Preparation method of medical high-precision titanium and titanium alloy bar material
A titanium alloy, high-precision technology, applied in the field of metal material processing, can solve the problems of low recovery value, deep indentation, time-consuming and labor-intensive machining, and achieve the effect of extending service life, increasing mechanical strength, and high economic value.
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Embodiment 1
[0051] The specific embodiment will be further described in detail below in conjunction with the preparation process of the medical high-precision titanium bar with a diameter tolerance level of h7-h8, a diameter of 9.5mm, and a length of 3m.
[0052] First, select a pure titanium billet with a diameter of 360mm and a length of 1.7m, and cut off the part with defects after ultrasonic flaw detection; put the pure titanium billet into a resistance furnace and heat it to 950 ° C, keep it for 1 hour, and use a hydraulic press to make the pure titanium billet. The deformation rate of the billet reaches 50% to obtain a pure titanium billet; the pure titanium billet is cut into a small pure titanium billet with the weight required for the finished bar; the small pure titanium billet is put into the resistance furnace again and heated to 850 ℃, and the temperature is kept for 1 For hours, use wire rolling equipment to make the deformation rate of the small pure titanium billet reach 50...
Embodiment 2
[0054] The specific embodiment will be further described in detail below in conjunction with the preparation process of the medical high-precision titanium bar with a diameter tolerance level of h7-h8, a diameter of 9.5mm, and a length of 3m.
[0055]First, select a pure titanium billet with a diameter of 360mm and a length of 1.7m, and remove the defective part after ultrasonic flaw detection; put the pure titanium billet into a resistance furnace and heat it to 1050 ° C, keep it for 4 hours, and use an air hammer to make the pure titanium billet. When the deformation rate of the titanium billet reaches 65%, a pure titanium billet is obtained; the pure titanium billet is cut into a small pure titanium billet of the weight required for the finished bar; the small pure titanium billet is put into the resistance furnace again and heated to 1000 ℃, and the temperature is kept warm. For 4 hours, use wire rolling equipment to make the deformation rate of small pure titanium ingots r...
Embodiment 3
[0057] The specific implementation is further described in detail below in conjunction with the preparation process of a medical high-precision titanium bar with a diameter tolerance level of h7-h8, a diameter of 9.5mm, and a length of 3m.
[0058] First, select a pure titanium billet with a diameter of 360mm and a length of 1.7m, and cut off the part with defects after ultrasonic flaw detection; put the pure titanium billet into a resistance furnace and heat it to 990 ° C, keep the temperature for 2.5 hours, and use an electro-hydraulic hammer to make The deformation rate of the pure titanium billet reaches 58% to obtain a pure titanium billet; the pure titanium billet is cut into a small pure titanium billet of the weight required for the finished bar; the small pure titanium billet is put into the resistance furnace again and heated to 920 ℃, Keep the temperature for 2.5 hours, and use wire rolling equipment to make the deformation rate of the small pure titanium billet reac...
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