SAE J 2025-1989 Method for Evaluating the Flow Properties of Pumpable Sealers Recommended Practice《可泵送密封剂流动特性的评价方法》.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 entirelyvoluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefro
2、m, is the sole responsibility of the user.”SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions.QUESTIONS REGARDING THIS DOCUMENT: (724) 772-8512 FAX: (724) 776-0243TO PLACE A DOCUMENT
3、 ORDER; (724) 776-4970 FAX: (724) 776-0790SAE WEB ADDRESS http:/www.sae.orgCopyright 1989 Society of Automotive Engineers, Inc.All rights reserved. Printed in U.S.A.SURFACEVEHICLE400 Commonwealth Drive, Warrendale, PA 15096-0001RECOMMENDEDPRACTICESubmitted for recognition as an American National Sta
4、ndardJ2025ISSUEDJUN89Issued 1989-06METHOD FOR EVALUATING THE FLOW PROPERTIES OF PUMPABLE SEALERSForewordThis Document has not changed other than to put it into the new SAE Technical Standards BoardFormat.1. ScopeThis SAE Recommended Practice sets forth a method for evaluating the flow properties ofa
5、utomotive sealers that have been dispensed via a high pressure automatic system.1.1 BackgroundFor many years, automotive sealers were applied manually by means of an operator-held flowgun. The operator could adjust flow rates by hand speed and/or adjusting the pump pressures up or down asdesired. To
6、day, however, some sealers are applied by automated means such as robots, gantry tables, etc.To be effective, an automated system must be capable of applying material at a constant known rate. Thisdemands that the equipment and material handling parameters remain constant, not changing from their in
7、itialsetup.2. ReferencesThere are no referenced publications specified herein.3. Principle of MethodsThis method involves dispensing a sealer through a standard production system. Thematerial being tested is subjected to three separate dispensing conditions at a temperature of 18 C (65 F).The three
8、conditions listed below simulate the typical in-plant pumping variations that can cause variability insealer delivery rates:a. Condition #1: The material is pressurized from zero static to 10 350 kPa (1500 psi) dynamic pressurewith the resulting flow rate being measured. This simulates a “start-up“
9、condition.b. Condition #2: The material is pressurized under a static condition of 11 040 kPa (1600 psi) for 1 hfollowed by 1 h of dynamic pressure of 10 350 kPa (1500 psi) during which the material is pumpedcontinuously followed by a flow rate determination. This simulates an accelerated, constanta
10、pplication of material.c. Condition #3: The material is held under a static pressure of 11 040 kPa (1600 psi) for 24 h followedby a dynamic pressure of 10 350 kPa (1500 psi) during which the flow rate is determined. Thissimulates a system being left under pressure, overnight, with a subsequent start
11、 up the next day.SAE J2025 Issued JUN89-2-4. Equipment1 - 55 gallon drum of sealant to be tested.1-Air operated positive displacement pump (42:1 ratio) with an elevator, follower plate, and air pressuregage(s).1 - Dispensing system consisting of: (see Figure 1.)1 - (A) 31.75 mm (1-1/4 in) x 1.83 m (
12、6 ft) hose3 - (B) Visual test gages - 27 600 kPa (4000 psi), 345 kPa (50 psi) divisions1 - (C) 50.8 mm (2 in) x 3.05 m (10 ft) header pipe with 31.75 mm (1-1/4 in) I.D.1 - (D) Limit switch1 - (E) 31.75 mm (1-1/4 in) to 50.8 mm (2 in) reducing bushing1 - (F) 50.8 mm (2 in) pipe elbows2 - (G) Cycle co
13、unters1 - (H) Second timer2 - (I) Solenoid operated three-way air valve 25.4 mm (1 in)1 - (J) 50.8 mm (2 in) to 12.7 mm (1/2 in) reducing bushing1 - (K) 12.7 mm (1/2 in) x 3.05 m (10 ft) hose1 - (L) 25.4 mm (1 in) x 76.2 mm (3 in) pipe1 - (M) Reducing bushing with commercial 4.76 mm (3/16 in) nozzle
14、1 - (N) 25.4 mm (1 in) air actuated ball valve1 - (O) 25.4 mm (1 in) pipe tee1 - (P) Cup actuator1 - (Q) Temperature indicator (digital)1 - (R) 50.8 mm (2 in) pipe tee1 - Weight scale (digital)1 - Air compressor1 - Control panel for automatic actuators1 - Climate control room at 18C (65F)5. Dispensi
15、ng System Assembly (See Figure 1):5.1 Mount limit switch (D) to the pump to indicate complete up-to-down cycles.5.2 Install the gage (B) #1 to the outlet of the pump equipment.5.3 Attach a 31.75 mm (1-1/4 in) x 1.83 m (6 ft) hose (A) to the outlet of the pump.5.4 Attach the other end of the hose (A)
16、 to the inlet end of 50.8 mm (2 in) header (C).5.5 Install the gage (B) #2 to 50.8 mm (2 in) pipe tee (R) on the outlet end of 50.8 mm (2 in) header (C).5.6 Attach a 12.7 mm (1/2 in) x 3.05 m (10 ft) hose (K) to the outlet of 50.8 mm (2 in) pipe tee (R).5.7 Attach a 12.7 mm (1/2 in) x 3.05 m (10 ft)
17、 hose (K) to the inlet of 25.4 mm (1 in) air actuated ball valve (N).5.8 Attach a 25.4 mm (1 in) x 76.2 mm (3 in) pipe (L) to the outlet of a 25.4 mm (1 in) air actuated ball valve (N).5.9 Attach a 25.4 mm (1 in) pipe tee (O) to the outlet end of a 25.4 mm (1 in) x 76.2 mm (3 in) pipe (L).5.10 Insta
18、ll a gage (B) #3 to the outlet end of a 25.4 mm (1 in) pipe tee (O).5.11 Install a 4.76 mm (3/16 in) nozzle (M) to the outlet end of a 25.4 mm (1 in) tee (O).SAE J2025 Issued JUN89-3-FIGURE 1SAE J2025 Issued JUN89-4-5.12 Attach a temperature indicator (Q) to a nozzle (M).5.13 Install and position a
19、cup catch (P).6. Test Procedure #1 - Start-Up Condition6.1 Condition the material, equipment, and room to 18C (65F), or as specified, for approximately 72 h.6.2 Purge the entire system with 5 gallons of test material.6.2.1 While purging the material, adjust the air pressure to achieve a dynamic pres
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