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The Snap Fastener: A Spring That Pinches the Same Every Way
Tex

Creado por

Tex

27. septiembre 2026FO
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The Snap Fastener: A Spring That Pinches the Same Every Way

A snap fastener — a press stud — closes with a push and opens with a pull: a stud with a bulb on one piece of cloth, a socket with a spring on the other. George A. McCormack of South Boston, assignor to the United States Fastener Company, filed US 933,194 on 20 July 1908; it was granted on 7 September 1909. Earlier socket springs were not "equally resilient in all directions", so the pull needed to open the snap depended on which way the spring faced, and makers had to fix each spring in place and sew each fastener on the right way round. His spring has central gripping arms and a near-rectangular outer rim with symmetrical flexing points, and is left free to turn in its casing. This rung works out why a uniform spring matters when cloth peels, and measures the pull-off force of real snaps in several directions.
Principiante
About 2 hours

Instrucciones

1

Pull-off force and peel direction

Cargando el cuaderno de Jupyter…
2

The closure it competes with

A button needs a buttonhole and a shank; a snap needs neither. The embedded blueprint shows how a button is sewn to last.
3

Read US 933,194

McCormack's socket has two parts seated on opposite sides of the cloth. The upper part A is a cap a′ clenched over a disk a², whose eyelet a³ passes through the material. The lower part B is a cylindrical casing b′ with an opening b² for the eyelet; a collet b³ with a stud-receiving opening holds the spring C inside the casing, where it "may be loosely secured and free to rotate". The spring "comprises central stud gripping arms c′ and an integral outer rim c², the latter being preferably substantially rectangular in shape". The rim "has localized centers of flection at points c³ symmetrically disposed about the central stud gripping arms", so "the tension necessary to disengage the stud is the same in all directions." The gain he claims is in the factory: no device to stop the spring turning, and no "painstaking adjustment of the spring when the parts are assembled", nor attaching the fastener "in a predetermined position".
4

Set snaps and measure the pull

Set four snap fasteners from the heavy-duty kit into two strips of denim, following the kit's setting tool and a hammer on a hard surface. Also sew two small sew-on snaps from the assortment onto cotton fabric with needle and thread. Close each snap. Hook the spring scale to one strip and hold the other flat; pull straight off and note the reading. Then peel instead: pull from one edge at 0°, 45° and 90° around the snap, turning the strip each time. A good socket spring gives nearly the same reading every way; a large spread means the spring is uneven or the snap was set crooked. Cut one socket open with the cutters and look at the spring under a hand lens.

Materiales para este paso:

Kit de botones de presión (alta resistencia)Kit de botones de presión (alta resistencia)1 pieza
Snap Assortment - 30 pack (male and female)Snap Assortment - 30 pack (male and female)1 pieza
Tejido vaqueroTejido vaquero1 pieza
Tejido de algodón (ligero)Tejido de algodón (ligero)1 pieza
HiloHilo1 pieza

Herramientas necesarias:

MartilloMartillo
Dinamómetro (balanza de resorte)Dinamómetro (balanza de resorte)
Agujas de coser a manoAgujas de coser a mano
Alicates de corte diagonalAlicates de corte diagonal
Lupa de mano 10xLupa de mano 10x
Transportador de ángulosTransportador de ángulos
5

A snap that will not behave

Snap fastener troubleshooting.

Flow

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6

History and honest limits

**George A. McCormack** of South Boston filed US 933,194 on 20 July 1908, assigned to the **United States Fastener Company** of Boston; it was granted on 7 September 1909. It claims a two-part socket member whose spring has near-circular gripping arms and a near-rectangular rim, loosely held and "equally resilient in all directions". Press studs themselves were older. **Honest limits.** The stiffness, spread, bulb angle and friction in the notebook are examples; the cos²/sin² stiffness is a simple model of an uneven spring.

Materiales

5

Herramientas requeridas

6
Total estimado
Lo que compró quien lo hizo. Los materiales sin precio se consiguen donde tú los compres.
MX$62.80

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