TryBuildCalc

BBS CalculatorBar bending schedule builder

Build a bar bending schedule with cutting length, bend/hook deductions, and total weight.

Global Settings

ℹ️Applied at both ends of every stirrup/ring hook — commonly 9× diameter, confirm against your applicable code.

Cost

Enable Cost Estimation?

Bar Marks

Bar 1
Include one Lap Splice?

This schedule needs approximately 75.9 kg (0.076 tonnes) of reinforcement steel across 1 bar mark.

Bar MarkMemberShapeDia (mm)Bars/MemberMembersCutting Length (m)Total Length (m)Unit Wt (kg/m)Total Wt (kg)
A1Beam B1Straight16426.00048.001.58075.85

Summary by Diameter

16mm — 8 bars, 48.0 m total: 75.9 kg

Grand Total

Total Bars: 8

Total Length: 48.0 m (157 ft)

Total Weight: 75.9 kg (0.076 tonnes)

Assumptions Used

Unit weight: d² ÷ 162 (kg/m) | Bend deduction: 1d/2d/3d at 45°/90°/135° | Hook length factor: 9d

Not sure why cutting length is shorter than the outer dimensions? Bar Bending Schedule (BBS) Guide →

Bar Shape Reference

AStraightABL-BendWDhookRect. StirruphookCircular RingAriseCCranked

Diagram simplified for clarity (not to scale). Illustrative only.

See the complete Bar Bending Schedule Calculator guide for the full formula walkthrough, verification checklist, and FAQ.

Build a complete Bar Bending Schedule (BBS)

This page is the general BBS builder — add straight, L-bend, rectangular stirrup, circular ring, and cranked bar marks together in one schedule, exactly as a real job's reinforcement typically mixes shapes across its beams, columns, and slabs.

The result is a genuine BBS table (not just a total weight figure) — the document a fabrication yard or site bar-bender actually works from to cut and bend steel.

  • Every bar mark row aggregates into one schedule table plus a diameter and grand-total weight summary.
  • Enable cost estimation with a rate per kg for an estimated total material cost alongside the weight.
  • Download the built-in verification checklist as a PDF alongside the schedule for a site-ready record.

How Is Cutting Length Calculated?

Every bar mark follows the same overall sequence — calculate the shape's raw geometric length, subtract bend deductions, add any hook allowance, then add one lap length if a splice is included — but the raw-length formula itself differs by shape.

Step 1 — Raw Length by Shape

Straight = Length (A)

L-Bend = Leg A + Leg B

Rect. Stirrup = 2 × (Inside Width + Inside Depth) + 4 × Diameter

Circular Ring = π × Ring Diameter

Cranked = Straight A + (Rise ÷ sin(Bend Angle)) + Straight C

The rectangular stirrup and circular ring shapes are closed loops measured around their perimeter or circumference; the stirrup's inside width and depth are converted to a centerline perimeter by adding 4 × diameter (the bar sits half a diameter outward from the inside face on each of the four sides) before any bend deduction is applied. The cranked shape's inclined segment length is derived from the vertical rise and the bend angle using basic trigonometry.

Step 2 — Bend Deduction

Deduction per bend = 1 × diameter (45°), 2 × diameter (90°), 3 × diameter (135°)

L-Bend / Cranked: 1 bend (or 2 for cranked) deducted once each

Rect. Stirrup: 4 × 90° corner deductions

Steel compresses slightly on the inside of a bend, so the finished bar is shorter than the sum of its straight-line legs — this deduction corrects for that per bend in the bar.

Step 3 — Hook Allowance (Stirrups & Rings Only)

Hook Allowance = 2 × (Hook Length Factor × Diameter)

Applied once at each end of a stirrup or ring's open loop before it's closed — not applicable to straight, L-bend, or cranked shapes.

Step 4 — Lap Length (Optional)

Cutting Length = Raw Length − Bend Deduction + Hook Allowance + (Lap Multiplier × Diameter, if included)

Include a lap length only for a bar mark that splices onto another bar of the same mark to exceed one stock length.

Step 5 — Total Length and Weight

Total Bars = Bars per Member × Number of Members

Total Length = Cutting Length × Total Bars

Unit Weight (kg/m) = Diameter² ÷ 162

Total Weight (kg) = Total Length × Unit Weight

The diameter² ÷ 162 formula is the standard basis for reinforcement steel weight and is the same figure suppliers use for billing.

Worked Example (First Bar Mark)

This example walks through the first bar mark in your schedule above, using the same steps from the formula section — every other bar mark in the schedule follows the identical method.

Bar Mark Used: A1

InputValue
Shapestraight
Diameter16 mm
Bars per Member × Members4 × 2 = 8 bars

Step 1-4 — Cutting Length

CalculationSubstitutionResult
Shape length (after bend/hook deductions)Per shape formula in Step 1-36.000 m
Final cutting lengthShape length − deductions + hooks/laps6.000 m (19.69 ft)

Step 5 — Total Length and Weight

CalculationSubstitutionResult
Total length6.000 × 848.00 m
Unit weight16² ÷ 1621.580 kg/m
Total weight48.00 × 1.58075.85 kg

Therefore, bar mark A1 needs 8 bars cut to 6.000 m each, totalling 75.85 kg.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

Element-specific steel calculators (beam, column, slab, footing) answer "how much total steel do I need for this one element," typically as a single weight figure. This BBS builder instead produces the actual cutting-length deliverable — a real bar-mark-by-bar-mark schedule spanning an arbitrary mix of shapes across an entire job.
Yes — add one row per distinct bar mark across all the beams, columns, and slabs in that floor's reinforcement, and the schedule table and weight totals aggregate across every mark you add.