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The Lemon Squeezer and Shaker: Squeeze, Then Shake, in One Hinged Vessel
Making lemonade means a squeezer, a shaker and a tumbler, and the juice has to be poured from one to the next.
Horace L. Heaton of West Jefferson, Ohio, received US 204,325, dated 28 May 1878, for a "combined shaker and lemon-squeezer, for the mixing of lemonade and other drinks of a mixed character": two metal cups hinged together, one holding a lemon cup and the other a plate whose end "will enter the inside cup C, for the purpose of pressing the piece of lemon which is placed in said cup". Closed, the mouth of one fits within the other and the pair is a shaker; "The upper cup B takes the place of the tumbler in the ordinary shaker."
This rung works out the squeeze from the hinge, then makes the hinged pair from two tins with a lemon cup and a plate, squeezes, adds sugar, water and ice, and shakes.
Intermediate
About 3 hours
Instructions
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Squeeze from the hinge
Squeeze from the hinge
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A combined press before it
A combined press before it
The embedded blueprint combines a press, filter and funnel. Heaton combines the squeezer with the shaker the drink is mixed in.
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Read US 204,325
Read US 204,325
"In the figures, A represents a cup, which is made of metal, and which is provided with a hinged cup-top, B. The vessel or cup A is provided upon one side, and near its top, with a flaring-mouthed, open-bottomed cup, in which the lemon to be squeezed is placed."
"The cup B is provided upon its inside with a metallic plate, D, one end of which projects downward, so that when one cup is closed over the other this projecting end will enter the inside cup C, for the purpose of pressing the piece of lemon which is placed in said cup."
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Make the shaker, squeeze and shake
Make the shaker, squeeze and shake
**Cups.** Take two clean tin cans, one slightly narrower than the other so its mouth fits inside the other's. Join their rims on one side with a small butt hinge and pop rivets, so the narrow can closes into the wide one.
**Lemon cup.** Cut a small open-bottomed cup from a third can's side, flaring at the top, and rivet it inside the wide can near its rim, opposite the hinge.
**Plate.** Cut a plate from the can's lid, bend its end down, and rivet it inside the narrow can so that its end enters the lemon cup as the cans close.
**Test.** Put a quarter lemon in the lemon cup, close the cans and press, reading your push on the narrow can's far edge with the spring scale. Open, add a spoon of sugar, 250 ml of water and some ice, close and shake, then pour into a glass. Compare with a lemon squeezed by hand and stirred.
Materials for this step:
Tin Can3 pieces
Butt Hinge1 piece
Pop Rivets10 pieces
Lemon1 piece
Granulated Sugar20 g
Ice Cubes1 piece
Water0.25 literTools needed:
Tin Snips
Pop Rivet Gun Kit
Cordless Drill
Drill Bit Set
Flat-Nose Pliers
Files (Hand File)
Kitchen Knife
Force Meter (Spring Scale)
Measuring Jug
Drinking Glass
Leather Work Gloves5
5
A shaker that leaks, jams or does not squeeze
A shaker that leaks, jams or does not squeeze
Lemon squeezer and shaker troubleshooting.
Flow
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History and honest limits
History and honest limits
**Horace L. Heaton** of West Jefferson, Madison County, Ohio, filed US 204,325 on 15 May 1878; it is dated 28 May 1878. Strengthening plates on the outsides of the cups formed the hinge, and the lemon cup could be riveted in or formed on a plate. His claims cover two hinged metal cups whose mouths nest to form a shaker, and their combination with the lemon cup and plate as a squeezer.
**Honest limits.** Tin cans, a butt hinge and pop rivets stand in for his made-up cups and hinge plates. The notebook ignores friction; its force and lengths are examples. Your squeeze and shake are the result.
Materials
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Tools Required
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