FORD WSS-M99P39-A2-2007 PERFORMANCE STEEL SHEET BORON TREATED ALUMINIZED HIGH STRENGTH (NORTH AMERICA APPLICATIONS) 1400 MPa MINIMUM ULTIMATE TENSILE STRENGTH - TO BE USED WITH FO.pdf
《FORD WSS-M99P39-A2-2007 PERFORMANCE STEEL SHEET BORON TREATED ALUMINIZED HIGH STRENGTH (NORTH AMERICA APPLICATIONS) 1400 MPa MINIMUM ULTIMATE TENSILE STRENGTH - TO BE USED WITH FO.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M99P39-A2-2007 PERFORMANCE STEEL SHEET BORON TREATED ALUMINIZED HIGH STRENGTH (NORTH AMERICA APPLICATIONS) 1400 MPa MINIMUM ULTIMATE TENSILE STRENGTH - TO BE USED WITH FO.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2007 03 07 Activated D. JordanPrinted copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 1 of 8 PERFORMANCE, STEEL, SHEET, BORON TREATED, ALUMINIZED, WSS-M99P39-A1 HIGH STRENGTH (NORTH AMERICA APPLICATIONS) 1300 MPa MIN
2、IMUM ULTIMATE TENSILE STRENGTH PERFORMANCE, STEEL, SHEET, BORON TREATED, ALUMINIZED, WSS-M99P39-A2 HIGH STRENGTH (NORTH AMERICA APPLICATIONS) 1400 MPa MINIMUM ULTIMATE TENSILE STRENGTH PERFORMANCE, STEEL, SHEET, BORON TREATED, ALUMINIZED, WSS-M99P39-A3 HIGH STRENGTH (NORTH AMERICA APPLICATIONS) 1550
3、 MPa MINIMUM ULTIMATE TENSILE STRENGTH PERFORMANCE, STEEL, SHEET, BORON TREATED, ALUMINIZED, WSS-M99P39-A4 HIGH STRENGTH (NORTH AMERICA APPLICATIONS) 1600 MPa TYPICAL ULTIMATE TENSILE STRENGTH 1. SCOPE These specifications define performance requirements for a fully killed, fine grained, hot dip alu
4、minized, high strength, boron treated steel fabricated by any of several combined hot forming/die quenching (press hardening) methods. 2. APPLICATION These specifications were released originally for A and B pillar reinforcements, where a high strength-to-weight ratio is required. These specificatio
5、ns apply to parts that may require a roll forming or other cold forming step prior to austentization. Mechanical properties of the fully processed part are a function of the specific press hardening process selected for part manufacture. The complete part fabrication process shall be outlined in det
6、ail in the Process Flow Diagram/PFMEA and maintained in accordance with the documented Control Plan. Mechanical properties are expected to differ from point to point on a press hardened part. Sampling location(s) and orientation(s) for requirements of this specification shall be as specified on the
7、individual Engineering Drawing (see also para. 3.3.) Mechanical properties of the fully processed part, if not covered by this specification, shall be listed in detail as exceptions on the individual part Engineering Drawing. ENGINEERING MATERIAL SPECIFICATIONWSS-M99P39-A1/A2/A3/A4 Printed copies ar
8、e uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 2 of 8 2.1 LIMITATIONS Due to the hardenability response of this material, individual welding schedules must be developed for each application (see also para. 3.9). Austenitization by induction heating is not allowed. Stress relief an
9、nealing or hydrogen bake-out processes (per WSS-M99A3-A) may be necessary for certain process paths and shall be listed in detail in the Suppliers Control Plan. See also paragraph 3.5 De-scaling parts by acid pickling is not allowed. Prior to use, the fully processed part must be evaluated under the
10、 intended application conditions. Compliance with this specification does not imply that the engineered part will function for any potential application on a vehicle. 3. REQUIREMENTS 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Steel suppliers and part producers must conform to the Companys St
11、andard Requirements for Production Materials (WSS-M99P1111-A). 3.2 MANUFACTURING/PROCESS REQUIREMENTS Final material properties in the part shall be achieved primarily by heat treatment (austenitization/quench/temper). Forming of the blank prior to austenitization may be allowed, provided the incomi
12、ng mechanical properties specified in the relevant Engineering Materials Specification are achieved. Austenitization by induction heating is not allowed. The maximum allowable heating rate between 20 C and 700 C is 12 C/s, as measured on the parts. The maximum temperature of the part in the furnace
13、shall not exceed 930 C. Total furnace dwell time shall be 3 to 13 minutes. Quenching shall be accomplished by any method (e.g., coolant-jacketed die, direct water contact) that achieves final part properties and all other affected requirements of these specifications. The specific quenching method a
14、nd materials shall be described in detail in the part Suppliers Control Plan. The minimum allowable cooling rate from the austenitization temperature to 400 C is 27 C/s, as measured on the parts. The microstructure of the steel in the final part shall be effectively 100% tempered martensite with a s
15、mall amount of bainite likely and allowed. Stress relief annealing or hydrogen bake-out processes (per WSS-M99A3-A) may be necessary for certain process paths and shall be listed in detail in the part Suppliers Control Plan. See also paragraph 3.5. De-scaling parts by acid pickling is not allowed. E
16、NGINEERING MATERIAL SPECIFICATIONWSS-M99P39-A1/A2/A3/A4 Printed copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 3 of 8 3.3 MECHANICAL PROPERTIES (fully processed parts) (Location and orientation as shown on Engineering Drawing, 50 mm gauge length, ISO 6892/ASTM E 8M/EN 100
17、02) A1 A2 A3 A4 Ultimate Tensile Strength (MPa) 1300 min. 1400 min. 1550 min. 1600 typ. Yield Strength (MPa) 950 min. 1000 min. 1100 min. 1200 typ. % Elongation 6 typ. 5 typ. 5 typ. 5 typ. Mechanical properties shall be measured on material that has been subjected to the specific and intended press
18、hardening process-representative thermal profile and environmental exposure as well as a simulated paint bake cycle of 175 C for 30 minutes. The complete thermal profile shall be included with the mechanical property data. Mechanical properties shall be measured on tension test specimens sampled fro
19、m location(s) and orientation(s) on the part as identified on the individual Engineering Drawing. The alloyed aluminized coating shall not be removed prior to mechanical property testing. The alloyed aluminized coating thickness shall be included in the calculation of cross-sectional area. To verify
20、 that the minimum strength level is attained in areas of the part from which standard tension test specimens cannot be sampled, a protocol that correlates measured hardness values in those areas with known ultimate tensile strength values shall be included in the part Suppliers Control Plan. Alloyed
21、 aluminized coating shall be removed locally by mechanical means prior to hardness testing of the steel. In cases where different mechanical properties are required in different locations on a part, a complete description of the mechanical property requirements shall be included on the Engineering D
22、rawing. 3.4 FORMABILITY If needed to enable the fabrication of a specific component, restricted tolerances and/or additional property requirements (i.e., the “quality level“ of the steel) shall be developed by the affected manufacturing activity and the steel supplier. Examples include, but are not
23、limited to: restricted yield strength range, restricted gauge tolerance, specified minimum n-value, and specified surface roughness. The “quality level“ of the steel for a specific component: shall not conflict with specified requirements in paragraph 3 of this Engineering Material Specification sha
24、ll be described in detail on the manufacturing activity Sheet 3 (Americas), EU2066 (Ford of Europe), or part Suppliers Control Plan (independent stampers/fabricators) shall be a mandatory extension of these Engineering Material Specifications Steel cleanliness may involve the use of a mutually agree
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