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GLASS THICKNESS

Whether the glass on a tank is thick enough for the water height, using the standard bending stress method.

Measure in
Longest panel length
Water height
Glass thickness you have, mm
Safety factor
The standard for annealed float glass under sustained load. Below 3 is not a tank to sit under.
Glass neededyour 12 mm is enough
10.1mm minimum
Safety factor you actually have
5.4×
At or above the usual standard.
Panel aspect ratio
2.29length ÷ height
Coefficient β = 0.3371
Centre deflection
1.22mm
Some bow is normal and not a fault on its own. Growing bow over time is.
Next standard size up
12mm
Glass comes in even millimetres. Round up, never down.
Water heightMinimum at this lengthCommon choice
12 in, 30 cm4.4 mm6 mm
18 in, 46 cm8.0 mm8 to 10 mm
24 in, 61 cm12.3 mm12 mm
30 in, 76 cm17.2 mm15 to 19 mm

Water height drives this, not tank length or volume. Pressure rises with depth, so a long shallow tank needs thinner glass than a short deep one. The panel aspect ratio then adjusts for how much the edges help.

MethodFormula and sources

t = √(β × H³ × 1e-5 ÷ B), β = 0.3371, H = 533 mm, B = 19.2 ÷ 3.8 = 5.05 N/mm² → 10.06 mm

A tank wall is a plate loaded by water pressure that rises with depth. The standard method sets the maximum bending stress against an allowable stress and solves for thickness: t = √(β × H³ × 10⁻⁵ ÷ B), with H the water height in millimetres and B the allowable stress in N/mm².

The 10⁻⁵ term folds in water density and gravity. For H in millimetres the pressure at the bottom is 1000 × 9.81 × H/1000 pascals, which is 9.81×10⁻⁶×H N/mm², rounded to 10⁻⁵×H in the published form.

B comes from the tensile strength of annealed float glass under sustained load, taken as 19.2 MPa, divided by a safety factor. The usual factor is 3.8, giving an allowable stress of 5.05 N/mm². That large factor exists because glass under constant load fails by slow crack growth, so a panel that survives filling can still fail months later.

The coefficient β accounts for panel shape. A tall narrow panel is better supported by its edges than a long one of the same height, so β rises from 0.085 at a length to height ratio of 0.5 up to 0.37 at a ratio of 3, beyond which extra length stops mattering.

Height is what drives this, not volume and not length. Pressure depends only on depth. A six foot long tank 18 inches deep needs less glass than a two foot tank 30 inches deep.

Deflection is calculated separately using a Young's modulus of 69 GPa. A few millimetres of bow at the centre of a large panel is normal. Bow that increases over months is not, and neither is any visible chip or scratch on a loaded edge.

Tempered glass is stronger but cannot be drilled after tempering, which is why most drilled reef tanks use annealed glass. Never drill a tempered panel. The bottom panel of many production tanks is tempered and the sides are not.

This calculation covers flat panels with a bottom brace and a top eurobrace. Rimless tanks, unbraced spans, and anything you plan to sit under deserve a professional review rather than a web page.

Sources: Aquarium World NZ, glass thickness · MonsterFishKeepers, glass thickness method

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