Gold Spacer Bead – 18K PVD Coated Stone Spacer For Charm Bracelets
The gold spacer bead is an 18K PVD coated stone spacer designed to elevate charm bracelets by creating seamless transitions between birthstone rings and other charms. This gold spacer bead, crafted from 316L surgical-grade stainless steel, offers a tarnish-resistant and hypoallergenic finish that ensures lasting shine and comfort for everyday wear. Measuring 9mm outer diameter, 4mm inner diameter, and 2.2mm width, it weighs just 0.50g, making it perfect for stackable charm designs that feel cohesive and polished.
This stone spacer bead features an 18K gold PVD coating over durable stainless steel, providing a jewelry spacer component that resists fading and scratching better than traditional plated or vermeil options. The hypoallergenic jewelry bead is free from nickel, lead, and other allergens, making it safe for sensitive skin without compromising style or durability.
Key benefits include:
This charm bracelet spacer is ideal for those seeking a beaded charm accessory that adds value and elegance to any custom bracelet or necklace collection. The gold plated spacer effect enhances every build with a professional look that stands out instantly.
With quality materials and thoughtful design, this jewelry spacer component combines beauty and function. It’s the perfect solution for anyone wanting a reliable, stylish birthstone spacer or charm bracelet spacer that withstands daily wear while maintaining its shine.
Additional features include:
Tested for durability and hypoallergenic properties, this stainless steel bead guarantees long-lasting performance. Its polished surface replicates the look of fine jewelry without the high cost, making it an excellent choice for enhancing any charm bracelet or necklace.
Elevate your custom jewelry designs with this gold spacer bead that blends style, strength, and comfort seamlessly. Whether used as a birthstone spacer or a charm bracelet spacer, this piece adds sophistication while protecting against discoloration and irritation.