UL 2267-2013 UL Standard for Safety Fuel Cell Power Systems for Installation in Industrial Electric Trucks (Second Edition Reprint with revisions through and including April 26 201_1.pdf

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1、UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL UL 2267 Fuel Cell Power Systems for Installation in Industrial Electric TrucksUL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM ULUL COPYRI

2、GHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL UL Standard for Safety for Fuel Cell Power Systems for Installation in Industrial Electric Trucks, UL 2267 Second Edition, Dated March 27, 2013 Summary of Topics The new edition dated March 27, 2013 was

3、 issued to reect the current ANSI approval, incorporate minor editorial changes, some clarications, organizational changes, renumbering changes, and revisions to harmonize with the criteria in the Standard for Electric-Battery- Powered Industrial Trucks, UL 583. The new and revised requirements are

4、substantially in accordance with Proposal(s) on this subject dated January 25, 2013. 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 p

5、ermission of UL. UL provides this Standard as is without warranty of any 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

6、damages, including loss of prots, lost savings, loss of data, or any other damages arising out of the use of or the inability to use this Standard, 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 ex

7、ceed the price paid for this Standard, regardless of the form of the claim. Users of the electronic versions of ULs Standards for Safety agree to defend, indemnify, and hold UL harmless from and against any loss, expense, liability, damage, claim, or judgment (including reasonable attorneys fees) re

8、sulting from any error or deviation introduced while purchaser is storing an electronic Standard on the purchasers computer system. The requirements in this Standard are now in effect, except for those paragraphs, sections, tables, gures, and/or other elements of the Standard having future effective

9、 dates as indicated in the note following the affected item. The prior text for requirements that have been revised and that have a future effective date are located after the Standard, and are preceded by a SUPERSEDED REQUIREMENTS notice. MARCH 27, 2013 UL 2267 tr1UL COPYRIGHTED MATERIAL NOT AUTHOR

10、IZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL MARCH 27, 2013 UL 2267 tr2 No Text on This PageUL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL MARCH 27, 2013 1 UL 2267 Standard for Fuel Cell Power Systems for Install

11、ation in Industrial Electric Trucks First Edition April, 2006 Second Edition March 27, 2013 This ANSI/UL Standard for Safety consists of the Second Edition. The most recent designation of ANSI/UL 2267 as an American National Standard (ANSI) occurred on March 27, 2013. ANSI approval for a standard do

12、es not include the Cover Page, Transmittal Pages, Title Page, or effective date information. Comments or proposals for revisions on any part of the Standard may be submitted to UL at any time. Proposals should be submitted via a Proposal Request in ULs On-Line Collaborative Standards Development Sys

13、tem (CSDS) at http:/. ULs Standards for Safety 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 Standards shall remain the sole and exclusive property of UL. COPYRI

14、GHT 2013 UNDERWRITERS LABORATORIES INC. ANSI/UL 2267-2013UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL MARCH 27, 2013 UL 2267 2 No Text on This PageUL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PER

15、MISSION FROM UL CONTENTS INTRODUCTION 1 Scope .6 2 Glossary .7 3 Components 12 4 Units of Measurement 12 5 Undated References .12 CONSTRUCTION 6 Hydrogen and Other Fluid Containing Parts .12 6.1 General 12 6.2 Piping, hoses, tubing and ttings 13 6.3 Hydrogen pressure vessels .15 7 Over Pressure and

16、Thermal Protection .16 8 Operating and Shut-Off Valves 18 9 Filters 18 10 Pumps and Compressors 18 11 Electrically Operated Pressure Sensing and Controlling Devices 19 12 Ventilation to Prevent the Build Up of Flammable Gases and Vapors .19 13 Electrostatic Discharge (ESD) 20 14 Discharges and Waste

17、 Materials 21 15 Enclosures .21 16 Fuel Cell System Electrical Components .22 16.1 General .22 16.2 Internal wiring 22 16.3 External wiring .23 16.4 Motors 24 16.5 Switches and motor controllers .24 16.6 Transformers and power supplies 25 16.7 Inverters, converters and controllers 25 16.8 Lamps and

18、lampholders .25 16.9 Energy storage components .25 16.10 Electrical insulation 27 16.11 Limited power circuit .27 16.12 Electrical spacings 27 16.13 Separation of circuits 29 17 Control Circuits .29 17.1 Safety controls .29 17.2 Start 30 18 Safety/Hazard Analysis 30 19 Field Installation 30 PERFORMA

