GMW GMW16615-2011 Steel Tubes and Profiles with Multi-Wall Thickness (TMT) Issue 1 English《带有多层墙厚(TMT)的钢管和型材 第1次出版(英文版本)》.pdf
《GMW GMW16615-2011 Steel Tubes and Profiles with Multi-Wall Thickness (TMT) Issue 1 English《带有多层墙厚(TMT)的钢管和型材 第1次出版(英文版本)》.pdf》由会员分享,可在线阅读,更多相关《GMW GMW16615-2011 Steel Tubes and Profiles with Multi-Wall Thickness (TMT) Issue 1 English《带有多层墙厚(TMT)的钢管和型材 第1次出版(英文版本)》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、 WORLDWIDE ENGINEERING STANDARDS Material Specification GMW16615 Steel Tubes and Profiles with Multi-Wall Thickness (TMT) Copyright 2011 General Motors Company All Rights Reserved September 2011 Originating Department: North American Engineering Standards Page 1 of 12 1 Scope This specification cove
2、rs the requirements for heat-treatable or non-heat-treatable extruded low carbon steel tubes with multi-wall thickness (TMT) and profiles used in the manufacture of structural parts requiring low, middle and high strength. The usage of this standard is indicated for applications which require low we
3、ight and high performance. Typical applications include door impact beams, cross car beam, bumper impact beams, reinforcements for impact structures, bull bars and general tubular parts, and specific cases of reduction or elimination of stamping tools by employment of split techniques of symmetrical
4、 TMT profiles according to 3.1.4.3. 1.1 Material Description. The particular application shall determine the extrusion operations to produce the finished steel tube and profile. 1.1.1 Resistance Welded Mechanical Tubing. Primary tubes and profiles supplied to this specification are roll formed from
5、steel strip to the desired shape and dimension, plasma or electrical resistance welded into a tube, and then extrusion process to achieve the desired profile and variable thickness, the heat treated may be made to reach the strength mechanical properties. 1.1.2 TMT Extruded Tubes. Tubes manufactured
6、 by seamless process or rolled steel strip according to item 1.1.1 are submitted in cold extrusion process to construct a desired profile with variable wall thickness. The cold extrusion process causes a work hardening and a mechanical strength improving, for higher strength grades, an induction hea
7、t treatment is performed later to achieve the final mechanical property requirements. The specified grades are low strength with multi-wall thickness (LSTMT) type ferrite + pearlite (FP), medium strength with multi-wall thickness (MSTMT) and high strength with multi-wall thickness (HSTMT) for the th
8、ree types of multi-phases (MP) such as ferrite and pearlite, bainite and/or martensite. The TMT tube final external profile may be circular, square or any other form specified by Product Engineering. The microstructure of the finished tubes may consist of ferrite and pearlite after extrusion operati
9、on and martensite and/or bainite for heat-treatable tubes. 1.1.3 Material Identification. The GMW base metal specification number defines the material designation, steel product type, grade, and finish type. The sheet steel product type for manufactured primary tubes are cold rolled (CR) or hot roll
10、ed (HR) products. The steel grades will correspond to the chemical and mechanical requirements as shown in Tables 1 through 3. The finish type, an alpha character, will be designated with the finish unexposed (U). The descriptive items are used together to form the coding system. Examples of the cod
11、ing system for engineering part drawings, electronic math data files, and/or manufacturing engineering documents are shown in Section 8. GM WORLDWIDE NORTH AMERICA EUROPE LATIN AMERICA ASIA PACIFIC GMW16615-M-ST-T-LS TMT 787T/775Y FP - - - - GMW16615-M-ST-T- MS TMT 1050T/950Y MP - - - - GMW16615-M-S
12、T-T- HS TMT 1475T/1250Y MP - - - - 1.2 Symbols. Not applicable. 1.3 Typical Applications. Typical applications are uncoated or pre-coated thin gauge tubular structural parts or other design products derivates from tubes requiring yield and tensile strengths exceeding 775 MPa and 787 MPa respectively
13、. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16615 Copyright 2011 General Motors Company All Rights Reserved September 2011 Page 2 o
14、f 12 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. ASTM A513 ASTM E1077 ISO 6892 SAE J419 ASTM A751 DIN 50602 JFS A 1001 ASTM E45 ISO 898-1 JIS Z2201 2.2 GM Standards/Specifications. 2.3 Additional References.
15、x TMC003 Material Safety Data Sheet guidance documents (available at ). 3 Requirements The following section defines specific requirements for material on delivery, processing, performance and other stages during life cycle. Deviations required for individual GM business units are listed in Deviatio
16、ns at the end of this document. Parts supplied according to this specification must undergo successful trials that fully meet end-product requirements. In the event of any changes to the heat treatment and/or manufacturing process to which the part was successfully validated, the appropriate enginee
17、ring group must be notified and the part must be re-validated with the new process. 3.1 Requirements on Delivery. 3.1.1 Chemical Requirements. Base metal composition based on product (TMT tube and profile) analysis determined per ASTM A751 shall conform to the requirements of Table 1 and/or shall be
18、 agreed upon between supplier and purchaser. Additional demands and restrictions may be imposed by local Materials Engineering organizations depending on the application. Table 1: Chemical Composition Note 1, Note 2 TMT Tubes and Profiles Grades Element LSTMT; MSTMT HSTMT Carbon 0.25 max. 0.28 max.
19、Manganese 1.6 max. 0.6 to 1.8 Aluminum - 0.01 min. Silicon 0.15 to 0.50 0.15 to 0.80 Phosphorus 0.035 max. 0.035 max. Sulfur 0.04 max. 0.03 max. Chromium 0.25 max. 0.35 max. Nitrogen 0.25 max. 0.15 max. Boron - - Titanium - 0.15 max. Copper 0.025 max. 0.45 max. Molybdenum - 0.08 max. Niobium 0.20 ma
20、x. 0.26 max. Vanadium 0.25 max. 0.25 max. Note 1: Chemical composition based on product (coil or sheet/blank, tube) analysis. Note 2: max. = maximum, min. = minimum GMW3011 GMW14019 GMW14729 GMW16549 GMW3059 GMW14700 GMW14829 GMW3335 GMW14704 GMW16170 Copyright General Motors Company Provided by IHS
21、 under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16615 Copyright 2011 General Motors Company All Rights Reserved September 2011 Page 3 of 12 3.1.2 Mechanical Requirements. Table 2: Mediu
22、m and Low Strength Extruded Tubular Product Mechanical Properties Note 1 Mechanical Property Requirements TMT Tube and Profile Condition Designation Yield Strength at 0.2% Offset (MPa) Tensile Strength (MPa) Total Elongation (L0 50 mm) Total Elongation (L0 80 mm) Grade GMW16615-M-ST-T-LSTMT-787T/775
23、Y-FP minimum 775 minimum 787 minimum 7% minimum 6% Grade GMW16615-M-ST-T- MSTMT-1050T/950Y-FP minimum 950 minimum 1050 minimum 7% minimum 6% Note 1: Mechanical properties are measured conform to 3.1.2.1. Table 3: High Strength Extruded Tubular Product Mechanical Properties Note 1 Mechanical Property
24、 Requirements TMT Tube and Profile Condition Designation Yield Strength at 0.2% Offset (MPa) Tensile Strength (MPa) Total Elongation (L0 50 mm) Total Elongation (L0 80 mm) Grade GMW16615-M-ST-T- HSTMT-1475T/1250Y-MP minimum 1250 minimum 1475 Minimum 6% minimum 5% Note 1: Mechanical properties are me
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