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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Temperature of internally-cooled diamond-coated tools for dry-cutting titanium
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Temperature of internally-cooled diamond-coated tools for dry-cutting titanium

机译:用于钛干切的内部冷却金刚石涂层工具的温度

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The role of cutting fluids is well known for the importance of removing heat from the cutting edge, lubricating the sliding chip contact and transporting the metal chips away from the cutting zone. Dry machining leads to increased cutting temperatures and higher wear rates resulting in shorter tool life; this is particularly evident in the cutting of high strength materials. Diamond coated cutting inserts are not usually considered for machining titanium due to rapid oxidation of the coating at the temperatures typical of titanium machining. This paper examines the formation of hot-spots on the rake face during dry and near-dry turning of titanium using conventional cemented carbide inserts. Machining performance is assessed by measurement of tool wear and tool life. Trials with an internally cooled tool with a specially designed, diamond coated insert have shown that the heat from the cutting operation can be rapidly diffused over the entire surface of the insert and thus successfully drawn away from the tool via closed loop recirculation of coolant through the tool holder. This enables wear to be inhibited by management of rake face temperature to keep it below the critical temperatures at which these prominent wear mechanisms operate. Measurements of change in coolant temperature before and after circulation are used to quantify the heat removed from the cutting process. The low friction coefficient and high thermal conductivity of diamond, assisted by the indirect cooling, results in longer tool life whilst maintaining high standards of surface finish.
机译:众所周知,切削液的作用是从切削刃中去除热量,润滑滑动切屑接触并将金属屑从切削区域运走的重要性。干式加工会导致切削温度升高和更高的磨损率,从而缩短刀具寿命。这在切割高强度材料时尤其明显。由于在钛加工的典型温度下涂层的快速氧化,通常不考虑将金刚石涂层的切削刀片用于加工钛。本文研究了使用传统的硬质合金刀片对钛进行干式和近干式车削时在前刀面上形成的热点。机加工性能是通过测量刀具磨损和刀具寿命来评估的。使用带有专门设计的,金刚石涂层的刀片的内部冷却工具进行的试验表明,切削操作产生的热量可以迅速扩散到刀片的整个表面,从而通过冷却剂通过冷却液的闭环再循环而成功地从工具中带走。工具托架。这可以通过控制前刀面温度来抑制磨损,以使其保持在这些突出的磨损机制工作的临界温度以下。循环前后冷却液温度变化的测量值用于量化从切削过程中去除的热量。间接冷却有助于金刚石的低摩擦系数和高导热率,从而延长了刀具寿命,同时保持了高标准的表面光洁度。

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