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Introduction to Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors
Alumina ceramics are known for their high hardness, wear resistance, corrosion resistance, good electrical insulation and high temperature stability. According to the different alumina content, it can be divided into different grades, such as 95 porcelain, 99 porcelain, etc., among which 99 porcelain refers to ceramic materials with an alumina content of 99%. As the alumina content increases, its mechanical strength and electrical insulation properties will also increase accordingly.
Characteristics of Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors
High Hardness: Alumina ceramics have extremely high hardness, which makes it very wear-resistant and suitable for manufacturing abrasive tools and parts that require wear resistance.
Wear resistance: Due to its high hardness, alumina ceramics show excellent wear resistance and are suitable for manufacturing parts for long-term use.
Corrosion resistance: Alumina ceramics have good resistance to most acids and alkalis, making them widely used in the chemical industry.
Good electrical insulation: As an excellent electrical insulating material, alumina ceramics are widely used in electronic and electrical products.
High temperature stability: Ability to withstand extremely high temperatures without significant physical or chemical changes, which makes it an ideal choice for applications in high temperature environments.
Biocompatibility: In the medical field, certain grades of alumina ceramics are used to make medical devices such as artificial joints due to their good biocompatibility.

(Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors)
Specifications of Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors
These alumina ceramic shaft plungers and sleeves are developed for hard settings. They use high-purity aluminum oxide ceramic. This product is exceptionally difficult. It resists wear remarkably well. The components keep their accurate shape under pressure. They are non-deformable. This is important for consistent efficiency. Heat is no problem. These porcelains manage extreme warm accurately. They will not melt or damage. Chemical attack is likewise resisted. Rough compounds cause little damage. Electric insulation is one more crucial feature. The product does not perform electrical power. This avoids undesirable existing circulation. Oxygen sensors need this building. The ceramic deals low elastic force. This suggests very little spring-back. It maintains steady get in touch with stress. Precision is important. These parts are machined precisely. Limited tolerances are attained. Smooth surfaces are essential. Friction is kept extremely reduced. This makes certain smooth plunger activity. Lengthy service life results. The components last much longer than metal. They outperform options sought after areas. Oxygen sensors are the primary application. These porcelains work flawlessly in exhaust systems. High heat and corrosive gases exist there. The sleeves guide the bettor shaft. Consistent positioning is preserved. Signal accuracy depends upon this. Dependability is considerably improved. Sensor drift is minimized. Engine performance benefits directly. Choose these for crucial sensor jobs. They deliver reliable, enduring operation.

(Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors)
Applications of Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors
These alumina ceramic shaft plungers and sleeves are important parts for oxygen sensing units. They are made from non-deformable aluminum oxide ceramic. This material is exceptionally tough. It resists wear incredibly well. It stays steady under extreme warmth. This stability is vital. Oxygen sensing units work in hot locations like automobile exhausts. The ceramic bettor and sleeve should not flex or alter form. They maintain specific positioning. This accuracy is essential for precise oxygen measurement. The low elastic pressure attribute is vital. The ceramic components stand up to flexing under pressure. They remain rigid. This tightness makes certain regular motion inside the sensing unit. Regular movement gives trustworthy oxygen readings. The sensing unit performs well over time. The product additionally deals with chemical corrosion. Severe exhaust gases won’t damage it. The ceramic surface area is really smooth. This smoothness decreases friction. Low friction allows the bettor relocation freely within its sleeve. Smooth motion stops sticking or jamming. This causes longer sensor life. These components handle demanding conditions. They endure heats without deteriorating. They hold up against thermal shock from fast heating and cooling. Engine settings are difficult. These alumina ceramic parts supply regular efficiency. They give the reliability required for specific oxygen sensing. Their resilience lowers upkeep needs. They offer a reliable remedy for crucial sensing unit procedure.
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.

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Shipment Methods
By air, by sea, by express, as customers request.

5 FAQs of Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors
People often ask what these alumina ceramic plungers and sleeves do. They are precision parts for oxygen sensors. The spindle moves inside the sleeve. This controls gas flow. The parts need to be very hard and stable.
What material is used? We use high purity aluminum oxide ceramic. This is alumina. It’s extremely hard. It resists wear exceptionally well. It handles high temperatures without changing shape. This material lasts long. It resists chemicals too.
Why alumina ceramic for heat? Oxygen sensors get very hot. Regular metals can warp or soften. Alumina ceramic stays rigid. Its shape doesn’t change much with temperature swings. This is critical for exact sensor readings. The plunger keeps sealing correctly.
What is low elastic force? The plunger shaft needs to move smoothly. It must not bind in the sleeve. Too much friction causes problems. Our ceramic parts are made with tight tolerances. The surface finish is very smooth. This reduces friction. The plunger moves easily with minimal force. Sensor response stays fast and accurate.
Are these parts good for oxygen sensors? Absolutely. They are designed for this job. The material is inert. It won’t react with gases. The low friction movement is perfect. The heat resistance is essential. These plungers and sleeves ensure reliable sensor performance.

(Non Deformable Alumina Ceramic Shaft Plunger Low Elastic Force Aluminum Oxide Ceramic Spindle and Sleeve for Oxygen Sensors)
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