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    GMKOREA EDS-T-7918-2011 Engine Oil Filterability Test.pdf

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    GMKOREA EDS-T-7918-2011 Engine Oil Filterability Test.pdf

    1、 ENGINEERING STANDARDS Test Procedure LIMITED USE EDS-T-7918 Engine Oil Filterability Test Do Not Use on New Program; No Replacement. 7:7X8 7 02e 4G - Note: 8 E:48t G8 =97 FF7 957%L+ , FG P-P Program 72P# 957%L: 6#$ . Copyright 2011 General Motors Company All Rights Reserved November 2011 Originatin

    2、g Department: GM Korea Engineering Standards Page 1 of 8 Version : 3 1 Scope Note: Nothing in this standard supersedes applicable laws and regulations. Note: In the event of conflict between the Korean and English language, the Korean language shall take precedence. 1.1 Purpose. This standard aims a

    3、t standardizing the engine oil filterability test method, which is to measure deposits formation tendency of engine oil that can collect in the oil filter. 1.2 Applicability. This standard applies to measuring deposit formation tendency of engine oil through simulation of the case in which engine oi

    4、l used for vehicles is stationed under the moisture-present condition and then activated for short time driving. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. None 2.2 GM Standards/Specifications. None 2.3 Addi

    5、tional References. None 3 Resources 3.1 Equipment. 3.1.1 Mixer with high/low speed mode. Waring model 7011 or its equivalent whose low speed range is 18000rpm10% with no loads applied. 3.1.2 Waring MC-3, 50 250 ml “Mini Container“: The MC-3 mini container is provided together with No. 500139 blade a

    6、ssembly. To minimize splashing of oil, however, No. 500136 blade assembly shall be used together. 3.1.3 1000 Microliter Syringe. 3.1.4 Dry Ice. 3.1.5 60 ml Glass Jars (2 Oz). 1 P7 :0 : ., E:48 6%T 3L 8# Engine Oil8 ?98,p GI2e F8x ?U9IF# 7: 7X88 7 02e 4G -8x E:4G F$ . 1.2 957 -88 . ., E:48t 8% =7 957

    7、%L# Engine Oil8 3L.8 98 9F72P 8d8 9I? G $488x 7FF8x 7* +8 4G (Simulation) F8p)4 Engine Oil8 ?98,p GI2e F8x ?U9IF#$ 957%P$ . 2 4) E:4 / :0 : C-H +d%P 9I8 6# F 48 07 38%P E:48x 957F$ . 2.1 17 E:4 / . None 2.2 GM E:4 / . None 2.3 dA E:4 / . None 3 4G 88 3.1 4G 8/x . 3.1.1 2 /9428 2 $ 2$992G Fd 88F7 No.

    8、 500136 Blade Assembly$ M8 17F7 6 F$ . 3.1.3 1000 Microliter Syringe. 3.1.4 Dry Ice. 3.1.5 60 ml Glass Jars (2 Oz). GM KOREA ENGINEERING STANDARDS EDS-T-7918 Copyright 2011 General Motors Company All Rights Reserved November 2011 Page 2 of 8 Version : 3 3.1.6 Oven (With forced circulation capable of

    9、 raising temperature to 200 E ). 3.1.7 25 ml Burette: Diameter of Teflon Stopcock opening shall not be smaller than 1.8 mm so as not to hinder oil flow inside the burette. Accordingly, burette tip diameter also shall not be smaller than 1.8 mm. 3.1.8 Compressive air (10 psi, 69 KPa). 3.1.9 Filter ho

    10、lder (Millipore XX30 012 00 effective filtering area R 0.6 cm2). 3.1.10 AC 40 automobile oil filtering paper (MS-4275). 3.1.11 Stop watch capable of measuring time in sequence. 4 Procedures 4.1 Equipment and Sample Preparation. 4.1.1 Filter Holder Effective Filtering Area Calculation. The effective

    11、filtering area of the new filter can be obtained by measuring flow time and calculating average flow time of reference fluid (GMR 3108) whose average filtering rate is known. The filtering area can be obtained by the following formula (1). The filtering area thus obtained is used for calculating a s

