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Electronics Repair (sci.electronics.repair) Discussion of repairing electronic equipment. Topics include requests for assistance, where to obtain servicing information and parts, techniques for diagnosis and repair, and annecdotes about success, failures and problems. |
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Posted to uk.tech.digital-tv,24hoursupport.helpdesk,uk.telecom.mobile,sci.electronics.basics,sci.electronics.repair
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Jeff Liebermann wrote:
On Thu, 04 Oct 2012 10:03:21 -0400, Phil Hobbs wrote: Yep. As I understand it (possible wrong), AC filaments break in the middle, mostly from vibration flexing. I don't think so, because there's no mechanism for that, as I said. The wire is fully annealed at all times, so there's no possibility of progressive fatigue failure. Oscillating filament light bulb: http://www.youtube.com/watch?v=t_DwwNVA-7Q Whether the earths magnetic field is strong enough to induce such oscillations is questionable. While digging for the apparently mythical lifetime test data on incandescent light bulbs, I've found numerous theories on why filaments fail. Tungsten evaporation, causing hot spots, is the most common. One suggested that thermal cycling hardens the tungsten and makes it brittle. Another suggested that the inrush current causes a mechanical shock if it hits at the 60Hz peak, instead of at the zero crossing. Yet another speculates that the temperature differential between the hot filament, and the relatively cold mounting structure may cause cracking. -- All of those except the hot spot mechanism assume that the tungsten work-hardens in the bulb and then fails from fatigue. However, that isn't the case, because the annealing temperature of tungsten is about 1300 C, so the tungsten in a light bulb filament is always fully annealed. Cheers Phil Hobbs -- Dr Philip C D Hobbs Principal Consultant ElectroOptical Innovations LLC Optics, Electro-optics, Photonics, Analog Electronics 160 North State Road #203 Briarcliff Manor NY 10510 845-480-2058 hobbs at electrooptical dot net http://electrooptical.net |
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