High-wear-resisting stainless steel coffee maker material and preparation method thereof
A stainless steel, high wear-resistant technology, applied in the field of high wear-resistant stainless steel coffee pot materials and its preparation, can solve the problems of high price VC powder, poor wear resistance of stainless steel, high cost of stainless steel, etc., to achieve low production cost, low cost, Ease of processing
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0082] A high wear-resistant stainless steel coffee pot material, its chemical composition includes the following elements by weight: C: 0.08%, N: 0.1%, Si: 0.15%, Mn: 1%, Cr: 11.5%, Ni: 0.3%, Mo: 0.6%, Al: 0.2%, Zr: 0.25%, Y: 0.05%, Nb: 0.6%, Ti: 0.05%, and the balance is iron and impurities. In weight percentage, the total content of the impurities is ≤0.045%, wherein, P≤0.014%, S≤0.007%, H≤0.001%, O≤0.001%.
[0083] A preparation method of a high wear-resistant stainless steel coffee pot material, comprising the steps of:
[0084] A. Grinding: Proportioning the base material according to the weight percentage of the above chemical components, placing the base material in a ball mill for ball milling until the grain size of the ball milled powder is refined to 4nm;
[0085] B. Powder mixing: mix the matrix material and reinforcing phase tungsten carbide according to the following weight percentages in step A to obtain a mixed powder: 85% matrix material, 15% reinforcing pha...
Embodiment 2
[0102] A high wear-resistant stainless steel coffee pot material, its chemical composition includes the following elements by weight percentage: C: 0.09%, N: 0.09%, Si: 0.25%, Mn: 0.9%, Cr: 12%, Ni: 0.25%, Mo: 0.7%, Al: 0.3%, Zr: 0.2%, Y: 0.04%, Nb: 0.7%, Ti: 0.08%, and the balance is iron and impurities. In weight percentage, the total content of the impurities is ≤0.033%, wherein, P≤0.013%, S≤0.006%, H≤0.002%, O≤0.001%.
[0103] A preparation method of a high wear-resistant stainless steel coffee pot material, comprising the steps of:
[0104] A. Grinding: Proportioning the base material according to the weight percentage of the above-mentioned chemical components, placing the base material in a ball mill for ball milling until the grain size of the ball milled powder is refined to 5nm;
[0105] B. Powder mixing: mix the matrix material and reinforcing phase tungsten carbide according to the following weight percentages in step A to obtain mixed powder: 88% matrix material,...
Embodiment 3
[0110] A high wear-resistant stainless steel coffee pot material, its chemical composition includes the following elements by weight: C: 0.1%, N: 0.08%, Si: 0.35%, Mn: 0.8%, Cr: 12.5%, Ni: 0.2%, Mo: 0.8%, Al: 0.4%, Zr: 0.15%, Y: 0.03%, Nb: 0.8%, Ti: 0.1%, and the balance is iron and impurities. In weight percentage, the total content of the impurities is ≤0.036%, wherein, P≤0.012%, S≤0.005%, H≤0.002%, O≤0.001%.
[0111] A preparation method of a high wear-resistant stainless steel coffee pot material, comprising the steps of:
[0112] A. Grinding: Proportioning the base material according to the weight percentage of the above chemical components, placing the base material in a ball mill for ball milling until the grain size of the ball milled powder is refined to 6nm;
[0113] B. Powder mixing: mix the matrix material in step A with the reinforcing phase tungsten carbide according to the following weight percentage content to obtain a mixed powder: 90% of the matrix material ...
PUM
| Property | Measurement | Unit |
|---|---|---|
| tensile strength | aaaaa | aaaaa |
| yield strength | aaaaa | aaaaa |
| corrosion rate | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More