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The Serrated Bread Knife: Teeth That Cut Both Ways
A plain knife squashes a fresh loaf before it gets through the crust, and tears the soft crumb inside.
Joseph E. Burns of Syracuse, New York, received US 1,388,547, dated 23 August 1921, for a knife whose edge is ground into several series of fine teeth, the grooves of each series inclined the opposite way to the next, with plain keystone-shaped parts between them, so that "it cuts rapidly and easily when drawn in either direction".
This rung works out how much harder teeth press than a plain edge, then files Burns's pattern of teeth into a plain kitchen knife and slices bread with it.
Àárín
About 2 hours
Ìlànà
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1
Pressure at the teeth
Pressure at the teeth
Ń ṣí ìwé Jupyter…
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2
An edge for the job
An edge for the job
The embedded blueprint chooses the edge angle to suit the job. Burns shapes the edge itself into teeth to suit bread.
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Read US 1,388,547
Read US 1,388,547
"The object of the invention is to produce an improved and highly efficient cutting blade" and "the invention of this application relates specifically to the formation and relative disposition of the grooves ground at the edge of the tool to form these serrations so that the knife cuts easily and rapidly when moved in either longitudinal direction."
"In practice I have found that by forming the knife as shown in Fig. 1, it cuts rapidly and easily when drawn in either direction and its efficiency for the purpose described is materially increased."
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File teeth into a plain knife and slice bread
File teeth into a plain knife and slice bread
Clamp a plain kitchen knife edge-up in the vise with its blade protected by folded card. Mark five groups along the edge, each 2 cm long, with a 1 cm plain gap between groups.
In the first group, file grooves 2 mm apart into the edge with a round needle file held tilted about 20° towards the handle. In the next group tilt the file the other way, towards the tip, and so on alternately. File only on one side, then take the burr off the flat side with a light stroke of the whetstone.
Slice a crusty loaf with a plain knife, then with the toothed one, counting the strokes for each slice and weighing the crumbs each leaves on the board.
Àwọn ohun èlò fún ìgbésẹ̀ yìí:
Ọ̀bẹ ilé ìdáná1 ẹyọ
Búrẹ́dì odindi1 ẹyọÀwọn irinṣẹ́ tí a nílò:
Ọ̀bẹ búrẹ́dì
Àkójọ Ìfá Kékeré
Òkúta ìpọ́n
Ìdìmú Tábìlì
Ààmì Tí Kò Ní Parẹ́
Ìdíwọ̀n
Ẹ̀rọ Ìwọ̀n Igun
Òṣùwọ̀n Díjítà Ilé Ìdáná5
5
A toothed knife that tears, skids or dulls
A toothed knife that tears, skids or dulls
Serrated knife troubleshooting.
Flow
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History and honest limits
History and honest limits
**Joseph E. Burns** of Syracuse, New York, filed US 1,388,547 on 25 September 1919; it was patented 23 August 1921. He suggested grinding each series at once with a rotary wheel carrying one ridge per groove, though he wrote that this was "not essential" to the invention.
**Honest limits.** The notebook counts only where the edge touches; how deep the teeth are and how sharp their tips are matters too. Spacing and tip width are examples. Your stroke counts and crumb weights are the measurement.
Àwọn ohun-èlò
2- 1 ẹyọÀyè
- 1 ẹyọÀyè
Àwọn irinṣẹ́ tó nílò
8- Àyè
- Àyè
- Àyè
- Àyè
Blueprint tó jọra
Àwọn blueprint wọ̀nyí pín ìmọ̀ — ọ̀nà, ohun-èlò tàbí ìlànà
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.


