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Materials Machining Study of Titanium Alloy Using a High Speed Camera

机译:使用高速相机的钛合金材料加工研究

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The research aim is to study and analyze the shear zone by application of merchant circle during machining of titanium alloy (Ti6Al4V). The thermo-mechanical reaction during machining plays an important role in defining machinability of titanium alloys. The scientific community is concerned about machining of titanium alloy due to problems occurring in the shear zone that affect tool life. Studying the cutting action contributes to understanding and addressing these problems effectively. For this purpose, an experimental setup, utilizing a high speed camera will be used to study the shear zone. The shear zone characteristics are studied by analyzing the images captured by a high speed camera placed near to the shear zone during machining. The experimental design consists of conducting a series of turning trials using combination of cutting parameters namely constant spindle speed (n) 770 rpm; feed rate (f) of 2 and 4 mm/rev; and depth of cut (d) of 1 and 2 mm. The length of cut (L) of 10 mm remains constant and no coolant is used for all trials. The images obtained from the camera are analyzed against the theory of orthogonal cutting using merchants circle.
机译:研究目的是通过在钛合金加工过程中的应用在钛合金(Ti6Al4V)中的应用来研究和分析剪切区。加工过程中的热机械反应在定义钛合金的可加工性方面起着重要作用。由于影响工具寿命的剪切区发生的问题,科学界涉及加工钛合金。研究切割行动有助于有效地理解和解决这些问题。为此目的,利用高速相机的实验设置将用于研究剪切区域。通过在加工过程中分析通过靠近剪切区附近靠近剪切区捕获的图像来研究剪切区特性。实验设计包括使用切割参数的组合进行一系列转动试验,即恒定主轴速度(n)770rpm;进料速率(f)为2和4 mm / ref;和削减的深度(d)为1和2 mm。 10mm的切割长度保持恒定,没有冷却剂用于所有试验。利用商人圈的正交切割理论分析从相机获得的图像。

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