Hot
New
Pre-order
Out stock
Pure Copper Hand Hammered 17 inch Oval Drop-In Bathroom Vanity Sink
SKU: 17003
$119.95
PRODUCT INFORMATION
Monarch Abode's premium pure copper sinks are crafted with exquisite details that exude luxury and fine living. The 17 inch oval bathroom sink is made of heavy, 18-gauge pure copper and provides an outstanding display of quality and exquisiteness for your vanity. Monarch's premium pure copper sinks offer the versatility you need to choose the ideal setup. Feel the indulgence every time for years to come.
- HANDCRAFTED HIGH QUALITY CONSTRUCTION: The Pure Copper Hand Hammered Oval Bathroom Vanity Sink (17 inches) is handcrafted by our skilled artisans to strike a balance of beautiful design with lasting performance. The drop in bathroom sink is made of solid, heavy 18-gauge pure copper that will stand the test of time.
- STYLISH APPEARANCE AND DESIGN: The drop in bathroom sink is enhanced with hand hammered impressions and an attractive oil rubbed bronze finish. Perfect to upgrade your home, condo, apartment, restaurant and bed and breakfasts.
-
EASY INSTALL: Designed for easy DIY installation as a luxurious drop in sink. Includes cutout template for installation; does not include mounting ring and does not include drain.
-
Outer dimensions: 17 inches x 13 inches x 5.25 inches height. Inner dimensions: 15 inches x 11 inches x 5. 25 inches height.
-
Bathroom sink drain hole measures 1 5/8 inches without overflow. As metal sinks are not as thick as porcelain or stone sinks, please make sure the drain you purchase has threading all the way to the top.
-
Care Instructions: Simply wipe the surface of the bathroom drop in sink surface with a damp, soft cloth to keep it looking beautiful with minimal maintenance. DO NOT use corrosive / abrasive cleaning liquids or material as that will damage the copper finish.
- Note: Copper is a living material and our sinks are hand finished. As such, there will be a slight variation in color from sink to sink. Copper will oxidize, darken and patina over time due to interaction with water/air.