GMW GMW15170-2013 Material and Performance Requirements for Induction Hardened Type TR (Thread Rolling) Tapping Screws Issue 2 English.pdf
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1、 WORLDWIDE ENGINEERING STANDARDS Material Specification GMW15170 Material and Performance Requirements for Induction Hardened Type TR (Thread Rolling) Tapping Screws Copyright 2013 General Motors Company All Rights Reserved January 2013 Page 1 of 7 1 Scope This standard covers material and performan
2、ce requirements applicable to Type TR (thread rolling) tapping screws, heat treated to achieve properties comparable to GMW25, property class 10.9 screws with induction hardened points, in sizes 5 mm and larger. 1.1 Material Description. 1.1.1 Material Identification. When selecting the length of sc
3、rew for any application, it should be an objective to locate the induction hardened zone beyond the exit side of the mating component as depicted in Figure 1, or to maintain a minimum length of thread engagement equal to four full form non-induction hardened threads as illustrated in Figure 2. The p
4、erformance values specified in this standard are not valid for design use unless all conditions of the application are identical to the combination of laboratory conditions described in the testing procedure. 1.2 Symbols. Not applicable. 1.3 Typical Applications. The screws covered by this specifica
5、tion are suitable for use in general engineering and structural attachments. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. ASTM E140 SAE J423 ISO 898-1 SAE J864 2.2 GM Standards/Specifications. 9986167 GMW3059
6、GMW25 GMW3179 2.3 Additional References. TMC003 Material Safety Data Sheet guidance documents (available at ). 3 Requirements 3.1 Material and Process. Screws shall be made from cold heading quality, killed steel, spheroidize annealed (60% minimum spheroidization) wire conforming to medium carbon al
7、loy steel per ISO 898-1 property class 10.9 requirements. The material shall be capable of producing fasteners free of chemical segregation, porosity and micro cracks during cold working. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo repro
8、duction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW15170 Copyright 2013 General Motors Company All Rights Reserved January 2013 Page 2 of 7 Figure 1: Thread Engagement Requirements Figure 2: Thread Engagement Requirements 3.1.1 Heat Treatment. Screws s
9、hall be heat treated in a neutral atmosphere furnace. Carbon restoration of the surface to an extent not exceeding that of the core by more than 30 HV 0.3 points (3 HRC), not exceeding 393 HV 0.3. 3.1.1.1 Microstructure. Screws shall show no decarburization of the surface as determined by metallogra
10、phic examination at 100x. Partial or complete decarburization of screw thread would seriously impair the thread rolling properties of the screw. 3.1.1.2 Tempering Temperature. The minimum tempering temperature shall be 425 C. 3.1.1.3 Induction Hardening. The end portion of screws shall be induction
11、hardened to achieve a minimum surface hardness equivalent to 445 HV 0.3 (HRC 45) after stress relief. The pattern of the induction hardening shall conform to the limits designated in Figure 3, unless otherwise specified on the detail drawing. 3.1.1.4 Stress Relief. Subsequent to induction hardening,
12、 screws shall be stress relieved at 230 C minimum. Screws shall be held at the stress relieve temperature continuously for 1 h minimum. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from
13、 IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW15170 Copyright 2013 General Motors Company All Rights Reserved January 2013 Page 3 of 7 3.1.2 Finish. Electroplated and coated screws shall be suitably treated subsequent to plating or coating to avoid hydrogen embrittlement in accordance with the resp
14、ective finish specification. Figure 3: Induction Hardened Point Detail Table 1: Mechanical and Performance Requirements for Thread Rolling Screws (Metric (SI) Units) Nominal Screw Size and Pitch (mm) Tensile Fracture Load (kN) Torsional Torque to Fracture (Nm) Drive Torques Finish/Lubrication GMW317
15、9 Code A Phos and oil (Nm) All Other Finishes (Nm) All Finishes with 9986167 Lubrication (Nm) minimum minimum maximum maximum maximum 5 x 0.80 14.8 9.3 4.8 6.0 4.0 6 x 1.00 20.9 16.0 7.5 9.2 6.0 8 x 1.25 38.1 40.0 16.0 20.0 13.0 10 x 1.50 60.3 81.0 28.0 35.0 23.0 12 x 1.75 87.7 143.0 46.0 55.0 35.0
16、14 x 2.00 120.0 231.0 56.6 75.1 48.0 7/16-20 77.2 125.0 39.0 47.0 30.0 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 GMW15170 Copyright 20
17、13 General Motors Company All Rights Reserved January 2013 Page 4 of 7 3.2 Mechanical and Performance Requirements (Finished Screws). 3.2.1 Hardness. 3.2.1.1 Surface Hardness. Induction hardened threads shall have hardness equivalent to 450 HV 0.3 (HRC 45) minimum when tested as specified in 3.3.2.1
18、.1. The surface hardness outside the induction hardened zone shall not exceed the core hardness by more than 30 HV 0.3 (3 HRC) points, or exceed 392 HV 0.3 (HR15N80), when tested as specified in 3.3.2.1.2. 3.2.1.2 Core Hardness. Screws shall have core hardness beyond the induction hardened portion o
19、f 320 HV to 380 HV 0.3 (HRC 32 to HRC 39), when tested as specified in 3.3.1. 3.2.1.3 Induction Hardened Pattern. The extent of the induction hardened pattern shall be determined as specified in 3.3.2.1.3. 3.2.2 Tensile Strength. Screws, which have lengths equal to or longer than three times the nom
20、inal screw diameter, shall have tensile strengths not less than those specified in Table 1, when tested in accordance with 3.3.3. Screws of shorter lengths shall not be subjected to tensile testing. 3.2.3 Torsional Strength. Screws, which are not subject to tensile testing, shall not fail upon appli
21、cation of a torque less than the torsional value specified for the respective screw size in Table 1, when tested in accordance with 3.3.4. 3.2.4 Drive Torque. Screws shall, without deforming their own thread, form a mating internal thread in a test plate upon application of a torque equal to or less
22、 than the drive torque specified in Table 1 for the applicable screw size and finish, when tested in accordance with 3.3.5. 3.2.5 Ductility. There shall be no crack developed or separation of head from shank of screw when a permanent deformation of 10 degrees is induced between the plane of the unde
23、rhead bearing surface and a plane perpendicular to the axis of the screw, when tested in accordance with 3.3.6. 3.2.6 Hydrogen Embrittlement. Screws shall withstand without failure the hydrogen embrittlement test when tested in accordance with 3.3.7. 3.3 Test Methods. 3.3.1 Core Hardness. The core h
24、ardness shall be measured, using a HRC test, at the mid-radius of transverse section through the screw taken at a minimum distance equivalent to three times the thread pitch beyond the induction hardened portion. 3.3.2 Induction Hardened and Micro Hardness Pattern. A micro hardness instrument with K
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