ASTM F106-2006 Standard Specification for Brazing Filler Metals for Electron Devices《电子器件用金属铜焊料的标准实施规范》.pdf
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1、Designation: F 106 06Standard Specification forBrazing Filler Metals for Electron Devices1This standard is issued under the fixed designation F 106; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A numbe
2、r in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This specification covers requirements or filler metalssuitable for brazing internal parts and other critical areas ofelectron devices in
3、a nonoxidizing atmosphere (Note 1).1.2 These materials are available in strip or wire or preformsmade by blanking the strip or bending the wire. Powders arealso available.NOTE 1Brazing filler metals for general applications are specified inAWS Specification A 5.8.1.3 The values stated in inch-pound
4、units are to be regardedas the standard. The values given in parentheses are forinformation only.2. Referenced Documents2.1 ASTM Standards:2B 214 Test Method for Sieve Analysis of Metal PowdersE11 Specification for Wire Cloth and Sieves for TestingPurposesF19 Test Method for Tension and Vacuum Testi
5、ng Metal-lized Ceramic Seals2.2 American Welding Society:3A 5.8 Specification for Brazing Filler MetalsC 3.2 Method for Evaluating the Strength of Brazed JointsC 3.3 Recommended Practices for Design, Manufacture andInspection of Critical Brazed Components3. Classification3.1 Brazing filler metals wh
6、ich are vacuum grade and areclassified on the basis of chemical composition shown in Table1. The difference between Grade 1 and 2 are the impuritylimitations. Grade 1 required generally lower levels of impu-rities.4. Ordering Information4.1 Orders for material to this specification shall include the
7、following information:4.1.1 Quantity,4.1.2 Dimensions and tolerances (Table 1),4.1.3 Form (rod, bar, wire, etc.),4.1.4 AWS classification (Table 2),4.1.5 Grade 1,4.1.6 Special requirements or exceptions, and4.1.7 Certification State if certification is required.5. Materials and Manufacture5.1 The br
8、azing filler metals shall be vacuum grade andfabricated by any method that yields a product conforming tothe requirements of this specification.6. Chemical Composition6.1 The finished brazing filler metal shall conform to thechemical composition shown in Table 2 for Grade 1 material.7. Mechanical Pr
9、operties7.1 Unless otherwise specified, wire shall be furnished insoft temper most suitable for hand feeding or ring winding onmandrels. A minimum elongation of 10 % in 2 in. (50.8 mm)indicates that the wire is annealed.1This specification is under the jurisdiction of ASTM Committee F01 onElectronic
10、s and is the direct responsibility of Subcommittee F01.03 on MetallicMaterials.Current edition approved Jan. 1, 2006. Published January 2006. Originallyapproved in 1969 as F 106 69 T. Last previous edition approved in 2000 asF 106 00.2For referenced ASTM standards, visit the ASTM website, www.astm.o
11、rg, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3.Available from American Welding Society (AWS), 550 NW LeJeune Rd.,Miami, FL 33126.1*A Summary of Changes section appears at t
12、he end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.7.2 Unless otherwise specified, strip shall be furnished inhard as-rolled temper to facilitate clean blanking of thin shimsor preforms. A maximum elongation of 5
13、% in 2 in. designatesthe strip as hard.8. Dimensions and Permissible Variations8.1 These materials must conform to the dimensional limi-tations listed in Table 2 for strip, wire, and preforms or Table3 for size of powdered brazing filler metals.9. Finish9.1 The surface of strip, wire, or preforms sh
14、all be assmooth and free of dirt, oxide, pits, deep scratches, seams,slivers, stains, scale, blisters, edge cracks, trimming burrs,waves, wrinkles, and other defects as best commercial practicewill permit.10. Melting Test (for Cleanness and Spatter)10.1 Requirements Since cleanness and spattering ar
15、eimportant considerations in the use of these materials, a specialmelting test is used to determine their suitability. For this test,the melting temperatures required are listed in Table X1.1. Thematerial shall also comply with the requirements of 10.2.4.10.2 Procedure:10.2.1 The melting test is per
16、formed on an “as-received”sample. Cut approximately 1 g (with clean, dry tools) into aclean, dense polycrystalline 99.5 % alumina crucible or clean,fused silica crucible or boat which has been precleaned by airfiring at 1100C (2012F), min, and stored in a dry, dust-freelocation until required.10.2.2
17、 Place samples and crucible in a dense polycrystallineor fused silica combustion tube muffle or equivalent, purgewith dry (40C) (40F) hydrogen, and heat to 20C (36F)above the liquidus, hold for 10 min, and then cool to under65C (149F) before stopping the hydrogen flow and removingthe sample for insp
18、ection.NOTE 2If the sample does not melt under these conditions, thecomposition is wrong or the temperature measurement is incorrect.10.2.3 If it is desired also to test for spattering, bridge thecrucible or boat by a nickel channel whose legs are designed toallow a small clearance, 0.06 in. (1.6 mm
19、) max. above thecrucible. An additional requirement is that the bridge be nomore than 0.38 in. (9.5 mm) above the metal bead.10.2.4 Examine the metal bead at 53 magnification. Just alight smokiness with no discrete black specks is the worst thatis permitted. Since this examination depends on experie
20、nce andjudgment, standards can be developed by running carbonTABLE 1 Dimensional Tolerances (All Plus or Minus)Width Tolerances, in. (mm)Thickness 8 in. (200 mm) wide and under Over 8 in. (200 mm) wideLess than 0.020 (0.5)0.020 to 0.050 (0.5 to 1.25), incl0.005 (0.125)0.010 (0.250)0.015 (0.38)0.015
21、(0.38)Thickness TolerancesStripThickness, in. (mm) 8 in. (200 mm) wide and under Over 8 in. (200 mm) wideUp to 0.002 (0.05), incl 0.0002 (0.005) 0.0005 (0.0125)Over 0.002 to 0.003 (0.05 to 0.075), incl 0.0003 (0.0075) 0.0006 (0.015)Over 0.003 to 0.004 (0.075 to 0.10), incl 0.0004 (0.010) 0.0007 (0.0
22、18)Over 0.004 to 0.006 (0.10 to 0.15), incl 0.0005 (0.0125) 0.0008 (0.02)Over 0.006 to 0.013 (0.15 to 0.33), incl 0.0010 (0.025) 0.0013 (0.033)Over 0.013 to 0.021 (0.33 to 0.53), incl 0.0015 (0.038) 0.0018 (0.046)Over 0.021 to 0.026 (0.53 to 0.66), incl 0.0020 (0.05) 0.0020 (0.05)Over 0.026 to 0.050
23、 (0.66 to 0.125), incl 0.0020 (0.05) 0.0050 (0.125)Camber TolerancesStrip (Edgewise Bowl)0.5 in. (12.5 mm) max in 6 ft (1.8 m)Diameter TolerancesWireDiameter, in. (mm) Tolerance, in. (mm)0.010 to 0.020 (0.250 to 0.5) 0.0003 (0.0075)Over 0.020 to 0.030 (0.5 to 0.75) 0.0005 (0.0125)Over 0.030 to 0.040
24、 (0.75 to 1.0) 0.0007 (0.018)Over 0.040 to 0.050 (1.0 to 1.25) 0.0008 (0.02)Over 0.050 to 0.060 (1.25 to 1.5) 0.0010 (0.025)Over 0.060 to 0.080 (1.5 to 2.0) 0.0015 (0.038)Over 0.080 to 0.250 (2.0 to 6.3) 0.0020 (0.05)F106062determinations and comparing with the maximum carbonlimitation listed in Tab
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