Low-carbon high-chromium abrasion-resistant ball and preparation technique thereof
A low-carbon, high-chromium, preparation technology, applied in the field of wear-resistant balls, can solve the problems of reduced content of solid solution alloy elements, poor comprehensive mechanical properties, and unfavorable toughness of grinding balls, so as to improve hardenability, enhance ductility, The effect of enhancing wear resistance
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Embodiment 1
[0022] A low-carbon high-chromium wear-resistant ball is composed of the following parts by mass: carbon 2.45%, silicon 0.88%, manganese 0.52%, chromium 18%, aluminum 0.22%, titanium 0.16%, tantalum 0.05%, boron 0.11%, niobium 0.03% %, zirconium 0.03%, sulfur 0.018%, phosphorus 0.022%, nitrogen 0.21%, and the balance is iron and unavoidable impurities.
[0023] A preparation process of a low-carbon high-chromium wear-resistant ball, the preparation steps are as follows:
[0024] 1) Put scrap steel, pig iron, aluminum-iron alloy into induction electric furnace, and pass nitrogen into the electric furnace, heat up to 1260°C, then add niobium-tantalum alloy, ferrosilicon nitride, titanium-iron alloy, manganese-ferroalloy, continue to heat up to 1550°C ;
[0025] 2) Add ferroboron alloy and ferrosilicon alloy in turn for inoculation treatment, then conduct component analysis, and keep warm for 30 minutes;
[0026] 3) Spray slag removal agent on the molten liquid surface, remove ...
Embodiment 2
[0031] A low-carbon high-chromium wear-resistant ball is composed of the following parts by mass: carbon 2.46%, silicon 0.96%, manganese 0.6%, chromium 20%, aluminum 0.25%, titanium 0.18%, tantalum 0.1%, boron 0.12%, niobium 0.02% %, zirconium 0.02%, sulfur 0.016%, phosphorus 0.025%, nitrogen 0.24%, the balance is iron and unavoidable impurities.
[0032] A preparation process of a low-carbon high-chromium wear-resistant ball, the preparation steps are as follows:
[0033] 1) Put scrap steel, pig iron, aluminum-iron alloy into induction electric furnace, and feed nitrogen gas into the electric furnace, heat up to 1290°C, then add niobium-tantalum alloy, ferrosilicon nitride, titanium-iron alloy, manganese-ferroalloy, and continue to heat up to 1560°C ;
[0034] 2) Add ferroboron alloy and ferrosilicon alloy in turn for inoculation treatment, then conduct component analysis, and keep warm for 30 minutes;
[0035] 3) Spray slag removal agent on the molten liquid surface, remov...
Embodiment 3
[0040] A low-carbon high-chromium wear-resistant ball is composed of the following parts by mass: carbon 2.35%, silicon 1%, manganese 0.5%, chromium 19%, aluminum 0.23%, titanium 0.14%, tantalum 0.07%, boron 0.11%, niobium 0.02% %, zirconium 0.03%, sulfur 0.02%, phosphorus 0.017%, nitrogen 0.2%, and the balance is iron and unavoidable impurities.
[0041] A preparation process of a low-carbon high-chromium wear-resistant ball, the preparation steps are as follows:
[0042] 1) Put steel scrap, pig iron, and aluminum-iron alloy into the induction furnace, and feed nitrogen into the furnace, raise the temperature to 1280°C, then add niobium-tantalum alloy, ferrosilicon nitride, ferro-titanium alloy, and ferromanganese alloy, and continue to raise the temperature to 1580°C ;
[0043] 2) Add ferroboron alloy and ferrosilicon alloy in turn for inoculation treatment, then conduct component analysis, and keep warm for 30 minutes;
[0044] 3) Spray slag removal agent on the molten li...
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Abstract
Description
Claims
Application Information
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