Aguado Sergio, Pérez Pablo, Albajez José Antonio, Santolaria Jorge, Velázquez Jesús
Centro Universitario de la Defensa, Academia General Militar, Ctra. Huesca S/N, 50090, Zaragoza, Spain.
Design and Manufacturing Engineering Department, University of Zaragoza, 50018, Zaragoza, Spain.
Sensors (Basel). 2019 Jun 26;19(13):2847. doi: 10.3390/s19132847.
Volumetric verification is based on the machine tool (MT) kinematic model, along with its geometric errors. Although users often ignore the uncertainty of verification, the use of the MT as a traceable measurement system in the manufacturing process has increased the need for professionals to be aware of it. This paper presents an improvement in the MT kinematic model, introducing in it the influence of verification uncertainty sources. These sources have been classified into four groups: the MT, the measurement system itself, the measurement strategy, and the optimization strategy. As the developed model exhibits non-linear behavior, the Monte Carlo method was used to determine the influence of the measurement system on verification uncertainty using synthetic tests. In this manner, an improved estimation of the MT uncertainty can be obtained. Therefore, if the MT is used as a traceable measurement system, its accuracy should not be higher than the laser tracker (LT) verification influence. It hence shows the importance of LT influence.
体积验证基于机床(MT)运动学模型及其几何误差。尽管用户常常忽略验证的不确定性,但在制造过程中将MT用作可溯源测量系统增加了专业人员了解它的必要性。本文提出了对MT运动学模型的改进,在其中引入了验证不确定性来源的影响。这些来源已被分为四组:MT、测量系统本身、测量策略和优化策略。由于所开发的模型表现出非线性行为,因此使用蒙特卡洛方法通过综合测试来确定测量系统对验证不确定性的影响。通过这种方式,可以获得对MT不确定性的改进估计。因此,如果将MT用作可溯源测量系统,其精度不应高于激光跟踪仪(LT)的验证影响。由此可见LT影响的重要性。