Chemical polishing solution for titanium and titanium alloy
A chemical polishing and titanium alloy technology, applied in the field of chemical polishing solutions, can solve the problems of difficult control of solubility, difference in etching rate, and easy hydrogen absorption on the surface, so as to achieve easy control of reaction speed, reduce difference in etching rate, and good surface quality Effect
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Embodiment 1
[0015] Prepare the chemical polishing solution with the following components:
[0016] Ammonium fluoride content: 60g / L;
[0017] The volume ratio of lactic acid (content is 85-90%): 91%;
[0018] The volume ratio of nitric acid (content is 65-68%): 9%.
[0019] The pure titanium plate with a size of 20mm×20mm×3mm was used as the experimental sample, and the surface roughness was 2.1-1.8μm. First, the prepared pure titanium metal sample was degreased (solution: 40g / L NaOH, 45g / L NaOH 3 PO 4 , 30g / L Na 2 CO 3 , temperature 75°C, time 10min), rinse with clean water, etc., and then immerse the sample in the above chemical polishing solution. At room temperature (15°C), take out the sample after 6 minutes and 12 minutes, wash it with water, and then dry it. After polishing the samples, the surfaces of the obtained two samples were smooth, silver-gray, bright, and no intergranular or grain-shaped appearance appeared.
[0020] The average corrosion depth of the sample taken ou...
Embodiment 2
[0022] Prepare the chemical polishing solution with the following components:
[0023] Ammonium fluoride content: 160g / L;
[0024] The volume ratio of lactic acid (content is 85-90%): 80%;
[0025] The volume ratio of nitric acid (content is 65-68%): 20%.
[0026] The Ti-6Al-4V titanium alloy rod with a size of φ15mm×30mm was used as the experimental sample, and the surface roughness was 2.5-2.0μm. First, the prepared titanium alloy metal sample was degreased (solution: 40g / L NaOH, 45g / L Na 3 PO 4 , 30g / L Na 2 CO 3 , temperature 75°C, time 10min), rinse with clean water, etc., and then immerse the sample in the above chemical polishing solution. At room temperature (25°C), take out the sample after 3 minutes and 8 minutes, wash it with water, and then dry it. After polishing the sample, the two samples obtained have smooth and flat surfaces, appearing mirror-like, silvery white, with excellent luster, and no intergranular or grain-shaped appearance.
[0027] The averag...
Embodiment 3
[0029] Prepare the chemical polishing solution with the following components:
[0030] Ammonium fluoride content: 300g / L;
[0031] The volume ratio of lactic acid (content is 85-90%): 65%;
[0032] The volume ratio of nitric acid (content is 65-68%): 35%.
[0033] Taking 20mm×20mm×3mm Ti-6Al-4V titanium alloy as the experimental sample, the surface roughness is 2.8-2.1μm, the prepared titanium alloy metal sample is degreased first (solution: 40g / L NaOH, 45g / L Na 3 PO 4 , 30g / L Na 2 CO 3 , temperature 75°C, time 10min), rinse with clean water, etc., and then immerse the sample in the above chemical polishing solution. At room temperature (35°C), take out the sample after 2 minutes and 12 minutes, wash it with water, and then dry it. After polishing the samples, the two samples obtained have smooth surfaces, silvery white, high brightness, and no intergranular or grain-shaped appearance.
[0034] The average corrosion depth of the sample taken out in 2 minutes was 26.8 μm...
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