Free sample for 316L/316 SS Bar Products Factory from Buenos Aires
316L/316 Stainless Steel Physical Properties Material Type Condition Ultimate Tensile Strength (PSI) 0.2% Yield Strength (PSI) Elongation (% in 2in.) Reduction Of Area (%) Hardness Rockwell 316 Annealed 75,000 30,000 30 40 * 316L Annealed 75,000 25,000 30 40 C35 316 & 316L Stainless Steel Applications Pump Shafts Mechanical Seals Heat Exchangers Ball Valves 316 & 316L Composition Carbon 0.030 – 0.080 Chromium 16.0-18.0 Manganese 2.0 Molybdenum 2.0-3.0 Nickel 10.0-1...
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316L/316 Stainless Steel Physical Properties
|Material Type||Condition||Ultimate Tensile
(% in 2in.)
316 & 316L Stainless Steel Applications
- Pump Shafts
- Mechanical Seals
- Heat Exchangers
- Ball Valves
316 & 316L Composition
- Carbon 0.030 – 0.080
- Chromium 16.0-18.0
- Manganese 2.0
- Molybdenum 2.0-3.0
- Nickel 10.0-14.0
- Silicon 1.00
- Sulfur 0.030
Backed by Industry Standards
- UNS S31600/03
- ASTM A182
- ASTM A276
- ASTM A479
Basic turning guide on a grizzly 10 x 22 lathe.
Roughing and finishing cut on a lower carbon steel.
Rpm, sfm, feed(in/rev) and depth of cut details is furnished
to present how the approach is performed.
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As opposed to actual welding, when you braze something, you simply heat it up and get this brass to “stick” to it, basicly gluing the pieces to be joined together instead of melting them together. Kinda fun to play with, just thought we’d make a quick little video on the subject.
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