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Method for preparing nanometer praseodymium oxide and neodymium oxide compound silicon nitride ceramic material

A technology of silicon nitride ceramics and praseodymium oxide, applied in the field of ceramic materials, can solve the problems of unfavorable promotion of silicon nitride and high cost of iridium oxide, and achieve the effects of low cost, high density and good mechanical properties

Inactive Publication Date: 2012-07-11
苏州中锆新材料科技有限公司
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AI Technical Summary

Problems solved by technology

However, the cost of iridium oxide is relatively high, which is unfavorable for the application and promotion of silicon nitride

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0021] The praseodymium oxide and neodymium oxide are Ganzhou Jiarun New Material Co., Ltd., and the silicon nitride powder is M11 powder produced by German Starck Company. 3% of praseodymium oxide, 5% of neodymium oxide and 92% of silicon nitride powder were respectively weighed according to weight percentage.

[0022] The above two powders were mixed uniformly in a planetary ball mill (QM-3SP2 type of Nanjing University Instrument Factory) at a speed of 300 rpm for 1.5 hours. The mixed powder was molded under a pressure of 80 MPa, and the green body was kept at 1450° C. for 16 hours in a vacuum carbon tube furnace (ZT-40-20 type from Shanghai Chenrong Electric Furnace Co., Ltd.).

[0023] The bulk density of the silicon nitride ceramics obtained in this embodiment is 3.41g / cm 3 , The flexural strength is 623Mpa.

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Abstract

The invention relates to the technical field of ceramic materials, in particular to a method for producing high-performance silicon nitride (Si3N4) through pressureless sintering by taking praseodymium oxide and neodymium oxide as additives. The following components are included in mass percent: 3% to 7% of praseodymium oxide, 5% to 8% of neodymium oxide and 85% to 92% of silicon nitride. The invention aims to overcome the deficiencies of the prior art, provides the method for producing high-performance silicon nitride (Si3N4) through pressureless sintering by taking praseodymium oxide and neodymium oxide as additives, and can be widely applied to component preparation in the fields such as chemical engineering, machinery, metallurgy, aviation and aerospace.

Description

[technical field] [0001] The invention relates to the technical field of ceramic materials, in particular to a method for producing high-performance silicon nitride ceramics through pressureless sintering of praseodymium oxide and neodymium oxide as an additive. [Background technique] [0002] Silicon nitride ceramics have excellent high-temperature mechanical properties and are recognized as one of the most promising high-temperature structural ceramic materials. As a covalently bonded compound, silicon nitride has a small diffusion coefficient and no melting point. It decomposes into ammonia and silicon at about 2173K, making it difficult to sinter. Common silicon nitride ceramics have reaction sintering and hot pressing sintering. Reaction sintering has poor density and poor mechanical properties. Although hot pressing sintering has high density and good mechanical properties, it is expensive and difficult to produce on a large scale. The pressureless sintering is betwee...

Claims

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Application Information

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IPC IPC(8): C04B35/596C04B35/622
Inventor 陈海
Owner 苏州中锆新材料科技有限公司
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