Products Description
I. Product Characteristic
TA1 titanium alloy is a versatile alloy with many advantages and a wide range of applications. Its high strength and excellent corrosion resistance make it ideal for use in many industries. At the same time, its low density enables it to reduce structural loads and improve the efficiency of material use.TA1 titanium alloy also has good toughness, which allows it to maintain stability in a variety of temperature environments and adapt to a variety of working conditions.
Its excellent processability allows TA1 titanium alloy to be manufactured into structural parts of various shapes and sizes using a variety of processes, such as forging, rolling and drawing. Moreover, it can also be welded and cut, providing more flexibility and possibilities for the manufacturing industry.
II. Bending process
Bending process is the use of bending machine for plastic deformation of the plate, so that it reaches the shape of the design requirements. Titanium alloy plate bending process includes: V-bending, U-bending, arc bending.
The cold bending method is suitable for small parts comparable to the thickness of the material and is usually carried out at room temperature without heating. This method is suitable for pure titanium or thinner titanium alloy plates, which are plastically deformed by mechanical force applied directly to the bending position. However, for thicker or more highly alloyed titanium materials, cold bending may result in cracking or uneven deformation and should be used with caution.
Hot bending is another commonly used method of bending titanium alloys. During hot bending, the titanium alloy material is first heated to a certain temperature to reduce its yield strength and increase plasticity. The selection of the heating temperature needs to be determined according to the composition and properties of the specific titanium alloy, in order to avoid overheating caused by organizational changes and performance degradation. After heating, the titanium alloy material becomes soft and easy to deform, at this time you can use mechanical force or mold to bend it. The bending process requires strict control of the heating temperature and bending speed to ensure the bending quality and material properties.
In general, the bending angle should be less than 90 degrees to avoid excessive stress concentration at the bend. The bending radius should be greater than the thickness of the material to ensure that the bending of the material has enough plastic deformation space.
III. Display of detail
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