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Rectangular Duct Bend development

What it is

The mitred bend with its section changed: a rectangular duct instead of a round shell. The cut is the same calculation as the round bend — the mitre height at a point is its distance from the bend axis times the tangent of half the angle per gore. What changes is the path: on the round one that distance varies as a cosine and the cut comes out a sine wave; here it is constant on two faces and varies linearly on the other two.

Where it is used

Extraction and air-conditioning ductwork, dust collection runs, ventilation trunking, any change of direction in rectangular section.

Measurements the calculation needs

  • H Radius to the bend axis
  • X Side from throat to heel
  • Y Side between the cheeks
  • ANG Total angle of the bend
  • S Number of gores
  • THK Plate thickness
  • R Bend radius

Worked example

The values the form comes pre-filled with, run through the tool itself:

Radius to the bend axis 800 mm
Side from throat to heel 500 mm
Side between the cheeks 300 mm
Total angle of the bend 90°
Number of gores 3
Plate thickness 1.5 mm
Bend radius 0 mm
The flat pattern fits a plate of 1594 × 562 mm
Flat patterns produced 2

Result of the example

Plate 1 1594 × 281 mm, cut 2 times
Plate 2 1594 × 562 mm, cut 2 times
Rectangular Duct Bend flat pattern: drawing of the template with the worked example dimensions
Cut lines in purple, welds in green and reference lines in orange. Plate 1594 × 562 mm.

Assembly notes

Weld the sheets with the longitudinal seams 180° apart, not lined up. Lined up, the piece assembles into a different shape — and the longitudinal seam crosses the circumferential one.

The pattern develops the SHARP CORNER, on the mean line — the theoretical layout, which is what gets delivered. If you fold it on a press brake with an inside radius, the blank comes out LONG: each fold needs the deduction 2*(r+t)*tan(a/2) − a*(r + k*t), with r the inside radius, a the bend angle in radians, and your tooling's k. On a 500x300 tube in 1.5 mm sheet with four 90° folds that is 3.5 mm at radius 0.75 and 9.0 mm at radius 4.5 — always to be taken off. A welded corner from separate plates needs no deduction at all.

Fold to an angle of 90° BETWEEN THE TWO FACES — what a protractor reads on the finished part, not the press stroke angle. Every crease on this part has the same angle.

Frequently asked questions

Are all four faces of a gore cut the same?
No, and that is the classic mistake on this part. The throat and heel faces come out RECTANGULAR, cut square, however tight the bend — each of them lies wholly at one distance from the axis, so the cut does not vary along it. Only the two side faces come out trapezoidal.
Where is the radius measured to?
To the bend axis, at the centre of the section. The throat is half of X inside it and the heel half of X outside, and that difference is what makes the heel come out longer than the throat.
Why are there two sheets?
Because the end gores are cut once and the middle ones twice. The first sheet comes in two copies — the two half-ends — and the second in one fewer than the number of gores. With a single gore the part is just the two half-ends, and the second sheet does not exist.
Is there a limit to the angle per gore?
Ninety degrees, the same as the round bend. At that point the half-mitre reaches 45 degrees, which is the single-cut mitred elbow. Past it the cut is steeper than 45 degrees and the part stops being makeable — anyone needing more turn adds gores.
Rectangular Duct Bend dimension drawing: H (Radius to the bend axis), X (Side from throat to heel), Y (Side between the cheeks), ANG (Total angle of the bend), S (Number of gores), THK (Plate thickness), R (Bend radius), marked on the part
Calculate a Rectangular Duct Bend

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Related parts: Segmented bends and elbows