FORD FLTM BA 013-04-2000 RESISTANCE SPOT WELDABILITY TESTS FOR HIGH STRENGTH STEELS《高强度钢的电阻点焊性能试验》.pdf
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1、 FORD LABORATORY TEST METHOD BA 013-04 Date Action Revisions 2000 08 30 Revised Editorial no technical change A. Cockman 2000 05 22 Editorial no technical change A. Cockman 1980 09 26 Printed copies are uncontrolled Page 1 of 21 Copyright 2000, Ford Global Technologies, Inc. RESISTANCE SPOT WELDABIL
2、ITY TESTS FOR HIGH STRENGTH STEELS Application This test method describes the standard procedures for testing the weldability of all specified types of high strength steels for resistance spot welding applications. All materials ordered and supplied must be qualified and accepted on the basis of the
3、se test procedures. Reference to this specification is made in the current Ford HSS materials specification. A major (M) and minor (m) test series are described herein. The major te st series is intended for use in obtaining supplier approvals. The minor test series is intended for use by Ford Manuf
4、acturing Divisions for evaluation of incoming steel shipments or for product quality control by steel suppliers. It is applicable only t o steels having previously obtained approval. Apparatus Required Spot Welder This test shall be conducted on an air - operated, single - point type spot welder, fe
5、aturing a low inertia welding system, and in general complying with the specifications of the Resistance Welders Manufacturing Association for the size of the required machine. It shall be equipped with a Ford approved resistance welding control featuring 90 firing and phase shift adjustments for he
6、at control. It shall have sufficient electrod e force to meet the requirements of the materials to be tested, at air line pressure of 550 kPa (80 psig) or less. A transformer tap switch setting shall be selected to meet all secondary current requirements at phase angle settings (heat control) betwee
7、n 85 % and 100 %. The welder must be equipped with electrode holders conforming to Ford Drawing 2ZU - 265 or equivalent and shall have furnished to it sufficient water flow capacity so that 0.13 L/sec (2 gal/min) at 24 +/ - 5 C (75 +/ - 10 F) will flow th rough each electrode holder. Cooling water f
8、or transformer, secondary conductors, control panels, etc. is to be supplied by a separate water circuit. Welding Electrodes 19.0 mm (0.75 in) Ford standard design electrode caps shall be used for most tests. The applicable design shall be selected from Ford standard electrode cap specification shee
9、t WC 1 - 1, page 1. The single exception is the 4.6 mm (0.18 in) face diameter electrode. A standard 16.0 mm (0.63 in)electrode specified on sheet WC 1, Page 1, may be used. They will be manufactured from a RWMA Class II material, complying with Ford Standard M2A107 - E. The electrode caps, adapters
10、, and holders to be used will be found under the following identifications: FORD LABORATORY TEST METHOD BA 013-04 Page 2 of 21 Copyright 2000, Ford Global Technologies, Inc. M) Reference identifies items applicable to Major test series. m) Reference identifies items applicable to Minor test series.
11、Electrode Caps: WC1A25A, WC1 - 1A26B, WC1 - 1A26C, WC1 - 1A27D (Selected for steel thickness to be welded) Cap Adapter: WB1S or WB1T - (Selected to fit welding ma chine) Electrode Holder Assembly: Drawing 2ZU - 265 or equivalent Measuring Tools (a) Knife - edge dial caliper of high quality and accur
12、acy to measure button size. (M, m) (b) Low resistance ohm - meter to measure surface resistivity (see Appendix II, Page 20). (Needed only for major test series.) (M) (c) Calibrated force gauge to measure electrode force directly. (M, m) Procedure 1. Definition (M, m) The button is the part of the we
13、ld metal which remains in the peel test (see Appendix Ia Page 13). It differs from the nugget. The nugget represents the total amount of metal melted and resolidified, as seen in a metallographic cross section. 2. Sample Selection and Preparation (M, m) (Major and minor test series) Steels for this
14、test shall be suppli ed in full coil width from any part of the coil but with identification whether front end, tail end, or middle section was used. A materials identification sheet must accompany the sample (in addition to any information transmitted separately). The infor mation identified as “ma
15、ndatory“ shown on the Materials Data Sheet, Appendix III, Page 21, must be supplied for all samples which are tested (major as well as minor test series). The “optional“ data is desirable for all new or experimental steels, in addi tion to the mandatory items. The material shall be sheared in 100 x
16、150 mm (4.0 x 6.0 in) pieces (M), both in longitudinal (rolling) and transverse direction. If the 150 mm length is with the rolling direction, this coupon will be called longitudinal cou pon, and if it is perpendicular to the rolling direction, it will be called transverse coupon. FORD LABORATORY TE
17、ST METHOD BA 013-04 Page 3 of 21 Copyright 2000, Ford Global Technologies, Inc. From selected, representative pieces, prepare a number of smaller longitudinal coupons of the sizes listed in Table 1, Page 10 (the 100 mm direction is to be t he rolling direction). Small transverse coupons are not need
18、ed. All coupons must be free from burrs. Care shall be exercised so as not to remove or add to any oils used for corrosion or shipping protection. (Surfaces must remain “as received“). (M, m) 3. Surface Resistivity Check (Major test series only) All material selected for spot weldability qualificati
19、on tests must be representative of normal production material in the thickness ordered. (Grinding - down heavier stock is not permissible). The sur face condition of the sheet shall be such that the total electrical resistance of both surfaces and the metal thickness itself shall be not more than 10
20、00 micro - ohms, as measured with standardized probes (see Appendix II, Page 20) placed on opposite sides of a single sheet and using 2.2 kN (500 lbs.) of force. Surfaces must be “as received“; degreasing solvents shall not be used. If, due to surface conditions (residual oil layers, dust, etc.) res
21、istance values are not stable (they usually decrease with ti me after clamping) the reading shall be taken not more than 30 seconds after the current and clamping force have been applied. 4. Electrode Conditioning (M, m) Install the electrode caps in the machine so that they are in alignment in the
22、vertical planes and their welding faces are parallel under the electrode force required for the test of the particular material and thickness. If necessary, electrode faces may be dressed by using a piece of emery cloth on a flat piece of metal and grinding one electrod e until faces are parallel. C
23、heck this alignment and electrode face condition by making a series of 25 welds at welding currents at least 25 % below values shown in the Weld Schedule for the particular steel under test (Table 2, pages 10 and 11). Specime ns for this test are 25 x 100 mm (1.0 x 4.0 in) coupons of the actual test
24、 material. Alignment is satisfactory if for the last few specimens the heat distribution and the indentation appears uniform and even over the full area of the weld. 5. Welding Tests, Major Test Series (M) This procedure shall be followed for type approval for weldability for any new type of steel,
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