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Envelope Folding Machine
Martin

Yenziwe ngu-

Martin

1. uNcwaba 2026NO
12
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Envelope Folding Machine

Before 1853 an envelope was folded by hand, one at a time, by a person with a bone folder. Dr Russell L. Hawes of Worcester, Massachusetts — a physician who left medicine to build papermaking machinery — patented a machine that did it automatically.

US 9,812, granted 21 June 1853. Google Patents catalogues it as “Envelop-folding machine”; the drawing sheet itself is headed “Machine for Folding and Making Envelops”. Where the catalogue and the document disagree, the document wins — both are given here. The claim is not simply “a machine that folds”. It is a sequence: a self-feeding device lifts one blank from a stack, a double follower crimps it, then four folding blades — “four in number, or one for each of the four sides” — descend at staggered heights so each flap folds in turn rather than all at once, and paste fountains with ratchet-driven rollers gum the flaps as they close. The whole cycle takes seven revolutions of the main shaft.

The staggered blade heights are the insight worth building. Four flaps cannot close simultaneously — they overlap, so they must arrive in order. That single detail is the difference between a machine that folds envelopes and a machine that crushes paper. Hawes's machines produced 10,000 to 12,500 envelopes a day.

Oqalayo
45 minutes

Imiyalelo

1

Read the claim before you build

Hawes claims a sequence, not a shape: self-feed, crimp, four blades at staggered heights, paste, press. Write those five stages down — you will build them in order.

2

Cut a cross-shaped envelope blank

Cut one 200 mm square of paper. Mark a 100 mm square centred inside it. The four outer strips are the flaps.

Materials for this step:

PaperPaper4 amashidi

Tools needed:

Craft KnifeCraft Knife
Steel Ruler (30cm)Steel Ruler (30cm)
3

Fold it by hand and time yourself

Fold all four flaps by hand. Time one envelope with the stopwatch. This is the baseline Hawes was competing against.

Tools needed:

StopwatchStopwatch
4

Cut the forming bed

Cut a 100 mm square of corrugated cardboard. This is the former the blank wraps around.

Materials for this step:

Corrugated Cardboard Sheets (25-Pack)Corrugated Cardboard Sheets (25-Pack)1 ishidi

Tools needed:

Craft KnifeCraft Knife
5

Glue the former to a base board

Glue the 100 mm former centrally onto the wooden board. Let it set 10 minutes.

Materials for this step:

Wood GlueWood Glue5 ml

Tools needed:

Flat Wooden BoardFlat Wooden Board
6

Cut four folding blades

Cut four cardboard strips 100 × 30 mm. These are Hawes's four blades, one per side.

Materials for this step:

Corrugated Cardboard Sheets (25-Pack)Corrugated Cardboard Sheets (25-Pack)1 ishidi

Tools needed:

Craft KnifeCraft Knife
7

Set the blades to four different heights

Glue a card spacer under each blade: 0 mm, 3 mm, 6 mm, 9 mm. This staggering is the patent's core mechanical idea — the flaps must arrive in sequence.

Materials for this step:

Corrugated Cardboard Sheets (25-Pack)Corrugated Cardboard Sheets (25-Pack)1 ishidi
Wood GlueWood Glue5 ml

Tools needed:

Steel Ruler (30cm)Steel Ruler (30cm)
8

Hinge each blade to the base

Tape or wire each blade so it pivots down onto the former. Check each swings freely.

Materials for this step:

Galvanised Steel WireGalvanised Steel Wire0.5 imitha

Tools needed:

Sharp ScissorsSharp Scissors
9

Load a blank

Centre one blank over the former, printed side down.

Materials for this step:

PaperPaper1 ishidi
10

Close the blades in height order

Press the blades down from lowest to highest. Each flap folds over the one before it.

11

Apply paste to the last flap only

Brush a 5 mm line of glue along the final flap and close it. Hawes used ratchet-driven paste rollers to do exactly this.

Materials for this step:

Wood GlueWood Glue2 ml
12

Time the machine-folded envelope

Time one envelope through your jig. Compare with your hand-folded time from step 3.

Tools needed:

StopwatchStopwatch
13

Run ten and measure consistency

Fold ten envelopes. Measure the finished width of each with the ruler and record the spread. Consistency, not speed, is what a machine actually sells.

Materials for this step:

PaperPaper10 amashidi

Tools needed:

Steel Ruler (30cm)Steel Ruler (30cm)
14

Deliberately mis-order the blades

Now close the blades in the wrong order — highest first. Observe the jam. This is why the staggered heights are claimed.

15

History & Context

US 9,812, “Envelop-folding machine”, R. L. Hawes of Worcester, Massachusetts, granted 21 June 1853.

Hawes trained and practised as a physician before leaving medicine for Goddard, Rice & Co., where he designed papermaking machinery. His envelope machine was the first commercially successful one in the United States, turning out 10,000–12,500 envelopes per day where a skilled hand folder managed a few hundred.

His specific contribution over earlier designs was the self-feeding device that picked up blanks automatically. That cut the number of human attendants a machine needed and set the pattern later used in self-gumming plunger machines.

A note on the record. Google Patents lists the filing date for US 9,812 as the same day as the grant, 21 June 1853. That is a cataloguing artefact of very early patents, not a real same-day filing — this blueprint therefore cites the grant date only. The same problem affects several 1830s–1890s patents, including Lanston's Monotype in this very batch.

The envelope itself was a newer idea than most people assume. Pre-gummed, mass-produced envelopes only became normal once machines like this made them cheap; before that, a letter was commonly folded and sealed with wax, the sheet acting as its own wrapper.

Izinto

4

Amathuluzi Adingekayo

5

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