Powder metallurgy iron copper-based oiliness antifriction material containing rare earth oxides and preparing method
A rare earth oxide and powder metallurgy technology, which is applied in the field of powder metallurgy iron-copper-based oil-containing anti-friction materials containing rare earth oxides and its preparation, which can solve the problem of reducing the load bearing and service life of materials, damaging the mechanical properties of the matrix, and the mechanical properties of alloy powder. Low problems, to achieve the effects of improved mechanical properties, low operating noise, and superior wear resistance
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Embodiment 1
[0039] According to the composition ratio described in claim 1, weigh 691g reduced iron powder, 300g mixed copper powder, 6g tin powder, 7g zinc stearate, 3gCeO 2 . Mix the above powder in a V-type mixer for 1 hour; then place the uniformly mixed powder in a mold, and press it into a cylindrical shape under a pressure of 300-600MPa (outer diameter×inner diameter×height=9.2×4.9×6.5 mm) and block (length × width × height = 18 × 12 × 5mm), the density of the compact is 6.05 ~ 6.15g / cm 3 ; The above-mentioned compact is sintered in a mesh belt sintering furnace, and the sintering atmosphere is N 2 and H 2 In a reducing atmosphere, the sintering temperature is 1000-1040°C; during the sintering process, the compact first passes through a preheating zone at 500-600°C for 1-2 hours, and then enters a sintering zone at 1000-1040°C for 1.5 ~2.5h, and finally cooled to room temperature through a cooling zone to obtain a sintered body, the cooling time is 1~1.5h;
[0040] Press and re...
Embodiment 2
[0042] The preparation method is the same as example 1, but the composition ratio changes, and the raw materials are composed as follows: 688g reduced iron powder, 300g mixed copper powder, 6g tin powder, 7g zinc stearate, 6gCeO 2 .
Embodiment 3
[0044] The preparation method is the same as example 1, but the composition distribution ratio changes, and the raw materials are composed as follows: 685g reduced iron powder, 300g mixed copper powder, 6g tin powder, 7g zinc stearate, 9gCeO 2 .
[0045] Table 1
[0046] serial number
CeO 2 (wt.%)
Crushing strength (MPa)
Hardness (HB)
Oil content (%)
1#
0
270
38.9
18.8
2#
0.3
285
40.5
19.0
3#
0.6
295
41.0
19.1
4#
0.9
268
40.3
18.5
5#
1.2
266
38.0
18.6
[0047] Table 1 lists CeO 2 Mechanical properties and oil content of iron-copper-based oil-containing antifriction materials with different contents. Use YA-10 material testing machine and HBRVU-1875 Blowy hardness tester to measure the radial crushing strength and apparent hardness of cylindrical oily antifriction materials; Determination of porosity—GB / T5163-2006 / ISO2738:1999)...
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