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Use these metal dowel pins as pivots, hinges, shafts, jigs, and fixtures to locate or hold parts.
Plastic pins are a nonconductive and nonmagnetic alternative to metal dowel pins. Use them as pivots, hinges, shafts, jigs, and fixtures to locate or hold parts.
Slip these pins in and out during maintenance or prototyping—they’re undersized to make alignment easier.
Oversized to fit worn and enlarged holes, these pins work well as repair and replacement parts.
Cut this 12" stock to the length you need.
These pins make good hinges or pivots. The grooved half locks pins in position, while the smooth half can act as a pivot. Also known as type H pins.
Center-groove pins are often used in place of clevis pins or to create T-handles. The grooved center locks pins in position, while the smooth ends act as a pivot. Also known as type E pins.
Grooves run the full length of these pins for a firm hold that won't spin. Use them in place of standard dowel, spring, and taper pins to fasten parts. Also known as type A pins.
These pins are commonly used as anchors for tension springs. The grooved half locks pins in position, and spring ends fit in to the notch. Also known as type G pins.
Quarter-groove pins are well suited for hinges or pivots. The grooved end locks pins in position, while the smooth portion can act as a pivot. Also known as type C pins.
Use these as pivot or hinge pins. The knurled half locks pins in position, while the smooth half acts as a pivot.
The full length of these pins is knurled for a tight grip that won't spin.
Center-knurled pins are often used in place of clevis pins or to create T-handles. The knurled center locks pins in position, while the smooth ends act as a pivot.
Barbs bite into plastics and soft metals such as aluminum for a strong hold, and a round head gives a finished appearance.
Use these pins to fasten components made of soft materials such as plastic or aluminum. Opposing barbs bite into each piece, pulling them together for a tight, secure fit.
These pins have a flat head to fit into a counterbored hole.
A 60° beveled head fits into a countersunk hole.
Push parts out of molds with these hardened pins. Also known as knockout and forged pins.
Compared to standard ejector pins, these pins are less likely to chip and crack when used to push steel parts out of molds because they've been hardened through their core. Also known as knockout and forged pins.
Use these pins with a die to punch 1/8" and larger holes. Pins can be modified to fit your application.
The flat end of these ejector blades makes them better suited to push thin-walled parts out of molds compared to ejector pins.
Also known as roll, tension, split, and expansion pins, these pins have a slot along one side that you squeeze closed to install them into unthreaded holes.
These spiral pins remain flexible after installation, so they absorb shock and vibration better than slotted spring pins. They work well in holes that are out of round.
For tough jobs, these spiral pins are 30% stronger than our standard coiled spring pins. They remain flexible after installation to absorb shock and vibration, and work well in holes that are out of round.
Position, pivot, and align components. Also known as pilot pins and PEM® TP4, TPS, and MPP pins.