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MAX-EL 3 1/2

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Journal Articles
Alloy Digest (1956) 5 (7): SA-45.
Published: 01 July 1956
... MAX-EL 3 1/2 is a chromium-molybdenum free-cutting-alloy machinery steel, particularly adapted for service applications where substantial strength, toughness and hardness are required. See also MAXEL 3 1/2, Alloy Digest SA-262, March 1971. This datasheet provides information on composition...
Journal Articles
Alloy Digest (1971) 20 (3): SA-262.
Published: 01 March 1971
... MAXEL 3 1/2 is a free-machining alloy steel that provides an outstanding combination of heat-treated properties and superior machinability. It can be supplied in the heat-treated condition at 262-311 Brinell hardness. See also MAX-EL 3 1/2, Alloy Digest SA-45, July 1956. This datasheet provides...
Journal Articles
Alloy Digest (1955) 4 (6): CS-3.
Published: 01 June 1955
... toughness hardness heat treatability joinability machinability MAX-EL 1-B tensile properties workability Filing Code: CS-3 Carbon Steel JUNE 1955 m DATA ON WORLD WIDE METALS AND ALLOYS Published by Engineering Alloys Digen. Inc. Upper Monrclair, New Jersey MAX-EL* 1-B (Machinery Steel) MAX-EL 1-B...
Journal Articles
Alloy Digest (1993) 42 (2): Ti-104.
Published: 01 February 1993
... (lO-VC *8.12 + 8.17 x 1O-3 (T) -1.37x10-2~+1x1O-s 03 Special heat (cal/gm C) Resistivity (lo-8 ohm-m) Conductivity (W/M*K) *WhereT=OC *.117+6.7xl~(T) * 178 + .057 (I ) -5 x lo-SC132 * 6.62 + 1.27 x 1O-2 (T) Residual Elements, Total 0.30 Max PROPERTIES Table 1 - TYPICAL TENSILE PROPERTIES. Beta Forned...
Journal Articles
Alloy Digest (2003) 52 (3): Ni-603.
Published: 01 March 2003
... Tantalum 0.30 max 0.05 Mechanical Properties: See Table 1. Weldability: Requirements for preheat and postweld heat treatment (PWHT) are dependent on the base material being welded. For most nickel-base materials no preheat or PWHT is required. Operating parameters are shown in Table 2...
Journal Articles
Alloy Digest (1990) 39 (3): Al-302.
Published: 01 March 1990
... - EDGEWISE BEND RADII FOR ROLLED 1350-H12 AND EXTRUDED 1350-Hll l BUS BARS* Bar Width, inches Mandrel Radius, inches Up through 0.500 l/2 0.501-Loo0 1 1.001-1.500 1 l/2 1.501-2.aIo 2 2.001-2.500 2 l/2 2501-3.000 3 3.001-3.500 3 l/2 35014.ooo 4 *Width to thickness ratios not exceeding 12 and widths...
Journal Articles
Alloy Digest (1958) 7 (3): CI-20.
Published: 01 March 1958
... Specific gravity Density, lb./cu. in. Modulus of elasticity, psi x 106 in tension in compression Modulus of rigidity, psi x 106 Thermal coef. expansion/ F. x 1O-6 50 - 200 F. 5o - 800°F. EL 18-24 18-23 6.2 - 8.0 6.5 - 6.8 7.4 - 7.6 PROPERTIES Table 1 - AS-CAST MECHANKAL PROPERTIES Tensile strength, psi...
Journal Articles
Alloy Digest (1958) 7 (6): Ni-42.
Published: 01 June 1958
... Temperature SWlgth Saengch ElOflpti0n F. psi psi (0.2%) C> in 2 RYizmp~ 68000 19000 :%i 5 1800 10000 8000 zl Table 3-LIMITING CREEP PROPERTIES Test Temperature Stress, psi to produce OF. 1% elongation in 10.000 hrs. 1400 1600 4000 1800 1400 Table 4 -STRESS-RUPTURE PROPERTIES Test Temperanue OT: Stress, Psi...
Journal Articles
Alloy Digest (1966) 15 (12): CS-25.
Published: 01 December 1966
.... Thermal coef. expansion/OF x 10-6 Modulus of elasticity, psi x 10 6 7.853 0.284 5.9 30 0.05 max. 0.035 max. Remainder PROPERTIES Table 1 - MECHANICAL PROPERTIES - Place (Quenched % Tempered) To !g Over g to Over 1 4 co incl. l!@ incl. 2 hcl . Tensile strength, psi 100000-120000 100000-120000 95000-l...
Journal Articles
Alloy Digest (1960) 9 (2): Ni-55.
Published: 01 February 1960
... coef. expansion/ F x lo-6 0.5 max. 70- 400°F 5.76 Boron 0.01 max. 70-1800°F 8.32 Sul hur Ni 2 el 0.03 max. Thermal conductivity, Remainder Bti~?2<iF 0 66.7 at 1292°F 217.7 Specific heat, Btu/lb/ F at 212°F 0.095 * The term Hastelloy is a registered trade-mark of Union Carbide Corporation. PROPERTIES...
