Secure safety pin closure keeps your earring designs locked in place without slipping or rotating on the earlobe.
One Pair Silver Plated Ear Posts – M17
$1.70
7 in stock
7 in stock
Description
Silver Plated Ear Posts
The safety pin mechanism transforms how you attach beads and embellishments to earring backs. These silver plated ear posts feature a fold-over clasp that grips components securely, eliminating the need for glue in many applications. Once you snap the closure shut, your resin cabochon or layered beadwork stays exactly where you positioned it. The flat paddle surface measures a generous area for mounting, while the post itself extends at the angle needed for comfortable wear.
- 16mm x 15mm flat back paddle provides ample surface area for gluing or wire-wrapping embellishments
- Safety pin-style clasp folds over to grip components without adhesive in some designs
- Silver plated finish in platina tone coordinates with cool-toned metal accents
- Standard gauge post fits most earring backs and butterfly clutches
- Sold as one pair, ready for symmetrical earring projects
Mount polymer clay discs directly to the paddle and secure with the snap closure for no-glue earrings that withstand daily wear. The 16mm earring posts accommodate rhinestone clusters arranged in geometric patterns, or you can wire-wrap small chips and beads directly to the paddle surface before folding the clasp over the wrapped wire. Macramé artists use these as a base for micro-knotted circles, tucking cord ends beneath the safety pin mechanism. The flat back design also works beautifully with gemstone cabochons cut to fit the paddle dimensions—simply apply E6000 to the metal surface and press your stone into place.
The platina silver plating catches light with a bright, mirror-like quality that photographs well for online craft sales. This cooler silver tone sits between sterling and antique finishes, working alongside both warm and cool colour palettes without clashing. Pair with sterling silver chain in matching pieces, or contrast against oxidised copper elements for mixed-metal designs.



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