Characterization of Capillary Pumping Amount in Novel Sintered Zeolites and Hybrid Zeolite-Cu for Heat Pipe Applications

Midiani, Luh Putu Ike and Septiadi, Wayan Nata and Winaya, I Nyoman Suprapta and Sucipta, Made and Putra, Nandy Setiadi Djaya (2019) Characterization of Capillary Pumping Amount in Novel Sintered Zeolites and Hybrid Zeolite-Cu for Heat Pipe Applications. International Journal of Heat and Mass Transfer, 145. p. 118759. ISSN 00179310

[img] Text (Similarity Check)
Plagirism.pdf - Supplemental Material
Available under License Creative Commons Attribution Non-commercial Share Alike.

Download (3MB)
[img] Text (Correspondency)
Korespondensi IJHMT.pdf - Supplemental Material
Available under License Creative Commons Attribution Non-commercial Share Alike.

Download (458kB)
Official URL: https://www.sciencedirect.com/science/article/abs/...

Abstract

In this study, a novel sintered zeolite and hybrid zeolite-Cu were developed as wick for heat pipe application. Important properties of the sintered zeolite and hybrid zeolite-Cu, such as wick microstructure, capillary pumping performance, and wettability were considered and evaluated. The wick was prepared by a sintering method. The granule sizes of the zeolite and Cu were 100 and 200 mm, respectively. The working fluid used for testing the capillary pumping amount and the contact angles (CAs) was distilled water. The capillary pumping amount was tested by electronic balance, recorded by a computer, and compared with that of biomaterial wick. The CAs were measured by capturing and measuring liquid droplet images on the flat surface of the wick. The results show that the highest capillary pumping amount was achieved by the 100-mm-grain hybrid zeolite-Cu with 25/75% zeolite-Cu composition. The smallest CA was obtained with the 200-mm-grain pure zeolite. The decrease in the CA of the hybrid zeolite-Cu increased its wettability and capillary pumping performance. This study also showed that the CA could affect wettability and capillary pumping amount of wick candidates.

Item Type: Article
Subjects: Ilmu Teknik > Ilmu Keteknikan Industri > Teknik Mesin (dan Ilmu Permesinan Lain)
Divisions: Jurusan Teknik Mesin > Prodi D4 Teknologi Rekayasa Utilitas > Publikasi
Depositing User: Luh Putu Ike Midiani
Date Deposited: 22 Jun 2023 06:49
Last Modified: 22 Jun 2023 06:49
URI: http://repository.pnb.ac.id/id/eprint/6641

Actions (login required)

View Item View Item