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Development of Advanced Broaching Tool for Machining Titanium Alloy

机译:用于加工钛合金的先进拉削工具的研制

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Broaching is a precision multipoint metal removal operation normally employed for manufacturing variety of complex parts having either internal or external features. Broaching can produce high precision and good surface finish at a high metal removal rate. The unique feature of a broach tool is that the feed/depth of cut for the teeth is built into the broach unlike other cutting tools. The tool design (e.g., rise per tooth and tooth geometry) play a vital role in the broach performance. A specially adapted machine tool modified to investigate a single broach tooth has been used. Cutting forces and material removal rate have been measured during experimental work for different combination of broaching parameters and broach tool geometry. The effect of the parameters on the surface quality produced has been established. The characteristics of chips formed have also been defined. Finally, optimum tooth geometry and rise per tooth have been recommended for tool performance, broached surface quality and efficient chip formation. The information provided in this paper will be beneficial for broach tool designers and manufacturing engineers.
机译:拉削是一种正常用于制造具有内部或外部特征的复杂部件的各种复杂部件的精密多点金属去除操作。在高金属去除速率下,拉削可以产生高精度和良好的表面光洁度。布拉刀工具的独特特征是,与其他切削工具不同,齿的齿条的进料/深度被内置在布线中。工具设计(例如,每个牙齿和牙齿几何)在格拉舍性能中起着至关重要的作用。已经使用了一种特殊的机床,用于研究单个锯齿齿。在实验工作期间测量了切割力和材料去除速率,用于不同的拉削参数和拉刀工具几何形状的不同组合。建立了参数对所产生的表面质量的影响。也定义了形成的芯片的特性。最后,推荐了最佳的牙齿几何形状和每个牙齿的上升,以便工具性能,拉迹表面质量和高效的芯片形成。本文提供的信息将有利于拉刀工具设计师和制造工程师。

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