FORD WSS-M5H20-B3-2000 FABRIC POLYESTER NONWOVEN RANDOM VELOUR LATEX IMPREGNATED《乳胶浸渍的RANDOM丝绒聚酯无纺布》.pdf
《FORD WSS-M5H20-B3-2000 FABRIC POLYESTER NONWOVEN RANDOM VELOUR LATEX IMPREGNATED《乳胶浸渍的RANDOM丝绒聚酯无纺布》.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M5H20-B3-2000 FABRIC POLYESTER NONWOVEN RANDOM VELOUR LATEX IMPREGNATED《乳胶浸渍的RANDOM丝绒聚酯无纺布》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Revisions Rev 03 2013 10 04 N Status No replacement named D. Murtonen, NA 2000 03 24 Editorial no technical change R. Moore1999 11 17 Activated L. Daniv-ZarewychControlled document at www.MATS Page 1 of 6 FABRIC, POLY
2、ESTER, NONWOVEN, RANDOM VELOUR, WSS-M5H20-B3 LATEX IMPREGNATED WSS-M5H20-B4 NOT TO BE USED FOR NEW DESIGN 1. SCOPE The material defined by this specification is a needled nonwoven random velour polyester fabric impregnated with a synthetic latex. 2. APPLICATION The WSS-M5H20-B3 specification was rel
3、eased originally for material used as a cover material for headliners on the 1999 Focus car. The WSS-M5H20-B4 specification was released originally for material used as a surface cover material for headliners and the 2001 Explorer. 3. REQUIREMENTS In addition to the requirements listed herein, the m
4、aterial when used in a unitized headliner assembly, or bonded to any substrate, shall also meet the requirements of WSS-M15P27-D, when tested as an assembly. Any other applications of this material would require prior approval of Materials Engineering. 3.1 QUALITY SYSTEM REQUIREMENTS Material suppli
5、ers and part producers must conform to Quality System Requirements, QS-9000. Material specification requirements are to be used for initial qualification of materials. A Control Plan for ongoing production verification is required. This plan must be reviewed and approved by the relevant Ford Materia
6、ls activity and/or Ford Supplier Technical Assistance (STA) prior to production parts submission. Appropriate statistical tools must be used to analyze process/product data and assure consistent processing of the materials. Part producers using this material in their products, must use Ford approved
7、 materials and must conform to a process control plan which has been approved by STA and/or the relevant Materials Activity. 3.2 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSIS Ford Motor Company, at its option, may conduct infrared and/or thermal analysis of material/parts supplied to this speci
8、fication. The IR spectra and thermograms established for initial approval shall constitute the reference standard and shall be kept on file at the designated material laboratory. All samples shall produce IR spectra and thermograms that correspond to the reference standard when tested under the same
9、 conditions. ENGINEERING MATERIAL SPECIFICATION WSS-M5H20-B3 WSS-M5H20-B4 Page 2 of 6 3.3 CONDITIONING AND TEST CONDITIONS All test values indicated herein are based on material conditioned in a controlled atmosphere of 23 +/- 2 C and 50 +/- 5 % relative humidity for not less than 24 h prior to test
10、ing and tested under the same conditions unless otherwise specified. 3.4 APPEARANCE (FLTM BI 109-01) The color, pattern, and finish shall match the approved Design Center master sample, or shall be specified on the engineering drawing. 3.5 COMPOSITION (ASTM D 276) Fabric 100 % Polyester Impregnated
11、Latex Synthetic latex 3.6 FABRIC REQUIREMENTS 3.6.1 Fiber Description and 100 % 3.3 - 4.5 dtex polyester Construction (ASTM D 1244) 3.6.2 Weight, range, g/m2 (FLTM BN 106-01) WSS-M5H20-B3/B4 Fiber 204 - 272 Impregnated Latex 8 - 10 Total 212 282 3.6.3 Method of Dyeing Solution Dyed 3.6.4 Thickness,
12、range, mm (SAE J882) WSS-M5H20-B3 WSS-M5H20-B4 2.0 - 2.6 2.4 - 2.9 3.6.5 Tear Strength, trapezoid, N, min (ASTM D 5733, Integration method) MD AMD 125 74 ENGINEERING MATERIAL SPECIFICATION WSS-M5H20-B3 WSS-M5H20-B4 Page 3 of 6 3.6.6 Breaking Strength Materials must meet the original breaking strengt
13、h and aged breaking strength as specified below. MD AMD Original Breaking Strength, N, min 400 450 (ASTM D 5034, Grab Method, 305 mm/minute jaw speed, average of 5 samples, each direction) After Aging, Retained Strength, %, min (FLTM BN 117-03, Method A and SAE J1885) 112.8 kJ/m2 40 225.6 kJ/m2 30 3
14、.6.7 Elongation at 110 N load, %, range (ASTM D 5034, grab method, 305 mm/minute jaw speed) WSS-M5H20-B3 WSS-M5H20-B4 MD MD 25 +/- 10 30 +/- 10 AMD AMD 25 +/- 10 30 +/- 10 3.6.8 Resistance to Heat Aging Rating 4 (7 days at 90 +/- 2 C) The test specimen must not show any change of color in excess of
15、above rating when examined per ISO-105-A02/AATCC Evaluation Procedure 1. Any spotty or non-uniform staining or discoloration shall be cause for rejection. The sample must not present any unpleasant odor when hot. 3.6.9 Heat Shrinkage, max 1.0 % (FLTM BN 105-01, except instead of water, expose sample
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