SAE J 1668-2016 Diesel Engines - Fuel Injection Pump Testing.pdf
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1、 _ SAE Technical Standards 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 voluntary, and its applicability and suitability for any particular use, including any patent infringement arising ther
2、efrom, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized, or cancelled. SAE invites your written comments and suggestions. Copyright 2016 SAE International All rights reserved. No part of this
3、publication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: +1 724-776-49
4、70 (outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/J1668_201605 SURFACE VEHICLE STANDARD J1668 MAY2016 Issued 1993-06 Reaffirmed 19
5、99-04 Revised 2016-05Superseding J1668 APR1999 Diesel Engines - Fuel Injection Pump Testing RATIONALE Editorial change to correct the number and title of the ANSI standard cited in clause 2.1.2. 1. SCOPE The correct setting and adjustment of fuel injection pumps requires standardized testing conditi
6、ons. This SAE Standard summarizes the design and operating parameters for test benches so that, using certain information supplied by the pump manufacturer, the pump test schedule, and certain information supplied by the test bench manufacturer, it can be determined whether a particular test bench i
7、s suitable for driving a particular injection pump. This document is in most cases a summary of the ISO Standard 4008, Parts 1, 2, and 3 and is intended to provide its critical aspects. Standard ISO 4008 should be referred to for more details. 1.1 Field of Application This document is primarily appl
8、icable to test benches suitable for the calibration of fuel injection pumps for diesel engines requiring a fuel delivery of up to 300 mm3/st/cylinder at full load. 2. REFERENCES 2.1 Applicable Publications The following publications form a part of the specification to the extent specified herein. Un
9、less otherwise indicated the latest revision of SAE publications shall apply. 2.1.1 SAE Publications Available from SAE, 400 Commonwealth Drive, Warrendale, PA 15096-0001. SAE J967 Calibration Fluid SAE J968 Calibrating Nozzle and Holder Assemblies SAE J1549 Diesel Fuel Injection PumpValidation of C
10、alibrating Nozzle Holder Assemblies SAE INTERNATIONAL J1668 MAY2016 Page 2 of 17 2.1.2 ANSI Publication Available from ANSI, 11 West 42nd Street, New York, NY 10036-8002. ANSI/ASME B40.100 Pressure Gauges and Gauge Attachments 2.1.3 ISO Publications Available from ANSI, 11 West 42nd Street, New York
11、, NY 10036-8002. ISO 4008Part 1 Fuel injection pump testingDynamic conditions ISO 4008Part 2 Fuel injection pump testingStatic conditions ISO 4008Part 3 Fuel injection pump testingApplication and test procedures ISO 4020-2 Fuel filters for automotive compression-ignition enginesPart 2, Test values a
12、nd classification ISO 8984 Testing of fuel injectors for compression-ignition engines 2.2 Other Publications “Fuel Injection and Controls,“ 1962 by P. Burman and F. De Luca 3. DYNAMIC TIMING 3.1 Speed Variation at Constant Load The mean speed of the driveshaft under any steady admissible load shall
13、not vary more than 1/4% above 800 rpm and 2 rpm below 800 rpm for at least 1 min. 3.2 Flywheel Inertia The test bench flywheel shall ensure that the instantaneous speed drop of a pump during injection (i.e., cyclic speed variation) shall be less than 1% at any critical calibration point. Based on th
14、is criterion, the required flywheel inertia can be calculated from Equations 1 and 2: (Eq. 1)or (Eq. 2) where: I = Moment of inertia (kgm2) Qmax = Pump delivery at calibration point (mm3/st/outlet) ppa = Peak Line Pressure (bar) n = Pump Test Speed (rpm) IQmaxppau1.31 n2u-=Qmaxln21.31uuppa-=SAE INTE
15、RNATIONAL J1668 MAY2016 Page 3 of 17 To prevent torsional resonance with other mass in the transmission, the flywheel shall be as close to the coupling output as possible. 3.3 Driveshaft Stiffness The maximum instantaneous angular driveshaft deflection under any operating conditions shall be 0.02 de
16、grees. The required driveshaft stiffness is calculated as shown in Equation 3: (Eq. 3)where: Sd = Driveshaft Stiffness (Nm/) Qmax = Maximum pump delivery (mm3/st/outlet) ppa = Peak Line Pressure (bar) The driveshaft is considered to be the part connecting the flywheel to the test bench coupling. (On
17、 some test benches there is no driveshaft because the coupling is mounted directly to the flywheel). 3.4 Coupling Stiffness The maximum instantaneous angular deflection of the drive coupling under operating conditions shall be 0.1 degree. The required coupling stiffness is given by Equation 4: (Eq.
18、4)where: Sc = Coupling Stiffness (Nm/) Qmax = Maximum pump delivery (mm3/st/outlet) ppa = Peak Line Pressure (bar) In Equations 1 to 4, it is assumed that the mean injection pressure is represented by a sine wave and the injection duration is 10 degrees of pump rotation. 3.5 Pump Mounting Stiffness
19、and Alignment The injection pump mounting shall be stiff enough to ensure that deflection of the pump body flange (or base bracket) about its driveshaft is less than 0.02 degree with respect to ground during injection. Special apparatus to measure pump mounting stiffness is fully described in ISO 40
20、08 Part 1. In addition, the pump mounting shall align the pump driveshaft with the test bench output within 0.13 mm radially and 0.05 degree angularly (or 0.25 mm over 300 mm length). SdQmaxppau22.4-=ScQmaxppau125.6-=SAE INTERNATIONAL J1668 MAY2016 Page 4 of 17 3.6 Backlash There shall be no backlas
21、h between the flywheel and the pump drive coupling. 3.7 Angular Creep There shall be no angular movement between connecting parts situated between the flywheel and the pump drive coupling when subject to torque reversals equal to twice the peak injection torque according to Equation 5: (Eq. 5)where:
22、 T = Peak injection torque (Nm) Qmax = Numeric value of pump max delivery The formulae for driveshaft and coupling stiffness as well as limits for pump mounting stiffness and angular creep were derived during extensive testing. 3.8 Power Output Test bench power output may be significantly less than
23、the drive motor rated power and is not constant through the speed range. It depends on the type of transmission used. Therefore, output power shall be checked using a dynamometer connected to the test bench driveshaft, and results plotted on a graph as shown in Figure 1. Speed droop (no load to full
24、 load) if any, and speed variation at constant load over 1 min shall also be measured using a dynamometer. 3.9 Conditions In order to meet 3.2, 3.3, 3.4, 3.5, and 3.8 of this part of the Standard, the test bench manufacturer and the injection pump manufacturer must provide information to the user to
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