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Description
Overview of Silicon Carbide Ceramics
Silicon Carbide (SiC) ceramics are renowned for their outstanding mechanical properties, including high hardness, strength at elevated temperatures, and excellent thermal shock resistance. These materials are pivotal in cutting-edge industrial applications, from abrasives to aerospace components, due to their unique combination of properties.
Features of Silicon Carbide Ceramics
High Hardness: Exceptional wear resistance.
Thermal Shock Resistance: Can withstand rapid temperature changes.
Chemical Stability: Resistant to most chemicals.
High Thermal Conductivity: Efficient heat dissipation.
Low Density: Lightweight for its strength.

(Silicon Carbide Recrystallized Tubular Membrane Porous Tubular Ceramic Membrane for Ultrafiltration)
Specification of Silicon Carbide Recrystallized Tubular Membrane Porous Tubular Ceramic Membrane for Ultrafiltration
The Silicon Carbide Recrystallized Tubular Membrane is a high-performance porous ceramic membrane layer developed for ultrafiltration applications. It is made from high-purity silicon carbide refined via recrystallization at extreme temperatures. This produces an inflexible, consistent framework with interconnected pores. The material makes sure outstanding thermal stability, chemical resistance, and mechanical strength.
The tubular layout permits very easy combination into purification systems. The membrane’s external diameter varieties from 20 to 50 mm, with sizes customizable as much as 1500 mm. The wall surface density remains in between 5 and 15 mm, stabilizing longevity and permeability. The average pore dimension is 0.1 to 1.0 microns, suitable for dividing fine fragments, bacteria, and colloids from fluids.
This membrane deals with temperatures approximately 800 ° C without degrading. It withstands solid acids, antacid, and organic solvents, making it suitable for extreme commercial settings. The open porosity goes beyond 30%, guaranteeing high circulation rates while keeping purification precision.
Mechanical stamina is an essential attribute. The recrystallized framework offers a three-dimensional network that withstands breaking under pressure. The membrane layer stands up to running stress up to 10 bar, also throughout backwashing or steam cleaning.
Applications include wastewater therapy, chemical processing, food and drink purification, and pharmaceutical sanitation. It properly gets rid of put on hold solids, oils, and microorganisms. The inert nature of silicon carbide prevents contamination, guaranteeing product pureness.
Installation is uncomplicated. The tubular form fits basic real estate devices, lowering downtime throughout maintenance. Cleansing is simple making use of chemical or thermal techniques. The membrane layer’s durability reduces substitute expenses, using an economical remedy for constant procedures.
Personalization is available for pore dimension, dimensions, and surface area treatments. This adaptability enables adaptation to particular filtering requirements. The item meets industry requirements for reliability and performance, providing a long lasting choice for requiring ultrafiltration procedures.

(Silicon Carbide Recrystallized Tubular Membrane Porous Tubular Ceramic Membrane for Ultrafiltration)
Applications of Silicon Carbide Recrystallized Tubular Membrane Porous Tubular Ceramic Membrane for Ultrafiltration
Silicon carbide recrystallized tubular membrane porous tubular ceramic membrane layers are utilized in ultrafiltration procedures across numerous industries. These membrane layers take care of challenging conditions and provide trustworthy performance. They function well in high-temperature settings. They stand up to chemical deterioration. This makes them optimal for severe settings.
In wastewater treatment, these membranes strain fine particles and pollutants. They remove hefty metals and organic toxins properly. The structure stays stable under high pressure. This ensures constant filtration over time. Upkeep needs are low. Functional expenses remain manageable.
The chemical handling market uses these membrane layers for dividing and detoxifying aggressive materials. Acids and alkalis do not harm the material. Thermal security permits usage in warmed reactions. This improves process effectiveness. Product high quality stays high.
Food and beverage production benefits from the membranes’ capacity to make clear liquids. They filter juices, dairy items, and alcohols without changing preference. The inert ceramic product prevents contamination. Hygiene criteria are satisfied conveniently.
Pharmaceutical applications include sterilizing solutions and separating bioactive substances. The membranes’ precision ensures pure results. They stand up to repeated cleaning with vapor or chemicals. Downtime is decreased. Production timetables stay on track.
Oil and gas industries utilize these membranes to deal with generated water and different emulsions. Severe boring conditions do not break down efficiency. The membrane layers endure unpleasant products. Long-lasting use is feasible without frequent replacements.
Trick advantages consist of high porosity and consistent pore distribution. These qualities enable discerning filtration. Mechanical toughness stops breaking under stress and anxiety. Custom-made dimensions and arrangements fit various systems. Compatibility with automated configurations streamlines integration.
The membranes’ longevity minimizes waste from membrane layer swaps. Power usage remains low because of effective flow rates. Industries attain sustainability objectives while preserving efficiency. Performance dependability makes them a useful selection for vital ultrafiltration tasks.
Company Introduction
Advanced Ceramics founded on October 17, 2014, is a high-tech enterprise committed to the research and development, production, processing, sales and technical services of ceramic relative materials and products.. Since its establishment in 2014, 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 Silicon carbide ceramic products, Boron Carbide Ceramic Products, Boron Nitride Ceramic Products, Silicon Carbide Ceramic Products, Silicon Nitride Ceramic Products, Zirconium Dioxide Ceramic Products, Quartz Products, etc. 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 Silicon Carbide Recrystallized Tubular Membrane Porous Tubular Ceramic Membrane for Ultrafiltration
Silicon Carbide Recrystallized Tubular Membrane Porous Tubular Ceramic Membrane for Ultrafiltration solves many industrial filtration challenges. People often ask these five questions about it. What is this membrane? It is a ceramic filter made from silicon carbide. The material is recrystallized to create a porous structure. This structure allows liquid to pass while trapping particles. The tubular shape fits into systems needing high flow rates. It works in extreme temperatures and harsh chemicals.
How does the membrane work? The tiny pores block contaminants based on size. Liquids flow through the pores. Solids or large molecules get stuck. Pressure pushes the liquid through the tube. The pore size is precise. This ensures only specific substances pass. It removes bacteria, colloids, or oils effectively.
What makes it better than other filters? Silicon carbide lasts longer. It resists acids, alkalis, and heat. Polymer membranes degrade faster. Traditional ceramic membranes crack under stress. This one handles high pressure. It cleans easily without damage. Maintenance costs stay low.
How do you clean it? Clean with water, chemicals, or steam. Backwashing reverses flow to flush out debris. Strong acids or bases dissolve stubborn buildup. The material doesn’t corrode. It dries fast. No special tools are needed. This keeps downtime short.
Where is it used? Factories use it for wastewater treatment. Food and beverage makers filter liquids. Pharmaceutical companies separate proteins. Chemical plants recover catalysts. It works in oil refining too. Any process needing pure liquids or precise separations benefits.
The membrane’s design suits heavy-duty applications. Users save money over time. It performs reliably under tough conditions.

(Silicon Carbide Recrystallized Tubular Membrane Porous Tubular Ceramic Membrane for Ultrafiltration)
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