26 Dec 2013
December 26, 2013

Features of Silicon Nitride


 Silicon Nitride Features of Silicon Nitride Silicon nitride is an important structural ceramic material. It is a super hard material, with lubricity itself and wear resistance as an atomic crystal, as well as  oxidation resistance at high temperature. And it can also be resistant to thermal shock. When heated to 1 000 ℃ or above.. read more →

General Knowledge of Silicon Nitride Bonded Silicon Carbide (Si_3N_4-SiC) Silicon nitride bonded silicon carbide material is a new type of advanced refractory material, and the main products are silicon nitride bonded silicon carbide radiant tubes and silicon nitride bonded silicon carbide bricks. Properties & Uses 1. Silicon nitride bonded silicon carbide products are hard, with.. read more →

 Silicon nitride and Ferro-Silicon Nitride—Refractories    Early in the 20th century, refractories was developing in the direction of high-purity, high density and ultra-high temperature products, while there had been monolithic refractories and refractory fibers without firing completely and with small power consumption. In the modern times, with the development of atomic energy, space and new.. read more →

10 Dec 2013
December 10, 2013

Silicon Nitride Introduction

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 Silicon Nitride   Silicon nitride,is off-white,an advanced inorganic non-metallic material, has very good applications in iron and steel smelting,refractories,etc., and also has a wide range of applications in wear resistant rubber, plastics, ceramics, and other room temperature and high temperature sealing abrasives. Main Features This product is a new material generated at a specific ambient.. read more →

Application of Silicon Nitride bonded Silicon Carbide Products in the Non-ferrous Smelting Industry The non-ferrous smelting industry, mainly include aluminum, copper, lead and zinc industries. The temperature of smelting non-ferrous metal is lower than that of smelting iron and steel, but but the oxides of non-ferrous metals, such as Cu2O, NiO, ZnO, PbO, SnO2, have.. read more →