Carbon Steel, Alloy Steel And Weatherng Steel Structural Bolts, Hex Cap Screws and Studs Heat Treated to 120/105/90 ksi Minimum Tensile Strength
Type | Description |
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Type I | Plain carbon steel, carbon boron steel, alloy steel, or alloy boron steel |
Type 2 | Withdrawn 2003 |
Type 3 | Weathering steel |
Fastener Size and Surface Finish | Nut Grade and StyleA |
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1/4 to 11/2 in., plain (or with a coating of insufficient thickness to require over-tapped nuts) | B, hex |
Over 11/2 to 3 in., plain (or with a coating of insuffi- cient thickness to require over-tapped nuts) | A, heavy hex |
1/4 to 3 in., zinc-coated (or with a coating thickness requiring over-tapped nuts) | DH, heavy hex |
1/4 to 3 in., Type 3 | C3, Dh4, heavy hex |
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Types of Steel | Elements | Heat Analysis | Product Analysis |
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Carbon Steel | C | 0.30-0.52 | 0.28-0.55 |
Mn, min | 0.60 | 0.57 | |
P, max | 0.040 | 0.048 | |
S, max | 0.050 | 0.058 | |
Si | 0.15-0.30 | 0.13-0.32 | |
Boron Steel | C | 0.30-0.52 | 0.28-0.55 |
Mn, min | 0.60 | 0.57 | |
P, max | 0.040 | 0.048 | |
S, max | 0.050 | 0.058 | |
Si | 0.10-0.30 | 0.08-0.32 | |
B | 0.0005-0.003 | 0.0005-0.003 | |
Alloy Steel | |||
C | 0.30-0.52 | 0.28-0.55 | |
Mn, min | 0.60 | 0.57 | |
P, max | 0.035 | 0.040 | |
S, max | 0.040 | 0.045 | |
Si | 0.15-0.35 | 0.13-0.37 | |
Alloying Elements | A | A | |
Alloy Boron Steel | |||
C | 0.30-0.52 | 0.28-0.55 | |
Mn, min | 0.60 | 0.57 | |
P, max | 0.035 | 0.040 | |
S, max | 0.040 | 0.045 | |
Si | 0.15-0.35 | 0.13-0.37 | |
B | 0.0005-0.003 | 0.0005-0.003 | |
Alloying Elements | A | A | |
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Element | Analysis | Type 3 FastenersA | ||||||
---|---|---|---|---|---|---|---|---|
A | B | C | D | E | F | |||
C | Heat analysis | 0.33-0.40 | 0.38-0.48 | 0.15-0.25 | 0.15-0.25 | 0.20-0.25 | 0.20-0.25 | |
Product analysis | 0.31-0.42 | 0.36-0.50 | 0.14-0.25 | 0.14-0.25 | 0.18-0.27 | 0.19-0.25 | ||
Mn | Heat analysis | 0.90-1.20 | 0.70-0.90 | 0.80-1.35 | 0.40-1.20 | 0.60-1.00 | 0.90-1.20 | |
Product analysis | 0.86-1.24 | 0.67-0.93 | 0.76-1.39 | 0.36-1.24 | 0.56-1.04 | 0.86-1.24 | ||
P | Heat analysis | 0.035 max | 0.06-0.12 | 0.035 max | 0.035 max | 0.035 max | 0.035 max | |
Product analysis | 0.040 max | 0.06-0.125 | 0.040 max | 0.040 max | 0.040 max | 0.040 max | ||
S | Heat analysis | 0.040 max | 0.040 max | 0.040 max | 0.040 max | 0.040 max | 0.040 max | |
Product analysis | 0.045 max | 0.045 max | 0.045 max | 0.045 max | 0.045 max | 0.045 max | ||
Si | Heat analysis | 0.15-0.35 | 0.30-0.50 | 0.15-0.35 | 0.25-0.50 | 0.15-0.35 | 0.15-0.35 | |
Product analysis | 0.13-0.37 | 0.25-0.55 | 0.13-0.37 | 0.20-0.55 | 0.13-0.37 | 0.13-0.37 | ||
Cu | Heat analysis | 0.25-0.45 | 0.20-0.40 | 0.20-0.50 | 0.30-0.50 | 0.30-0.60 | 0.20-0.40 | |
Product analysis | 0.22-0.48 | 0.17-0.43 | 0.17-0.53 | 0.27-0.53 | 0.27-0.53 | 0.17-0.43 | ||
Ni | Heat analysis | 0.25-0.45 | 0.50-0.80 | 0.25-0.50 | 0.50-0.80 | 0.30-0.60 | 0.20-0.40 | |
Product analysis | 0.22-0.48 | 0.47-0.83 | 0.22-0.53 | 0.47-0.83 | 0.27-0.63 | 0.17-0.43 | ||
Cr | Heat analysis | 0.45-0.65 | 0.50-0.75 | 0.30-0.50 | 0.50-1.00 | 0.60-0.90 | 0.45-0.65 | |
Product analysis | 0.42-0.68 | 0.47-0.83 | 0.27-0.53 | 0.45-1.05 | 0.55-0.95 | 0.42-0.68 | ||
V | Heat analysis | B | B | 0.020 min | B | B | B | |
Product analysis | B | B | 0.010 min | B | B | B | ||
Mo | Heat analysis | B | 0.06 max | B | 0.10 max | B | B | |
