FORD WSS-M3B82-A2-2009 PRETREATMENT SOLUTION ZIRCONIUM OXIDE FEED MATERIAL TO BE USED WITH FORD WSS-M99P1111-A (Shown on WSS-M3B82-A1)《进料氧化锆的预处理溶液 与标准FORD WSS-M99P1111-A一起使用 列于.pdf
《FORD WSS-M3B82-A2-2009 PRETREATMENT SOLUTION ZIRCONIUM OXIDE FEED MATERIAL TO BE USED WITH FORD WSS-M99P1111-A (Shown on WSS-M3B82-A1)《进料氧化锆的预处理溶液 与标准FORD WSS-M99P1111-A一起使用 列于.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M3B82-A2-2009 PRETREATMENT SOLUTION ZIRCONIUM OXIDE FEED MATERIAL TO BE USED WITH FORD WSS-M99P1111-A (Shown on WSS-M3B82-A1)《进料氧化锆的预处理溶液 与标准FORD WSS-M99P1111-A一起使用 列于.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2009 06 10 Activated N. B. Chamberlain, T. Honey, J. Richardson, J. Tardiff, NA Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 1 of 5 PRETREATMENT SOLUTION, ZIRCONIUM OXIDE, INITIAL FILL WSS-M3B82-A1 PRETREA
2、TMENT SOLUTION, ZIRCONIUM OXIDE, FEED MATERIAL WSS-M3B82-A2 PRETREATMENT SOLUTION, ZIRCONIUM OXIDE, ADJUSTMENT MATERIAL WSS-M3B82-A3 1. SCOPE The materials defined within these specifications are the basic components for the automotive pretreatment system using zirconium oxide. These materials shall
3、 provide good paint adhesion to the metal surface with adequate durability and corrosion resistance. 2. APPLICATION These specifications were originally released for zirconium oxide pretreatment bath materials used in automotive assembly plants. It is intended for use over such substrates as cold ro
4、lled steel, galvanized, galvannealed and aluminum parts. WSS-M3B82-A1 Zirconium Oxide Pretreatment Solution, Initial Fill is the bath at the point of initial make-up prior to production vehicles being processed. WSS-M3B82-A2 Zirconium Oxide Pretreatment Solution, Feed Material are the individual rep
5、lenisher packages to maintain the pretreatment bath during production. WSS-M3B82-A3 Zirconium Oxide Pretreatment Solution, Adjustment Material are materials used to adjust the bath properties such as pH and cation contamination reduction. 3. REQUIREMENTS 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATE
6、RIALS Material Suppliers and part producers must conform to the Companys Standard For Production Materials (WSS-M99P1111-A). 3.2 COMPOSITION Supplier must maintain the following characteristics to a maximum tolerance of plus or minus 5% of the initial sample or as reported with the initial sample. A
7、ll other essential components must be reported with the initial sample and maintained as part of the Control Plan as required in 3.1. ENGINEERING MATERIAL SPECIFICATIONWSS-M3B82-A1/A2/A3 Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 2 of 5 3.2.1 Initial Fill and
8、Feed Materials with Zirconium Oxide: (WSS-M3B82-A1 and A2) 3.2.1.1 Zirconium Initial Sample+- 5% (Atomic absorption or Inductively coupled plasma emission spectrometry) 3.2.1.2 Density, kg/l at 25 C Initial Sample +- 0.03 kg/l (ASTM 1475) 3.2.2 Feed Materials and Adjustment Materials: (WSS-M3B82-A2
9、and A3) 3.2.2.1 Critical constituents Initial Sample +- 5% (atomic absorption or Inductively coupled plasma emission spectrometry) 3.2.2.2 Density, kg/l at 25 C Initial Sample +- 0.03 kg/l (ASTM 1475) 3.3 COMPOSITIONAL ANALYSIS Ford Motor Company, at its option, may conduct mass spectroscopy and/or
10、other analysis of material/parts supplied to this specification. The analyses established for initial approval shall constitute the reference standard and shall be kept on file at the designated material laboratory. All samples shall produce the same analyses that correspond to the reference standar
11、d when tested under the same conditions. 3.4 PHYSICAL PROPERTIES The coating where applied will be continuous and meet the requirement of either the coating weight as described below or coating thickness. The technique employed to initially define the coating (Auger/XRF or ICP) as part of the submis
12、sion for material approval will be required to redefine the coating for all future comparative work. 3.4.1 Coating Weight Cold-Rolled Steel 20 - 200 mg/m2Electrogalvanized Steel 40 - 300 mg/m2Hot-dipped Galvanized Steel 40 - 300 mg/m2 Galvannealed Steel 40 - 300 mg/m2 Aluminum 10 - 50 mg/m23.4.2 Coa
13、ting Thickness (See paragraph 4.3) Cold-Rolled Steel 15 85 nm Electrogalvanized Steel 60 200 nm Hot-dipped Galvanized Steel 40 180 nmGalvannealed Steel 40 210 nmAluminum 10 120 nm Minimum and maximum coating weight and coating thickness levels are not be to be violated. Coating weight and coating th
14、ickness are dependent on dwell time in the bath. Tighter ranges for coating weight and coating thickness will be determined at the plant level in the control plan. ENGINEERING MATERIAL SPECIFICATIONWSS-M3B82-A1/A2/A3 Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page
15、3 of 5 3.5 PREPARATION OF TEST PANELS Test panels shall be prepared according to the exterior performance specification WSS-M2P180. 3.6 PROCESS WINDOW DEFINITION The supplier shall perform a Design of Experiments (DOE) utilizing response surface analysis to determine the Process Window for the syste
16、m. Four variables are recommended-% zirconium components concentration, pH, process time and process temperature. These variables should be run with good cleaning and suspect cleaning as outside array elements to the variables previously defined. An initial screening experiment should be run to dete
17、rmine what level will generate a window which includes testing to failure. This screening experiment should be reviewed with the Materials Engineer to set up the final DOE. Response attributes to the DOE should be based on the materials tested. Minimal critical testing required: Adhesion (FLTM BI 10
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