Mechanical Engineering, Mechatronics and Robotics Department, Mechanical Engineering Faculty, "Gheorghe Asachi" Technical University of Iasi, 700050 Iasi, Romania.
Sensors (Basel). 2022 Mar 30;22(7):2667. doi: 10.3390/s22072667.
The torsional fatigue test determines the fatigue limit for a certain asymmetry coefficient of the cycle. The assessment of fatigue tests is performed on specialized machines. There are two types of torsion testing machines: universal machines that have the torsion component and specialized machines only for torsion testing. Nevertheless, no matter which proposed option we choose, the purchase prices for these testing machines or the values spent for self-management are quite high. This paper presented a device used for torsion fatigue testing, adaptable to a universal pulsating testing machine, designed to determine the torsion fatigue limit for different materials. The built device is simple and reliable, and therefore inexpensive. By using this device, we can determine the limit of the torsional fatigue after any stress cycle and we can use the parameters obtained from the universal machine to which it was attached. The torque and twisting angle of the test specimen during the test can be determined by calculation. The paper also presented an experimental method for determining shear strains based on calibration experiment, using a specimen on which strain gauges were mounted. The values taken from this calibration experiment were compared with those obtained from the theoretical calculation.
扭转疲劳试验确定了特定循环不对称系数的疲劳极限。疲劳试验的评估是在专用机器上进行的。有两种类型的扭转试验机:具有扭转部件的万能试验机和仅用于扭转试验的专用试验机。然而,无论我们选择哪种提议的方案,这些试验机的购买价格或自行管理的费用都相当高。本文介绍了一种用于扭转疲劳试验的装置,该装置可适应万能脉动试验机,用于确定不同材料的扭转疲劳极限。所构建的装置简单可靠,因此价格低廉。通过使用该装置,我们可以在任何应力循环后确定扭转疲劳极限,并可以使用附加到其上的万能机获得的参数。可以通过计算确定试验过程中试件的扭矩和扭转角。本文还提出了一种基于校准试验的确定剪切应变的实验方法,使用了安装应变片的试件。从该校准实验中获得的值与从理论计算中获得的值进行了比较。