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Dial Indicator
Emma

Creato da

Emma

2. agosto 2026SE
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Dial Indicator

A micrometer answers “how big is this?”. A dial indicator answers a different and often more useful question: “how much has this moved?” It does not measure size at all. It measures deviation.

US 283,627, “Improvement in Gages”, John Logan of Waltham, Massachusetts, filed 15 May 1883 and granted 21 August 1883. The claim is mechanical amplification: a tiny movement of a plunger is geared up into a large sweep of a pointer, so the eye reads a distance it could never see directly.

Waltham is not a coincidence. This is watchmaking country, and a watch is a machine for turning small regular motions into readable ones. Logan applied the movement-maker's habit of mind to the machine shop.

Principiante
45 minutes

Istruzioni

1

Read the claim before you build

Logan claims amplification. Write down the difference between measuring a size and measuring a deviation — the two need different instruments.

2

Handle a real indicator

Press the plunger of the dial indicator gently and watch the needle. Estimate how many times larger the needle's travel is than the plunger's.

Strumenti necessari:

Dial IndicatorDial Indicator
3

Build a lever amplifier

Cut a 200 mm card strip. Pin it to the board 20 mm from one end with a screw. The long end now moves nine times as far as the short end.

Materiali per questo passaggio:

Graph PaperGraph Paper1 foglio
#6-32 Machine Screw#6-32 Machine Screw1 pezzo

Strumenti necessari:

Sharp ScissorsSharp Scissors
4

Calculate your amplification ratio

Ratio = long arm divided by short arm. Write it down before you test it, then check it.

Materiali per questo passaggio:

Graph PaperGraph Paper1 foglio

Strumenti necessari:

Steel Ruler (30cm)Steel Ruler (30cm)
5

Feed a known input with a feeler leaf

Slide a 0.05 mm feeler leaf under the short end. Measure how far the long end rises.

Strumenti necessari:

Feeler Gauge SetFeeler Gauge Set
Steel Ruler (30cm)Steel Ruler (30cm)
6

Check measured against predicted

Compare the measured rise with ratio × 0.05 mm. Any shortfall is lost motion in your pivot — the enemy Logan's gearing had to defeat.

Materiali per questo passaggio:

Graph PaperGraph Paper1 foglio
7

Build a scale for the long end

Mark a card scale where the long end sweeps, graduated in millimetres. Each millimetre now stands for a fraction of one at the input.

Materiali per questo passaggio:

Graph PaperGraph Paper1 foglio

Strumenti necessari:

Steel Ruler (30cm)Steel Ruler (30cm)
Permanent MarkerPermanent Marker
8

Measure the whole feeler set

Run every leaf from 0.05 to 0.50 mm through your amplifier, recording the output each time.

Materiali per questo passaggio:

Graph PaperGraph Paper1 foglio

Strumenti necessari:

Feeler Gauge SetFeeler Gauge Set
9

Plot input against output

Plot the pairs. A good instrument gives a straight line. Curvature means your ratio changes with position — a real and common defect.

Materiali per questo passaggio:

Graph PaperGraph Paper1 foglio
10

Find the backlash

Approach one leaf thickness from below, then from above. The two readings differ. That gap is backlash, and it is why indicators are read in one direction only.

Strumenti necessari:

Feeler Gauge SetFeeler Gauge Set
11

Measure flatness with the real indicator

Rest the indicator on the surface plate and sweep it across the board's face. Watch the needle wander. You are seeing the board's error, magnified.

Materiali per questo passaggio:

Flat Wooden BoardFlat Wooden Board1 pezzo

Strumenti necessari:

Dial IndicatorDial Indicator
Surface PlateSurface Plate
12

Measure run-out on a rod

Roll the brass rod under the indicator tip. The needle sweep is the rod's out-of-roundness — invisible to the eye, obvious to the dial.

Strumenti necessari:

Dial IndicatorDial Indicator
Brass RodBrass Rod
13

Try the same job with a micrometer

Attempt step 11 with the micrometer instead. It is slow and awkward, because it answers the wrong question. Two instruments, two jobs.

Strumenti necessari:

MicrometerMicrometer
14

History & Context

US 283,627, “Improvement in Gages”, John Logan of Waltham, Massachusetts, filed 15 May 1883, granted 21 August 1883.

A date correction. Several respectable secondary sources give this patent as 21 August 1886. The patent document itself is dated 1883, and the number is consistent with 1883 issues. Where a secondary source and the document disagree, the document wins.

What happened to it. Frank Randall, a watchmaker at the E. Howard Watch Company, bought Logan's patent rights in 1896 and went into partnership with Francis Stickney; Randall & Stickney of Waltham then manufactured dial indicators for general industry. The rack-and-pinion arrangement Logan developed is still the mechanism inside most mechanical dial indicators.

Why deviation matters more than size. On a production line nobody re-measures every dimension of every part. They set a master, zero an indicator against it, and then read only the difference for every part after. Reading a difference is faster, needs less skill, and is less error-prone than reading an absolute size — which is what let unskilled operators hold skilled tolerances. The gauge blocks and the comparator later in this batch are both built on the same insight.

Materiali

3

Strumenti richiesti

8

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