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REVERSE ENGINEERING
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ÀWỌN OHUN WÍWỌ̀

The Collapsible Tube: A Container That Is Always Full
Before the 1840s a painter kept ground oil colour in pig's bladders tied with string, pricked to squeeze some out; once opened, the paint began to dry. A tube of soft metal, squeezed from the end and capped, keeps the rest sealed from the air.
US 2,252, dated 11 September 1841, was granted to John Rand, then living at Howland Street, Middlesex, England — the American portrait painter John Goffe Rand. Its drawing sheet is titled "Metal Rolls for Paint". Tubes of grain-tin, lead or pewter thin enough "to be caused to be permanently collapsed" are filled, closed at both ends, pierced or fitted with a screw-capped nozzle, and rolled up from the end as the paint is used.
This rung works out why a soft metal tube stays collapsed, and fills and tests tubes of paint.
Olùbẹ̀rẹ̀
About 2 hours
Ìlànà
1
1
Dose per millimetre and fold strain
Dose per millimetre and fold strain
Ń ṣí ìwé Jupyter…
2
2
Why paint must be kept from the air
Why paint must be kept from the air
Oil paint cures by reacting with oxygen. The embedded blueprint explains the drying mechanisms that a sealed tube stops.
3
3
Read US 2,252
Read US 2,252
Rand's invention relates to "a mode of preserving paints and other fluids by confining them in close metallic vessels so constructed as to collapse with slight pressure, and thus force out the paint or fluid confined therein through proper openings", which can then be closed air-tight. The vessels are "at all times full, whatever be the quantity of fluid matter remaining therein".
He names "grain-tin, lead, and pewter" as the best and cheapest metals, of such thickness "as readily to yield to pressure and to be caused to be permanently collapsed". Fig. 1's vessel is "made of grain-tin drawn into a tube", the metal "about one seventy-fifth of an inch in thickness", its ends closed by melting the pressed edges or by soldering; a pair of forceps b holds the end for closing it with a blowpipe or hot iron.
A hole is made at c and "it is better that the pressure should be made at the end, d, of the vessel", so the collapsed end "may be rolled up". Fig. 4 adds a short tube with "a screw-cap". He warns that the fluid must not be one "chemically prejudicially acted on by the metal employed".
4
4
Fill tubes and test the seal
Fill tubes and test the seal
Mix a little oil paint from the set with a few drops of linseed oil. Fill two empty paint tubes from the open end with a palette knife, fold the end over twice with flat-nose pliers and crimp it flat. Put the same paint in a small open-topped jar with a loose lid.
Each day for a week, squeeze a pea of paint from a tube and rolling up the end, and take a pea from the jar. Note when the jar's paint grows a skin and when the tube's does. Measure the flattened length per squeeze with the caliper and compare with the notebook's millimetres per millilitre.
Àwọn ohun èlò fún ìgbésẹ̀ yìí:
Àwọn ìgò aró tí kò ní nǹkan nínú2 ẹyọ
Ètò àwọ̀ òróró1 ẹyọ
Òróró Ọ̀gbọ̀1 ẹyọ
Ìgò Gílásì1 ẹyọÀwọn irinṣẹ́ tí a nílò:
Ẹmú Ẹnu Pẹrẹsẹ
Òṣùwọ̀n Kálípà Díjítà Ìnṣì 6
Ọ̀bẹ Iṣẹ́ Ọwọ́5
5
A tube that dries out or leaks
A tube that dries out or leaks
Collapsible tube troubleshooting.
Flow
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6
6
History and honest limits
History and honest limits
**US 2,252**, dated 11 September 1841, was granted to **John Rand**, a citizen of the United States then living in Middlesex, England; he is the portrait painter John Goffe Rand. It claims the mode of preserving paint in vessels that collapse by slight pressure as their contents are removed.
**Honest limits.** Tin's modulus and yield stress in the notebook are typical values; lead and pewter behave similarly. Lead tubes are not used for food or cosmetics today.
Àwọn ohun-èlò
4- Àyè
- Ètò àwọ̀ òróróìdá 10%1 ẹyọÀyè
- 1 ẹyọÀyè
- 1 ẹyọÀyè
Àwọn irinṣẹ́ tó nílò
3Blueprint tó jọra
Àwọn blueprint wọ̀nyí pín ìmọ̀ — ọ̀nà, ohun-èlò tàbí ìlànà

Extracting Tin from Cassiterite — Smelting the Bronze Alloying Metal
láti ọwọ́ Forge
Iṣẹ́ Irin
92
0
0
0
0
0

Drawing Wire Through a Drawplate — Reducing Iron Rod to Fine Wire
láti ọwọ́ Forge
Iṣẹ́ Irin
48
0
0
0
3
0

Making Azurite Blue Pigment — Grinding the Copper Mineral into the Blue of Medieval Painting
láti ọwọ́ Charlie
IṢẸ́ ỌNÀ
69
0
0
0
4
0

Drying Is Not Evaporating: Three Different Mechanisms, Three Different Films
láti ọwọ́ Mary
Kẹ́míkà
25
0
0
0
0
0
CC0 Àgbègbè Gbogbogbò
Blueprint yìí ti jáde lábẹ́ CC0. O lè ṣe àdàkọ, yí padà, pín, àti lò láìsí ìyọ̀ǹda.
Ṣàtìlẹ́yìn Olùṣẹ́dá nípa rírà àwọn ọjà nipasẹ̀ Blueprint wọn Ẹ̀san Olùṣẹ́dá tí àwọn Olùtajà gbé kalẹ̀, tàbí ṣẹ̀dá àtúnṣe tuntun ti Blueprint yìí kí o sì fi sínú Blueprint rẹ gẹ́gẹ́ bí ìsopọ̀ láti pín owó-wíwọlé.