19、NCE 20 General 31 21 Vibration .31 21.1 General .31 21.2 Vertical axis test .32 21.3 Longitudinal and lateral axes tests 32 MARCH 27, 2013 UL 2267 3UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL 22 Endurance System 33 23 External Leakage .3

20、3 23.1 External leakage hazardous gas containing portions (determination of dilution boundary) .33 23.2 External leakage hazardous liquid containing portions .34 24 Ultimate Strength .34 24.1 Ultimate strength hazardous liquids and pressurized parts .34 24.2 Ultimate strength hazardous gas and press

21、urized parts .35 25 Potential Failure Modes .35 26 Temperature .35 27 Continuity Test .38 28 Measurement of Touch Current Test 39 29 Dielectric Voltage-Withstand Test .41 30 Limited Power Circuits .42 31 Maximum VA .43 32 Abnormal Operation Electric Equipment Failures 43 33 Environmental Tests 44 33

22、.1 General .44 33.2 Equipment exposure to wind .44 34 Enclosure Tests 45 34.1 Enclosure loading 45 34.2 Thermoplastic enclosures .45 35 Three-Quarter Inch Flame Test for Thermoplastic Materials 46 36 Marking Plate Adhesion Test .46 37 Elastomeric Seals, Gaskets and Tubing .47 37.1 General .47 37.2 A

23、ccelerated air-oven aging test 47 37.3 Cold temperature exposure 47 38 Permeation of Nonmetallic Tubing and Piping 47 39 Electrical Output Leads 47 MARKINGS 40 Details .48 INSTRUCTIONS 41 General 49 42 Maintenance Instructions 49 43 Operating Instructions .50 44 Installation Instructions 51 MANUFACT

24、URING AND PRODUCTION TESTS 45 Production Line Testing and Evaluation .51 45.1 Dielectric voltage-withstand test 51 45.2 External leakage .51 APPENDIX A Standards for ComponentsA1 MARCH 27, 2013 UL 2267 4UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSIO

25、N FROM UL APPENDIX B MARCH 27, 2013 UL 2267 5UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL INTRODUCTION 1 Scope 1.1 These requirements cover fuel cell power systems intended to be installed in Type E or Type CGH industrial trucks used in l

26、ocations as dened in the Standard for Powered Industrial Trucks, Including Type Designations, Areas of Use, Conversions, Maintenance, and Operation, NFPA 505, the National Electrical Code, ANSI/NFPA 70, and the Standard for Electric-Battery-Powered Industrial Trucks, UL 583. 1.1 revised March 27, 20

27、13 1.2 The fuel cell power systems covered by this standard are anticipated for use as described in the: Safety Standard for Low Lift and High Lift Trucks, ANSI/ITSDF B56.1; Safety Standard for Guided Industrial Vehicles and Automated Functions of Manned Industrial Vehicles, ANSI/ITSDF B56.5; Safety

28、 Standard for Rough Terrain Forklift Trucks, ANSI/ITSDF B56.6; Safety Standard for Industrial Crane Trucks, ANSI/ITSDF B56.7; Safety Standard for Personnel and Burden Carriers, ANSI/ITSDF B56.8; Safety Standard for Operator Controlled Industrial Tow Tractors, ANSI/ITSDF B56.9; and the Safety Standar

29、d for Manually Propelled High Lift Industrial Trucks, ANSI/ITSDF B56.10, as applicable to the intended truck. 1.3 These requirements cover fuel cell power systems that incorporate a permanently mounted pressure vessel containing compressed hydrogen gas. 1.4 These requirements cover the use of design

30、s that are fueled by hydrogen gas without the pressure vessel being removed from the industrial truck (onboard fueling). 1.5 These requirements cover only the fuel cell and fuel cell balance of plant components including the power and/or power conditioning electronics, regardless of packaging, as de

31、ned in 2.11 and Figure 2.1, as well as any components in classied zones. MARCH 27, 2013 UL 2267 6UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL 2 Glossary 2.1 For the purpose of this standard, the following denitions apply. 2.2 ABNORMAL OPE

32、RATION Operation of the fuel cell power system with any one electrical or control component malfunction or failure, in any failure mode regarded as reasonably probable in the FMEA; but excluding accidental rupture or breakdown of the containers of ammable liquids, vapors and/or gases. 2.3 BONDING Th

33、e permanent joining of metallic parts to form a positive electrically conductive path that provides electrical continuity between non-current carrying metal parts and is capable of conducting any fault current that may occur. NOTE This applies to bonding within the fuel cell system and between the f

