Extend the reach and versatility of your IBC system with this three-piece adaptor kit. Built for tradespeople, farmers and water-storage projects, it delivers a secure, leak-resistant connection with extra clearance in tight spaces. What’s in the box
- 1 x IBC S60x6MF-EXT — S60x6 male-to-female extender (2" BSP coarse thread) for standard IBC valve outlets
- 1 x IBC S60X6CAP1BSPF — End Cap with built-in BSPF thread, robust plastic
- 1 x MDPEELB25-1BSPM — MDPE elbow, 25mm MDPE, 1" BSP male thread, PN10 rating Key features and benefits
- Extends valve outlets and repositions connections without compromising flow capacity
- Provides extra clearance in confined spaces, aiding maintenance and access
- End cap seals securely with built-in BSPF threading for a leak-resistant closure
- MDPE elbow redirects flow through a 25mm piping path, with a 1" BSP male connection for straightforward integration
- Durable plastics offer resistance to impact, weathering and typical agricultural and water-treatment fluids
- MDPE PN10 rating supports up to 10 bar (approximately 145 psi), suitable for standard water and mild chemical applications Applications and suitability
Ideal for IBC tanks used in agriculture, water storage and irrigation systems. The kit’s components are designed to mate with standard IBC valves, delivering dependable performance in field conditions. The MDPE elbow can be used to change direction in existing pipelines, while the extender and end cap simplify access and valve operation. Installation notes
Threaded connections enable straightforward assembly. After fitting, inspect for leaks and ensure threads are clean before commissioning. Use appropriate sealing practices for BSP threads and verify that fluids are compatible with the plastics involved. Why choose this kit
This three-piece adaptor set combines an extendable outlet, a secure end cap and a direction-changing MDPE elbow in a compact, durable package. It’s a practical solution for installers needing extra reach, improved accessibility and reliable leak resistance on IBC-based systems.