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Aspect Ratio Converters
Article © MAIL User: Blaise


Common Aspect Ratio Table
Wire DiameterRing Diameter (Real I.D.)
SWG
AWG
Dec. In.
1/16"
1/8"
3/16"
1/4"
5/16"
3/8"
7/16"
1/2"
10
-
0.128"
---
---
---
2
2.4
2.9
3.4
3.9
12
-
0.104"
---
---
---
2.4
3
3.6
4.2
4.8
-
10
0.1018"
---
---
---
2.5
3.1
3.7
4.3
4.9
-
12
0.0808"
---
---
2.3
3.1
3.9
4.6
5.4
6.2
14
-
0.080"
---
---
2.3
3.1
3.9
4.7
5.5
6.3
16
14
0.064"
---
2
2.9
3.9
4.9
5.9
6.8
7.8
-
16
0.0508"
---
2.5
3.7
4.9
6.2
7.4
---
---
18
-
0.048"
---
2.6
3.9
5.2
6.5
7.8
---
---
-
18
0.0403"
---
3.1
4.7
6.3
7.75
---
---
---
20
-
0.036"
---
3.5
5.2
6.9
---
---
---
---
-
20
0.0319"
2
3.9
5.8
7.8
---
---
---
---
22
-
0.028"
2.2
4.5
6.7
---
---
---
---
---
-
22
0.0253"
2.5
5
7.4
---
---
---
---
---
24
-
0.022"
2.8
5.7
---
---
---
---
---
---


Continuous Aspect Ratio Chart
The chart below provides a graphic representation of Aspect Ratios from 2 to 8, where they intersect ring sizes up to one inch I.D. and wire diameters from 24SWG to 10SWG.

The colored lines are CONSTANT aspect ratios, meaning that any ring ID/Wire diameter combo along that line will look and feel the same in a weave. The left side of the chart (Y axis) represents the inner diameter of a ring, and the bottom (X axis) represents the wire diameter.

All the measurements are shown in decimal inches, but on the X axis, common American and Standard gauges are indicated (Also indicated by the dots on the A.R. lines), and on the Y axis, common fractional inch measurements are indicated.

Sorry, no metric. The data visualization package I used only allowed 1 set of values per axis. Later versions may have this, if I can figure it out. However, a rough conversion can be made with the formula mm = Dec.Inch * 26, or conversely, Dec. Inch = mm/26 .... (25.4, to be exact. -Ed)



Original URL: http://www.mailleartisans.org/articles/articledisplay.php?key=113