8 Arm Revolver Hand Pipe
A stunning glass handpipe from California-based artisans, Mathematix Glass. Features an 8-arm smoke path design, domed, pinched mouthpiece, carb hole and accents around the bowl head. 3mm thick borosilicate glass for strength and heat resistance.
8 Arm Revolver Hand Pipe Features
- American Borosilicate Glass
- 8 Arm Smoke Path
- Carb Hole
- Amazing Worked Designs
Hand Made In Cali
This stunning hand pipe is the latest range of products from emerging Los Angeles glass specialists, Mathematix Glass. The pipe is handmade by expert flameworkers from the finest American borosilicate glass with a wall thickness of 3mm for superb durability.
Compact And Portable
The basic glass hand pipe is a must-have for its smoking performance and small, portable size. This revolver handpipe is just 3.5 inches in length, making it ideal to take on your travels or slip into a pocket or purse when not in use. Check out our Smoking Accessories section for our huge range of protective carry cases and pouches.
8 Arm Smoke Path
The eight armed smoke path in this pipe helps cool down every hit, ensuring that your hits are smooth and cool. The borosilicate glass design of this piece is non-reactive thus ensuring a tasty and untainted hit.
Unique Designs
The incredible patterns at the head of each pipe are handcrafted by Mathematix Glass’ talented flameworkers. Using coloured rods of American glass, the artisans twist these one-off designs around the bowl head to finish each piece. Uniquely handcrafted, so no two patterns are exactly the same. The beautiful patterns on this piece make it a true stand out piece that will set you apart from a true connoisseur of fine glass dry herb pipes. If you are a herb fan who appreciates the aesthetics of a good pipe.
American Borosilicate Glass
The best bongsf in the herb scene are made of high quality Borosilicate glass. This premium type of glass is much more heat resistant than other forms of glass. This makes it much less likely to fracture when in use. The process of its creation involves the addition of the chemical Boron which reduces the material stresses caused by temperature gradients.
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