ᱤᱱᱡᱮᱠᱥᱚᱱ
With the development of the fuel industry and the emergence of new technological processes, industrial furnaces using Silicon Carbide Radiation Pipes as heating devices have gradually developed. The use of radiant tubes as heating devices in industrial furnaces can not only reduce infrastructure costs and operating costs, improve furnace productivity, and extend furnace life, but also heat products with high quality. It can be said that the heating of the ejector tube effectively avoids the oxidation and decarburization of the surface of the heated parts and opens up a broad prospect for the heat treatment process in a protective atmosphere. Our products are processed by the typical forming method of ceramics and sintered in the inert gas atmosphere at 2000-2200℃, which is a material with higher performance.
ᱯᱷᱮᱵᱽᱨᱤᱠ
Silicon Carbide Radiation Pipes almost remain unchanged at very high temperatures (about 1600℃) and can maintain high strength for a long time. This material exhibits extremely high corrosion resistance in acid and alkaline media, so it is very durable. At the same time, the product is hard, with a Mohs hardness of about 9. It is a hard material among non-metallic materials, second only to https://govalue khon jạruṛaḱ lạgit̕, ᱱᱚᱶᱟ ᱫᱚ ᱟᱹᱰᱤ ᱢᱟᱨᱟᱝ ᱜᱮᱭᱟ, ᱚᱱᱟ ᱫᱚ rpm ar kạmi lạgit̕ jạruṛan jạruṛan kạmi lạgit̕ jạruṛan kạmi lạgit̕ jạruṛan kạmi lạgit̕ jạruṛ ge kạmi lạgit̕, ᱟᱨ range, https://gove, jạruṛaka lạgit̕ jạruṛ gạkhag.
ᱦᱚᱲᱢᱚ ᱟᱨ ᱜᱩᱱ ᱠᱚ ᱨᱮᱭᱟᱜ ᱜᱩᱱ
| ᱱᱚᱶᱟ ᱠᱚ | ~ | ᱤᱱᱴᱮᱜᱽᱨᱮᱴᱮᱰ |
{} } } ᱢᱟᱭᱠᱨᱚ ᱰᱤᱴᱮᱠᱴᱤᱵᱷ ᱥᱚᱨᱥ ᱾ | ᱞᱚᱞᱚ ᱟᱨ | 1380 |
ᱰᱮᱱᱥᱤᱴᱤ | ᱓/ᱡᱤ | ᱒᱐ ᱠᱷᱚᱱ ᱓ ᱠᱷᱚᱱ ᱵᱟᱹᱲᱛᱤ ᱟᱨ ᱵᱟᱝ ᱯᱷᱤᱴ ᱜᱮᱭᱟ ᱾ |
ᱮᱠᱷᱮᱱ ᱨᱤᱯᱷᱞᱮᱠᱥ | % | <0.1 |
ᱫᱟᱲᱮ | ᱮᱢ ᱯᱤ | ᱒ (᱒᱕ ᱠᱷᱚᱱ £᱔) |
ᱮᱢ ᱯᱤ | ᱒᱘ (᱒ ᱠᱷᱚᱱ ᱑) | |
ᱥᱚᱱᱜᱚᱛᱷᱟᱱ ᱨᱮᱭᱟᱜ ᱪᱮᱦᱨᱟ | ᱮᱢ ᱮᱥ | ᱓ ᱠᱷᱚᱱ ᱒ (᱓ ᱠᱷᱚᱱ |
ᱮᱢ ᱮᱥ | § ᱑᱓᱒ (᱕) | |
ᱤᱞᱮᱠᱴᱨᱳᱰ ᱠᱚ | W/m.k | ᱔ (᱒᱑᱕) ᱡᱟᱱᱟᱢ᱾ |
ᱯᱟᱥᱱᱟᱣ ᱟᱠᱟᱱ ᱮᱯᱞᱤᱠᱮᱥᱚᱱ ᱠᱚ | K-1 10 -6 | 4.5 |
ᱤᱱᱴᱨᱚᱱ | 13 | |
ᱯᱩᱨᱟᱹ----ᱟᱢᱮᱨᱤᱠᱟ | ᱟᱹᱰᱤ ᱱᱟᱯᱟᱭ |
ᱦᱚᱜᱽᱥ: ᱠᱟᱨᱵᱚᱦᱟᱭᱰᱨᱮᱴ, ᱯᱤᱵᱤᱮᱥ, ᱪᱟᱭᱱᱟ ᱨᱮᱭᱟᱜ ᱠᱟᱨᱵᱚᱦᱟᱭᱰᱨᱮᱴ ᱠᱟᱨᱵᱽ ᱯᱟᱭᱤᱯᱤᱝ ᱥᱤᱥᱴᱚᱢ ᱨᱮ ᱢᱤᱫ ᱞᱮᱠᱟᱱ ᱮᱥᱮᱨ ᱢᱮᱱᱟᱜᱼᱟ ᱾






