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Concrete Block Calculator

Enter your wall sizes, take off the doors and windows, pick your block size (8 × 8 × 16 in CMU or 390 × 190 mm) and mortar joint, and get the number of concrete blocks to buy - plus the mortar and sand. Works in feet/inches or metres/millimetres.

Concrete Block

01. Walls

Gross wall area: 208 sq ft

02. Unit & mortar

Wythes (leaves)

Net area: 192 sq ft · 1.12 /sq ft · mortar 8.9 cu ft

03. Cost estimate · optional

Enter a price per item - leave any blank to skip it. The blocks and mortar counts come from your wall above. Covers the blocks and mortar only; the footing, rebar, fill and labour are extra.

Mortar supply
Enter the bag size by

Mortar needed: 8.9 cu ft · about 18 bags at 0.5 cu ft each. Set it to match the bag you buy.

04. Reinforcement · optional

Masonry to order
227bricks / blocks

Net wall area

192 sq ft

Units per area

1.12 /sq ft

Mortar volume

8.9 cu ft

  • Mortar mix bags18
  • Sand (if site-mixing)8.9 cu ft
  • Openings deducted16 sq ft

Buy ready-mixed mortar by the bag, or site-mix using about that much sand plus masonry cement to suit.

Guide & worked example

How this calculator works

You don’t have to work any of this out by hand - the calculator does every step. This is just what is happening behind the scenes, in case you like to know.

A block wall is measured like any wall: first work out the gross wall area (each wall’s length times its height), then take off the doors and windows to leave the net area - the part you actually fill with block. The rest is turning that net area into a number of blocks, plus the mortar and the sand:

blocks per area = 1 ÷ ((blockL + joint) × (blockH + joint))
gross area      = sum of (wall length × wall height)
net area        = gross − (door & window areas)
blocks          = ceil( net area × blocks/area × wastage )
mortar volume   = net blocks × block depth × (cell − block face) × wastage   (full-bed)
sand (mixing)   ≈ mortar volume      mortar mix bags = ceil( mortar volume ÷ bag yield )

Each block takes up its own size plus one mortar joint on two sides (one on top, one to the side), so the space one block fills is (block length + joint) × (block height + joint). A standard 8 × 8 × 16 in block (actually 7-5/8 × 7-5/8 × 15-5/8 in) on a 3/8 in joint fills an 8 × 16 in space, which works out to exactly 112.5 blocks per 100 sq ft. A metric 390 × 190 × 190 mm block on a 10 mm joint is 12.5 blocks per m². The mortar fills the gaps around every block; this is a generous (full-bed) estimate, so hollow blocks - which are only buttered with mortar around the edges - use a little less. Buy your mortar ready-mixed by the bag, or mix your own from roughly that volume of sand plus masonry cement.

Worked example

This example follows the unit system you pick in the calculator above.

A 24 ft × 8 ft single-skin (one block thick) block garage wall in 8 × 8 × 16 in CMU, minus a 9 ft × 7 ft door, 5% waste:

  1. Gross wall area: 24 × 8 = 192 sq ft.
  2. Deduct the door: 9 × 7 = 63 sq ft, so net = 129 sq ft.
  3. Blocks per sq ft: 144 ÷ (16 × 8) = 1.125 /sq ft (112.5 per 100 sq ft).
  4. Add 5% waste: ceil(129 × 1.125 × 1.05) = 153 blocks.
  5. Mortar: about 6 cu ft with face-shell bedding (mortar on the block edges only) - roughly 12 bags of 80 lb mortar mix, or about 6 cu ft of sand if you mix your own.

Concrete block sizes and how many per area

Block is sold by the nominal size (the actual unit is 3/8 in or 10 mm smaller to leave room for the joint). These are the common sizes and their per-area counts at a standard joint:

Block (nominal)Actual facePer 100 sq ftPer m²
8 × 8 × 16 in (standard CMU)15-5/8 × 7-5/8 in112.5~12.1
6 × 8 × 16 in15-5/8 × 7-5/8 in112.5~12.1
12 × 8 × 16 in15-5/8 × 7-5/8 in112.5~12.1
390 × 190 × 190 mm390 × 190 mm~11612.5
440 × 215 × 100 mm (UK)440 × 215 mm~92~9.9

The face size (length × height) sets the count; the depth (6, 8 or 12 in) changes the wall thickness and the mortar, not the number of blocks per area. So an 8 in and a 12 in block both come out at 112.5 per 100 sq ft - the 12 in just uses more mortar per block.

Tips for ordering concrete block

  • Measure each wall length times height and take off the doors and windows - the calculator works out each wall on its own, so a big opening on one wall never eats into another.
  • Pick the block preset that matches your unit - the 6, 8 and 12 in CMU (concrete block) sizes are all there - or type in your block's real size (its face, plus how deep it is) and the joint. The number of blocks comes from the face size; the mortar comes from the depth and the joint. See concrete block sizes for the full dimensions chart.
  • Check the weight before you book delivery - a standard 8 in block is about 35 lb (16 kg) and a pallet is over a ton. See how much does a concrete block weigh.
  • For a budget, open the optional cost section: enter your price per block and per bag of mortar to price the materials, or a single rate per block laid to price a bricklayer. The footing, rebar, core fill (the concrete poured into the block holes) and labour are extra.
  • For the half blocks you cut in at corners and openings, the waste percentage covers the offcuts - bump it to 10% on a wall with lots of openings.
  • Buy mortar whichever way the result shows it: ready-mixed bags by the count, or that volume of sand plus masonry cement to mix your own. See how much mortar do I need.
  • For the footing the wall sits on, work out the concrete with the concrete calculator; if you are laying brick instead, the brick calculator uses the same method. For the full method and block counts by wall size, see how many concrete blocks do I need.