    12、eries of flow rate measured at the filter holder. Refer to example of calculation in Table 1. This calculation procedure can be applied to each new filter holder and can also be used to correct the system when compressive air generator, pressure gage or batch of MS-4275 filtering paper is changed. T

    13、o compensate for possible variation in the pressure gage, pressure can be adjusted within a range of 7 KPa to keep the average flow time of reference fluid (GMR 3108) time to 5.5 6.5 seconds. 4.1.1.1 Effective Filtering Area Calculation The filtering area is calculated using the following formula an

    14、d GMR 3108 reference oil whose flow rate is 1.21 ml/s.cm2. Flow Rate = (Oil Volume) / (Flow Time)(Filter Area) - Formula (1). : 1.21 ml/s.cm2 = (5 ml)/(6.53s)(filter area). : Filter area = 0.633 cm2 4.1.1.2 Flow Rate of Reference Oil. 3.1.6 Oven (I9P 3PG48p)2P 200 E: 7$* 7* 3L 8# ). 3.1.7 25 ml Bure

    15、tte: Burette !72P Oil8 H*7 -F4 6$) Teflon Stopcock8t P 8 :*8 1.8 mm 81866 F$ . &d(2P Burette8 Tip$ :*8 1.8 mm 818 8x 17F7 6 F$ . 3.1.8 6 )d (10 psi, 69 KPa). 3.1.9 Filter Holder (Millipore XX30 012 00 8TG 7 0 +95 R 0.6 cm2) 3.1.10 AC 40 8% =7 Oil 7 0: (MS-4275). 3.1.11 3P=958p) 48 ?U9I8 4#F Stop Wat

    16、ch. 4 4G 9)d 9P9d , 6)Y Gm8t MS-4275 7 0:8 Batch &%8 -H!H &7$ System 8x .(9IFd 88F7 957%Ld$ F$ . 6)Y72P8 4#F -% 8x .(1F)X+ , GMR 3108 d:4 Fluid 8 D Flow Time 8x 5.5 6.5 )d (69 KPa, 10 psi)* :4/xF$ . 7 0:# Holder 7 +# A d) 8$F7 Resin 8 8G4: G94) F$ . Air Line 8 7$8x !8t % 8 GpF%P 4G OIL 8x “0” E2T8 1

    17、 ) 2 cm 1$: =x7$ . Stopcock8 7(* 1B72P 69 KPa8 6)Y8x 4F % + 5 ml 8T( *$8 488x ?U9IF$ . Flow Rate# 4.3.2F8 47 8F 1%P$ . $8 47 8F7 Flow Rate8 D2(8x 1F$ . FLOWRATElQf BAA100 u() ()()7 d2P , (A) = Final new oil flow rate. (B) = Final test oil flow rate. 5 4G $8Bd 5.1 4G 0 . 2e952P7# $80 M8t 1F8x d8F$ .

    18、5.1.1 D4 $41 7X8 16 . 5.1.2 5, 10, 15, 20, 25 ml 72P8 48T8 Flow Rate. 5.1.3 5, 10, 15, 20, 25 ml 72P8 4G 8T8 Flow Rate. 5.1.4 48T -C 4G 8T8 Flow Rate $4 Oil Volume Graph 5.1.5 5 Test72P 66: Flow Rate 8 -G (%). 5.1.6 888 5.1.1 ) 5.1.4 8 .(1F 77 GMR 5.1.Reference Oil 3108, 3109 Oil 8x 87F7 4.3F8 4G -8

    19、p) 4G F Data$ .(%L66 F$ . D4 $41 Oil 8x 888 4G -0 M8 :4/xF D4F & 956$ F-8t 5 Reference Oil ) M8t -8x 87F7 4G F6 F$ . DF Reference Oil Test -Gl$ .(2P7 d8%L66 F$ . D4 $41 Oil7 $4F 4G 0# =. 64 #1 0 M8 .(F , 5 reference Oil 7 $4F 4G 0# =. 64 #2 (% 8 )7t M8 .(F$) F$ . 5.2 7 1F . 5.2.1 =. 17 !A! 0 M8 D4 $

