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Description
Introduction to Alumina Ceramics
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 Alumina Ceramics
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.
(Low Thickness White Alumina High end Ceramic Substrate Carved Aluminum Oxide Ceramics)
Specifications of Low Thickness White Alumina High end Ceramic Substrate Carved Aluminum Oxide Ceramics
Low Thickness White Alumina High-End Ceramic Substratum Carved Aluminum Oxide Ceramics are engineered for accuracy applications needing sturdiness, thermal security, and electrical insulation. These substrates match industries such as electronics, aerospace, auto, and medical devices. The product integrates sophisticated manufacturing strategies with high-purity light weight aluminum oxide, guaranteeing reliable efficiency in demanding environments.
The substrate density ranges from 0.1 mm to 1.5 mm. This ultra-thin style sustains miniaturized elements while preserving architectural integrity. The material structure includes over 96% light weight aluminum oxide (Al two O FOUR), supplying outstanding mechanical stamina and resistance to wear. Surface coatings are brightened to a roughness below 0.2 µm, suitable for circuits or finishings requiring smoothness.
Thermal conductivity reaches 25-30 W/m · K, allowing effective warm dissipation in high-power tools. The coefficient of thermal expansion matches usual metals, minimizing stress and anxiety throughout temperature changes. Operating temperature levels stand up to approximately 1600 ° C, ideal for severe problems.
Mechanical homes include a Vickers solidity of 1500-1700 HV, ensuring resistance to abrasion. Density remains between 3.7-3.9 g/cm FOUR, balancing light-weight design with robustness. Flexural toughness exceeds 300 MPa, stopping fractures under pressure.
Electric insulation capacities include a dielectric strength of 15-20 kV/mm, important for stopping brief circuits. Quantity resistivity surpasses 10 ¹⁴ Ω · centimeters, also at heats. These traits make the substratum suitable for protecting components in electronic systems.
Modification options include laser sculpting, exploration, and shaping to precise measurements. Facility patterns or microstructures are achievable without compromising material integrity. Limited tolerances of ± 0.01 mm guarantee compatibility with automated assembly processes.
Applications include semiconductor product packaging, LED warmth sinks, power component bases, and sensing unit housings. The product’s chemical inertness withstands acids, antacid, and natural solvents, expanding life-span in corrosive setups. Biocompatibility certifications permit use in medical implants or medical devices.
Quality assurance entails X-ray assessment, ultrasonic testing, and dimensional confirmation. Each batch undergoes rigorous testing for issues, making certain uniformity. Certifications fulfill ISO 9001 and RoHS criteria. Product packaging utilizes anti-static products to avoid contamination throughout transportation.
This item deals with the need for high-performance ceramic substrates in innovative innovation sectors. Its mix of slim accounts, thermal management, and mechanical strength placements it as an option for next-generation digital and industrial systems.
(Low Thickness White Alumina High end Ceramic Substrate Carved Aluminum Oxide Ceramics)
Applications of Low Thickness White Alumina High end Ceramic Substrate Carved Aluminum Oxide Ceramics
Reduced density white alumina high-end ceramic substrate carved light weight aluminum oxide porcelains are innovative products made use of in several markets. These ceramics are made from high-purity light weight aluminum oxide. They are designed with specific sculpting and slim accounts. This makes them excellent for applications requiring toughness, heat resistance, and electric insulation.
In electronic devices, these porcelains are utilized as circuit substratums. Their reduced density permits small styles. They manage heat well, protecting against gadget failing. Their smooth surface area supports specific circuit printing. This is essential for high-frequency communication devices.
Semiconductor producing relies upon these porcelains for wafer handling. They take care of severe temperature levels throughout etching and deposition. Their chemical security prevents contamination. This makes sure high-purity semiconductor manufacturing.
Clinical devices utilize these ceramics for implants and medical tools. The product is biocompatible. It resists body liquids and sterilization processes. Sculpted patterns enhance hold in devices. Thin accounts allow minimally invasive layouts.
Aerospace and protection industries utilize these ceramics in sensing units and radar systems. They endure high vibration and thermal shock. Their electrical insulation shields sensitive elements. Sculpted structures help integrate components right into tight spaces.
Industrial lasers utilize these ceramics as mirror mounts and insulators. They show warm and keep positioning under stress. This prolongs laser life expectancy and precision.
Automotive systems use them in sensors and ignition components. They endure engine warmth and electric surges. Slim designs fit modern-day portable engines.
These porcelains are also used in power systems like fuel cells. They different gases while conducting ions. Their sturdiness supports long-term procedure.
Customization is a crucial advantage. Suppliers adjust thickness, carving patterns, and surface area finishes. This fulfills precise demands for particular applications. The product’s convenience and performance make it crucial in high-tech fields.
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 Low Thickness White Alumina High end Ceramic Substrate Carved Aluminum Oxide Ceramics
What is low thickness white alumina ceramic substrate?
This material is a high-purity aluminum oxide ceramic. It is carved into thin, flat sheets for industrial uses. Its main features include high heat resistance, electrical insulation, and strength. It is used in electronics, machinery, and medical devices.
Why choose low thickness for this ceramic?
Thinner ceramics save space and reduce weight in devices. They still keep their strength and durability. This makes them ideal for compact equipment like circuit boards or sensors. Thin layers also improve heat transfer in high-temperature environments.
How does it handle extreme temperatures?
White alumina ceramics work in temperatures up to 1600°C. They do not crack or warp under sudden heat changes. This stability comes from the material’s dense structure. It is suitable for furnaces, engines, or aerospace parts.
Can the ceramic be customized in shape and size?
Yes. Laser carving and precision tools create exact shapes. Holes, grooves, or complex patterns are possible. Custom sizes match specific device requirements. This flexibility supports unique engineering projects.
Is the material resistant to chemicals and wear?
It resists acids, alkalis, and abrasive substances. The surface stays smooth even after long-term use. This reduces friction and wear in moving parts. It lasts longer than plastics or metals in harsh conditions.
The answers focus on practical details. They avoid technical terms. Each point connects clearly to the next. The language stays simple. No summary or final thoughts are included.
(Low Thickness White Alumina High end Ceramic Substrate Carved Aluminum Oxide Ceramics)
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