We carry XRP products but in the event we are out of stock we will substitute with a equal or greater value part
XRP 894 Female To Male Flare O-ring Seal Reducers
The XRP 894 Female to Male Flare O-ring Seal Reducers offer a versatile and efficient solution for connecting different sizes of hoses or fittings within fluid transfer systems. With meticulous engineering and precise manufacturing, these reducers ensure reliable performance in various applications.
All male flare adapters are JIC 37˚. Most adapter fittings are also available in steel and stainless. Some are available in black, to coordinate with Ti-Tech hose ends with the look of titanium and our new XR-31 hose.To order steel – change the first digit of the part number from a “9” to a “4”
EXAMPLE: 981606 changes to 481606. To order stainless – change the first digit of the part number from a “9” to a “5”
EXAMPLE: 981606 changes to 581606. Call for pricing and availability.
Crafted from high-quality materials, these reducers feature a female flare fitting on one end and a male flare fitting on the other, both equipped with O-ring seals. This design guarantees a secure and leak-free connection, enhancing the integrity of fluid conveyance. The O-ring seals provide a tight barrier against leaks, even under high pressure or volatile fluid conditions, making them ideal for industries such as automotive, aerospace, and industrial manufacturing.
The XRP 894 series excels in adaptability, allowing users to seamlessly transition between different hose sizes or fluid components. Whether it’s upgrading, repairing, or customizing a fluid system, these reducers ensure compatibility and facilitate efficient flow management. Their compact design minimizes space requirements and streamlines installation, saving time and labor costs.
With an emphasis on durability, these reducers exhibit resistance to corrosion, abrasion, and various environmental factors, prolonging their service life even in demanding conditions. This resilience reduces maintenance needs and enhances overall system reliability.
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