    20、41 Oil8 Flow Rate D2# 7-H* 2X?%P dd72P 4G F 7 48T $4/x 50 % 8! 866 F$ . 5.2.2 GMR Reference Oil 8x 87F7 4G F 78 Data# $8 F0 8T1F7 6 F$ . GM KOREA ENGINEERING STANDARDS EDS-T-7918 Copyright 2011 General Motors Company All Rights Reserved November 2011 Page 5 of 8 Version : 3 GMR 3108 GMR 3109 Flow Ra

    21、te (ml/s.cm2) R 0.95 R 0.1 Change in Flow Rate (%) R 20 R 95 6 Safety This standard may involve hazardous materials, operations, and equipment. This standard does not propose to address all the safety problems associated with its use. It is the responsibility of the user of this standard to establis

    22、h appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. 7 Notes 7.1 Glossary. Not applicable. 7.2 Acronyms, Abbreviations, and Symbols. Not applicable. 8 Coding System This standard shall be referenced in other documents, drawings, etc., as f

    23、ollows: Test to EDS-T-7918 9 Release and Revisions This standard was originated in May 1998. It was first approved by Engineering Standard Committee in May 1998. It was first published in May 1998. 6 6|987 $4F 7 9 ., E:48t 88G ,p: , 86 , 8/x &%8x E FF 3L 8$ . ., E:48t 87 $4F 170 4)%P +& 6|98 ,l9P8 F

    24、8x 9P4F:# 6#$ . &d(2P 17 987 95FF 6|980 I 1B* 9DF , -18 9PF 728 957 7 .* 9IF# 8t ., E:4 1788 =y8 1F8$ . 7 768 9I8 7.1 98,l 76 . 7.2 66 -C dGl . F$-1F 68 . 8 Ed - $* ,l2P! $+ &%72P ., E:48 87%T &# $80 M8 EdF$ . Test to EDS-T-7918 9 9P9I -C P9I 8)Y ., E:48t 1998 “x 5 87 E:4 -Gl4 .7 %L6 , d3TE:41,h7 8F

    25、 1998“x 587 38%L6$ . ., E:48t 1998“x 587 ) 9P9I / -PF%L6$ . Issue / P9I8)Y Publication Date / 38 88 Description (Organization) / 9PP9I76 (:04.2P ) 3 NOV 2011 Apply new Engineering Standard Template. Limited use with no replacement (Polymer / Organic Material Lab Team) / 4 d3TE:4 64 957 . F9I957 ($4=

    26、E:4 68 ) =* (G)8*4G D4 ) GM KOREA ENGINEERING STANDARDS EDS-T-7918 Copyright 2011 General Motors Company All Rights Reserved November 2011 Page 6 of 8 Version : 3 Figure1: Test Equipment / ,* 1: 4G 8/x GM KOREA ENGINEERING STANDARDS EDS-T-7918 Copyright 2011 General Motors Company All Rights Reserve

    27、d November 2011 Page 7 of 8 Attachment 1: Test Results Report Form (For Test Oil) / =. 1: 4G 0 .( 64 (D4 $41 Oil7 ) Oil Type: Test Engineer: Test End: Reference Oil Test No.: Test No.: Flow Rates (ml/s.cm2) Flow Rates (ml/s.cm2) Oil Volume (ml) New Oil Test Oil New Oil Test Oil 5 10 15 20 25 (a) = (

    28、b) = (a) = (b) = GM KOREA ENGINEERING STANDARDS EDS-T-7918 Copyright 2011 General Motors Company All Rights Reserved November 2011 Page 8 of 8 Attachment 2: Test Results Report Form (For Reference Oil) / =. 1: 4G 0 .( 64 (Reference Oil7 ) Oil Type: GMR Test Engineer: Test End: Reference Oil Test No.: Test No.: Flow Rates (ml/s.cm2) Flow Rates (ml/s.cm2) Oil Volume (ml) New Oil Test Oil New Oil Test Oil 5 10 15 20 25 (a) = (b) = (a) = (b) =


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