Glass Spigot Description
This square in-ground glass spigots used for glass below 12mm, suitable for outdoor glass railings, pool fence, balcony railings, swimming pool railings, staircase handrails, garden railings, etc. The glass spigot is equipped with groundable wires, with anti-conductivity function to ensure the safety of use.
Square glass spigots are an essential component in creating elegant, modern, and safe ground-level glass structures. White pool fence spigots are made of stainless steel and coated with a white finish for a clean, modern look, and can complement the aesthetics of the pool area. These glass spigots can be used with a variety of glass panel thicknesses and styles, including tempered glass, laminated glass, and patterned glass, providing flexibility in design and application.
Glass Spigot Specifications
Product Name |
Square In-ground Glass Spigot |
Outline Dimension |
280mm*104mm*104mm |
Glass Thickness |
12mm |
Weight |
1.46Kg |
Finish |
Classic Satin/Mirror |
Material |
Duplex Stainless Steel 2205, Stainless Steel 304/316 |
Application |
Outdoor Glass Railing, Fence, Balcony Railing, Pool Fence, Stair Handrail, Garden Fence, etc. |
Casting Process |
Siica Sol Technics Lost-wax Process |
Certifications |
Australian Standard Test/Patent Certificate/IATF16949/ISO9001/ISO14001/TUV/PED/AD2000 |
OEM |
Available |
Annual Output |
2000MT |
Tooling Leadtime |
2--4 Week |
Delivery Time |
4--5 Week |
Package Specification
Plastic Bag, Bubble Bag.
Paper Carton, Wooden Case, or as Required.
Note
These spigots are suitable for both indoor and outdoor pool installations and can withstand exposure to various weather conditions. Stainless steel white pool fence spigots are installed by drilling holes in the ground or a surface, inserting the spigots, and securing them in place with appropriate hardware. The glass panels are then attached to the spigots to create a secure and visually appealing pool fence.
The glass spigot is an extended version of the LS-BSC, which has a longer bottom section embedded in the concrete, resulting in a higher load-bearing capacity.