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Mainspring and Fusee
Emma

Tạo bởi

Emma

27. tháng Bảy 2026SE
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Mainspring and Fusee

When the first spring-driven clocks appeared in the 15th century they brought a problem with them. A coiled mainspring is a wonderful power source — compact, portable, no hanging weights — but its torque is not constant. Fully wound it pulls hard; nearly run down it barely pulls at all. A clock driven directly by one runs fast in the morning and slow by evening.

The fusee is the fix, and it is a beautiful piece of mechanical reasoning. It is a cone with a spiral groove. A chain runs from the mainspring barrel to the cone, and as the spring unwinds the chain walks from the cone's small radius to its large radius. The lever arm grows at exactly the rate the driving force shrinks, and the torque delivered onward stays flat.

It is the same principle as the gears on a bicycle: you cannot change how hard the source pushes, so you change the radius it pushes through. This blueprint builds a working demonstration you can measure.

Nâng cao
8 hours

Hướng dẫn

1

Cut the barrel disc and wall

Cut a 50 mm brass disc and a strip to form a 12 mm deep wall. This is the barrel — the drum the mainspring lives inside.

Vật liệu cho bước này:

Brass SheetBrass Sheet1 tờ

Công cụ cần thiết:

Jeweler's SawJeweler's Saw
2

Fit the barrel arbor

Drill the disc centrally and fit a 4 mm brass arbor. Cut a slot across the arbor to catch the inner end of the spring.

Vật liệu cho bước này:

Brass RodBrass Rod1 cái

Công cụ cần thiết:

Needle File SetNeedle File Set
3

Cut and shape the mainspring

Cut 600 mm of 10 mm wide spring steel strip. Round both ends and remove every burr along the edges — a nick in a tensioned spring is where it will eventually snap.

Vật liệu cho bước này:

Spring Steel StripSpring Steel Strip1 cái

Công cụ cần thiết:

Needle File SetNeedle File Set
4

Coil the spring into the barrel

Hook the inner end into the arbor slot and wind the spring in, anchoring the outer end to the barrel wall. Wear eye protection — a spring that escapes during winding moves fast.

Công cụ cần thiết:

Clear Safety GlassesClear Safety Glasses
Jeweler Plier SetJeweler Plier Set
5

Measure the torque curve first

Before building the fusee, hang a light cord and weight from the barrel and measure the turning force at full wind, half wind and nearly run down. Record all three. This is the problem you are about to solve, in numbers.

Công cụ cần thiết:

Steel RulerSteel Ruler
6

Turn the fusee cone

Turn or file a brass cone 45 mm long, 15 mm at the small end and 35 mm at the large end. That roughly 1:2.3 radius ratio is what will compensate the spring.

Vật liệu cho bước này:

Brass RodBrass Rod1 cái

Công cụ cần thiết:

Needle File SetNeedle File Set
7

Cut the spiral groove

Cut a continuous spiral groove along the cone, 2 mm pitch, deep enough to seat the chain. The groove must run unbroken from small end to large — a break lets the chain jump and the compensation fails at that point.

Công cụ cần thiết:

Needle File SetNeedle File Set
8

Mount barrel and fusee on a plate

Mount both on a brass base plate with their axes parallel, 70 mm apart, each free to turn. Misaligned axes make the chain climb out of the groove.

Vật liệu cho bước này:

Brass SheetBrass Sheet1 tờ
9

Fit the chain

Anchor a fine chain to the barrel and to the large end of the fusee. Wind it so that when the spring is fully wound the chain sits on the small radius of the cone.

Vật liệu cho bước này:

Fine Steel ChainFine Steel Chain0.5 mét
10

Check the direction of travel

Wind and release slowly. The chain must walk from the small radius toward the large radius as the spring unwinds. If it goes the other way the compensation is inverted and the output gets worse, not better — reverse the chain routing.

11

Measure the output torque curve

Repeat the step 5 measurement, now at the fusee arbor, at full, half and low wind. Compare the two curves. A well-cut cone gives a noticeably flatter output than the bare barrel.

Công cụ cần thiết:

Steel RulerSteel Ruler
12

Adjust the cone profile

If the output still falls off at the end, the large radius is too small — file the cone's large end wider and re-measure. The correct profile is found by iteration; it is not a formula you get right first time.

Công cụ cần thiết:

Needle File SetNeedle File Set
13

History & Context

The problem the spring created. Weight-driven clocks deliver perfectly constant torque — a hanging weight pulls the same whatever height it is at. Springs traded that away for portability. When spring drive arrived in the 15th century, constant force became one of horology's long-running holy grails, and it is still pursued in high-end watchmaking today.

How the cone does it. Torque is force times radius. The mainspring's force falls as it unwinds, so the fusee increases the radius at which that force acts. Fully wound, the chain pulls on the smallest radius: a large force through a small lever arm. Run down, the chain has walked to the largest radius: a small force through a large lever arm. The product stays roughly constant. It is mechanical gearing that varies continuously — the same reasoning as a bicycle's gears, arrived at four centuries before bicycles.

Gut before chain. The first fusees used cord made from animal gut — flexible, cheap, and prone to wear and sudden failure. Metal chains became standard by the mid-1600s and are what the mechanism is now named for. A fusee chain is a miniature roller chain, and making one is a specialist trade in itself; historically much of it was outsourced piecework.

Why it disappeared, mostly. The fusee is bulky, fiddly and expensive. Two later developments made it largely unnecessary: better spring steel with a flatter torque curve, and the going barrel used with an escapement less sensitive to torque variation — plus the practice of only using the middle portion of a spring's travel, where its output is naturally flattest. The fusee survives in marine chronometers, where accuracy justified any complexity, and in a handful of modern luxury watches as a demonstration of craft.

What it bought. A clock is only as steady as its power supply. Before the pendulum, drive regularity was the dominant error source, and the fusee was the main defence against it. Its long persistence in marine chronometers is the giveaway: when a clock error meant a longitude error meant a shipwreck, the extra parts were worth it.

Vật liệu

4

Công cụ yêu cầu

5

CC0 Phạm vi công cộng

Bản thiết kế này được phát hành theo CC0. Bạn tự do sao chép, sửa đổi, phân phối và sử dụng cho bất kỳ mục đích nào mà không cần xin phép.

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