Title :
Study of the cold-extruding tapping process of titanium alloy and the machine of compound vibration
Author :
Yang, Mingliang ; Liang, Yingxuan
Author_Institution :
Sch. of Mech. Eng., Shaanxi Univ. of Technol., Hanzhong, China
Abstract :
Titanium alloy has a high mechanical strength and small elastic modulus. While it´s tapped, the springback of the work piece increases the tapping torque, the torsional stiffness is decreased with the flutes. The work hardening of titanium alloy is easy. Thus it is very difficult to tap small inside thread by cutting titanium alloy. Vibration press-working can diminish the forming force. In the compound vibration extruding tapping, the axial vibration can clear up the springback clamping force from both sides of the screw thread and reduce the extruding tapping torque. CNC technology is applied, In the new type of tapping machine with function of rotational vibration and axial vibration, Function of general tapping leading model is realized, which has met the demands of the new technique in vibration extruding tapping.
Keywords :
cold working; computerised numerical control; elastic constants; elastic moduli; extrusion; hardness; mechanical strength; metallurgical industries; tapping (machining); threading (machining); titanium alloys; vibrations; CNC technology; axial vibration; cold-extruding tapping process; compound vibration machine; elastic modulus; extruding tapping torque; flutes; forming force; general tapping leading model; mechanical strength; rotational vibration; screw thread; springback clamping force; tapping machine; titanium alloy cutting; torsional stiffness; vibration extruding tapping; vibration press-working; work hardening; work piece springback; Compounds; Force; Steel; Titanium alloys; Torque; Vibrations; compound vibration; extruding tapping; tapping machine; titanium alloy;
Conference_Titel :
Mechanic Automation and Control Engineering (MACE), 2011 Second International Conference on
Conference_Location :
Hohhot
Print_ISBN :
978-1-4244-9436-1
DOI :
10.1109/MACE.2011.5988179