FORD WSS-M97B44-D-2016 COOLANT ORGANIC ADDITIVE TECHNOLOGY (OAT) CONCENTRATE FOR PASSENGER CAR AND LIGHT TRUCK TO BE USED WITH FORD WSS-M99P1111-A .pdf
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1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 8 2016 04 11 Revised See Summary of Revisions A. Reaume, NA 2016 02 29 Revised See Summary of Revisions A. Reaume, NA 2008 03 20 Activated Marcos Rogrio de Souza Controlled document at www.MATS Copyright 2016, Ford Global Technologies, L
2、LC Page 1 of 20 COOLANT, ORGANIC ADDITIVE TECHNOLOGY (OAT), WSS-M97B44-D CONCENTRATE, FOR PASSENGER CAR AND LIGHT TRUCK 1. SCOPE The material defined by this specification is a coolant concentrate composed essentially of virgin monoethylene glycol and OAT corrosion inhibitors. When mixed 50/50 with
3、water it shall be a satisfactory fluid for vehicle cooling systems that contain aluminum engine components, radiators and heater cores, ferrous metals and copper brass. This material is for initial fill and service fill. 2. APPLICATION This specification was released originally for passenger car and
4、 light truck and commercial truck applications without the use of nitrites. It should not be mixed with previously approved coolants including silicated coolants per WSS-M97B51-A1. This material is not suitable for use with magnesium based alloys or zinc coatings (e.g. galvanized product). 3. REQUIR
5、EMENTS 3.1 APPROVED SOURCES This specification requires the use of approved sources. Only the sources identified on the Ford Approved Source List (ASL) can be used when this specification is listed on the drawing, CAD file, or other documents. The list of approved sources is located within Ford at
6、or available externally through a Ford Materials Engineer. 3.2 DOCUMENTATION 3.2.1 Approval of a new formulation Supplier must provide a completed and certified copy of the attached Supplement A and test reports demonstrating full compliance with all the requirements of this specification. Suppliers
7、 must provide full disclosure of their material formulation to, and be approved by, Materials Engineering. This disclosure is to a list of each additive by name, target wt%, min and max wt% with sub-supplier names for all components, in particular organic acid technology additives, azoles and other
8、corrosion additives, and ethylene glycol. Disclosure to also include production range levels for pH, reserve alkalinity and water content. All tests must be certified by a qualified and authorized representative of the test facility. Supplier must furnish DFMEA, PFMEA, Process Flow Diagram, and Cont
9、rol Plan. Final approval must be obtained from the Coolant Subject Matter Expert within Global Core Powertrain Cooling Engineering. A formulation/supplier/blending site cannot be added to the approved source list without this Coolant SME approval. 3.2.2 Approval of a new supplier to an approved form
10、ulation Same as 3.2.1 with surrogate test data where approved by Ford and testing and documentation, at minimum, in the attached PVP compare current coolant with proposed coolant Coupon metal weight change Current Coolant Current Coolant/ Cleaner Proposed Coolant Proposed Coolant/ Cleaner Cleaner Co
11、ntrol ASTM Corrosive Water Al Iron Steel Brass Solder Copper - A negative result indicates a weight gain 3.4.17 Storage Stability Hard water and temperature Supplier must report water quality conditions that may adversely affect the quality of the coolant (inhibitor depletion, lowered life, etc). Th
12、e coolant concentrate form, quality and chemical composition shall not be adversely affected, changed or impacted by storage up to 5 years under environmental conditions of normal distribution and storage. In-vehicle, the coolant mixed with water shall be stable so as not to change in form, quality
13、or composition to adversely affects heat transfer or corrosion inhibition. Hard water solution - Prepare hard water by adding 275mg of calcium chloride (CaCl2) to 1 liter synthetic corrosive water described in the test solution section of ASTM D1384. Prepare six 100 ml coolant samples using the test
14、 coolant and the hard water solution. Samples are to have coolant concentrations of 100% (samples 1 and 2), 75% (samples 3 and 4) and 50% (samples 5 and 6). Put all samples in clean, labeled polymethylpentene (PMP) bottles for testing. (French square-type bottle may aid visual check.) All samples mu
15、st pass hot and cold storage stability testing for the coolant to pass. ENGINEERING MATERIAL SPECIFICATION WSS-M97B44-D Copyright 2016, Ford Global Technologies, LLC Page 5 of 20 3.4.17.1 Hot Storage Stability - Samples 1, 3 and 5 are heat storage tested in a circulating air oven at 65 +/- 2 C for 1
16、4 days. Remove a 20 ml sample on days 2, 4, 7, 10 and 14. Allow to cool to room temperature. Check for precipitates, deposits, gelation and phase separation. “Fish eyes” on the top (from defoamer) is acceptable. If anything other than “fish eyes” is present, such as gel or material in solution or pr
17、ecipitate, terminate test and write as failure. Analyze coolant to determine effect. 3.4.17.2 Cold Storage Stability - Samples 2, 4 and 6 are cold storage tested at -40C for 14 days. Remove a 20 ml sample on days 2, 4, 7, 10 and 14. Allow to go to room temperature. Check for precipitates, deposits,
18、gelation and phase separation. “Fish eyes” on the top (from defoamer) is acceptable. If anything other than “fish eyes” is present, such as gel or material in solution or precipitate, terminate test and consider as a failure. Analyze coolant to determine effect. 3.4.18 Compatibility with Engine Hot
19、Test Fluids (See compatibility method in WSS-M97B56-A1) Any changes, other than “fish eyes” deem the hot test fluid incompatible with the coolant. 3.4.19 Compatibility with Coolant Seals 10% RSF (Test per WSS-M9P12-A2, para 3.2.2) Initial qualification is completed as part of DV testing, ongoing tes
20、ting for new programs is the responsibility of the seal suppliers. 3.4.20 Compatibility with Thermoplastic Materials (FLTM BO 130-01, 1000 h at 125 +/- 2 C) (Materials identified by program; contact Materials Engineering or PTI Core for a list.) 50/50 % coolant/water, 10 test specimens minimum, Unag
21、ed property values shall be determined at the time of the aged properties determination. Test plastics used in continuous contact with coolant). Test new coolant with approved coolant for comparison. 3.4.20.1 Tensile Strength at Max Load, Report (ISO 527, 5mm/minute test speed) 3.4.20.2 Impact Stren
22、gth, Charpy, Report (ISO 179, Test specimens to be notched before immersion, 23 +/- 2 C) 3.4.21 Compatibility with Heater Hose Material 3.4.21.1 Burst Pressure after Wet Heat Aging (ASTM D380, fill hose with 50/50 coolant and deionized water. Heat to 104 +/- 2C for 2000 hours) WSE-M96D34-A1 -A2 -A3
23、WSS-M96D34-A4/A5 % Change -28 -10 -45 -28 All hose diameters ENGINEERING MATERIAL SPECIFICATION WSS-M97B44-D Copyright 2016, Ford Global Technologies, LLC Page 6 of 20 3.4.21.2 EPDM Hose Extraction Test (Zinc/ Zinc Compound Extraction) Sulfur cured EPDM compounds employ zinc oxide and fatty acids su
24、ch as stearates in their formulations as cure activators. These activators can produce zinc stearate, which can be extracted by engine coolant and re-deposit elsewhere in the system. Excess amounts of this compound can potentially block coolant passages and cause overheat. The following procedure pr
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