Catalogue Fixturlaser Geometry Brochure
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The Fixturlaser VSP system in short:
Easy to learn, easy to use
Minimum of dismant­ling required
Not affected by vibra­tions
Measurement resolu­tion down to 0,0001"
Measures shafts up to 81 feet
Full set of measure­ments in less than 4 hours
Alignment of turbine shaft at the Hoover Dam, on the Colorado River, in the USA.
Southwest power grid relies on laser technology
Alignment of vertical turbine shafts is a crucial part of maintenance in hydro power production. The cumber­some task involving wires, oil-filled cans and sound micrometers may now be a part of industrial history. With the new Fixturlaser VSP measurement system alignment of vertical turbine shafts becomes a quick and easy way to achieve high accuracy at a minimum of time and cost. The laser based Fixturlaser VSP sys­tem uses traditional measurement methods but with less sensitivity to vibrations, the laser beam replaces the plumbline wire, and the results are automatically sampled in the computerized display unit.
Benefits of the Fixturlaser VSP
• Quick set-up: The Fixturlaser VSP set-up time is minimal.
• Ease of use: Values are easily displayed on screen, eliminating errors in reading a micro­meter.
• Safety: There are none of the breakage hazards associated with the wire.
• Accuracy: A repeatability industrial test sets the best sampling filter, and the laser detector can resolve to 0.0001".
• Reducing measurement time and overall down­time: A full set of measurements can be taken in less than four hours with the Fixturlaser VSP versus several days using the wire. This im­pacts pre-disassembly readings, assembly, and overall downtime, resulting in huge manpower and dollar savings.
• No need to shut down nearby units to achieve measurement accuracy and repeatability: The Fixturlaser VSP is not affected by vibrations from other mechanical sources.
• Additional measurement applications that can be addressed with the Fixturlaser VSP include: Straightness, Flatness, Pole setting. Roundness of Rotor and Stator, Line Bores.
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