Elegant European glass bead showcasing emerald florals against lustrous silver background, sized at 14mm with generous 5mm threading hole.
Green Floral Design European Glass Round Bead – O1+Q1
$1.02
83 in stock
83 in stock
Description
Silver Green Glass Bead
Silver green glass bead construction relies on traditional European lampworking techniques where molten glass layers create depth and luminosity. The silver background provides a reflective foundation that amplifies the emerald floral motifs, creating dimensional visual interest as light catches different angles. This 14mm diameter bead demonstrates how controlled cooling processes prevent stress fractures while maintaining the intricate surface details. The substantial 5mm hole accommodates multiple threading passes or thicker cord materials without compromising the structural integrity.
- Dimensions: 14mm length x 9mm width with precision-drilled 5mm centre hole
- Construction: European lampwork glass with silver background and green floral pattern
- Surface finish: Smooth glossy exterior with embedded floral design elements
- Threading compatibility: Accommodates cord up to 4.5mm diameter or multiple wire passes
- Quality standard: Lead, nickel and cadmium free meeting EC safety requirements
- Pattern detail: Hand-applied green florals create unique variations in each 14mm european round bead
Wirework artists thread these onto beading wire as statement focals in asymmetrical necklace designs where the silver catches gallery lighting. The generous hole diameter supports leather cord applications in bohemian-style pendants, while the floral pattern complements natural gemstone combinations. Macramé practitioners incorporate these as transition elements between knotwork sections, where the floral lampwork glass beads add controlled colour without overwhelming earth-tone cord palettes.
The glossy surface finish reflects ambient light consistently, photographing well under both natural daylight and LED craft lighting. At 9mm width, this bead sits comfortably against skin without creating pressure points in bracelet applications.





















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