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Chaotic Tool Wear during Machining Of Titanium Metal Matrix Composite (TiMMCs)

机译:钛金属基复合材料(TiMMCs)加工过程中的混沌刀具磨损

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The initial tool wear during machining of titanium metal matrix composite (TiMMCs) is the result of several wear mechanisms: tool layer damage, friction - tribological wear, adhesion, diffusion and brace wear. This phenomenon occurs at the first instant and extends to only ten seconds at most. In this case the adhesive wear is the most important mechanism while the brace wear is considered as a resistance wear layer at the beginning of the steady wear period. In this paper, the effect of the initial tool wear and initial cutting conditions on tool wear progression and tool life is investigated. We proposed herein a new mathematical model based on the scatter wear and Lyapunov exponent to study quantitatively the "chaotic tool wear". The Chaos theory, which has proved efficient in explaining how something changes in time, was used to demonstrate the dependence of the tool life on the initial cutting conditions and thus contribute to a better understanding of the influence of the initial cutting condition on the tool life. Based on the chaotic tool wear model, the scatter wear dimension and Lyapunov exponents were found to be positive in all case of the initial cutting conditions such as initial speed, feed rate and depth of cut. The initial cutting speed appears however to have the most significant impact on tool life. In particular, the mathematical model was successfully applied to the case of machining TiMMCs. It was clearly shown that changing the initial cutting speed by 20 m/min for the first two seconds of machining instead of keeping it constant at 60 m/min during the whole cutting process leads to an increase in the tool life (up to 24%).
机译:钛金属基复合材料(TiMMCs)加工过程中的初始刀具磨损是多种磨损机制的结果:刀具层损坏,摩擦-摩擦磨损,附着力,扩散和支撑磨损。此现象在第一瞬间发生,并且最多只能持续十秒钟。在这种情况下,粘着磨损是最重要的机制,而在稳定磨损时期开始时,支撑带磨损被视为是阻力磨损层。本文研究了初始刀具磨损和初始切削条件对刀具磨损进程和刀具寿命的影响。我们在此提出了一种基于散点磨损和Lyapunov指数的新数学模型,以定量研究“混沌刀具的磨损”。混沌理论已被证明有效地解释了时间如何变化,该理论被用来证明刀具寿命对初始切削条件的依赖性,从而有助于更好地理解初始切削条件对刀具寿命的影响。 。基于混沌刀具磨损模型,发现在初始切削条件(例如初始速度,进给速度和切削深度)的所有情况下,散点磨损尺寸和Lyapunov指数均为正。但是,初始切削速度似乎对刀具寿命影响最大。特别是,该数学模型已成功应用于加工TiMMC的情况。清楚地表明,在加工的前两秒内将初始切削速度更改为20 m / min,而不是在整个切削过程中将其保持恒定在60 m / min会导致刀具寿命增加(高达24% )。

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