34、uel cell system and truck and does not refer to the means to ground the truck itself, such as with a grounding strap or with tires. Acceptable methods of bonding shall be by any positive means, such as by a clamp, rivet, bolt, screw, welded joint, soldered or brazed joint, or a bonding jumper with a

35、 closed loop connector secured by a screw. 2.4 CHECK-VALVE Fluid control device that allows uids to ow in only one direction. 2.5 CIRCUIT, HIGH-VOLTAGE A circuit involving a potential greater than 42.4 V peak (30 Vrms) or 60 Vdc. 2.6 CIRCUIT, LOW-VOLTAGE A circuit involving a peak open-circuit poten

36、tial of not more than 42.4 V (30 Vrms) or 60 Vdc supplied by a battery, a fuel cell, a Class 2 transformer, or by a combination of a transformer and a xed impedance that as a unit, complies with all performance requirements for a Class 2 transformer. A circuit derived by connecting a resistance in s

37、eries with a voltage supply circuit as a means of limiting the voltage and current, is not considered to be a low-voltage circuit. 2.7 DILUTION BOUNDARY The extent of a ammable area or zone created by a limited release of ammable gas or vapor, internal to the fuel cell power system or truck in which

38、 it is mounted, and controlled by mechanical ventilation or other effective means as outlined by Electrical Apparatus for Explosive Gas Atmospheres Part-10: Classication of Hazardous Areas, IEC 60079-10. 2.8 ELECTROSTATIC DISCHARGE (ESD) Discharge created by static electricity. 2.9 FUEL CELL POWER S

39、YSTEM An assembly of components and parts that together electrochemically converts fuel and oxidant to electrical current. See Figure 2.1 for a block diagram of a fuel cell power system. A fuel cell power system may contain all or some of the components shown in Figure 2.1. The fuel cell power syste

40、m for use with industrial trucks will be in one of the following forms: SELF-CONTAINED SYSTEM A complete system incorporated into its own housing that is intended to replace or combine with a battery system to power an industrial truck. Additional counterweighting may be located outside of the syste

41、ms housing. Display and control functions may be located outside the systems housing in proximity to the operators compartment. INTEGRATED SYSTEM A complete system of fuel cell components and parts that are incorporated into the industrial truck with the various parts of the system potentially distr

42、ibuted throughout the truck. This is generated text for gtxt. MARCH 27, 2013 UL 2267 7UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL Figure 2.1 Fuel cell power system Note: A fuel cell power system may contain all or some of the above compo

43、nents MARCH 27, 2013 UL 2267 8UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL 2.10 HAZARDOUS (CLASSIFIED) AREAS Any work area or space where combustible dust, ignitable bers, or ammable, volatile liquids gases, vapors or mixtures are or may

44、be present in the air in quantities sufficient to produce explosive or ignitable mixtures as dened by the National Electrical Code, ANSI/NFPA 70, or by Electrical Apparatus for Explosive Gas Atmospheres Part-10: Classication of Hazardous Areas, IEC 60079-10. 2.11 INTEGRAL For the purposes of this st

45、andard, something that is either contained within the fuel cell power system or is external, but is a part of the fuel cell power system. 2.12 LIMITED POWER CIRCUIT A circuit supplied from a source whose open circuit voltage is less than or equal to 60 Vdc and whose maximum current and power after 6

46、0 s of operation comply with the values outlined in Tables 30.1 and 30.2. Limited power circuits are considered equivalent to NEC Class 2 circuits as outlined in the National Electrical Code, ANSI/NFPA 70 and to low-voltage limited energy circuits as dened in Section 16 of the Standard for Electric-

47、Battery-Powered Industrial Trucks, UL 583. 2.12 revised March 27, 2013 2.13 LOWER FLAMMABILITY LIMIT (LFL) The lowest volume percentage of a gas in air that will ignite. NOTE: The LFL for hydrogen is 4% by volume. 2.14 MAXIMUM ALLOWABLE WORKING PRESSURE (MAWP) The maximum gauge pressure of the conta

48、ined uid for which each portion of the system is rated with consideration of an abnormal condition that initiates the operating of the safety pressure relief devices. See Appendix B for a comparison table of pressure terms. 2.15 MAXIMUM CONTINUOUS LOAD RATING Maximum continuous power that can be sus

49、tained by the fuel cell system independent of any electrical energy storage device or storage component at 25C (77F) and 1 atm. 2.16 MAXIMUM OPERATING PRESSURE (MOP) The highest gauge pressure of a component or the system that is expected during normal operation. See Appendix B for a comparison table of pressure terms. NOTE It is typically no more than 1.25 times the service pressure and a 10%-margin below the pressure relief device setting.

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