The Kugel Komponents 3/4" Single Line Clamps (8-Pack) provide a clean, heavy-duty, and professional way to secure large-diameter automotive lines, hoses, and cables. Designed to mount components flush against flat surfaces such as frame rails, firewalls, or inner fenders, these clamps offer a show-quality alternative to unsightly plastic zip ties or bulky rubber-insulated p-clamps.
Precision Sizing and Versatility
Kugel Komponents sizes these clamps by their exact Inside Diameter (I.D.), which directly corresponds to the Outside Diameter (O.D.) of the line you need to secure. Whatever the total O.D. of your line, hose, or cable is—that is the exact clamp size required.
The 3/4" clamp size is engineered to perfectly fit heavy-duty automotive plumbing:
-
-10 AN Stainless Steel Braided Hoses: The industry standard for high-volume oil cooler lines, dry sump oil systems, turbocharger drains, and heavy-duty fuel delivery systems.
-
3/4" O.D. Hard Lines: Ideal for custom chassis plumbing, heater matrix lines, or specialized fluid transfer.
Premium Construction
-
Heavy-Gauge Stainless Steel: Stamped from premium, corrosion-resistant stainless steel that handles extreme under-car environments without rusting, pitting, or losing its finish.
-
Low-Profile Allen Hardware: Each kit comes complete with 10/32 stainless steel button head Allen screws, providing a sleek, snag-free flush mount when torqued down.
Technical Summary
| Feature |
Detail |
| Clamp Size (I.D.) |
3/4" |
| Compatible Components |
-10 AN Braided Hose, 3/4" O.D. Hard Line |
| Material |
Heavy-Gauge Stainless Steel |
| Pack Quantity |
8 Clamps & 8 Screws |
| Hardware Thread Size |
10/32" |
| Hardware Style |
Button Head Allen Drive |
Installation Tip
To mount these clamps, you will need to drill and tap your chosen mounting surface for a 10/32 thread. Because large-diameter lines like -10 AN hoses carry significant physical weight and fluid pressure pulsations, applying a drop of medium-strength blue threadlocker to each screw is highly recommended to protect against harmonic loosening over time.