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The Cam-Lever Corkscrew: Half a Turn of an Eccentric Lifts the Cork
Drawing a tight cork with a plain corkscrew takes a hard, steady pull with the bottle held between the knees.
Abraham T. Russel of New York received US 34,216, dated 21 January 1862, for a "Machine for Raising or Drawing Corks from Bottles": a cylinder whose head carries a piston, with a corkscrew fixed to the piston's lower end and a cam or eccentric pinned through the piston's slit top. The cylinder stands on the bottle, the screw is turned into the cork by the handle, and "By a half or part revolution of cam or eccentric the piston is raised with the corkscrew."
This rung works out the average lift of the cam, with a work check, then makes the cylinder, piston and eccentric and draws corks with it.
Lanjutan
About 5 hours
Instruksi
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1
The eccentric's lift
The eccentric's lift
Memuat notebook Jupyter…
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2
A corkscrew before it
A corkscrew before it
The embedded blueprint draws a cork with a strong screw and a T handle, by the arm's pull. Russel keeps a screw but lifts it with a cam, the cylinder bearing on the bottle.
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3
Read US 34,216
Read US 34,216
"The machine is constructed of a cylinder with a head or cap through which passes a piston, to the lower end of which is secured a corkscrew. The upper end of the piston passes above the head or cap of the cylinder and is left free to turn and play up and down. To the upper part of piston is attached a cam or eccentric, which works through the upper part of said piston (being slit) resting on the cylinder head or cap, which is the bearing."
"It is operated by placing the lower end of the cylinder on the mouth of the bottle. The screw is then turned into the cork by the handle attached to the cam or eccentric, observing that the catch drops into the slots on the end of piston. The cam or eccentric is then turned with handle down, as in Fig. 2, which lifts or draws the cork out of the bottle."
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4
Make the cam corkscrew and draw corks
Make the cam corkscrew and draw corks
**Cylinder.** Cut 12 cm of 30 mm aluminium tube and file its lower end to sit square on a bottle's mouth. Cut a hardwood disc to fit its top as the head, drill it for the piston and glue it in.
**Piston.** Cut 15 cm of 8 mm mild steel rod. Saw a 5 mm slit 3 cm deep into its top end and drill across the slit for the cam's pin.
**Screw.** Wind 2 mm steel wire into an open helix round a 6 mm rod, file its end to a point, and silver-solder its straight end into a hole drilled in the piston's lower end.
**Cam.** Cut a 5 mm disc of mild steel flat bar about 40 mm across, drill it 15 mm off centre for the pin, and rivet a flat-bar handle to its edge. Set it in the slit on a bolt, so its rim rests on the cylinder's head.
**Test.** Cork several bottles of water with the corking kit. Stand the cylinder on a bottle, turn the screw into the cork by the handle, then swing the handle down through half a turn, reading your push with the spring scale. Draw another cork with a plain corkscrew and the spring scale and compare.
Material untuk langkah ini:
Pipa aluminium0.12 meter
Balok Kayu Keras1 buah
Lem Kayu1 buah
Batang Baja Lunak0.15 meter
Kawat baja0.4 meter
Set patri perak (lunak/sedang/keras)1 buah
Fluks1 buah
Besi Strip Baja Lunak0.2 meter
Aneka baut segi enam1 buah
Mur Segi Enam2 buah
Botol kaca (bening)4 buah
Sumbat gabus4 buah
Air3 literAlat yang dibutuhkan:
Gergaji Besi
Kikir (Kikir Tangan)
Ragum Meja
Obor Propana
Bor Tanpa Kabel
Set Mata Bor
Palu
Tang berujung bulat
Set penyumbat botol anggur
Neraca Pegas (Pengukur Gaya)
Kacamata Pengaman Bening
Sarung Tangan Kerja Kulit5
5
A cam corkscrew that jams, slips or lifts too little
A cam corkscrew that jams, slips or lifts too little
Cam-lever corkscrew troubleshooting.
Flow
Loading...
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6
History and honest limits
History and honest limits
**Abraham T. Russel** of New York, New York, received US 34,216, dated 21 January 1862. His cam A worked in the slit top of the piston B, resting on the head C of the cylinder D, and a catch dropping into slots on the piston's end let the handle turn the screw in before the lift. His claim is the cam or eccentric and piston applied as leverage to corkscrews.
**Honest limits.** Aluminium tube, a steel rod and a flat-bar eccentric stand in for his made-up cylinder, piston and cam, and the catch is left out, so the pin turns the screw in. The notebook gives the average lift without friction; its forces and lengths are examples. Your drawn corks are the result.
Bahan
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Blueprint terkait
Blueprint ini berbagi pengetahuan — teknik, bahan, atau prinsip
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