Volume 05 - Surface Engineering Part 2 ppsx

Volume 05 - Surface Engineering Part 2 ppsx

Volume 05 - Surface Engineering Part 2 ppsx

... Time, s 1 0-1 5 sulfuric plus 0-4 hydrofluoric 5 0-6 5 12 0-1 50 2 0-6 0 Ferritic 5-1 0 nitric plus 0. 2- 1 hydrofluoric 5 0-6 5 12 0-1 50 2 0-6 0 Austenitic 1 0-1 5 sulfuric plus 0-4 hydrofluoric ... dip (d) 1 8 -2 0 NaOH, 4-6 KMnO 4 (e) 7 1-9 3 16 0 -2 00 20 min to 8 h (f) Water rinse (c) . . . Ambient Ambient . . . Su...

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Volume 05 - Surface Engineering Part 10 ppsx

Volume 05 - Surface Engineering Part 10 ppsx

... Laser CVD. Thermal-laser CVD (Ref 12) , Fig. 6 Typical inert-atmosphere and/or low-pressure plasma chamber. Courtesy of Metco, Inc. Fig. 5 Plasma spray process. Courtesy of Praxair Surface Technologies, ... μm (0 .2 mil) anodic coating on 5457 alloy. (a) 17 wt% H 2 SO 4 . (b) 8.8 wt% H 2 SO 4 Thermal Radiation. Technique Principles Vapor-Phase Epitaxy. → → → o The MOCVD process T...

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Volume 05 - Surface Engineering Part 1 pot

Volume 05 - Surface Engineering Part 1 pot

... Case (193 1-1 933) (Member 1 92 7-1 933) • T.D. Cooper (198 4-1 986) (Member 198 1-1 986) • E.O. Dixon (195 2- 1 954) (Member 194 7-1 955) • R.L. Dowdell (193 8-1 939) (Member 193 5-1 939) Because the chemical ... (199 3-) Allison Gas Turbines • William B. Young (199 1-) Dana Corporation Previous Chairmen of the ASM Handbook Committee • R.S Archer (194 0-1 9 42) (...

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Volume 05 - Surface Engineering Part 4 docx

Volume 05 - Surface Engineering Part 4 docx

... Temperature, °C (°F) . . . 7 1-8 2 (16 0-1 80) 82 (180) Time, min . . . 2 1 2 Drying Temperature, °C (°F) 8 2- 105 (18 0 -2 20 ) 8 2- 105 (18 0 -2 20 ) 8 2- 105 (18 0 -2 20 ) Time, min 1-3 5 1-3 Acid Baths The ... 42 5.6 3 0-4 1 4. 0-5 .5 20 2. 7 1 5 -2 8 2. 0-3 .7 Sodium hydroxide 79 10.5 6 8- 105 9. 0-1 4.0 75 10.0 6 0-9...

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Volume 05 - Surface Engineering Part 5 ppt

Volume 05 - Surface Engineering Part 5 ppt

... conditions pH 8. 5-1 0 8-1 0 4-6 4. 3-4 .6 4. 5-5 .5 4. 5-5 .5 Temperature, °C (°F) 9 0-9 5 (19 5- 20 5) 9 0-9 5 (19 5- 20 5) 8 8-9 5 (19 0- 20 5) 8 8-9 5 (19 0- 20 5) 8 8-9 5 (19 0- 20 5) 8 8-9 5 (19 0- 20 5) Plating ... CuSO 4 ·5H 2 O 21 0 -2 40 (2 8-3 2) Cu(BF 4 ) 2 22 5-4 50 (3 0-6 0) Electrolyte compositi...

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Volume 05 - Surface Engineering Part 6 potx

Volume 05 - Surface Engineering Part 6 potx

... g/L (2. 33 to 5. 82 oz/gal) NaCN; 75 .2 g/L (10 oz/gal) NaOH; 2. 0-to-1 to 2. 75-to- 1 ratios of NaCN to zinc. Temperature: 30 °C (86 °F). (b) Effect of zinc metal content. 60.1, 75 .2, and 90 .2 g/L ... NaCN; 150.4 and 75 .2 g/L (20 and 10 oz/gal) NaOH; 2. 75-to-1 ratio of NaCN to zinc. Temperature: 30 °C (86 °F)

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Volume 05 - Surface Engineering Part 7 docx

Volume 05 - Surface Engineering Part 7 docx

... treatment of an electroless nickel-5% B coating on the fatigue strength of steel Fatigue strengthCondition MPa ksi

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Volume 05 - Surface Engineering Part 8 pptx

Volume 05 - Surface Engineering Part 8 pptx

... forming Area Coating weightPart (a) Steel m 2 ft 2 g/m 2 oz/ft 2 × 10 - 2 Production, pieces/h Sequence of operations Table 2 Compositions and physical properties of lead-base babbitts Compressive ... ksi At 20 °C (68 °F) At 100 °C (21 2 °F) °C °F °C °F °C °F Metals Handbook Cast Irons μ Prod. Finish., CAB Curr. Aware. Bull. (20 0), Die Cast. Manage., • • • •...

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Volume 05 - Surface Engineering Part 9 potx

Volume 05 - Surface Engineering Part 9 potx

... mil) 25 μm (1.0 mil) 38 μm (1.5 mils) 51 μm (2. 0 mils) 64 μm (2. 5 mils) 76 μm (3.0 mils )Volume solids, % m 2 /L ft 2 /gal m 2 /L ft 2 /gal m 2 /L ft 2 /gal m 2 /L ft 2 /gal m 2 /L ft 2 /gal m 2 /L ... solids return. (20 ) Permeate. (21 ) Controlled flow to waste. (22 ) Permeate storage. (23 ) Recirculated permeate. (24 ) Overflow permeate. (25 ) Source of deionize...

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