Title :
Control strategies for manipulating contact force of Impact Wrench to generate high level torque
Author :
Jaemin Lee ; Dong-Shin Ko ; Hyung-Hwan Chun ; Deog-Jae Hur
Author_Institution :
Mechatron. Lab., Inst. for Adv. Eng., Yongin, South Korea
Abstract :
Impact Wrench is one of power tools which have sophisticated structure to generate impact motion by using electrical motor or hydraulic actuators. In the system, an impacting module, which consists of impactor, spindle, connect balls, locker and spring, has an important role to generate impacting motion. In this paper, two strategies are investigated for improving performance to generate high level torque at an anvil. The motion equation of the system during impacting motion is derived and the control methodologies are proposed to manipulate contact force, sequentially. One of the proposed control methods is controlling the spring length by compressing on the opposite side of impactor. The other method is to accelerate or decelerate the rotational behavior by modifying velocity profile. Besides, the simulation results of two strategies are compared in magnitude of contact force and impacting frequency.
Keywords :
force control; impact (mechanical); machine tool spindles; mechanical contact; springs (mechanical); torque; velocity control; anvil; connect balls; contact force magnitude; contact force manipulation; control methodologies; electrical motor; high level torque generation; hydraulic actuators; impact motion generation; impact wrench; impacting frequency; impacting module; impactor; locker; motion equation; rotational behavior acceleration; rotational behavior deceleration; spindle; spring length control; velocity profile; Contact Force; High Torque; Impact Wrench; Velocity Control;
Conference_Titel :
Control, Automation and Systems (ICCAS), 2013 13th International Conference on
Conference_Location :
Gwangju
Print_ISBN :
978-89-93215-05-2
DOI :
10.1109/ICCAS.2013.6704222