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Temperatures during the Dry Cutting of Titanium Alloy Using Diamond Composites with Ceramic Bonding Phases

机译:使用具有陶瓷粘合相的金刚石复合材料干切割钛合金的温度

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摘要

In this paper the thermal properties of diamond composites with ceramic bonding phases, such as the Ti-Si-C system with nanometric Ti(CN) and TiB2 are presented. The thermal conductivities of the materials were analyzed by the laser pulse method. In addition, computational simulations of the temperature dependence on the distance from the cutting edge were performed according to the finite element method for the investigated composites, commercial PCD, and hypothetical diamond monocrystal. Two cutting speeds were considered during the numeric computations: 100 and 200 m/min. To verify the simulations, the TNGA 160408 cutting insert, which was prepared from the investigated diamond composites and commercial material, was employed. Dry turning tests of titanium alloy were conducted. The temperatures during the machining processes were observed using a thermovision camera, and the surface roughness was measured after the tests. The computational simulations confirmed the strong dependence between the thermal properties of the cutting material and the temperatures within the cutting zone. The temperature measurements during the dry cutting tests reveal significantly higher temperatures than the temperature measurements achieved during the simulations.
机译:本文介绍了具有陶瓷粘合相的金刚石复合物的热性质,例如具有纳米Ti(CN)和TIB2的Ti-Si-C系统。通过激光脉冲法分析材料的热导体。另外,根据所研究的复合材料,商业PCD和假想金刚石单晶的有限元方法,进行对从切削刃的距离的温度依赖性的计算模拟。在数字计算期间考虑了两种切割速度:100和200米/分钟。为了验证模拟,采用由所研究的金刚石复合材料和商业材料制备的TNGA 160408切削刀片。进行钛合金的干式转弯试验。使用热敏摄像机观察加工过程中的温度,并且在测试后测量表面粗糙度。计算模拟证实了切割材料的热特性与切割区内的温度之间的强依赖性。干切削测试期间的温度测量显示出比模拟期间所达到的温度测量值明显较高的温度。

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