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Reliability assessment of cutting tools life based on advanced approximation methods

机译:基于先进近似方法的切削工具寿命的可靠性评估

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Cutting tools' reliability influences the whole manufacturing efficiency. However, in most cases the same cutting tool may be used for different operations with different processing parameters, making thus difficult to estimate the remaining life of the tool precisely. The present study proposes a new reliability estimation approach to the cutting tools based on advanced approximation methods. Reliability-based design/operation is a technique extensively employed for problems of structural reliability, assessing the performance of critical infrastructure under stochastic design parameters. Due to the complexity of machining processes which involve a significant number of hidden or difficult to statistically model variables, advanced approximation methods, such as response surface or surrogate modelling methods may be applied, starting from a few sample points obtained through fundamental experiments and extending them to models able to predict/estimate the values of control values/indicators as a function of the key design variables, often referred to as limit states. Having constructed such models, and according to the level of probability that need to be measured, different reliability analysis methods can be employed such as Monte Carlo Simulations or First Order Reliability Methods (FORM). In the present study these two reliability analysis methods are assessed for estimating the reliability of cutting tools.
机译:切削工具的可靠性影响了整个制造效率。然而,在大多数情况下,相同的切削工具可以用于不同的处理参数的不同操作,因此难以精确地估计工具的剩余寿命。本研究提出了一种基于先进近似方法的切削工具的新可靠性估计方法。可靠性的设计/操作是一种广泛用于结构可靠性问题的技术,在随机设计参数下评估关键基础设施的性能。由于涉及大量隐藏或难以统计模型变量的加工过程的复杂性,可以应用高级近似方法,例如响应表面或代理建模方法,从通过基本实验获得的一些采样点开始,并延长它们对于能够预测/估计控制值/指示符的值的模型作为关键设计变量的函数,通常称为限制状态。构建了这种模型,并且根据需要测量的概率水平,可以采用不同的可靠性分析方法,例如蒙特卡罗模拟或第一订单可靠性方法(形式)。在本研究中,评估这两个可靠性分析方法以估计切割工具的可靠性。

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