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首页> 外文期刊>Surface & Coatings Technology >Increasing of cutting performance of PVD coated cemented carbide inserts in chipboard milling through improvement of the film adhesion, considering the coating cutting loads
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Increasing of cutting performance of PVD coated cemented carbide inserts in chipboard milling through improvement of the film adhesion, considering the coating cutting loads

机译:考虑到涂层切削负荷,通过改善薄膜附着力来提高刨花板铣削中PVD涂层硬质合金刀片的切削性能

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摘要

Coated cemented carbide cutting inserts that had been pre-treated to remove from their surface the remaining highly deformed cobalt binder layer were examined by carrying out a series of cutting experiments, in order to evaluate their performance when used in chipboard milling. The chip formation mechanism and the tool loading, required to determine the occurring stress distribution in the applied coatings during chipboard milling, was analytically investigated by means of a developed FEM simulation of the material removal process, verified through cutting force measurements. The coating stresses during milling, due to cutting loads, as appropriate FEM calculations concerning their distribution on the tool rake face show, are below the coating's fatigue strength. The coating and the tool wear development are mainly caused by abrasion mechanisms at low cutting temperatures. The investigations indicated that removal of the Co binder phase by pre-treatment of the tool's substrate through grit blasting or chemical etching, results in better adhesion properties, therefore providing superior wear behavior to the tool.
机译:通过进行一系列切削实验,对经过预处理以从其表面去除残留的高度变形的钴粘合剂层的涂层硬质合金切削刀片进行了检查,以评估其在刨花板铣削中的性能。确定刨花板铣削过程中所施加涂层中的应力分布所需的切屑形成机理和工具负荷,是通过对材料去除过程进行开发的有限元模拟,通过切削力测量进行验证而进行分析研究的。铣削过程中,由于切削负荷而产生的涂层应力,如有关其在刀具前刀面上的分布的适当FEM计算所示,低于涂层的疲劳强度。涂层和刀具磨损的发展主要是由于切削温度低时的磨损机理引起的。研究表明,通过喷砂或化学蚀刻对工具的基材进行预处理,可以去除Co粘结相,从而获得更好的附着力,从而为工具提供出色的磨损性能。

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