Tao Yi, Wan Nian, Xu Daoming, He Qiang
Marine Design & Research Institute of China, Shanghai 200011, China.
School of Mechanical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212000, China.
Materials (Basel). 2024 Apr 19;17(8):1891. doi: 10.3390/ma17081891.
In order to enhance the quality of thread processing by tap, a systematic analysis of its forming mechanism and factors affecting forming quality is conducted. Effects of the number of edges, the amount of shovel back, the extrusion cone, the calibration part and the extrusion cone angle on the torque and temperature are achieved by finite element analysis and experiments. From the perspective of reducing torque and temperature during the forming process, the optimal combination of tap structural parameters for machining M22×2 internal threads on 42CrMo4 high-strength steel are further obtained through orthogonal optimization. The results show that, unlike the cutting process of threads, the extrusion forming process of threads is a net forming process in which metal undergoes plastic deformation in a limited space, and the metal material continuously flows along the edge of the V-shaped groove of the tap, gradually piling up to form the thread tooth shape. This also caused a noticeable lack of flesh at the top of the extruded thread teeth. Better quality threads can be obtained by machining with optimized structural parameters. The maximum torque and temperature during the machining process are reduced by 22.86% and 20.31%, respectively. The depth of the hardened layer increased by 0.05 mm, and the root and top hardness of the teeth increased by 10 HV and 5 HV, respectively.
为提高丝锥螺纹加工质量,对其成形机理及影响成形质量的因素进行了系统分析。通过有限元分析和实验,得出了刃数、铲背量、挤压锥、校准部分及挤压锥角对扭矩和温度的影响规律。从降低成形过程中扭矩和温度的角度出发,通过正交优化进一步得出了在42CrMo4高强度钢上加工M22×2内螺纹时丝锥结构参数的最佳组合。结果表明,与螺纹切削过程不同,螺纹挤压成形过程是金属在有限空间内发生塑性变形的净成形过程,金属材料沿丝锥V形槽边缘不断流动,逐渐堆积形成螺纹牙形。这也导致挤压螺纹牙顶部明显缺肉。采用优化后的结构参数进行加工可获得质量更好的螺纹。加工过程中的最大扭矩和温度分别降低了22.86%和20.31%。硬化层深度增加了0.05mm,牙根部和顶部硬度分别提高了10HV和5HV。