
Automatic Screw Machine
A lathe with a skilled operator makes one good part at a time. The automatic screw machine makes the same part all day without one — because the sequence itself has been built into a rotating drum of cams. The machine does not need to be told what to do next; its shape is the instruction.
US 147,291, “Improvement in Machines for Making Metal Screws”, Christopher M. Spencer of Hartford, Connecticut, filed 17 December 1873 and granted 10 February 1874. The claim is automatic reversal: a clutch drum shifts between two pulleys turning opposite ways, so the cutting dies engage and disengage on their own instead of an operator shifting a belt by hand at every cycle.
Precision about what this patent is. Spencer is also credited with the “brain wheel” — the cam drum that carries a whole machining sequence — on his 1873 Hartford turret lathe. That is a different mechanism from the one claimed here, and this blueprint keeps them apart. Spencer's fame before either was the Spencer repeating rifle of 1860.
Consignes
Write the sequence you want repeated
Write the sequence you want repeated
List, in order, the operations to turn one part: feed stock, turn to diameter, form the head, cut the thread, part off. Five actions, always the same order.
Outils nécessaires :
Notebook and PencilCut a cam disc from plywood
Cut a cam disc from plywood
Cut a 150 mm disc of plywood. Mark its centre and drill it to fit the dowel rod.
Matériaux pour cette étape :
Baltic Birch Plywood1 feuilleOutils nécessaires :
Craft Knife
Steel Ruler (30cm)Divide the disc into the cycle
Divide the disc into the cycle
With the protractor, divide the rim into five sectors sized to your five operations — not equal, but proportional to how long each one takes.
Matériaux pour cette étape :
Baltic Birch Plywood1 feuilleOutils nécessaires :
Protractor
Permanent MarkerCut the profile
Cut the profile
Cut the rim away in each sector to the depth that action needs. The rim height is now a graph of the cycle.
Matériaux pour cette étape :
Baltic Birch Plywood1 feuilleOutils nécessaires :
Craft Knife
File SetMount the cam on an axle
Mount the cam on an axle
Push the dowel rod through the centre hole and rest the ends in two notched blocks so the cam turns freely.
Matériaux pour cette étape :
Dowel Rod1 pièce
Flat Wooden Board1 pièceOutils nécessaires :
Wood GlueAdd a follower
Add a follower
Pivot a card-stock lever so its tip rides on the cam rim. The lever is your cutting slide.
Matériaux pour cette étape :
Card Stock (Heavy, 50 Sheets)1 feuille
#6-32 Machine Screw1 pièceOutils nécessaires :
Sharp ScissorsTurn one full cycle by hand
Turn one full cycle by hand
Rotate the cam once slowly. Watch the follower run through all five positions and return to the start.
Outils nécessaires :
Notebook and PencilMeasure the follower travel at each sector
Measure the follower travel at each sector
Record the follower's height at the centre of each sector with the steel rule. Those five numbers are the program.
Matériaux pour cette étape :
Graph Paper1 feuilleOutils nécessaires :
Steel Ruler (30cm)Change the part by changing the cam
Change the part by changing the cam
File one sector 3 mm deeper. Turn the cycle again and record the new travel. You have just reprogrammed the machine without touching the machine.
Matériaux pour cette étape :
Baltic Birch Plywood1 feuilleOutils nécessaires :
File Set
Steel Ruler (30cm)Add the reversing idea
Add the reversing idea
Wrap string around the dowel in two opposite directions and pull each in turn. Spencer's claim replaces your two hands with a clutch that picks one of two counter-rotating pulleys.
Matériaux pour cette étape :
Cotton Kitchen String1 mètreOutils nécessaires :
Notebook and PencilTime ten cycles
Time ten cycles
Turn the cam ten times at a steady rate and time it. Divide by ten for the cycle time — the number a shop actually buys.
Matériaux pour cette étape :
Graph Paper1 feuilleOutils nécessaires :
Notebook and PencilCompare against doing it by hand
Compare against doing it by hand
Now perform your five operations as five separate hand movements, reading the list each time. Time ten of those. The ratio is the machine's real argument.
Matériaux pour cette étape :
Graph Paper1 feuilleOutils nécessaires :
Notebook and PencilInspect a real three-jaw chuck's repeatability
Inspect a real three-jaw chuck's repeatability
Clamp the brass rod in the lathe chuck, mark it, release and re-clamp five times, checking run-out each time with the dial indicator. Automation is worthless if holding is not repeatable.
Matériaux pour cette étape :
Brass Rod1 pièceOutils nécessaires :
Lathe Chuck 3-Jaw
Dial IndicatorHistory & Context
History & Context
US 147,291, “Improvement in Machines for Making Metal Screws”, Christopher Miner Spencer (1833-1922), Hartford, Connecticut. Filed 17 December 1873, granted 10 February 1874. The claim is a clutch drum that shifts drive between two oppositely rotating pulleys, reversing the screw rod automatically so the dies engage and withdraw without a hand on a belt.
What this patent is not. Spencer's celebrated “brain wheel” is a cam drum carrying an entire machining sequence, fitted to the automatic turret lathe he built in Hartford in 1873. Popular accounts fold the two into one invention. They are separate mechanisms and only one of them is the subject of this document. Where sources merge them, the document wins.
Why the screw came first. Screws are small, are needed in enormous numbers, and each one requires an identical multi-step sequence — the ideal first case for automation. The class of machine Spencer's work founded is still called a screw machine even when it is making something else entirely, and its descendants are today's CNC lathes with bar feeders.
The deeper idea. A cam is a physical program: a shape that stores a sequence and replays it exactly, forever, with no memory and no operator. Every argument later made about numerical control — that the instruction should be separable from the machine and cheap to change — is already visible here, where changing the part means filing a new cam.
Spencer before machine tools. He patented the Spencer repeating rifle in 1860; several hundred thousand were made during the American Civil War. The interchangeable-parts discipline he learned in armouries is exactly what he brought to the screw machine.
Matériaux
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Outils requis
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