
Rotameter
උපදෙස්
Make the tapered tube
Make the tapered tube
A vertical tube, wider at the top, and the taper is the calibration.
- Take a clear acrylic tube about 300 mm long and 25 mm bore.
- Bore or ream it to a slight taper — about 1 mm larger at the top than the bottom.
- Mount it truly vertical, checked in two planes.
- Fit inlet at the bottom and outlet at the top.
- Add stops so the float cannot escape at either end.
Vertical is not optional. The float's weight is the reference force the flow works against, and tilting the tube changes the component of gravity acting along it. A rotameter mounted even slightly off vertical reads high, and one mounted horizontally does not work at all — which is why they always appear on a plumb-vertical section of pipe.
A gentle taper gives a long scale and fine resolution over a narrow flow range; a steeper taper gives a wide range and coarse reading. That choice is the instrument's specification and it is made when the tube is cut.Materials for this step:
Acrylic Rod1 කැබැල්ල
Acrylic Sheet (Clear, 1/4 inch, 12x12)1 පත්රයTools needed:
Cordless Drill/Driver (20V)
Drill Bit Set (29-Piece, HSS)
File Set
Combination Square (12-inch)
Digital Caliper 6-InchMake floats of different density and shape
Make floats of different density and shape
The float's weight sets the range; its shape decides how well it behaves.
- Turn one float from aluminium and one from brass, both to the same outside diameter.
- Give each a conical lower face so the flow centres it.
- Cut fine angled slots around the rim of one float so it spins as fluid passes.
- Weigh both and record.
The spinning is where the name comes from, and it is functional. Angled slots make the float rotate, which keeps it centred in the tube and stops it rubbing against the wall or sticking. A float that touches the glass reads erratically and wears a mark. Rotation is a bearing made of nothing.
The heavier brass float needs more flow to lift it, so the same tube covers a higher range. Swapping the float rather than the tube is how one instrument body serves several ranges — a genuinely elegant piece of product design.Materials for this step:
Aluminum Round Bar (6061, 1-inch x 12-inch)1 කැබැල්ල
Brass Round Bar1 කැබැල්ලTools needed:
File Set
Bench Vise (4-inch, Cast Iron)
Hacksaw Frame with Blades (10-Pack)
Digital Caliper 6-Inch
Digital Kitchen ScaleCalibrate by weighing, and mark a direct scale
Calibrate by weighing, and mark a direct scale
Because the answer is read directly, the scale must be marked in real units.
- Set a flow, let the float settle, and mark its height on a strip beside the tube.
- Collect and weigh the output over a timed interval to get the true flow.
- Label that mark with the measured flow rate.
- Repeat at eight or ten points across the range.
- Examine the spacing of your marks.
Materials for this step:
Aluminum Flat Bar (1x1/4 inch, 36-inch)1 කැබැල්ල
Graph Paper1 padTools needed:
Stopwatch
Digital Kitchen Scale
Digital Caliper 6-Inch
Center PunchBreak the calibration on purpose
Break the calibration on purpose
The float balances weight against drag, so anything changing either invalidates the scale.
- Calibrate with cold water and record several points.
- Repeat with hot water at the same flows and compare.
- Swap to the heavier float without changing the scale and note the error.
- Tilt the tube five degrees and read again.
Tools needed:
Stopwatch
Cooking Thermometer (0-200°C)
Digital Kitchen Scale
Combination Square (12-inch)Reading versus computing, and history
Reading versus computing, and history
Karl Küppers patented the variable-area flow meter in 1908 in Aachen, and Felix Meyer commercialised it — the firm Rota gave the instrument its common name. It spread because it needs no power, no secondary instrument and no computation, which in a plant full of pipes is worth a great deal.
The three flow meters in this catalogue answer the same question three ways. The Venturi and the orifice plate both hold the AREA fixed and let the pressure drop vary with flow — so they produce a differential that must be square-rooted to become a reading. The rotameter holds the pressure drop across the float essentially CONSTANT and lets the area vary instead. That inversion is why its scale is linear and readable, and it is a genuinely different idea rather than a refinement of the other two.
Where each belongs: orifice plate for cheap, standardised, high-volume metering where a control system will do the arithmetic. Venturi for large continuous lines where pumping energy matters. Rotameter for local indication where a human needs to see the flow — laboratory gas lines, medical oxygen, chemical dosing. The rotameter is the one you fit when the reader is a person rather than a computer.
Its honest limits: vertical mounting only; calibration tied to one fluid at one density; the tube must be transparent, so it is unsuited to very high pressures or opaque service; and it cannot easily produce an electrical output for a control loop without added parts. For local reading it is close to perfect and for remote control it is the wrong choice.
ද්රව්ය
6- 1 කැබැල්ලස්ථානගත
- ස්ථානගත
- ස්ථානගත
- 1 කැබැල්ලස්ථානගත
- ස්ථානගත
- 1 padස්ථානගත
අවශ්ය මෙවලම්
11- ස්ථානගත
- ස්ථානගත
- ස්ථානගත
සම්බන්ධ බ්ලූප්රින්ට්
මෙම බ්ලූප්රින්ට් දැනුම බෙදා ගනී — ශිල්ප ක්රම, ද්රව්ය හෝ මූලධර්ම
CC0 පොදු වසම
මෙම බ්ලූප්රින්ට් CC0 යටතේ නිකුත් කර ඇත. ඔබට අවසර නොමැතිව පිටපත් කිරීම, වෙනස් කිරීම, බෙදා හැරීම සහ භාවිතා කිරීම කළ හැක.
බ්ලූප්රින්ට් හරහා නිෂ්පාදන මිලදී ගැනීමෙන් නිර්මාතෘට සහාය වන්න නිර්මාතෘ කොමිසම විකුණුම්කරුවන් විසින් නියම කළ, හෝ මෙම බ්ලූප්රින්ට්හි නව අනුවාදයක් සාදා ආදායම බෙදා ගැනීමට ඔබේ බ්ලූප්රින්ට්හි සම්බන්ධතාවයක් ලෙස ඇතුළත් කරන්න.

