GMW GMW16694-2012 Metered Oil Flow Rate (MOFR) of Valve Stem Seals Issue 1 English《阀杆密封的计量机油流动速率(MOFR) 第1次出版(英文版本)》.pdf
《GMW GMW16694-2012 Metered Oil Flow Rate (MOFR) of Valve Stem Seals Issue 1 English《阀杆密封的计量机油流动速率(MOFR) 第1次出版(英文版本)》.pdf》由会员分享,可在线阅读,更多相关《GMW GMW16694-2012 Metered Oil Flow Rate (MOFR) of Valve Stem Seals Issue 1 English《阀杆密封的计量机油流动速率(MOFR) 第1次出版(英文版本)》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、 WORLDWIDE ENGINEERING STANDARDS Test Procedure GMW16694 Metered Oil Flow Rate (MOFR) of Valve Stem Seals Copyright 2012 General Motors Company All Rights Reserved January 2012 Originating Department: North American Engineering Standards Page 1 of 6 1 Scope Note: Nothing in this standard supercedes
2、applicable laws and regulations. Note: In the event of conflict between the English and domestic language, the English language shall take precedence. 1.1 Purpose. Measure by collected weight, the oil flow rate (Q) due to gravity alone (Procedure A) or due to gravity and absorbed with a special pape
3、r (Procedure B) off the valve stem, guides, etc., after ten (10) hours. See paragraphs 5.2.3 and 5.2.4 for procedure usage guidelines. Results (optional) may be converted to a volume per 5.1.2. 1.2 Foreword. A function of valve stem seals is to control the passage of oil (flow) between the reciproca
4、ting valve stem, valve guide, and the seal lip. Insufficient lubrication leads to abrasion, abnormal valve noise, and in the worst case, valve burnout. Validation of seal design factors is accomplished by precise measurement of oil leakage using actual engine components. 1.3 Applicability. Intake an
5、d exhaust valve stem seals. After long term engine lab or field testing, leakage can be remeasured. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. ASTM D573 ISO 6194-1 ISO/IEC 17025 SAE J1901 IEEE/ASTM SI 10 ISO
6、 16949 SAE J946 2.2 GM Standards/Specifications. GMW15827 2.3 Additional References. None. 3 Resources 3.1 Facilities. Test laboratory with temperature and humidity control. See paragraph 4.2.1. 3.2 Equipment. 3.2.1 Leakage Rate Apparatus. Ahaus Tool and Engineering, Richmond, IN or equivalent. Each
7、 unit consists of one (1) to two (2) heads, with four (4) test specimens per head. This apparatus can be adapted for push rod or overhead camshaft applications. A pulley, belt, and electric motor drive the camshaft. The oil system includes collection devices, heater, controller, sump, pump and filte
8、r. A vacuum pump connected to the combustion chamber aids in oil collection. The machine controls camshaft speed, oil pressure and temperature, and vacuum pressure. Gauges measure oil temperature, oil pressure and combustion chamber pressure (vacuum). Head orientation effects are optional. Productio
9、n heads are optional. 3.2.2 Balance. Single pan analytical with readability to 0.0001 g and repeatability to 0.1 mg. Pan must have a cover or be enclosed. 3.2.3 Calipers. ncremented to 0.02 mm. 3.2.4 Desiccating Cabinet or Desiccator. Sufficiently sized to prevent contact between weighed specimens.
10、3.2.5 Optical or Video Comparator. Capable of measuring valve stem and seal dimensions per detail drawing, ISO 6194-1, or SAE J946. 3.2.6 Oven. Air-circulating oven conforming to ASTM D573, Type IIA. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for Re
11、saleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16694 Copyright 2012 General Motors Company All Rights Reserved January 2012 Page 2 of 6 3.2.7 Profilometer. Capable of measuring valve stem surface finish per detail drawing. 3.2.8 Filter
12、Paper, 5.5 cm, Grade 4 White. Coarse porosity, fast flow with 20 to 25 micron particle retention (Procedure B). 3.3 Test Vehicle/Test Piece. Test only seals compliant with the drawing requirements. 3.3.1 Randomly select 32 seals to be tested. 3.3.2 Seal. Measure the lip inner diameter (ID) and the l
13、ip contact load (LCL) per SAE J1901, and visually inspect the seal for defects. Record these measurements. Confirm the measurements meet the product drawing specifications. 3.3.3 Stems and Guides. Obtain production release intent valve stems and guides. Measure outside diameters and stem finish and
14、confirm they meet the product drawing specifications. Customer supplied stems and guides may be used. 3.3.4 Springs. Obtain production release intent springs. Confirm they meet the drawing specifications. Customer supplied springs may be used. 3.3.5 Head. At the requesters option, the intended produ
15、ction part is modified to permit oil collection from each valve. 3.4 Test Time. These times are typical for scheduling information once test parts are received. Calendar time: 20 days (32 seals on 1 unit) Test hours: 10 hours Coordination hours: 1 to 2 hours 3.5 Test Required Information. MOFR (Q) f
16、or each valve stem seal tested in specified fluid(s) Seal ID at start of test (SOT) Lip Contact Load (LCL) at SOT Seal ID at end of test (EOT) LCL at EOT Guide outer diameter (OD) at SOT Stem OD at SOT Surface Finish at SOT 3.6 Personnel/Skills. The test technician shall be trained to correctly oper
17、ate the devices and measurement tools described in this procedure. 4 Procedure Follow Procedure A or B using this sequence (see paragraphs 5.2.3 and 5.2.4). Only the differences between procedures are marked, using the letters A or B where appropriate, and bold font to emphasize Procedure B or added
18、 requirements. 4.1 Preparation. Follow the steps in this section for cleaning the leakage rate apparatus and weighing oil collection test cups. Note the change in steps between break-in and retest (paragraph 4.3.4.3). 4.1.1 Test Cups. Cover hands with clean latex gloves, or wash and dry them before
19、handling the test collection cups. 4.1.2 Using a lint free cloth, wipe the oil collection test cups with a residue free, technical grade safety solvent/cleaner (e.g., isopropyl alcohol). Place the cups in a cabinet or desiccator with anhydrous calcium sulfate until dry (see paragraph 4.1.3). In addi
20、tion, for Procedure B, place filter paper in the desiccator. 4.1.2.1 If the cleaner/solvent has a slow evaporation rate, store the collection cups in the lab oven for 30 minutes at 60 C. 4.1.2.2 Remove test cups from the oven and wipe dry with a suitable lint free product. 4.1.3 Verify that the indi
21、cating anhydrous calcium sulfate desiccant in the desiccating cabinet is active (moisture absorption produces a visible color change). Store the collection cups in the desiccator for 20 minutes. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleN
22、o reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16694 Copyright 2012 General Motors Company All Rights Reserved January 2012 Page 3 of 6 4.1.4 Leakage Collection Assembly. Using a lint free cloth, remove and wipe down the following with a res
23、idue free technical grade safety solvent/cleaner: test guides, stems, springs and the tester surface directly above the collection cups. Allow these items to dry. Install the clean items in the test unit. Clean this assembly before the first two (2) hour break-in (paragraph 4.3.5). Do not re-clean t
24、hese assembly items after the first run of four (4) to eight (8) seals. Test 32 seals (paragraph 3.3.1). 4.1.5 Procedure A: Remove the collection cups from the desiccator or cabinet, and weigh them on the analytical balance. Measure to 0.0001 g and record the results. Procedure B: After washing and
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