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PRODUCT PARAMETERS
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Overview of High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush
High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush is engineered from 99%+ pure aluminum oxide (Al₂O₃), delivering unmatched durability and precision for demanding industrial applications. Designed to operate in extreme conditions, these plungers excel in high-wear, high-temperature, and corrosive environments, making them perfect for pumps, valves, fuel injection systems, and chemical processing equipment.
Features of High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush
Superior Wear Resistance – Outlasts metal plungers in abrasive environments.
High-Temperature Stability – Maintains integrity up to 1600°C.
Corrosion & Chemical Resistance – Immune to acids, alkalis, and solvents.
Extreme Hardness (Hv 1500+) – Minimizes friction and extends service life.
Precision Machined – Tight tolerances for smooth, leak-free operation.
Customizable Designs – Available in various diameters, lengths, and surface finishes.

(High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush)
Specifications of High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush
This ceramic plunger fits magnetic drive pumps completely. Alumina ceramic makes the bettor very hard. It stands up to wear remarkably well. The smooth surface area finish reduces friction. This expands the plunger’s life expectancy significantly. Ceramic manages extreme chemicals reliably. Acids and bases won’t damage it. High stress procedure is not a problem. The product withstands extreme pressures quickly.
The alumina insulation bush gives crucial electrical seclusion. It stops stray currents completely. This safeguards pump parts from corrosion. Electrical damage is efficiently stopped. The shrub makes sure secure, trustworthy pump function.
Accuracy manufacturing guarantees precise measurements. Limited tolerances are maintained regularly. This makes sure an excellent fit every single time. Drip paths are removed successfully. The bettor moves smoothly within the pump bore. Securing performance remains ideal.
Surface level of smoothness is vital. We achieve an Ra value below 0.2 micrometers. This ultra-smooth surface decreases rubbing dramatically. Liquid circulation stays efficient. Endure seals decreases substantially. Upkeep periods extend noticeably.
This bettor handles temperatures up to 160 ° C (320 ° F). Thermal shock resistance is outstanding. Unexpected temperature level changes will not crack it. Performance stays stable popular conditions. The ceramic won’t deform under warmth.
Installation is straightforward. The plunger replaces used components straight. No special devices are required. Pump downtime is decreased. You come back up and running quickly. Dependability boosts promptly after installation.
This component boosts pump performance. Energy intake typically lowers. Functional expenses drop. The bettor stops unanticipated failings. Manufacturing losses are prevented. System uptime boosts accurately.

(High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush)
Applications of High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush
High stress ceramic bettors transform magnetic drive pump efficiency. These plungers make use of alumina ceramic. Alumina is exceptionally hard. It withstands wear exceptionally well. Abrasive fluids trigger marginal damage. This suggests the bettor lasts a lot longer. Deterioration is an additional significant issue. Several chemicals assault metal components. Alumina ceramic deals with these chemicals quickly. It will not rust or corrode. This is important for severe industrial processes.
The layout consists of an alumina insulation bush. This shrub borders the plunger. It provides vital electric insulation. Magnetic drive pumps utilize powerful magnets. Electrical currents can occasionally develop. These currents trigger undesirable electrolysis. The alumina shrub stops this entirely. It obstructs the electric course. This protects the pump and the liquid. Product purity is important. The bush stops contamination.
Seal failing is a common pump frustration. Conventional pumps need shaft seals. Seals leak ultimately. High pressure makes leaks worse. Unsafe fluids getting away is undesirable. Magnetic drive pumps solve this. They make use of a seal-less style. The ceramic bettor functions inside the protected bush. There is no straight shaft seal below. Drip points are eliminated. This is much more secure for drivers and the setting. It decreases upkeep costs considerably.
These plungers stand out where reliability matters most. Chemical processing plants rely on them. They pump acids, solvents, and hostile mixes safely. Pharmaceutical producing needs pure transfers. Alumina ceramic guarantees no contamination. Water therapy utilizes them for tough ingredients. Mining procedures manage rough slurries successfully. The plunger stands up to the consistent stress cycles. High stress operation is steady. The alumina components keep dimensional stability. Temperature adjustments don’t impact them much. Consistent efficiency is ensured. Downtime is reduced.
Company Profile
Alumina Technology Co., Ltd,. We focus on the research and development, production and sales of alumina products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2005, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.
Our products includes but not limited to Alumina Boat, Alumina Crucible, Alumina Dish, Alumina Foam Filter, Alumina Plate, Alumina Rod, Alumina Bar, Alumina Balls, Filter Alumina, Nano Alumina Powder, Spherical Alumina Powder, ect. please feel free to contact us.(nanotrun@yahoo.com)

Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush
Why alumina ceramic for the plunger?
Alumina ceramic offers top hardness and strength. This material withstands extreme pressure inside the pump. Alumina resists wear far better than metals. It handles high heat well. This toughness means the plunger lasts much longer. It keeps the pump working reliably under tough conditions.
How much pressure can this plunger handle?
This plunger is built for high pressure systems. It easily manages pressures common in demanding pump applications. The solid alumina construction won’t deform or crack under heavy loads. It provides a stable, leak-free seal even under constant high stress. This reliability is crucial for consistent pump operation.
Why does the plunger resist wear so well?
Alumina ceramic is extremely hard. Hardness directly fights wear. Metal parts rubbing cause friction. Friction causes wear. The ceramic plunger surface minimizes this friction. Less friction means less material wears away over time. This results in a much longer service life for the plunger and the pump.
What does the alumina insulation bush do?
The insulation bush sits around the plunger shaft. Its main job is blocking heat transfer. Heat travels up the shaft from the pump chamber. The alumina bush stops this heat. It prevents heat from reaching the pump’s outer parts. This protects sensitive components like magnets and seals. Keeping things cooler prevents damage and failure.
How does this plunger reduce maintenance?
Its extreme wear resistance is the key. Metal plungers wear down faster. Worn plungers need frequent replacement. They cause leaks and pump downtime. The alumina plunger wears very slowly. This means fewer replacements. It means less pump downtime. It saves time and money on maintenance and parts.

(High Pressure Ceramic Plunger for Magnetic Drive Pump Ceramic Plunger Alumina Insulation Bush)
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