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The Ratchet Socket Wrench: Turn the Nut Without Letting Go
A spanner turns a nut a sixth of a turn and then has to come off and go back on. Where there is no room to swing it, the nut cannot be turned at all.
J. J. Richardson of Woodstock, Vermont, patented a ratchet wrench in US 38,914, dated 16 June 1863. A ratchet with a square hole through it turns in the eyes of a two-part shank; two pawls held in by a spring catch its teeth one way and slip over them the other, and removable sockets, all the same size outside but with square openings of different sizes, fit different nuts. The nut is turned "by an oscillating movement without taking the wrench from it".
This rung works out how much swing a ratchet needs and what its teeth carry, and measures both on a modern socket set.
Utangiye
About 2 hours
Amabwiriza
1
1
Swing, teeth and tooth load
Swing, teeth and tooth load
Gupakira ikaye ya Jupyter…
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2
The mechanism inside the head
The mechanism inside the head
The toothed wheel and pawl that allow motion one way and refuse it the other. The embedded blueprint explains the tooth and pawl geometry the wrench relies on.
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3
Read the 1863 ratchet wrench
Read the 1863 ratchet wrench
In US 38,914 the handle A "may be of wood" and the metal shank B is made in two parts a and a′, screwed together. Their outer ends form eyes c in which two cylindrical bosses d, one on each side of the ratchet C, turn freely. Ratchet and bosses have a square opening e right through them, and into it fits a socket D with a square opening f and a flange g at one end.
Two pawls, E and E′, sit on one pin h between the two parts of the shank: "One of these pawls, E, is a pulling one, and the other, E′, a pushing or shoving one." A spring F between them keeps both engaged. Swinging the handle one way (arrow 1) the pawls drive the teeth; the other way (arrow 2) they slip over them.
"Several sockets, D, are used with the same wrench. These sockets are all of the same size externally, but the square openings f are of different dimensions to suit different-sized nuts." The patent names its purpose: cases where it would be "inconvenient or impossible, on account of a restricted space", to use an ordinary wrench.
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4
The swing-and-return cycle
The swing-and-return cycle
Ahakorerwa Blockly
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5
Count the teeth and measure the room it needs
Count the teeth and measure the room it needs
Take the ratchet from a socket set, fit a socket on a nut clamped in the bench vise, and turn the handle one full revolution slowly, counting the clicks. Clicks per revolution is the number of positions the ratchet can take up; 360° divided by it is the smallest swing that gains ground. (Some ratchets use two offset pawls and click twice per tooth.)
Now build a 'cramped corner': screw two offcuts of pine board to the bench either side of a hex bolt so that only a 30° swing is free. Try to run the nut down with a combination spanner, then with the ratchet. The spanner has to come off and be flipped at every stroke; the ratchet does not.
Finally tighten the nut with the torque wrench to a set value and note how many ratchet strokes it took from finger-tight.
Ibikoresho by'iyi ntambwe:
Icyegeranyo cy'inyuzi z'impande esheshatu1 igice
Umupira w'Impande Esheshatu2 ibice
Ikibaho cy'igiti cya pinusi1 igice
Umusumari w'igiti4 ibiceIbikoresho bikenewe:
Seti y'Ibifatanya
Iseti y'ibifungura by'impande ebyiri
Ifashi rya torike
Ifatiro ry'Ameza
Igipima Ingoro
Icyuma Cyivumbura Kidafite Insinga6
6
A ratchet that will not drive
A ratchet that will not drive
Ratchet wrench troubleshooting.
Flow
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7
History and honest limits
History and honest limits
**J. J. Richardson** of Woodstock, Vermont, received US 38,914, dated 16 June 1863, for a ratchet wrench with a pulling pawl, a pushing pawl, a spring and interchangeable sockets. Its claim is the ratchet C with its two bosses turning in the eyes of the shank, combined with the pawls, spring and removable socket.
**Honest limits.** Richardson's sockets had square openings, for square nuts. The tooth loads in the notebook are an example, not his dimensions. A ratchet is for running nuts; the highest torques are safer on a solid breaker bar.
Ibikoresho
4- Umwanya
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Ibikoresho bikenewe
6- Seti y'Ibifatanya10% komisiyoUmwanya
- Iseti y'ibifungura by'impande ebyiri10% komisiyoUmwanya
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Blueprint zijyanye
Izi blueprint zisangira ubumenyi — uburyo, ibikoresho cyangwa amahame

Ratchet and Pawl
na Forge
UBUKORIKORI
39
0
0
0
0
0

The Law of the Lever — Archimedes' Balance of Weight and Distance
na Martin
Fiziki
55
0
0
0
1
0

What a Screw Thread Is: A Ramp Wrapped Round a Cylinder
na Forge
Ubucuzi bw'Ibyuma
28
0
0
0
0
0

Choosing the Fastener: Screw, Bolt, Stud, Rivet
na Martin
Ibikoresho by'Ububaji
23
0
0
0
0
0
CC0 Umurenge rusange
Iyi blueprint yasohowe munsi ya CC0. Ushobora gukoporora, guhindura, gukwirakwiza no gukoresha nta kwemererwa.
Shyigikira Umuremyi ugura ibicuruzwa binyuze muri Blueprint ye Komisiyo y'Umuremyi byashyizweho n'Abacuruzi, cyangwa kora verisiyo nshya y'iyi Blueprint ukayinjiza nk'isano muri Blueprint yawe kugira ngo musangire inyungu.