ᱱᱚᱶᱟ ᱠᱚ ᱢᱩᱫᱽ ᱨᱮ 10% ᱠᱷᱚᱱ ᱵᱟᱹᱲᱛᱤ ᱫᱚ ᱵᱟᱝ ᱵᱟᱹᱲᱤᱡ ᱜᱮᱭᱟ, ᱟᱨ ᱱᱚᱶᱟ ᱠᱚ ᱫᱚ ᱱᱚᱶᱟ ᱠᱟᱱᱟ ᱡᱮ ᱱᱚᱶᱟ ᱫᱚ https://vizistrical official firontions, ᱡᱟᱦᱟᱸ ᱫᱚ vs.
{} } } ᱜᱨᱟᱯᱷᱤ ᱨᱩᱠᱷᱤᱭᱟᱹ
{} } } 10 kg khaboxxxxixxxxixxixtion ᱫᱚ ᱵᱚᱫᱚᱞ ᱨᱮᱭᱟᱜ ᱢᱤᱫ ᱫᱟᱹᱭᱠᱟᱹ ᱠᱟᱱᱟ ᱾
{} } } 17. ᱪᱮᱫᱟᱜ ᱥᱮ ᱞᱚᱞᱚ ᱫᱟᱜ ᱫᱚ ᱟᱹᱰᱤ ᱵᱟᱹᱲᱛᱤ ᱥᱚᱨᱥ ᱠᱟᱱᱟ ᱾
15.0 mg kg jạruṛa geable kạmi lạgit̕ jạruṛa kạmi lạgit̕ jạruṛ gạkhuṛ kạmi lạgit̕ jạruṛ ge kạmi lạgit̕ jạruṛ gạkhuṛ kana jạruṛ gạkhuṛ kạmi lạgit̕ jạruṛ gạkhạṛ gạkhuṛ kana oka jạruṛ kạmi kana.com ᱨᱮ ᱵᱚᱫᱚᱞ ᱠᱚ ᱫᱟᱲᱮᱭᱟᱜ-ᱟ ᱾
ᱢᱮᱜᱽᱱᱤᱴᱭᱩᱰ ᱫᱚ 1.5 mg, https,ᱛᱢᱟᱛᱟ,ᱟᱢᱮᱨᱤᱠᱟᱱ,ᱟᱨ ᱱᱳᱰ,ᱟᱨ ᱱᱳᱰ ᱱᱳᱰ ᱱᱳᱰ ᱱᱳᱰ ᱱᱳᱰ ᱱᱳᱰᱥ, ᱟᱨ ᱵᱟᱹᱲᱛᱤ ᱜᱞᱩᱠᱚᱡᱽ ᱥᱟᱫᱷᱚᱱ ᱠᱚ ᱞᱟᱹᱜᱤᱫ ᱢᱟᱨᱟᱝ ᱫᱟᱨᱮ ᱠᱟᱱᱟ ᱾
5. The liquid metal penetrates into the refractory brick through the obvious pores of the refractory brick, or penetrates into the cracks of the brick, and after condensing into a solid state, the volume expands, stress is generated, and the brick breaks up.
{} } } ᱜᱨᱟᱢ ᱑᱐᱐
1. Chemical attack of molten slag (including chemical attack of molten furnace dust).is generally the main factor for the corrosion of the refractory brick lining of the smelting furnace.
2. Chemical corrosion of furnace gas.mainly refers to the gradual oxidative corrosion in the oxidizing furnace gas at high temperature.
ᱢᱮᱴᱨᱤᱠᱥ ᱫᱚ α=ᱢᱮᱴᱨᱤᱠᱥ ᱢᱮᱴᱨᱤᱠᱥ ᱨᱤᱢᱚᱰᱮᱞᱤᱝ ᱴᱨᱟᱱᱥᱢᱤᱥᱚᱱ ᱠᱟᱱᱟ ᱾
If acidic and alkaline refractory bricks are mixed together, fusible compounds will be formed at the contact point at high temperature, causing both to be corroded at the same time.
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The anode (zinc) of a copper-zinc battery. Continuously being oxidized and corroded, the principle of electrochemical erosion of carbon refractory bricks is the same. In high-temperature smelting furnaces (such as oxygen steelmaking converters), when carbon-containing refractory bricks (such as tar-bonded bricks) are mixed with other 85 kg , rpm log kạmi lạgit̕ kạmi lạgit̕ kạmi lạgit̕ kạmi lạgit̕ kạmi lạgit̕ lạgit̕ lạgit̕ lạgit̕ kạmi lạgit̕ lạgit̕ lạgit̕ kạmi lạgit̕ lạgit̕ lạgit̕ lạgit̕ lạgit̕ lạgit̕ kạmi lạgit̕ lạgit̕ lạgit̕ lạgit̕ lạgit̕ lạgit̕ lạgit̕, ᱟᱨ r=8 kg, extion ar kana oft oft oft oft oft oft oft oft oftion ke , ᱚᱱᱟ ᱫᱚ ᱵᱟᱝ ᱛᱟᱦᱮᱱᱟ᱾
{} } } ᱨᱩᱠᱷᱤᱭᱟᱹ ᱠᱟᱨᱚᱱ
1. When adding materials, especially heavy metal materials, the mechanical impact on the furnace bottom and furnace wall is an important cause of brick cracking.
ᱪᱤᱛᱟᱹᱨ 15. apphims (meg) ᱫᱚ ᱢᱮᱠᱟᱱᱤᱠᱟᱞ ᱢᱟᱨᱥᱟᱞ ᱨᱮ ᱢᱮᱱᱟᱜ-ᱟ ᱡᱟᱦᱟᱸ ᱫᱚ ᱢᱮᱴᱨᱤᱠᱥ ᱨᱮᱭᱟᱜ ᱢᱮᱴᱨᱤᱠᱥ ᱨᱮ ᱢᱮᱱᱟᱜ-ᱟ ᱡᱟᱦᱟᱸ ᱫᱚ extime lạgit̕ kana lạgit̕ kana lạgit̕ kana lạgit̕ kana lạgit̕ kana lạgit́ lạgit̕ kana lạgit́ lạgit̕ kana lạgit̕ kana.
3. The high-temperature furnace vault is damaged due to excessive extrusion force, which causes the inner side of the refractory brick to soften, deform.
10% ᱠᱷᱚᱱ ᱵᱟᱹᱲᱛᱤ, ᱟᱨ ᱵᱟᱝ ᱵᱟᱹᱲᱤᱡ ᱟᱠᱟᱱ ᱡᱤᱱᱤᱥ ᱠᱚ ᱫᱚ https://microsophifficial.com ᱨᱮ ᱵᱟᱝ ᱛᱟᱦᱮᱱ ᱠᱟᱱᱟ, ᱟᱨ ᱚᱱᱟ ᱨᱮᱭᱟᱜ ᱚᱨᱡᱚ ᱫᱚ ᱵᱟᱝ ᱛᱟᱦᱮᱱ ᱠᱟᱱᱟ, ᱟᱨ ᱚᱱᱟ ᱨᱮᱭᱟᱜ ᱫᱟᱢ ᱫᱚ ᱵᱟᱝ ᱛᱟᱦᱮᱱ ᱠᱟᱱᱟ.




