Mg-RE-series magnesium alloy and preparing method and application thereof
A magnesium alloy, mg-re technology, applied in the field of medical metal materials and its preparation, can solve problems such as distortion, dissolution of implant materials, human allergies and inflammatory reactions
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Embodiment 1
[0066] Example 1. Preparation of as-cast Mg-RE series magnesium alloy
[0067] The raw materials used in the test are pure Mg (99.9wt.%), ordinary industrial grade rare earth (TREM> 99.5wt.%) as the raw material, according to the mass ratio in the following table:
[0068] Types of RE
RE content
Mg content
Eu
1%
margin
Eu
3%
margin
Tb
1%
margin
Tb
5%
margin
Dy
1%
margin
Dy
10%
margin
Er
1%
margin
Er
10%
margin
Tm
1%
margin
Tm
10%
margin
Yb
1%
margin
Yb
3%
margin
Lu
1%
margin
Lu
10%
margin
[0069] Mixed in CO 2 +SF 6 Under the protection of the atmosphere, the temperature is increased to 50-100°C higher than the melting point of the alloy, and the temperature is kept for 20 minutes with stirring. The liquid metal is poured into a graphite mold preheated to 250°C, cooled to room temperature with the furnace, and out of the furnace to obtain the Mg-RE magnesium alloy.
[0070] figure 1 This is a photo of the microstructure of the above sample. It can be seen from...
Embodiment 2
[0071] Example 2: Preparation of extruded Mg-RE magnesium alloy
[0072] First, prepare as-cast Mg-RE series magnesium alloy ingots according to the steps in Example 1 of the present invention, and prepare Mg-RE series alloy bars by extrusion. The ingot is kept for 4 hours and the temperature is kept It is 450°C or 500°C, ready for use after water cooling. The extrusion temperature is 450°C or 500°C, the extrusion speed is 1mm / s, and the extrusion ratio is 11 to prepare a Mg-RE alloy bar with a diameter of 12mm.
[0073] figure 2 It can be seen from the microstructure photos of the above samples that the extrusion significantly improves the microstructure of the material, the original coarse grains are significantly reduced, and the coarser second phase is also broken and its distribution is more uniform. The metallographic phase of a single-phase alloy or an extruded alloy containing a small amount of a second phase presents a uniform equiaxed crystal morphology, such as Mg-1Yb ...
Embodiment 3
[0074] Example 3 Corrosion performance test of Mg-RE series magnesium alloy
[0075] The extruded Mg-RE magnesium alloy prepared in Example 2 was cut and processed into block samples of Φ12mm×2mm, which were polished with 800#, 1200#, and 2000# sandpaper in sequence, and ultrasonically cleaned with ethanol. Then Hank’s simulated body fluid (NaCl 8.0g, CaCl 2 0.14g, KCl 0.4g, NaHCO 3 0.35g, glucose 1.0g, MgCl 2 6H 2 O 0.1g, Na 2 HPO 4 2H 2 O 0.06g, KH 2 PO 4 0.06g,MgSO 4 7H 2 O 0.06g dissolved in 1L deionized water) for immersion experiment, the ratio of the volume of the solution to the surface area of the sample is 20mL / cm 2 , Record the pH change of the solution every day, such as image 3 Shown.
[0076] by image 3 It can be seen that in the early stage of soaking, the pH value of each combination gold increases at a significantly higher rate than in the later stage. In general, the corrosion rate of Mg-1Eu is significantly lower than that of other Mg-RE binary alloys, a...
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