High-strength high-tenacity antibacterial stainless steel and application thereof
An antibacterial stainless steel and high toughness technology, applied in the field of stainless steel products, can solve problems such as poor mechanical properties and application limitations, and achieve the effects of long service life, wide application fields and broad-spectrum antibacterial and bacteriostatic properties.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0063] This embodiment relates to a preparation method of high-strength and high-toughness antibacterial stainless steel, which generally follows the steps below:
[0064] Step 1: batching according to the mass percentage of the stainless steel composition in the above table 1;
[0065] Step 2: fully melting the ingredients containing C, B, Cr, Si and Fe to obtain melt I;
[0066] Fully melt the ingredients containing Zn, Al, Li, Sr, and Te to obtain melt II;
[0067] Add the ingredients containing Sc and Ta into the melt I, heat and melt fully to obtain the melt III;
[0068] Add melt II to melt III, stir and mix to obtain molten steel;
[0069]Step 3: Transfer the molten steel to the LF furnace again, add a refining agent equivalent to 1.60% of the molten steel mass, refine at a temperature of 1620°C for 120 minutes, and then vacuum degas in a VD vacuum degassing furnace for 30 minutes;
[0070] The above-mentioned refining agent is obtained by combining calcium oxide, si...
Embodiment 2
[0075] This embodiment relates to a preparation method of high-strength and high-toughness antibacterial stainless steel, which generally follows the steps below:
[0076] Step 1: batching according to the mass percentage of the stainless steel composition in the above table 1;
[0077] Step 2: fully melting the ingredients containing C, B, Cr, Si and Fe to obtain melt I;
[0078] Fully melt the ingredients containing Zn, Al, Li, Sr, and Te to obtain melt II;
[0079] Add the ingredients containing Sc and Ta into the melt I, heat and melt fully to obtain the melt III;
[0080] Add melt II to melt III, stir and mix to obtain molten steel;
[0081] Step 3: Transfer the molten steel to the LF furnace again, add a refining agent equivalent to 1.70% of the molten steel mass, refine it at a temperature of 1630°C for 110 minutes, and then vacuum degas it in a VD vacuum degassing furnace for 32 minutes;
[0082] The above-mentioned refining agent is obtained by combining calcium ox...
Embodiment 3
[0087] This embodiment relates to a preparation method of high-strength and high-toughness antibacterial stainless steel, which generally follows the steps below:
[0088] Step 1: batching according to the mass percentage of the stainless steel composition in the above table 1;
[0089] Step 2: fully melting the ingredients containing C, B, Cr, Si and Fe to obtain melt I;
[0090] Fully melt the ingredients containing Zn, Al, Li, Sr, and Te to obtain melt II;
[0091] Add the ingredients containing Sc and Ta into the melt I, heat and melt fully to obtain the melt III;
[0092] Add melt II to melt III, stir and mix to obtain molten steel;
[0093] Step 3: Transfer the molten steel to the LF furnace again, add a refining agent equivalent to 1.80% of the molten steel mass, refine it at a temperature of 1640°C for 100 minutes, and then vacuum degas it in a VD vacuum degassing furnace for 34 minutes;
[0094] The above-mentioned refining agent is obtained by combining calcium ox...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