Product analysis | B | 0.07 max | B | 0.11 max | B | B | ||
Ti | Heat analysis | B | B | B | 0.05 max | B | B | |
Product analysis | B | B | B | 0.06 max | B | B | ||
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Nominal Diameter, in. | Nominal Length, in. | Brinell | Rockwell C | ||
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Min | Max | Min | Max | ||
1/4 to 1, inclusive | Less than 2D | 253 | 319 | 25 | 34 |
2D and over | . . . | 319 | . . . | 34 | |
Over 1 to 11/2 , inclusive | Less than 3D | 223 | 286 | 19 | 30 |
3D and over | . . . | 286 | . . . | 30 | |
Over 11/2 to 3, inclusive | Less than 3D | 183 | 235 | . . . | . . . |
3D and over | . . . | 235 | . . . | . . . | |
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Bolt or Stud Diameter, in. | Threads per in.A | Stress Area,B in. 2 | Tensile Load, min, lbfC | Proof Load, Length Measurement Method, lbfC | Alternative Proof Load, Yield Strength Method (0.2 % Offset), lbfC | ||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
1/4 | 20 | 0.0318 | 3 800 | 2 700 | 2 900 | ||||||||||||||||
5/16 | 18 | 0.0524 | 6 300 | 4 450 | 4 800 | ||||||||||||||||
3/8 | 16 | 0.0775 | 9 300 | 6 600 | 7 100 | ||||||||||||||||
7/16 | 14 | 0.1063 | 12 750 | 9 050 | 9 800 | ||||||||||||||||
1/2 | 13 | 0.1419 | 17 050 | 12 050 | 13 050 | ||||||||||||||||
9/16 | 12 | 0.182 | 21 850 | 15 450 | 16 750 | ||||||||||||||||
5/8 | 11 | 0.226 | 27 100 | 19 200 | 20 800 | ||||||||||||||||
3/4 | 10 | 0.334 | 40 100 | 28 400 | 30 700 | ||||||||||||||||
7/8 | 9 | 0.462 | 55 450 | 39 250 | 42 500 | ||||||||||||||||
1 | 8 | 0.606 | 72 700 | 51 500 | 55 750 | ||||||||||||||||
11/8 | 7 | 0.763 | 80 100 | 56 450 | 61 800 | ||||||||||||||||
11/4 | 7 | 0.969 | 101 700 | 71 700 | 78 500 | ||||||||||||||||
13/8 | 6 | 1.155 | 121 300 | 85 450 | 93 550 | ||||||||||||||||
11/2 | 6 | 1.405 | 147 500 | 104 000 | 113 800 | ||||||||||||||||
13/4 | 5 | 1.90 | 171 000 | 104 500 | 110 200 | ||||||||||||||||
2 | 41/2 | 2.50 | 225 000 | 137 500 | 145 000 | ||||||||||||||||
21/4 | 41/2 | 3.25 | 292 500 | 178 750 | 188 500 | ||||||||||||||||
21/2 | 4 | 4.00 | 360 000 | 220 000 | 232 000 | ||||||||||||||||
23/4 | 4 | 4.9397 | 443 700 | 271 150 | 286 000 | ||||||||||||||||
3 | 4 | 5.97 | 537 300 | 328 350 | 346 200 | ||||||||||||||||
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Bolt or Stud Diameter, in. | Threads per in. | Stress Area,A in. 2 | Tensile Load, min, lbfB | Proof Load, Length Measurement Method, lbfB | Alternative Proof Load, Yield Strength Method (0.2 % Offset), min, lbfB |
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1/4 | 28 | 0.0364 | 4 350 | 3 100 | 3 500 |
5/16 | 24 | 0.0580 | 6 950 | 4 950 | 5 350 |
3/8 | 24 | 0.0878 | 10 550 | 7 450 | 8 100 |
7/16 | 20 | 0.1187 | 14 250 | 10 100 | 10 900 |
1/2 | 20 | 0.1599 | 19 200 | 13 600 | 14 700 |
9/16 | 18 | 0.203 | 24 350 | 17 250 | 18 700 |
5/8 | 18 | 0.256 | 30 700 | 21 750 | 23 500 |
3/4 | 16 | 0.373 | 44 750 | 31 700 | 34 300 |
7/8 | 14 | 0.509 | 61 100 | 43 250 | 46 800 |
1 | 12 | 0.663 | 79 550 | 56 350 | 61 000 |
11/8 | 12 | 0.856 | 89 900 | 63 350 | 69 350 |
11/4 | 12 | 1.073 | 112 650 | 79 400 | 86 900 |
13/8 | 12 | 1.315 | 138 100 | 97 300 | 106 500 |
11/2 | 12 | 1.581 | 166 000 | 117 000 | 128 000 |
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Nominal Size- Threads per Inch | UNC | Nominal Size- Threads per Inch | UNF | Nominal Size- Threads per Inch | 8 UN |
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Tensile Stress Area,AAs in.2 | Tensile Stress AreaAAs in.2 | Tensile Stress Area,AAs in.2 | |||
