Alumina Ceramic Blocks

Alumina ceramic blocks are made from high-quality alumina (Al₂O₃) and are high-performance industrial ceramic components.

GORGEOUS CERAMICS (GGS) specializes in custom-made alumina ceramics with high precision, high dimensional accuracy, and complex geometries, providing a one-stop solution from ceramic forming and sintering to CNC precision machining and surface treatment.

We serve a variety of industries, including semiconductor equipment, industrial machinery, electrical insulation systems, wear-resistant structures, laser equipment, medical devices, and automation. Simply provide us with drawings and application details to customize high-quality ceramic structural components.


Alumina ceramic performance table

Свойство Единица АЛ2О3 99.7 АЛ2О3 99.5 АЛ2О3 99 АЛ2О3 95
Чистота 99.7% 99.5% 99% 95%
Плотность г/см3 3.92 3.9 3.8 3.7
Прочность на изгиб МПа 375 370 340 304
Прочность на сжатие МПа 2450 2300 2250 1910
Модуль упругости ГПа 380 370 330 330
Вязкость разрушения MPam1/2 4.5 4.3 4.2 3.8
Твёрдость HRA 91 91 90 89
Твердость по Виккерсу HV1 1600 1550 1450 1400
Коэффициент теплового расширения 10- 6    К-1 7.8 7.8 7.7 7.5
Теплопроводность Вт/мк 32 32 25 25
Устойчивость к термическому шоку △T.℃ 220 220 200 200
Максимальная рабочая температура 1750 1750 1700 1500
Объемное сопротивление при 20℃ Ом·см 1015 1015 1014 1014
Диэлектрическая прочность КВ/мм 22 20 16 15
Диэлектрическая проницаемость (комнатная температура) / 10 11 11.5 11
МГц Коэффициент диэлектрических потерь тангенс δ 1×10-3 1×10-3 3×10-3 3×10-3
Имя Глинозем
Чистота 99.95% 99.7% 99% 95%
Коэффициент теплового расширения (25°C-800°C)
10-6    /°С
7.5-9.5 8.2-10.2 8.0-9.8 8.5-10.5
Коэффициент теплового расширения (25°C-300°C)
10-6   /°С
6.5-8.0 7.2-8.7 7.0-8.5 7.5-9.0
Максимальная стабильная рабочая температура 1750 1700 1500 1500
Теплопроводность (нормальная температура 25°C)
Вт/(м·К)
45 30 20 15
Теплопроводность (высокая температура 1000°C) 30 20 15 10
Диэлектрическая проницаемость 10 9 8 7
Удельное сопротивление (25°C) >1014 >1014 >1014 >1014

 


Applications of alumina ceramic blocks

Applications of alumina ceramic blocks

Полупроводниковая промышленность

In the semiconductor industry, zirconia ceramic structural blocks are used in wafer handling components, as well as in insulating structural plates, precision components in vacuum systems, and positioning structures.

Industrial Automation

In the automation industry, zirconia ceramic blocks have even wider applications, including wear-resistant guideways, insulating clamps, mechanical positioning blocks, and robotic systems.

Electrical & Electronics

In the electrical and electronics industries, alumina ceramic structural blocks are commonly used as insulating powder coatings and high-voltage insulating structural components.

 


Why Choose GORGEOUS CERAMICS (GGS)

GORGEOUS CERAMICS boasts 15 years of experience in ceramic manufacturing and is certified to ISO 9001:2015, IATF 16949:2016, and ISO 14001:2015 environmental management systems. This demonstrates GORGEOUS’s capability to provide customers with high-quality structural components made of alumina ceramics.

We offer OEM manufacturing and custom design services based on customer drawings or samples, catering to a wide range of needs from small-batch prototyping to large-scale industrial production.

 


Часто задаваемые вопросы

What are the differences between 95% alumina ceramic blocks and 99% alumina ceramic blocks?

99% alumina ceramic blocks offer superior performance, including higher hardness, better wear resistance, better electrical insulation, and stronger corrosion resistance. 95% alumina ceramic blocks, on the other hand, are more affordable.

What level of precision can GORGEOUS CERAMICS (GGS) achieve?

For precision-machined alumina ceramic blocks, we can achieve a precision of ±0.001 mm, depending on the structure and size.

Does alumina ceramic block have electrical insulation properties?

Yes, alumina is a material with excellent electrical insulation properties and can be widely used in high-voltage and electronic fields.