Skip to content

UPE Braided Hose

UPE braided Hose is versatile and available in many thicknesses

UPE Braided Hose

UPE braided Hose is versatile and available in many thicknesses. It is suitable for industrial environments because it is resistant to a variety chemicals, bacteria, and fungal infections. It can also be stretched up to 800% from its original size. Because of its durability, UPE industrial hose can handle some of the harshest working environments.

Oil extraction hose

An oil extraction hose with upe braides can be used for many different oil extraction applications. It is constructed with four to six layers of synthetic rubber and high reinforcement. The inner tube is smooth and contains a strong inner core of extruded Teflon resin. The hoses are easy-to-use and come in different sizes. They are also highly flexible and vacuum-rated.

Acidizing Fracturing Hose

PME Industrial Company produces high-pressure flexible hose lines certified to perform at 15,000 PSI. These hoses are rated to meet API 16C specifications. They are also known by the names choke and kill hose lines or coflex hose. They can meet a variety pressure requirements and are available with custom branding and colors for large-scale orders.

High-pressure hoses are more cost-effective, flexible, and have fewer leak paths. Flexible hoses also reduce the chance of premature write-offs from end-connection failures.

4-layer steel wire high-pressure hose

A 4-layer steel wire high pressure hose is a flexible hose with a steel wire reinforcement layer. It’s ideal for many applications, including mining and oil field exploration, exploitation and transportation. This type of hose can withstand high pressures and shock waves. It is ideal for use in agricultural machinery as well as injection molding machinery.

A 4-layer steel wire high-pressure hose requires that the load be balanced between two layers. This equal loading ensures that all wires reach their maximum load capacity at the same pressure. This avoids premature overloading and avalanche collapse. This problem is solved by the current invention, which adjusts the E-ratio (load to wall ratio) between layers.

The innermost reinforcement layer is made from thermally altered steel wire. Its tensile strength is 2692 N/mm2 and its elongation at break is 2.5%. Moreover, its E-ratio is 1 16000 N/mm2.