FORD WSS-M99P35-A-2002 STRUCTURAL FOAM PERFORMANCE CAVITY REINFORCING TWO COMPONENT PUMPABLE ROOM TEMPERATURE CURING《室温固化型可泵送两组分空腔增强型结构用泡沫材料的性能》.pdf
《FORD WSS-M99P35-A-2002 STRUCTURAL FOAM PERFORMANCE CAVITY REINFORCING TWO COMPONENT PUMPABLE ROOM TEMPERATURE CURING《室温固化型可泵送两组分空腔增强型结构用泡沫材料的性能》.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M99P35-A-2002 STRUCTURAL FOAM PERFORMANCE CAVITY REINFORCING TWO COMPONENT PUMPABLE ROOM TEMPERATURE CURING《室温固化型可泵送两组分空腔增强型结构用泡沫材料的性能》.pdf(12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 2002 07 31 Activated J. Crist/N. Lindsay-Merte Printed copies are uncontrolled Page 1 of 12 Copyright 2002, Ford Global Technologies, Inc. STRUCTURAL FOAM PERFORMANCE, CAVITY REINFORCING, WSS-M99P35-A TWO CO
2、MPONENT PUMPABLE, ROOM TEMPERATURE CURING 1. SCOPE This specification defines the material performance requirements for cavity reinforcing two component, room temperature curing structural foam materials applied after paint prior to the trim shop. These materials are used to improve localized joint
3、stiffness and torsional rigidity. 2. APPLICATION The specification was originally released for the two component, room temperature curing structural foam materials applied after paint prior to the trim shop. The materials are used to improve localized joint stiffness and torsional rigidity in applic
4、ations such as pillar to roof, pillar to rocker, and rocker sections. Special consideration is required when evaluating the use of these materials in crash or crush sensitive locations. The Manufacturing Properties and Engineering Performance requirements defined in these specifications are based on
5、 laboratory sample testing and define the minimum acceptance criteria for material performance. The function and design requirements for the specific application are defined by the component SDS (Sub-system Design Specification), key life test requirements, or vehicle program requirements. The final
6、 performance of these materials is dependent on the processing parameters in the assembly plant. Prior to use, the materials must be evaluated under the intended application processing parameters. The choice of substrates, stamping and assembly plant processing conditions, dispensing system, and spe
7、cific design application may affect engineered part performance. Compliance with this specification does not guarantee the materials will function for all potential applications on a vehicle. 3. REQUIREMENTS 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers mus
8、t conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). ENGINEERING MATERIAL SPECIFICATION WSS-M99P35-A Page 2 of 12 3.2 SYSTEM COMPATIBILITY Initial material approval was based on a specific material system, which included the substrate, paint systems and material
9、. The originally approved material system was room temperature cured using specific production process parameters. The choice of substrates, paint systems, stamping and assembly plant processing conditions, dispensing system and specific design application may affect the material performance. If any
10、 of these parameters are changed, the material performance must be validated using the new parameters. 3.3 ENGINEERING APPLICATION Each application for these materials is unique to a specific design. The engineering drawing shall define the specific location, volume, compressive modulus, tensile mod
11、ulus, compressive yield stress, ultimate tensile strength, and/or other parameters critical for the given application. The materials approved to this specification are initially flowable and may require baffles, plugs, and other engineered parts to contain the foam in the desired location until the
12、material is gelled or fully cured. These baffles, plugs, and other engineered parts shall also be specified on the engineering drawing. Compatibility, functional testing, and manufacturing feasibility for the materials, baffles, plugs, and other engineered parts for each application shall be accesse
13、d and validated prior to production release by the releasing activity. A signed functional report shall be supplied to materials engineering for each application. 3.4 MATERIAL PROPERTIES All testing is conducted at maximum free volume expansion unless otherwise stated. Testing should be reported for
14、 each component and mixed material at agreed upon mix ratio. 3.4.1 Density Report (ISO 845/ASTM D 3574, Test A, interior density) The density variation for any one supplier shall be +/- 10 kg/m3, based on the recorded density of their original approved production sample. Aged density on each compone
15、nt shall not vary more that +/- 10 % when compared to initial density. Report for each component at 23 +/-2 C and aged for 7 days at 40C. Report for mixed material sample cured for 24 hours at 23 +/- 2 C. Reference para 4.3. ENGINEERING MATERIAL SPECIFICATION WSS-M99P35-A Page 3 of 12 3.4.2 Viscosit
16、y Report (SAE J1524, 2.64mm) The viscosity variation for any one supplier shall be +/- 10 kg/m3, based on the recorded viscosity of their original approved production sample. Aged viscosity on each component shall not vary more that +/- 10 % when compared to initial density. Report for each componen
17、t at 23 +/-2 C and aged for 7 days at 40 C. Report for mixed material sample cured for 24 hours at 23 +/- 2 C. Reference para 4.4. 3.4.3 Free Volume Expansion Report (Experimental Design) Report the relationship between free volume expansion, cured material density, mass and material dispense temper
18、ature. The free volume change variation for any one supplier shall be +/- 5 %, based on the recorded volume change of their original approved production sample. Reference para 4.5. 3.4.4 Volatile Organic Compounds (VOC) Content Report (EPA Method 24) The VOC Content variation for any one supplier sh
19、all be +/- 0.01 kg/L, based on the recorded VOC Content of their original approved production sample. Reference para 4.6. 3.4.5 Material Reactivity (Experimental Design) Report the relationship between material reactivity and material dispense temperature. Specific information with regard to materia
20、l reactivity shall include, but is not limited to, the following: Cure time Peak material exotherm temperature vs mass Material purge requirements 3.4.6 Process Operating Window Report (Experimental Design) Using production level dispensing equipment, conduct a design of experiments to define the op
21、erating parameters required to achieve the vehicle specific targets for compression modulus and volume fill. Requirements for scope of design of experiments as specified by Materials Engineering. ENGINEERING MATERIAL SPECIFICATION WSS-M99P35-A Page 4 of 12 Report parameters used for design of experi
22、ments, measured response, and summarize the effects of each variable. Provide recommended operating parameters to Ford for specific dispensing equipment utilized. 3.4.7 Differential Scanning Calorimetry Report (20 +/- 1 mg sample size, 10 C/min heating rate, 25 - 250 C temperature range, submit Heat
23、 Flow vs. Temperature curve) Report onset of reaction Report glass transition point of cured material at recommended mix ratio 3.5 MANUFACTURING PROPERTIES All testing is conducted at maximum free volume expansion unless otherwise stated. 3.5.1 Material Consistency Shall be a smooth homogenous mixtu
24、re, free from entrapped air, foreign materials and any properties detrimental to normal production operation. 3.5.2 Color Each component is distinctly different in color. The mixed material shall meet manufacturing process control requirements. Final approval of material color for production shipmen
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