Słodki Bogdan, Zębala Wojciech, Struzikiewicz Grzegorz
Production Engineering Institute of the Mechanical Faculty, Cracow University of Technology, Al. Jana Pawła II 37, 31-155 Kraków, Poland.
Materials (Basel). 2019 Mar 6;12(5):768. doi: 10.3390/ma12050768.
In the machining of difficult-to-cut alloys, such as titanium-based alloys, the delivery of a cutting fluid with high pressure can increase machining efficiency and improve process stability through more efficient chip breaking and removing. Proper selection of machining conditions can increase the productivity of the process while minimizing production costs. To present the influence of cutting fluid pressure and chip breaker geometry on the chip breaking process for various chip cross-sections Grade 5 ELI titanium alloy turning tests were carried out using carbide tools, H13A grade, with a -SF chip breaker geometry under the cutting fluid pressure of 70 bar. Measurements of the total cutting force components for different cutting speeds, feeds, and cutting depth in finishing turning were carried out. The analysis of the obtained chips forms and the application area of the chip breaker have been presented. It was proved that for small depth of cut (leading to small chip cross-section) the cutting fluid pressure is the main cause of the chip breakage, since the insert chip breaker does not work. On the other hand, for bigger depths of cut where the chip breaker goes in action, the cutting fluid pressure only supports this process. For medium values of depths of cut the strength of chip is high enough so that the pressure of the cutting fluid cannot cause chip breaking. A chip groove is not filled completely so the chip breaker cannot play its role.
在加工难切削合金(如钛基合金)时,高压输送切削液可通过更高效的断屑和排屑来提高加工效率并改善加工过程稳定性。合理选择加工条件可提高加工过程的生产率,同时将生产成本降至最低。为了呈现切削液压力和断屑器几何形状对不同切屑横截面的断屑过程的影响,使用H13A等级的硬质合金刀具,在70巴的切削液压力下,采用-SF断屑器几何形状进行了5级ELI钛合金车削试验。对精车中不同切削速度、进给量和切削深度下的总切削力分量进行了测量。给出了所获得的切屑形态分析以及断屑器的应用范围。结果表明,对于小切削深度(导致小切屑横截面),切削液压力是断屑的主要原因,因为刀片断屑器不起作用。另一方面,对于断屑器起作用的较大切削深度,切削液压力仅支持这一过程。对于中等切削深度值,切屑强度足够高,以至于切削液压力无法导致断屑。切屑槽未被完全填满,因此断屑器无法发挥其作用。