Factory Outlets 316L/316 SS Bar Products Supply to Stuttgart
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
Work Hardening, Dislocations & Recovery
Explanation of gyro precession: http://bit.ly/U4e8HQ
Less Than: http://bit.ly/GyroLESS
Equal To: http://bit.ly/GyroEQUAL
Huge thanks to A/Prof Emeritus Rod Cross, Helen Georgiou for filming, Alex Yeung, and Chris Stewart, the University of Sydney Mechanical Engineering shop, Duncan and co. Ralph and the School of Physics.
In this video I attempt to lift a 19kg (42 lbs) wheel over my head one-handed while it’s spinning at a few thousand RPM. This replicates an earlier experiment by Professor Eric Laithwaite. He claimed the wheel was ‘light as a feather’ and could not be explained by Newton’s Laws. I wanted to find out for myself what I really felt like.
Music By Kevin MacLeod www.Incompetech.com “Tempting Secrets”