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The Hex-Socket Screw: A Head That Sinks Out of Harm's Way
A set screw locks a pulley or a collar to a turning shaft. With an ordinary head it stands proud of the hub and turns with it — close enough to catch a sleeve.
William G. Allen of West Hartford, Connecticut, patented a way to make "flush head set screws" cheaply: US 960,244, filed 9 January 1909 and granted 7 June 1910. A headed blank is driven by a punch, "preferably hexagonal in cross section", through a die, so the head is drawn back down to the wire's diameter around the punch and keeps its hexagonal socket. The screw can be sunk below the surface and turned by "a strong key or crank".
This rung follows the metal through Allen's die, estimates what a set screw holds, and measures it on a pulley and shaft.
Baguhan
About 2 hours
Mga Tagubilin
1
1
Where the head goes, and what it holds
Where the head goes, and what it holds
Naglo-load ng Jupyter notebook…
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2
Pulling metal through a hole smaller than itself
Pulling metal through a hole smaller than itself
Allen's die works like a drawplate: the metal gets thinner and longer. The embedded blueprint shows the older process.
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3
Read US 960,244
Read US 960,244
Allen writes that it is "now generally recognized as very desirable, and numerous governments, State and national, make it obligatory" to guard or sink the heads of set screws on rotating parts. His object is screws "cheaper than the common headed set screws, which can be entirely sunk below the surface".
Fig. 1: a blank 1 of round wire is cut, one end upset "in the ordinary way" to form an expanded head 2, and the blank is driven through a die 3 by a punch 4. The head is "drawn up to the original diameter of the wire, leaving a socket 5 in the end". Other figures start from a drilled or punched round socket and turn it hexagonal the same way, or make a headed machine screw (Fig. 4).
The sockets are "shown as hexagonal" but "can be formed square, octagonal or any other angular or non-circular shape, depending on the shape of the punch". The claims are for the process: an enlarged end forced by an angular punch through a die smaller than that end, "compressing that end onto the punch".
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4
Measure a socket screw and a set screw's grip
Measure a socket screw and a set screw's grip
Measure a socket head cap screw with the caliper: head diameter, the socket across the flats, and its depth. Find the hex key that fits and note the size.
Slide a 16-tooth timing pulley onto a 6 mm steel shaft clamped in the bench vise. Tighten its set screw with the hex key — first lightly, then firmly. Each time, wind a string round the pulley's teeth, hook the spring scale to it, and pull until the pulley slips. Slip torque = scale reading × the pulley's pitch radius (about 5.1 mm for 16 teeth of 2 mm pitch). Compare with the notebook.
File a small flat on the shaft under the set screw and repeat: the grip rises sharply.
Mga materyales para sa hakbang na ito:
Timing Pulley - Shaft Mount (16T; 6mm Bore)1 piraso
Hilaw na baras na asero1 piraso
Turnilyong May Ulong Soket2 piraso
Turnilyong pangharang2 piraso
Pisi ng Bulak Pangkusina1 pirasoMga kailangang kasangkapan:
Set ng hex key
Digital na Kalibrador 6 Pulgada
Bais sa Mesang Panggawa
Panukat ng Puwersa (Timbangang Spring)
Set sa paggawa ng sinulid ng turnilyo5
5
A hex-socket screw that will not behave
A hex-socket screw that will not behave
Hex socket troubleshooting.
Flow
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6
History and honest limits
History and honest limits
**William G. Allen** of West Hartford, Connecticut, assignor of one-half to Ira Dimock, filed US 960,244 on 9 January 1909; it was granted on 7 June 1910. It claims a process of making socketed screws by forcing an enlarged end through a smaller die onto an angular punch.
**Honest limits.** The head sizes, nut factor and friction in the notebook are examples; real set-screw holding depends on the point form, hardness and shaft finish.
Mga Materyales
5- Timing Pulley - Shaft Mount (16T; 6mm Bore)10% komisyon1 piraso$8.25
- 1 pirasoPlaceholder
- 2 pirasoPlaceholder
- Turnilyong pangharang10% komisyon2 pirasoPlaceholder
- 1 pirasoPlaceholder
Mga Kinakailangang Kasangkapan
5- Placeholder
- Placeholder
- Placeholder
- Placeholder
- Placeholder
Tinatayang Kabuuan
Ang binili ng gumawa. Ang mga materyales na walang presyo ay kukunin mo kung saan ka bibili.
Kaugnay na Blueprint
Ang mga blueprint na ito ay nagbabahagi ng kaalaman — mga teknik, materyales, o prinsipyo

Upsetting: Making It Thicker by Making It Shorter
ni Forge
Paggawa ng Metal
24
0
0
0
0
0

Drawing Wire Through a Drawplate — Reducing Iron Rod to Fine Wire
ni Forge
Paggawa ng Metal
48
0
0
0
3
0

What a Screw Thread Is: A Ramp Wrapped Round a Cylinder
ni Forge
Paggawa ng Metal
27
0
0
0
0
0

Choosing the Fastener: Screw, Bolt, Stud, Rivet
ni Martin
Mga Kasangkapan sa Kahoy
22
0
0
0
0
0

Cutting a Thread with a Die: Making Your Own Bolt
ni Forge
Paggawa ng Metal
27
0
0
0
0
0
CC0 Pampublikong Domain
Ang blueprint na ito ay inilabas sa ilalim ng CC0. Malaya kang kumopya, magbago, mamahagi, at gumamit nang walang pahintulot.
Suportahan ang Maker sa pamamagitan ng pagbili ng mga produkto sa kanilang Blueprint Komisyon ng Maker itinakda ng mga Vendor, o lumikha ng bagong bersyon ng Blueprint na ito at isama bilang koneksyon sa iyong Blueprint upang ibahagi ang kita.