Titanium flange is crafted from non-ferrous titanium or titanium alloy and is used to connect pipes to pipes. It is installed at the pipe's end. These robust components may be cast, threaded, or welded.
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Flange joints consist of a pair of flanges, bolts, and nuts. A gasket is positioned between the flange sealing surfaces. Upon tightening the nuts, the pressure applied deforms the gasket, filling any irregularities on the sealing surface, resulting in a tight, leak-free connection.
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The Atlas CFTI™: The reliability of the solid titanium CF flange is well-accepted. When welded to a titanium vacuum chamber, it becomes completely non-magnetic. These non-magnetic chambers are invaluable in UHV synchrotron systems, particle physics, industrial applications, and XHV quantum physics. They find use in beam tubes, free electron lasers (FEL), drift tubes, and spectrometers.
These flanges are ideal for weight-sensitive applications like aerospace, space, or portable systems. They offer a weight-to-volume ratio of one-third that of stainless steel flanges, enabling vacuum chamber engineers to significantly reduce the weight of vacuum chambers while maintaining performance. The Atlas CFTI™ Flange ensures standard all-metal sealing for titanium vacuum chambers, maximizing the UHV and XHV properties of a titanium system.
Titanium flanges, made from non-ferrous titanium or titanium alloys, are utilized to link pipes. They can be cast, threaded, or welded. Flange joints consist of pairs of flanges, bolts, and nuts. The gasket, placed between the flange surfaces, deforms under pressure to fill irregularities, ensuring a tight connection.
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