Abstract
With the more and more complexity demands of the market, the geometric accuracy of the part has become the main factor restricting the development of single point incremental forming technology (SPIF). For this reason, with the truncated cone as the target part, the radial accuracy error generation mechanism was analyzed from the aspects of sheet springback and residual stress distribution. Four factors and three levels of surface response experiments were designed using the Box-Behnken Design (BBD) for tool head diameter, layer spacing, sheet thickness, and wall angle. The single and interactive influence law of the process parameters on the radial accuracy was obtained. In response to the above research results, the ultrasonic vibration was introduced into the process of SPIF to reduce springback by reducing residual stress. The influence of vibration parameters on the accuracy was obtained through experiments. The results showed that ultrasonic vibration could effectively improve and control the accuracy of the part.
Highlights
Sheet metal single point incremental forming technology (SPIF) is a new plastic forming technology with advantages of low cost, short cycle, flexible, and high degree of digital
In view of the springback mechanism of the part, the ultrasonic vibration technology was introduced into SPIF to change the elastoplastic delamination and residual stress distribution to optimize the forming accuracy of the part
The relationship between the process parameters and the radial accuracy error was studied by analysis of variance (ANOVA)
Summary
Sheet metal single point incremental forming technology (SPIF) is a new plastic forming technology with advantages of low cost, short cycle, flexible, and high degree of digital. It can meet the market demands of diversification and complication. It can be used in the fields of medical, aerospace, and automotive car [1]. The forming process involves numerous process parameters. It makes it difficult to fully meet the forming accuracy requirements of the parts and restricts its wide range of industrial applications [2]
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