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A novel numerical modeling approach to determine the temperature distribution in the cutting tool using conjugate heat transfer (CHT) analysis

机译:一种使用共轭传热(CHT)分析确定刀具温度分布的新型数值建模方法

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摘要

This study deals with the conjugate heat transfer problem of a single point cutting tool under turning operation dissipating heat in the tool material and streams of the surrounding air. In order to estimate the cutting temperature during the turning operation, the DEFORM-3D finite element package was utilized. A machining simulation material model for Ti6Al4V was utilized using a modified Johnson-Cook equation. The maximum cutting temperature value was obtained from the finite element model. The temperature was then used as a constant heat source on the tool tip, and the conjugate heat transfer (CHT) approach was used to develop a computational fluid dynamics (CFD) model. The CFD model utilized a 3D heat and fluid flow analysis using ANSYS (R) CFX. A cutting insert with a constant heat source was exposed to the stream velocities of the dry air. The numerical equations governing the flow and thermal fields in the fluid domain and energy equation in the solid domain were solved in parallel by maintaining the continuity of temperature and heat flux at the solid-fluid interface. The presented conjugate heat transfer (CHT) approach provided a very useful understanding of the temperature profile development at the cutting tool that is still a complex challenge for the existing experimental and numerical techniques.
机译:这项研究解决了单点切削刀具在车削操作下耗散刀具材料中的热量和周围空气流的共轭传热问题。为了估算车削过程中的切削温度,使用了DEFORM-3D有限元软件包。使用修改后的Johnson-Cook方程利用Ti6Al4V的加工模拟材料模型。最大切削温度值是从有限元模型获得的。然后将温度用作刀头上的恒定热源,并使用共轭传热(CHT)方法建立计算流体动力学(CFD)模型。 CFD模型利用ANSYS CFX利用3D热和流体流动分析。将具有恒定热源的切削刀片暴露于干燥空气的流速下。通过保持固-液界面处温度和热通量的连续性,并行求解了控制流体域中的流场和热场的数值方程和固体域中的能量方程。提出的共轭传热(CHT)方法提供了对切削刀具温度分布发展的非常有用的理解,这对于现有的实验和数值技术仍然是一个复杂的挑战。

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