Journal Articles
Alloy Digest (1986) 35 (10): Al-272.
Published: 01 October 1986
... T61 Temper TSS 1 Temper T65 Temper Tcn\ilc rtrcnpth, psi Ylcld Strength (0.2 offwt). pst Elong;llion (2 in %. Brincll h;lrdnc\s (SfH~/l0/30) Shear htrcngth. p\i I:ati;uc <lrcn;lth (5 s 108 qclcx). psi Comprcwvc yield \trcnfth, p\~ 2700(, 41000 37000 48000 20000 40000 35000 36000 I .o 0.5 max. 0.5 max...
Journal Articles
Alloy Digest (1960) 9 (7): Al-92.
Published: 01 July 1960
... ChfOtIliUm 0.2 max. 0.23 Others, each 0.05 max. Others, total 0.15 max AIuminum Remainder Table 1 - SAND CASTING PERMANENT MOLD CASTING PROPERTIES PROPERTIES (Section thickness up to 3/4 ) (Condition T6) (Section thickness up to 3/4 ) (Condition T6) Sug,sj;Eesksign SUgg~desteesign Typical I . Typical T60 T62...
Journal Articles
Alloy Digest (2005) 54 (9): SS-938.
Published: 01 September 2005
...: Specific gravity, annealed 7.91 Density, 21 °C (70 °F), 7910 (0.2860) kg/m3 (lb/in.3) See also Table 1. Mechanical Properties: Tensile strength, MPa (ksi) 483 (70) min Yield strength, 0.2% offset, 172 (25) min MPa (ksi) Elongation, in 50 mm (2 in % 35 min Hardness, HRB 90 max Specification Equivalents: UNS...
Journal Articles
Alloy Digest (1965) 14 (11): SS-174.
Published: 01 November 1965
... rolled 2% 30.4 64000 20% cold rolled 27.8 73000 2: 40% cold rolled 164000 26.6 86700 2618 Table 3 - EFFECT OF STRESS RELIEVING AT 8W F Tension Compressi Yield EL%& Yield Elastic .%ellgth Modulus SUellgdl Modulus COditiUl psi (0.2%) psi x 106 psi (0.2%) psi x 106 - - - - 10% cold rolled 100000 29.5 92SOO...
Journal Articles
Alloy Digest (1985) 34 (6): Ni-316.
Published: 01 June 1985
... Electrode 141 is used (I) To weld Nickel 200 and 20 1, (2) To weld the clad side of nickel- clad steel, (3) For surfacing of steel and (4) To weld dissimilar metals including joints between Nickel 200 or 201 and various iron-base and nickel-base alloys. Manufacturer: Huntington Alloys lnco Alloys...
Journal Articles
Alloy Digest (1999) 48 (2): Cu-628.
Published: 01 February 1999
... 710 88 103 649 93 7 Spring 655 759 95 110 690 100 5 Extra spring 690 786 100 114 717 104 4 Super spring 724 min 105 min 724 min 105 min 5 max Table 2 90° Bend Formability Formability, MBR/t, at yield strength: 70 ksi 80 ksi 90 ksi 100 ksi 110 ksi GW BW GW BW GW BW GW BW GW BW C663 S S S 0.5 0.3 1.5 1...
Journal Articles
Alloy Digest (1994) 43 (3): SA-471.
Published: 01 March 1994
... are used. 1. Joints should be prepared by machining or grinding with good fit-up 2. Guidelines for minimum preheat and interpass tem- peEXllES: THICKNESS General Characteristics: TO Over l/2 Over 1 to Over l/2 incl. to 1 incl. 1 l/2 incl. 1 l/2 Hardwear 425 100°F 150 F 200°F 250 F 3. Only low...
Journal Articles
Alloy Digest (2001) 50 (6): Ni-568.
Published: 01 June 2001
...: Density, kg/m3 (lb/in.3) 8400 (0.30) Melting range, °C (°F) 1370 1425 (2500 2600) Magnetic permeability 1.001 See also Table 1. Mechanical Properties: See Tables 2 and 3. Heat Treatment: Heating. It is very important that the workpiece be clean and free from any contaminant before and during heating...
Journal Articles
Alloy Digest (1993) 42 (8): SS-548.
Published: 01 August 1993
... Copyright © ASM International® 1996 Fig. 2 - Larson-Miller parameter diagram of Sumitomo 347AP Table 3 - FILLER METAL FOR WELDKNG SUMITOMO 347AP (wt %) Chemical composition C Si Mn P S Ni Cr Nb N STG347AP co.03 <0.65 1.0-2.5 co.03 co.03 9-11 19-21.5 10x C co.1 TIG filler -1.0 SM347AP co.03 do.65 1.0-2.5 co...
Journal Articles
Alloy Digest (1999) 48 (8): SS-757.
Published: 01 August 1999
... Properties: Density, kg/m3 (lb/in.3) 7630 (0.276) Magnetic permeability <1.01 Mechanical Properties: Tensile Properties. BioDur 108 alloy has high strength levels and a high work hardening rate due to its high nitrogen content. Tables 1 and 2 illustrate typical tensile properties in the annealed and cold...