forum mud pump pistons for sale
Mud systems are essential to every oil and gas rig. To successfully transfer fluid throughout your circulating system at pressures up to 7,500 pounds per square inch you need proven and reliable products. FET’s products have 30 years of innovation and field experience in providing industry-leading technology for your mud system operations.
Our industry-recognized centrifugal pumps, gate valves, drill pipe float valves, and wash pipes provide you with robust systems that meet the high-pressure demands of today’s drilling landscape.
FET manufactures a full range of valves and seats for every drilling and well-servicing application as part of our full line of Osprey® mud pump system solutions. All of our valves and seats can be used in water, water base, oil base and synthetic base mud applications. FET offers additional valves and seats not listed below, including drilling valves, frac valves and well service valves. FET’s QC standards for the dimensional and material specs are extremely rigid in comparison to other manufacturers. Contact your FET representative to learn more.
Tired of changing mud pump pistons? We have your solution. The TD will work in all types of drilling mud including oil based, synthetic and water based. It was specifically designed to work in applications where water based mud is used or in situations where WBM is used on the top side & OBM is used on the bottom end. This eliminates the need for changing the piston midway through the drilling program. The “TD” or “Total Depth” name reflects our commitment to make a single piston that will last from “spud” to “TD”. This piston has been engineered with a unique friction reducing material bonded into the urethane of the sealing lip. Because the TD is built to withstand friction in the liner, wear on your parts is minimized and savings is maximized. The Patriot™ TD is also designed to meet pressures of 7500 psi as well as temperatures up to 220 degrees.
JL Offshore AS keep inventory and provide a full range of Fluid End Expendable Pump Parts for every drilling condition and different Mud Pumps from well known manufacturers.
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EnerMAX Services Limited Partnership is a leading fluid management services provider offering fluid sales, storage, transport, pumping and recovery and disposal services from 26 service centres throughout Alberta, British Columbia and North Dakota U.S.A. EnerMAX has over 7 million liters of fluid storage capacity, 2,000 pieces of rental equipment and a fleet of over 450 tank, vacuum, hydro-vac, pressure, hot-oiler and steamer trucks. EnerMax stores fluid on a rental basis in its permanent tank farms, as well as offers for sale and distributes KCL, methanol, frac oil, hot and cold water and other oilfield chemicals. Additional EnerMAX services include crude and chemical transport, well batching, frac packages, drill site and tank rental, pipeline cleaning, tower, tank and equipment cleaning, pressure testing, fluid heating and fluid disposal services.
Our redesigned 2.5 centrifugal pump frame is more than 50 lbs lighter and has better stress characteristics than the corresponding frame from our major competitors.
Our centrifugal pump, the MUD HOG, delivers improved performance, better longevity, and cost savings compared to other centrifugal pumps. The MUD HOG’s high quality bearing configuration contributes to greater life expectancy through improved stability and lower vibration. The MUD HOG’s parts are completely interchangeable with other pumps currently on the market. And Forum’s unique attention to the details that improve performance and extend pump life sets the MUD HOG apart from the competition.
The positive displacement mud pump is a key component of the drilling process and its lifespan and reliability are critical to a successful operation.
The fluid end is the most easily damaged part of the mud pump. The pumping process occurs within the fluid end with valves, pistons, and liners. Because these components are high-wear items, many pumps are designed to allow quick replacement of these parts.
Due to the nature of its operation, pistons, liners, and valve assemblies will wear and are considered expendable components. There will be some corrosion and metallurgy imperfections, but the majority of pump failures can be traced back to poor maintenance, errors during the repair process, and pumping drilling fluid with excessive solids content.
A few signs include cut piston rubber, discoloration, pistons that are hard to remove, scored liners, valve and seat pitting or cracks, valve inserts severely worn, cracked, or completely missing, and even drilling fluids making their way to the power end of the pump.
The fluid end of a positive displacement triplex pump presents many opportunities for issues. The results of these issues in such a high-pressure system can mean expensive downtime on the pump itself and, possibly, the entire rig — not to mention the costly repair or replacement of the pump. To reduce severe vibration caused by the pumping process, many pumps incorporate both a suction and discharge pulsation dampener; these are connected to the suction and discharge manifolds of the fluid end. These dampeners reduce the cavitation effect on the entire pump which increases the life of everything within the pump.
The fluid end is the most easily damaged part of the mud pump. The pumping process occurs within the fluid end with valves, pistons, and liners. Because these components are high-wear items, many pumps are designed to allow quick replacement of these parts.
Additionally, the throat (inside diameter) can begin to wash out from extended usage hours or rather quickly when the fluid solids content is excessive. When this happens it can cut all the way through the seat and into the fluid end module/seat deck. This causes excessive expense not only from a parts standpoint but also extended downtime for parts delivery and labor hours to remove and replace the fluid module. With that said, a properly operated and maintained mud recycling system is vital to not only the pump but everything the drilling fluid comes in contact with downstream.