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A technical note on grit embedment following abrasive water-jet milling of a titanium alloy

机译:钛合金磨料水射流铣削后砂砾嵌入的技术说明

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Abrasive water-jet (AWJ) technology is routinely used to cut materials that are difficult to cut by other methods. However, whilst the technology for through-cutting of materials is mature, the process is also being developed for controlled depth milling (CDM) of materials since other processes such as chemi-milling are under increased pressure due to legislative restrictions and costs associated with effluent disposal. Grit embedment and surface morphology is considered to be an issue for the service life of components manufactured by AWJ-CDM, especially in environments where fatigue failure is a concern. In the current work, the effects of milling parameters (namely jet-workpiece traverse speed, jet impingement angle, milling direction and grit size) on the surface morphology and degree of grit embedment are investigated for the milling of a titanium alloy (Ti6Al4V) with garnet grit. Up to 40% of the area of a milled surface has been shown to consist of embedded grit. It has been demonstrated that grit embedment can be minimized either by milling with a high jet traverse speed at low impingement angles or by low speed milling at jet impingement angles up to 45° in the backward direction only. However, even in the best cases, 5% of the area of a milled surface was composed of embedded grit. The levels of grit embedment and development of surface morphology have been observed to depend upon complex interactions of the various processing parameters, and a rationale for the observed behaviour has been proposed.
机译:磨料水射流(AWJ)技术通常用于切割难以用其他方法切割的材料。但是,尽管贯穿式切割技术已经成熟,但是由于立法限制和与废水相关的成本,其他方法(如化学研磨)的压力越来越大,因此该方法也正在开发用于材料的可控深度研磨(CDM)。处置。砂砾嵌入和表面形态被认为是AWJ-CDM制造的组件使用寿命的一个问题,特别是在疲劳失效是一个令人担忧的环境中。在当前工作中,研究了钛合金(Ti6Al4V)的铣削参数(即射流工件的横移速度,射流冲击角,铣削方向和砂砾尺寸)对表面形态和砂砾嵌入度的影响。石榴石沙粒。铣削表面的多达40%的面积已被证明由嵌入的砂砾组成。已经证明,可以通过在低冲击角下以高射流速度进行铣削或仅在向后方向上以高达45°射流角进行低速铣削来最大程度地减少砂砾的嵌入。但是,即使在最佳情况下,铣削表面的5%也由嵌入的砂砾组成。已经观察到砂砾嵌入和表面形态发展的水平取决于各种加工参数的复杂相互作用,并且已经提出了观察到的行为的原理。

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