Seco-Warwick, Meadville, Pa., has received an order for an aluminum annealing furnace that features a simple, compact design and an innovative loading system that does not require power. The simple design ensures reliability and low operating costs. A unique system for loading and unloading does not require electricity and can be operated manually by one person. It does not require expensive foundations and permits the furnace to be placed directly on a shop floor.
High strength, vibration resistant lockbolt fastening system
Alcoa Fastening Systems, Waco, Tex., introduces the BobTail HuckBolt, representing the most advanced fastening technology to date. Recognized as the next-generation lockbolt, the Huck BobTail delivers 5 times the fatigue strength of conventional nuts and bolts, and is engineered to provide the highest level of strength, reliability, and vibration-resistant performance even in the most extreme environments.
NIST and ASM International to Collaborate on Structural Materials Data Demonstration Project
The NIST Material Measurement Laboratory, Gaithersburg, Md., and ASM International, Materials Park, Ohio, through its Computational Materials Data Network, formed a collaboration: the Structural Materials Data Demonstration Project. The project will establish a data repository focused on metallic structural materials, leveraging the overlapping interests and strengths of the two organizations.
27th ASM Heat Treating Society Conference Reports Strong Attendance and a Sold Out Expo Floor
The 27th ASM Heat Treating Society Conference and Exposition (Heat Treat 2013) concluded this week with a strong attendance from the Heat Treating community and a sold out crowd of exhibitors on the show floor. Heat Treat 2013 was held in Indianapolis at the downtown convention center September 16-18. The event attracted over 2000 people from the heat treating community, marking a 16% attendance increase from 2011 and 28% increase from 2009.
Improved hydrophobic materials boost power plant efficiency
Researchers at Massachusetts Institute of Technology, Cambridge, say they found a way to improve the efficiency of steam condensation-the key to worldwide production of electricity and clean water. It has been known for years that making steam-condenser surfaces hydrophobic could improve the efficiency of condensation by causing the water to quickly form droplets. But most hydrophobic materials have limited durability, especially in steamy industrial settings.


