SAE AIR 1794-1990 BALL-ON-CYLINDER (BOC) AIRCRAFT TURBINE FUEL LUBRICITY TESTER《飞机燃气涡轮机燃料润滑性测试机用球和气缸(BOC)》.pdf
《SAE AIR 1794-1990 BALL-ON-CYLINDER (BOC) AIRCRAFT TURBINE FUEL LUBRICITY TESTER《飞机燃气涡轮机燃料润滑性测试机用球和气缸(BOC)》.pdf》由会员分享,可在线阅读,更多相关《SAE AIR 1794-1990 BALL-ON-CYLINDER (BOC) AIRCRAFT TURBINE FUEL LUBRICITY TESTER《飞机燃气涡轮机燃料润滑性测试机用球和气缸(BOC)》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、SAE AIR*L94 90 W 8357340 0050973 O W AEROSPACE INFORMATION TfieEngineenrigsOciety e* =For Advancing Mobility ad sea Airami- INTERNATIONAL 400 Commonwealh Drive, Warendale, PA 1596-i REPORT Submitted for recognition as an American National Standard BALL-ON-CYLINDER (BOC) AIRCRAFT TURBINE FUEL LUBRICI
2、TY TESTER - AIR1794 Issued 1990-05 Superseding MAP1794 1. SCOPE: 1.1 Thi s metric Aerospace Information Report (AIR) detai 1 s a bal 1-on-cy1 i nder (BOO test device and specifies a method of rating the relative lubricity of aviation turbine fuel samples. The BOC produces a wear scar on a stationary
3、 steel ball by forcing it with a fixed load against a fuel wetted steel test ring in a controlled atmosphere, The test ring is rotated at a fixed speed so its surface is wetted by a momentary exposure to the fluid under test. The size of the wear scar is a measure of the test fluid lubricity and pro
4、vides a basis for predicting friction or wear problems. This ARP is intended as a guide toward a standard practice, but may be subject to frequent change reflecting experience and technical advances. Use of this AIR is not recommended where flexibility of revision is impractical. and technology shou
5、ld contact the Coordinating Research Counci 1 (CRC) Aviation Group on Aviation Fuel Lubricity. Anyone interested in current information on BOC developments 1.2 Field of Application: To rate the lubricity of turbine fue test or to determine fuel lubricity. s for the low lubricity pump endurance NOTE:
6、 This document, SAE ARP1797, and AIR4027 are complementary documents on the subject of aircraft turbine fuel low lubricity.) SAE Technical Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely volunta
7、ry, and its applicability and suitability for any particular use, including any patent infringement arising therefrom, is the sole responsibility of the user.“ SAE reviews each technical report at least every written comments and suggestions. Copyright 1990 Society of Automotive Engineers, Inc. All
8、rights reserved. five years at which time it I be reaffirmed, revised, 01 . cancelled. SAE ii ivites your Printed in U.SA. Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-, SAE AIRxL774 70 W 8357340 00
9、50974 2 Is EAE Jw AIR1794 1.3 Background: In recent years an increasing amount of lower grade crude oil has been used in the production of aircraft turbine fuel. remove the sulfur and polar constituents of the crude oil. quality hydro-refined fuel products have very poor lubricating properties. Thes
10、e low lubricity fuels have caused friction and wear problems in aircraft components. The BOC tester will be increasingly essential to monitor fuel lubricity for fuel system component development tests, production screening tests and field use. Hydrogen refining techniques Some high 2. REFERENCES : 2
11、.1 Applicable Documents: Related SAE Documents: ARP1797 Aircraft and Aircraft Engine Fuel Pump Low Lubricity AIR4027 Aircraft Turbine Engine Fuel Low Lubricity Information SAE 8720 Steel Fluid Endurance Test Report The following documents form a part of this AIR: MIL-1-25017 Inhibitor, Corrosion/Lub
