UL 19G-2018 UL Standard for Safety Guidance for Lined Fire Hose and Hose Assemblies (First Edition).pdf
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1、UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL UL 19G Guidance for Lined Fire Hose and Hose Assemblies STANDARD FOR SAFETYUL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM ULUL COPYRIGHT
2、ED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL Guidance for Lined Fire Hose and Hose Assemblies, UL 19G First Edition, Dated August 13, 2018 SUMMARY OF TOPICS This First edition of UL 19G, Guidance for Lined Fire Hose and Hose Assemblies has been publi
3、shed. All rights reserved. No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any form by any means, electronic, mechanical photocopying, recording, or otherwise without prior permission of UL. UL provides this Guidance document as is without warranty of a
4、ny kind, either expressed or implied, including but not limited to, the implied warranties of merchantability or tness for any purpose. In no event will UL be liable for any special, incidental, consequential, indirect or similar damages, including loss of prots, lost savings, loss of data, or any o
5、ther damages arising out of the use of or the inability to use this Guidance document, even if UL or an authorized UL representative has been advised of the possibility of such damage. In no event shall ULs liability for any damage ever exceed the price paid for this Guidance document, regardless of
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7、 purchaser is storing an electronic Guidance document on the purchasers computer system. AUGUST 13, 2018 UL 19G tr1UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL AUGUST 13, 2018 UL 19G tr2 No Text on This PageUL COPYRIGHTED MATERIAL NOT AUT
8、HORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL AUGUST 13, 2018 1 UL 19G Guidance for Lined Fire Hose and Hose Assemblies First Edition August 13, 2018 Comments or proposals for revisions on any part of UL 19 may be submitted to UL at any time. Proposals should be submitt
9、ed via a Proposal Request in ULs On-Line Collaborative Standards Development System (CSDS) at http:/. ULs Standards are copyrighted by UL. Neither a printed nor electronic copy of a Standard should be altered in any way. All of ULs Standards and all copyrights, ownerships, and rights regarding those
10、 Standards shall remain the sole and exclusive property of UL. COPYRIGHT 2018 UNDERWRITERS LABORATORIES INC.UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL AUGUST 13, 2018 GUIDANCE FOR LINED FIRE HOSE AND HOSE ASSEMBLIES - UL 19G 2 No Text o
11、n This PageUL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL CONTENTS 1 Scope .4 2 Radiant Heat and Conductive Heat Test Results4 3 History on Method Development and Choice of Parameters 5 AUGUST 13, 2018 GUIDANCE FOR LINED FIRE HOSE AND HOSE
12、ASSEMBLIES - UL 19G 3UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL 1 Scope 1.1 This document is to inform users of re hose and UL 19, Lined Fire Hose and Hose Assemblies, the intent behind the test results from the radiant heat test and co
13、nductive heat test. This includes the history of the method development and the nal choice of parameters used in the test methods. 1.2 It is important to note that the results from the radiant heat test and conductive heat test represent a specic set of test parameters that are not intended to repre
14、sent the dynamic re environment. 2 Radiant Heat and Conductive Heat Test Results Note The language found in UL 19G is a duplicate of the language in UL 19, Appendix C. 2.1 The results reported in terms of time to pressure loss and leakage rate relate only to the specic set of parameters used for tes
15、ting. These values can only be used to compare new hose performance against one another under the specic test conditions in the method. The results are not intended to represent actual hose performance in the re environment, which is continually changing. Hoses may perform differently under several
16、conditions including, higher or lower heat uxes, higher or lower temperatures, higher or lower pressures, age of hose, wear of hose, if hose is wet or dry, charged or uncharged, and other re environment variables. In addition it should also be noted that these test methods utilize a small section of
17、 hose and not a complete hose that may be stretched out through a re environment. All of the aforementioned factors have the potential to change both the time to pressure loss and leakage rate. As such, the results reported in this section are intended to be used as a baseline for comparative purpos
18、es only and not assumed performance in the eld. The results reported for these tests contain the following: Radiant heat exposure of 30 kw/m 2 this represents the static heat ux used for the test method Conductive heat exposure with steel block at 400C (752F) this represents the temperature of the s
19、teel block upon removal from the oven and placement on the hose for this test method Exposure duration this represents the time to a 20 psi pressure loss in the static pressurized sample being tested Average leakage rate This represents the average leakage rate of the samples specied for post exposu
20、re testing when charged at 150 psi Maximum leakage rate This represents the maximum leakage rate of the samples specied for post exposure testing when charged at 150 psi Following the exposure, the sample leakage rate is determined by charging the sample with water at 150 psi. During the development
21、 phase of the Radiant Test and Conductive test procedures, it was observed that current hose constructions exhibited a wide range of failure modes, which ranged from a gradual weeping or slightly leaking condition, to a more violent, sudden burst-like failure mode. It was also noted that the weeping
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