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Deformation Control and Dimensional Accuracy Assurance in Titanium Alloy Semi-Finished Product Processing

Publish Time: 2024-11-03
As a high-performance material, titanium alloy is widely used in aerospace, medical and automotive fields. However, titanium alloy semi-finished products are prone to deformation during processing, which affects the dimensional accuracy and performance of the product. Therefore, deformation control and dimensional accuracy assurance become key issues in Titanium Alloy Semi-Finished Product Processing.

First, optimizing processing parameters is the key to controlling deformation and ensuring dimensional accuracy. During the cutting process, the reasonable selection of cutting speed, feed speed and cutting depth can effectively reduce heat accumulation and mechanical stress, thereby reducing the deformation risk of titanium alloy. In addition, the use of suitable tool materials and coating technology can also improve cutting efficiency and dimensional accuracy.

Secondly, strict control of processing temperature and cooling conditions is crucial for deformation control of titanium alloy. High temperature can easily cause titanium alloy to soften and deform. Therefore, using coolant or lubricant to reduce the temperature of the cutting area and maintain a stable processing temperature is an important measure to prevent deformation.

Finally, the use of advanced measurement and detection methods to monitor and adjust the dimensional accuracy of titanium alloy semi-finished products in real time is also an important means to ensure product quality. Use high-precision equipment such as three-coordinate measuring machines and optical measuring instruments to measure the dimensions and detect the form and position tolerances of the processed titanium alloy semi-finished products to ensure that the products meet the design requirements.

In summary, the deformation control and dimensional accuracy assurance in Titanium Alloy Semi-Finished Product Processing requires comprehensive consideration of processing parameters, processing temperature and cooling conditions, as well as measurement and detection methods. Only by fully mastering these technical points can we ensure the high-quality processing and stable production of titanium alloy semi-finished products.
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