12、ricity Improver, Fuel Soluble ASTM D 329 Acetone ASTM D 770 Isopropyl Alcohol ASTM D 1016 Iso-octane ASTM D 4306 ANSI B3.12 Metal Bal 1 s AIS1 E52100 Chromium Alloy Steel Practice for Sampling Aviation Fuel for Tests Affected by Trace Contamination 2.2 Definitions, Symbols, and Abbreviations: LUBRIC
13、ITY: produced on a stationary ball from contact with the fuel wetted rotating cylinder operating under closely controlled conditions. CYLINDER: Falex ring and mandrel assembly. Property of the fluid, measured by the wear scar in millimeters, BOC: also known as BOCM, BOCLE (ball-on-cylinder lubricity
14、 evaluator) and more recently BORLE (ball-on-ring lubricity evaluator). Common acronym for versions of the Fuery ball-on-cylinder machine, is RH: Relative humidity of air. WSD: Wear scar “diameter,“ in millimeters, which is the dimensional average of the major and minor axes of the ball wear scar el
15、lipse. WEAR TRACK: The width of the wear mark in millimeters on the test ring. n - Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-SAE AIR*1794 90 M 8357340 0050975 4 W asa= - AIR1794 3. TEST REQUIREME
16、NTS : 3.1 Apparatus: (Reference Figures 1 and 2.) 3.1.1 Ball-On-Cylinder Fuel Lubricity Tester: The BOC fuel lubricity tester is shown in Figures 1 and 2. The original BOC tester was designed by Exxon Research and Engineering Company of Linden, NJ. It was based on the “Fuery Ball-On-Cylinder Test Ma
17、chine“. A derivative of the Exxon design was made by Woodward Governor Company, Aircraft Engineering Department, Rockford, IL. This version beefed up the ball vise, the beam and support, eliminated a problem ridden “friction“ measuring feature, provided spring-loaded bearings and larger diameter man
18、drel axle. A number of BOC testers have been made from nonproprietary Woodward drawings. of this design is commercially available in a complete system as p/n BOC-100 from Inter-Av, San Antonio, TX. A recent configuration change has been the adoption of a case hardened steel test ring on a mandrel in
19、 place of the test “cylinder“. This change has been made to provide better accuracy and repeatability. the BOC reservoir base shall be 25C r 1. A version 3.1.2 Constant Temperature Control: The temperature of flowing water through 3.1.3 Hygrometer: The hygrometer shall be capable of measuring the RH
20、 of purge air to visually inspect, and store in des 3.5.2.2 Balls - Initial Cleanup: The initial clean according to the following: a. Remove a 5-day supply of balls from the ccator . ng of balls shall be r storage container. b. Place them in a clean 500 cc beaker. Cover balls with a 50/50% volume mi
21、xture of iso-octane and isopropyl alcohol. c. Place the beaker in ultrasonic cleaner, turn it on, and clean for 15 min, and fresh solvent mixture. At the end of the second cycle, remove the balls from beaker, rinse with acetone, dry with clean compressed air, visually inspect and store in desiccator
22、. Remove the balls and repeat the cycle using a clean beaker -5- Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-SAE AIRx1774 90 m 8357340 0050778 T AIR1 794 Ring: 3.5.2.3 Reservoir, Reservoir Cover, T
23、est Ring, Mandrel, Ball Chuck, Ball Lock the used test fluid from the a. After completion of each test run, pour reservoir into a waste container. b. Remove reservoir, test ring, and mandre c. Disassemble components and clean in an ultrason to 1 mixture of iso-octane and isopropyl alcoho with iso-oc
24、tane. Dry. Rinse with acetone. c cleaner us for 5 min. ng a 1 Rinse d. Reassemble components. e. Dry and store in a desiccator. 3.6 Calibration With Standard Reference Fluids: A Calibration is recommended at least weekly during activity or whenever a new test ring is installed. 3.6.1 Reference Fluid
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