
Stapler
George W. McGill spent twenty-five years on the problem of fastening paper. He patented a bendable brass paper fastener in 1866, a press to insert it in 1867, and by the 1890s held over fifty patents, all on fasteners.
US 212,316, “Improvement in devices for inserting metallic staples in papers”, granted 18 February 1879 (filed 9 January 1879) is the one usually taken as the birth of the stapler. Its claim is a single-stroke machine: a vibrating lever on a pillar, a grooved vertical chamber guiding the staple, a plunger driven down by the lever, a spiral spring returning it, and — the part that matters — a clinching anvil whose channels bend the two staple legs inward underneath the paper.
Driving and clinching happen in “one continuous and instantaneous operation”. That phrase is the invention: the anvil does its work on the same stroke, using the same energy, without a second mechanism.
Инструкции
Take a modern stapler apart in your head
Take a modern stapler apart in your head
Open a stapler and find the four parts McGill claims: lever, guided chamber, spring-returned plunger, clinching anvil. Sketch them.
Look at the anvil grooves
Look at the anvil grooves
Examine the metal plate the staple closes against. The two shallow curved channels are the clinching anvil. Draw their shape with the magnifying glass.
Необходимые инструменты:
Magnifying GlassBend a staple by hand
Bend a staple by hand
Cut a 40 mm length of wire and bend it into a U with 10 mm legs. This is your staple.
Материалы для этого шага:
Galvanised Steel Wire0.5 метрНеобходимые инструменты:
Sharp ScissorsPush it through paper with no anvil
Push it through paper with no anvil
Push the staple through five sheets against a soft cardboard backing. The legs splay randomly. Record what happens.
Материалы для этого шага:
Paper5 листов
Corrugated Cardboard Sheets (25-Pack)1 листCut an anvil from cardboard
Cut an anvil from cardboard
Cut a 40 × 20 mm card and score two shallow curved channels 12 mm apart, curving inward.
Материалы для этого шага:
Corrugated Cardboard Sheets (25-Pack)1 листНеобходимые инструменты:
Craft Knife
Steel Ruler (30cm)Repeat the push with the anvil underneath
Repeat the push with the anvil underneath
Now the legs follow the channels and fold inward. Compare with step 4.
Материалы для этого шага:
Paper5 листовBuild the pillar and lever
Build the pillar and lever
Glue a dowel upright on the board as the pillar. Hinge a 150 mm card lever at its top.
Материалы для этого шага:
Wood Glue5 мл
Corrugated Cardboard Sheets (25-Pack)1 листНеобходимые инструменты:
Flat Wooden Board
Dowel RodMake the guided chamber
Make the guided chamber
Roll a card tube just wider than your staple and glue it vertically under the lever's free end. The staple must slide without tipping.
Материалы для этого шага:
Corrugated Cardboard Sheets (25-Pack)1 лист
Wood Glue3 млFit the plunger
Fit the plunger
Cut a stiff card strip that slides inside the chamber and contacts the staple crown.
Материалы для этого шага:
Corrugated Cardboard Sheets (25-Pack)1 листНеобходимые инструменты:
Craft KnifeAdd the return spring
Add the return spring
Fit a light compression spring between the lever and the base so the plunger lifts itself after each stroke. McGill claims a spiral spring for exactly this.
Материалы для этого шага:
Compression Spring Set1 штукаAlign the anvil under the chamber
Align the anvil under the chamber
Glue the card anvil directly beneath the chamber. Alignment is everything — a 2 mm offset makes it fail.
Материалы для этого шага:
Wood Glue3 млНеобходимые инструменты:
Steel Ruler (30cm)Fire one full stroke
Fire one full stroke
Load a staple, place five sheets, press the lever once. Drive and clinch should happen together.
Материалы для этого шага:
Paper5 листовTest the thickness limit
Test the thickness limit
Staple 5, 10, 20 and 40 sheets. Record where the clinch fails. McGill's patent includes an adjustable anvil height for precisely this reason.
Материалы для этого шага:
Paper40 листовНеобходимые инструменты:
Steel Ruler (30cm)History & Context
History & Context
US 212,316, George W. McGill, granted 18 February 1879, filed 9 January 1879. The granted title is “Improvement in devices for inserting metallic staples in papers”.
McGill's earlier patents matter to the story: US 56,587 (24 July 1866) for a small bendable brass paper fastener, and US 67,665 (13 August 1867) for a press to insert them. He exhibited at the 1876 Centennial Exhibition in Philadelphia and took a first prize medal. The 1879 patent is the point where fastener and press become one single-stroke machine.
What it competed with. The paper clip (see the linked blueprint) solves the same problem reversibly and without deforming the paper; the staple solves it permanently and far more securely. Neither replaced the other, which is why both are on your desk today.
One honest limit on the popular story: “the first stapler” is a contested title. Devices for driving fasteners into paper existed earlier in Europe, and an ornate machine reputedly made for King Louis XV is often cited, though its documentation is thin. What US 212,316 can be said to be, precisely, is the first commercially successful single-stroke staple press — insert and clinch in one motion.
Материалы
5- 0.5 метрЗаполнитель
- Заполнитель
- 1 штукаЗаполнитель
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