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Summary of eight forming processes of structural ceramics ① [03-12 09:43]
Ceramic forming is an important part of the ceramic preparation process, the forming technology to a large extent determines the uniformity of the body and the ability to prepare complex shaped parts,and directly affects the reliability of the material and the cost of the final ceramic parts.
Advanced ceramic materials in the military field [03-07 14:09]
Advanced ceramics: According to chemical composition can be divided into oxide ceramics, carbide ceramics, nitride ceramics, boride ceramics,silicide ceramics, sulfide ceramics and so on. According to the performance and use can be divided into functional ceramics and structural ceramics two categories.
Why do manufacturers polish silicon wafers so smoothly? [02-24 14:52]
Silicon wafers are important raw materials for the manufacture of chips and various semiconductor devices. Wafers usually have a very flat, smooth surface, like a mirror. Why do manufacturers make silicon wafers so smooth?
What is a high purity alumina ceramic handing arm? [02-20 13:37]
High purity alumina ceramic handing arm /ceramic end effector is installed on wafer handing robot or "end effectors" and used to carry silicon wafers into or out of cassettes or process chambers. It is also known as semiconductor ceramics, and the main production materials include 95% to 99.9% aluminum oxide. High purity alumina ceramic mechanical arm is a product that must be used in the wafer transfer process, and the requirements for materials and processing accuracy are very high.
Application of 99.7% alumina ceramic disc in CMP equipment [02-17 16:03]
At present, the use of alumina ceramic grinding disc grinding semiconductor wafers is the most advanced grinding method. The double-sided grinding process is used to grind the cut wafer, and the quality of the grinding wafer is improved by improving the grinding process (disk material, grinding fluid, grinding pressure and grinding speed, etc.).
What's the advantage of ZTA toughened wear resistant ceramics [01-19 16:12]
ZTA toughened ceramic is a new material with excellent performance and wide application prospects. ZTA, also known as alumina-zirconia composite phase ceramic, is a composite material composed of two ceramic phases, alumina and zirconia. It is a multi-phase ce...
What's the application of 997 Ceramics [01-13 22:53]
As an important ceramic material, 997 alumina ceramic has good sliding properties, low density, bioinertness and food compatibility, excellent electrical insulation, medium to extremely high mechanical strength, and very high compressive strength. , high hardn...
The difference between dry grinding and wet grinding in ball grinding machine [01-10 21:19]
The ball grinding machine is a key equipment for further crushing after the rice is broken. It is one of the high-fine grinding machines widely used in industrial production and is suitable for grinding various ores and other materials. Depending on the grindi...
Wishing you all the blessing of a beautiful Christmas season [12-23 09:52]
Chemshun Ceramics Company thanks all the cooperative customers for believing and supporting us in 2023. We hope we can have better cooperation and make brilliant business in coming new year. At last all the staff of Chemshun Ceramics wish all the customer Merry Christmas and happy new year.
Wear-resistant Ceramics Play an Important Role in Cement Industry [12-18 13:41]
In the cement industry, wear-resistant ceramic lining can be installed on a variety of equipment that needs to resist wear, such as conveying pipes, lifting equipment, crushing equipment, mixing equipment, etc. After these devices are installed with wear-resistant ceramics, the wear rate can be significantly reduced, the service life of the equipment can be extended, the production efficiency can be improved, and the cost can be reduced.
What is the difference between 92% and 95% aluminum ceramic pieces [12-14 13:58]
There are differences in performance between 92% aluminum and 95% aluminum wear-resistant ceramic pieces, as follows:
How to choose wear-resistant ceramic pieces of different shapes? [11-29 09:49]
Wear-resistant ceramics, as an important member of the field of anti-wear, are often used in ports, mines, cement, lithium, steel and other heavy wear industries. Compared with common metal materials such as high chromium cast iron and high manganese steel, wear-resistant ceramics have many advantages: high hardness, wear resistance, high temperature resistance, and isolation from metal pollution. Our common wear-resistant ceramics are mostly in the form of wear-resistant ceramic pieces, which a
The main factors affecting the high temperature resistance of wear-resistant ceramics [11-25 09:57]
As an important part of industrial anti-wear ceramics, its high temperature resistance has always been one of the focuses of attention. Especially in some working conditions with large temperature changes or high ambient temperature,selecting the correct type of wear-resistant ceramics and the correct installation method is of great significance for safe production and energy saving and high efficiency. So what are the main factors that affect the high temperature resistance of wear
Wear Resistant Ceramic-rubber Panel Lined with Ceramic Cylinder [11-20 14:21]
Compared with square, hexagonal and other ceramic rubber vulcanized lining plates, the rubber coverage rate of cylindrical ceramic lining plates is higher, which can play a better buffer effect and have stronger impact resistance.
Installation Process of Alumina Wear-resistant Ceramics [11-13 10:44]
Alumina wear-resistant ceramics are white corundum wear-resistant ceramics made of 92 aluminum oxide powder or 95 aluminum oxide powder and sintering additives, granulated by granulation tower, and then dry pressed into blocks under dry press and supporting mold, and fired by 1700 degrees high temperature kiln. It is mainly used in power plants, cement, mining and other industrial equipment, to protect the equipment from wear, so that the equipment has a longer service life, reduce the loss caus
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