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Toner and the Two-Component Developer
Charlie

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Charlie

30. ágúst 2026DE
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Toner and the Two-Component Developer

Carlson's first developer was lycopodium powder - fern spores - dusted onto a charged plate. It proved the principle and nothing else. A machine that has to make ten thousand identical pages needs a powder whose charge you can specify, hold, and get back again. The answer, worked out at Battelle in the 1940s and refined ever since, is that the powder is never charged deliberately at all. Toner is mixed with much larger carrier beads and tumbled; the two materials sit at different places in the triboelectric series, so rubbing transfers charge from one to the other exactly as a balloon takes charge from a jumper. The beads then carry the toner to the drum on a magnetic brush, and the latent image's own field pulls the toner off. What makes this hard is that the numbers are close together. Work out the electrostatic force on a charged eight-micrometre particle in the development field and it comes to a few nanonewtons - the same order as the van der Waals and image forces gluing that particle to the bead. There is no comfortable margin. Under-charge the toner and it will not leave the carrier; over-charge it and it holds onto the drum through transfer and prints hollow letters. A developer is an engineered mixture held inside a narrow band, not simply a black powder. The particle size tells the rest of the story. Twelve micrometres was fine when a dot was eighty-five micrometres across. At 1200 dots per inch the dot is twenty-one micrometres and the particle IS the edge - which is what drove toner from ground-up resin to chemically grown particles of five or six micrometres, and eventually to suspending it in oil and giving up on powder altogether.
Miðlungs
3 hours

Leiðbeiningar

1

Charge a powder by rubbing it

Put a spoonful of iron powder and a pinch of toner in a dry jar and shake it for a minute. The toner disappears - it is now coating the iron. Hold a neodymium magnet under the jar and lift out a brush of iron. Sweep it across a sheet of paper you have charged by rubbing with a cloth: the toner jumps off onto the charge and the iron stays on the magnet. That is a magnetic brush developer.

Efni fyrir þetta skref:

Iron Powder Atomized 99% 1 lbIron Powder Atomized 99% 1 lb50 g
Laser Printer Toner Powder (Black)Laser Printer Toner Powder (Black)5 g
PaperPaper5 plötur

Nauðsynleg verkfæri:

Neodymium Magnet SetNeodymium Magnet Set
Gold-Leaf ElectroscopeGold-Leaf Electroscope
Safety GogglesSafety Goggles
Dust MaskDust Mask
2

Weigh the charge, then fuse it

Weigh the developer, blow the toner off the beads into the electroscope's cup and read the deflection against the weight lost. That ratio - microcoulombs per gram - is the number the notebook says everything depends on. Then press the developed sheet with a hot iron at 180 C. The binder melts into the fibres and the image stops being a powder. Rub it: nothing comes off.

Efni fyrir þetta skref:

PaperPaper10 plötur

Nauðsynleg verkfæri:

Precision Digital Scale (0.01g)Precision Digital Scale (0.01g)
Gold-Leaf ElectroscopeGold-Leaf Electroscope
Hot Plate (Laboratory/Kitchen)Hot Plate (Laboratory/Kitchen)
Magnifying GlassMagnifying Glass
3

Particles per dot, force balance, and four developers

Loading Jupyter Notebook...

Nauðsynleg verkfæri:

Desktop ComputerDesktop Computer
4

Compendium: what is actually in the particle

By mass a toner particle is mostly binder - a styrene-acrylate or polyester chosen for a glass transition near 60 C, so it survives a warm warehouse, and a melt viscosity that flows at 120-180 C so a fuser roller can drive it into paper in milliseconds. Five to ten per cent is pigment. A charge control agent, a metal complex dye, sets where the particle sits in the triboelectric series - it exists purely to make the rubbing repeatable. A wax releases it from the hot roller. Finally a few tenths of a per cent of fumed silica is tumbled onto the OUTSIDE so the particles roll rather than cake; without it the powder will not flow at all. Pulverised toner is melt-mixed, cooled and ground, giving sharp fragments and a wide size spread - the fines charge too high, the coarse too low, and both are classified out and wasted. Chemically prepared toner grows particles from emulsion instead: round, narrow in size, small enough for 1200 dpi, and with the wax and pigment placed INSIDE a shell rather than smeared through. That is how a modern toner fuses cooler and costs the printer less energy per page.

Nauðsynleg verkfæri:

Notebook and PencilNotebook and Pencil

Efni

3

Nauðsynleg verkfæri

9

CC0 opinbert ríki

Þessi teikning er gefin út undir CC0. Þér er frjálst að afrita, breyta, dreifa og nota þetta verk í hvaða tilgangi sem er, án þess að biðja um leyfi.

Studdu smiðinn með því að kaupa vörur í gegnum teikningu hans þar sem hann fær þóknun smiða sem seljendur ákvarða, eða búðu til nýja endurskoðun á þessari teikningu og tengdu hana sem tengingu í þinni eigin teikningu til að deila tekjum.

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