1/4 -20 | 0.0318 | 1/4 -28 | 0.0364 | ... | ... |
5/16 -18 | 0.0524 | 5/16 -24 | 0.0580 | ... | ... |
3/8 -16 | 0.0775 | 3/8 -24 | 0.0878 | ... | ... |
7/16 -14 | 0.1063 | 7/16 -20 | 0.1187 | ... | ... |
1/2 -13 | 0.1419 | 1/2 -20 | 0.1599 | ... | ... |
9/16 -12 | 0.182 | 9/16 -18 | 0.203 | ... | ... |
5/8 -11 | 0.226 | 5/8 -18 | 0.256 | ... | ... |
3/4 -10 | 0.334 | 3/4 -16 | 0.373 | ... | ... |
7/8 -9 | 0.462 | 7/8 -14 | 0.509 | ... | ... |
1-8 | 0.606 | 1-12 | 0.663 | 1-8 | 0.606 |
11/8 -7 | 0.763 | 11/8 -12 | 0.856 | 11/8 -8 | 0.790 |
11/4 -7 | 0.969 | 11/4 -12 | 1.073 | 11/4 -8 | 1.000 |
13/8 -6 | 1.155 | 13/8 -12 | 1.315 | 13/8 -8 | 1.233 |
11/2 -6 | 1.405 | 11/2 -12 | 1.581 | 11/2 -8 | 1.492 |
13/4 -5 | 1.90 | ... | ... | 13/4 -8 | 2.08 |
2-41/2 | 2.50 | ... | ... | 2-8 | 2.77 |
21/4 -41/2 | 3.25 | ... | ... | 21/4 -8 | 3.56 |
21/2 -4 | 4.00 | ... | ... | 21/2 -8 | 4.44 |
23/4 -4 | 4.93 | ... | ... | 23/4 -8 | 5.43 |
3-4 | 5.97 | ... | ... | 3-8 | 6.51 |
31/4 -4 | 7.10 | ... | ... | 31/4 -8 | 7.69 |
31/2 -4 | 8.33 | ... | ... | 31/2 -8 | 8.96 |
33/4 -4 | 9.66 | ... | ... | 33/4 -8 | 10.34 |
4-4 | 11.08 | ... | ... | 4-8 | 11.81 |
Nominal Diameter, in. | Oversize Limit, in.A | |
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Hot-Dip Zinc | Mechanical Zinc | |
1/4 | 0.016 | 0.012 |
5/16 , 3/8 | 0.017 | 0.012 |
7/16 , 1/2 | 0.018 | 0.012 |
9/16 , 5/8 ,3/4 | 0.020 | 0.013 |
7/8 | 0.022 | 0.015 |
1.0 to 11/4 | 0.024 | 0.016 |
13/8 , 11/2 | 0.027 | 0.018 |
13/4 to 3.0, incl | 0.050 | 0.033 |
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Product Shall be Marked with our manufacturing trade mark "TorqBolt" or "TB" along with the designated Grade.
Grade and manufacturer’s identification symbols shall be applied to one end of studs and to the heads of bolts and screws of all sizes. (If the available area is inadequate, the grade symbol may be marked on one end and the manufacturer’s identification symbol marked on the other end.) For bolts and screws smaller than 1⁄4 in. [6 mm] in diameter and studs smaller than 3⁄8 in. [10 mm] in diameter and for 1⁄4 in. [6 mm] in diameter studs requiring more than a total of three symbols, the marking shall be a matter of agreement between the purchaser and the manufacturer.
B18.31.2 Imperial Continious Thread, Double End Reduced & Full Body Studs
B18.31.3 Threaded Rods (Inch Series)
B16.5 Imperial Full Thread Stud Bolts
B16.5 Metric Full Thread Stud Bolts
B18.2.1 Imperial Square and Hex Bolts and Screws
B18.3 Imperial Hexagon Socket and Spline Socket Screws
A751 Test Methods, Practices, and Terminology for Chemical Analysis of Steel Products
E23 Test Methods for Notched Bar Impact Testing of Metallic Materials
E709 Guide for Magnetic Particle Testing
E1268 Practice for Assessing the Degree of Banding or Orientation of Microstructures
E1417/E1417M Practice for Liquid Penetrant Testing
E1444/E1444M Practice for Magnetic Particle Testing
E2884 Guide for Eddy Current Testing of Electrically Conducting Materials Using Conformable Sensor Arrays
F606/F606M Test Methods for Determining the Mechanical Properties of Externally and Internally Threaded Fasteners, Washers, Direct Tension Indicators, and Rivets
F788/F788M Specification for Surface Discontinuities of Bolts, Screws, and Studs, Inch and Metric Series
F1470 Practice for Fastener Sampling for Specified Mechanical Properties and Performance Inspection
F2328 Test Method for Determining Decarburization and Carburization in Hardened and Tempered, Threaded, Steel Bolts, Screws, Studs, and Nuts
S1 | Marking |
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