objective was to develop a composite material that would replace existing cast aluminium heat exchanger dry blocks used in beer dispenser cooling units with satisfying multiple demands set on material properties such as: thermal conductivity comparable to the aluminium, lower material cost and suitability for company' s production line capabilities. Aluminium blocks currently used, faced major issues due to casting process applied which firstly caused incomplete block interior infiltration due to complex pipe arrangement in the block. Secondly casting process at high temperature made usage of copper pipes in the block itself impossible so austenitic corrosion resistant steel pipes were used which would then have to be joined with copper pipes outside of the block by soldering, yielding extra production costs. All that taken in consideration implied that obtaining heat conductive yet cost and production effective composite material without high temperatures needed for production was crucial. Natural graphite was chosen as a basis of composite to be developed. The investigation was conducted in two major iterations, first regarding choice of the optimal mixture of different graphite powder granulations with heat conductivity set as key demanded property in laboratory conditions. In the second phase of study chosen graphite powder mixtures with defined weight ratios of each granulation were used along with wide array of different biding agents. Obtained materials were casted in real dry blocks with identical geometry of piping used so far in aluminium blocks. Detailed investigation of heat transfer properties in real life conditions conducted on all mixtures and compared to the reference Al block. The testing was conducted on Pro Event equipment provided by Oprema d.d. Along with thermal properties consistency changes during drying of the composite in order to check if any cracking occurred which would strongly reduce heat transfer in the block. All the obtained results showed ability of produced graphite- based composite to substitute aluminium.
Izvorni jezik
Engleski
Znanstvena područja
Metalurgija, Strojarstvo, Temeljne tehničke znanosti
POVEZANOST RADA
Projekti:
KK.01.2.1.01.0104
Ustanove:
Tehničko veleučilište u Zagrebu,
Sveučilište u Rijeci
Profili:
Mateja Šnajdar Musa
(autor)