Standard brick and block sizes where you are

In the United States, the brick most jobs use is the modular brick, actually 7-5/8 × 2-1/4 × 3-5/8 in (a nominal 8 × 2-2/3 × 4 in once the joint is counted), and the concrete equivalent is a concrete block, or CMU, with a nominal 8 × 8 × 16 in (actual 7-5/8 × 7-5/8 × 15-5/8 in) the workhorse size. Both are laid to a 3/8 in (about 10 mm) joint, which is what turns the unit size into the per-area count. Enter your unit's actual face and depth, plus the joint, in the calculator above - or pick the matching preset - so the per-area count and the mortar come out right for the unit you are actually buying.

For the recognised specification and laying detail, see ASTM C216 (facing brick), C90 (loadbearing concrete block) and C270 (mortar), per Brick Industry Association Technical Note 10.

Frequently asked questions

01

How many concrete blocks do I need?

Work out the gross wall area (length times height), subtract the doors and windows, then multiply by the blocks per unit area. A standard 8 × 8 × 16 in block laid with a 3/8 in joint covers a nominal 8 × 16 in face, so you need about 112.5 blocks per 100 square feet of wall - roughly 1.125 blocks per square foot. The calculator does it for your exact block size and joint, and adds your waste allowance.

02

How many concrete blocks are in 100 square feet?

About 112.5 standard 8 × 8 × 16 in blocks cover 100 square feet of wall with a 3/8 in mortar joint - the standard estimating figure. That is one block per 8 × 16 in (128 sq in) nominal face, so 14,400 sq in ÷ 128 = 112.5. Add waste for cuts around openings and corners, which the calculator handles.

03

How many cinder blocks do I need for a wall?

Cinder block and concrete block (CMU) are estimated the same way: about 1.125 standard 8 × 8 × 16 in blocks per square foot of wall, or 112.5 per 100 square feet. Multiply your net wall area by that figure and add waste. Enter the wall sizes and the block size in the calculator and it gives the exact count plus the mortar.

04

How many blocks high is an 8 foot wall?

A standard block is 8 in high with the joint (a 7-5/8 in block plus a 3/8 in bed joint), so an 8 ft (96 in) wall is 96 ÷ 8 = 12 courses (rows of block). The calculator works off area, so you do not have to count courses, but it is a useful check.

05

How much mortar do I need for concrete block?

A standard 8 × 8 × 16 in block needs about 4 cubic feet of mortar per 100 blocks with face-shell bedding (mortar around the block edges only) - the figure the calculator uses for a 3/8 in joint. That is roughly 8 bags of premixed 80 lb mortar mix (a bag lays about a dozen blocks), or about 3 bags of masonry cement plus sand if you mix your own. Full (solid) bedding or fuller joints use up to twice as much, so buy a little over. The calculator works the mortar out from your block size, joint and bag size, then gives the bag count and the sand - see how much mortar do I need for the method.

06

What is the difference between a cinder block and a concrete block?

They are estimated identically. "Cinder block" is the older name for a lightweight masonry unit made with cinders or ash; "concrete block" or CMU (concrete masonry unit) is the modern term for the grey 8 × 8 × 16 in units sold today. Both cover the same nominal 8 × 16 in face, so the per-area count and the mortar are the same whichever name your supplier uses.

07

How much does a concrete block weigh?

A standard 8 × 8 × 16 in hollow concrete block weighs roughly 28 to 38 lb depending on whether it is normal or lightweight aggregate; a solid block is heavier. Weight does not change the count, but it matters for delivery and handling - the calculator gives the number of blocks, and your supplier can confirm the weight of the exact unit.

08

How much does a concrete block wall cost?

The cost comes down to the block count, the mortar and the labour, so the most accurate estimate uses your own prices. The calculator has an optional cost section: choose "Buy the materials" and enter your price per block and per bag of mortar, or choose "Installed price" and enter a single rate per block laid to price a bricklayer - it multiplies each by the count for your wall. Block, mortar and labour vary widely by area, so set them to a real local quote. The optional cost section can also add caps and reinforcement (rebar plus the grout to fill the cores); the footing and finishes are extra.

09

How do I work out blocks for a curved wall or a round column?

Count it like a straight wall, using the developed (running) length of the curve: run = π × diameter × sweep angle ÷ 360. Set the wall shape to Curved and enter the diameter (at the middle of the block) and the angle; for a full round column or ring, use the Round shape and the run is the whole circumference, π × diameter. Add extra waste for a tight radius, since rectangular blocks wedge on a curve.

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