EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE

PVC braided hose are widely used in a variety of industrial applications, from the food and beverage industry to the construction and mining industries. The smooth, abrasion-resistant PVC tubing doesn't impart taste or odor to the material which it transports. However, leaky PVC hoses are a com...

Full description

Saved in:
Bibliographic Details
Main Author: AHMAD BADRUDDIN, AHMAD AJWAD
Format: Final Year Project
Language:English
Published: 2018
Online Access:http://utpedia.utp.edu.my/19262/1/latest%20hardbound%2020206.pdf
http://utpedia.utp.edu.my/19262/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-utp-utpedia.19262
record_format eprints
spelling my-utp-utpedia.192622019-06-20T08:23:26Z http://utpedia.utp.edu.my/19262/ EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE AHMAD BADRUDDIN, AHMAD AJWAD PVC braided hose are widely used in a variety of industrial applications, from the food and beverage industry to the construction and mining industries. The smooth, abrasion-resistant PVC tubing doesn't impart taste or odor to the material which it transports. However, leaky PVC hoses are a common issue in industrial applications. Therefore, there is a crucial need to develop more accurate ways of finding leaks to enable industries to save revenue and reduce their environmental impact. In this study, industrial PVC braided hoses with different thicknesses had undergone hydrostatic burst tests at four different orientations which are Horizontal position, L-shape, U-shape, and S-shape in order to investigate the possible reasons of failure. Upon the simulation done using ANSYS software, an experimental study is required to investigate the stress distribution, elongation and to determine the weakest point of braided hose at different orientations. The experiment was conducted in accordance with ASTM D-380. Pressure was applied gradually to the hose until it reaches burst point and length was measured after each minute of applied pressure in order to find the elongation. Based on the results, for both of the thicknesses, the highest burst pressure is for the horizontal hose position followed by the L shape, U shape and S shape. The weakest point for horizontal hose position is near the fitting while for the three other orientations are at the bending curve. The total elongation results show that the horizontal position elongated the most compared to other orientations. The elongation results show that it has only slight variation which shows that total elongation has minimal effect on the braided hose failure. The best shape of for installation is horizontal hose position to withstand high pressure. The results obtained from the experiment will be compared with the one of the simulation as to conclude the study. 2018-01 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/19262/1/latest%20hardbound%2020206.pdf AHMAD BADRUDDIN, AHMAD AJWAD (2018) EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE. UNSPECIFIED.
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
language English
description PVC braided hose are widely used in a variety of industrial applications, from the food and beverage industry to the construction and mining industries. The smooth, abrasion-resistant PVC tubing doesn't impart taste or odor to the material which it transports. However, leaky PVC hoses are a common issue in industrial applications. Therefore, there is a crucial need to develop more accurate ways of finding leaks to enable industries to save revenue and reduce their environmental impact. In this study, industrial PVC braided hoses with different thicknesses had undergone hydrostatic burst tests at four different orientations which are Horizontal position, L-shape, U-shape, and S-shape in order to investigate the possible reasons of failure. Upon the simulation done using ANSYS software, an experimental study is required to investigate the stress distribution, elongation and to determine the weakest point of braided hose at different orientations. The experiment was conducted in accordance with ASTM D-380. Pressure was applied gradually to the hose until it reaches burst point and length was measured after each minute of applied pressure in order to find the elongation. Based on the results, for both of the thicknesses, the highest burst pressure is for the horizontal hose position followed by the L shape, U shape and S shape. The weakest point for horizontal hose position is near the fitting while for the three other orientations are at the bending curve. The total elongation results show that the horizontal position elongated the most compared to other orientations. The elongation results show that it has only slight variation which shows that total elongation has minimal effect on the braided hose failure. The best shape of for installation is horizontal hose position to withstand high pressure. The results obtained from the experiment will be compared with the one of the simulation as to conclude the study.
format Final Year Project
author AHMAD BADRUDDIN, AHMAD AJWAD
spellingShingle AHMAD BADRUDDIN, AHMAD AJWAD
EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE
author_facet AHMAD BADRUDDIN, AHMAD AJWAD
author_sort AHMAD BADRUDDIN, AHMAD AJWAD
title EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE
title_short EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE
title_full EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE
title_fullStr EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE
title_full_unstemmed EXPERIMENTAL STUDY ON THE INDUSTRIAL BRAIDED HOSE FAILURE
title_sort experimental study on the industrial braided hose failure
publishDate 2018
url http://utpedia.utp.edu.my/19262/1/latest%20hardbound%2020206.pdf
http://utpedia.utp.edu.my/19262/
_version_ 1739832609731510272
score 13.18916