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Dressing of Vitreous Bonded Wheels for Continuous Generating Grinding of Gears

机译:玻璃砂轮的修整,用于齿轮的连续产生磨削

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摘要

Grinding is a final step in the production chain of gears and therefore determines the quality of the product. In the industrial practice gears are cut - generally by means of a hobbing process - and their surface is hardened through a heat treatment, which has the target of increasing the wear resistance of the tooth flanks. Grinding is therefore necessary to remove the material distortions originating during the heat treatment and to fulfill dimensional and quality requirements. Usually only gears with high quality requirements are ground. Otherwise grinding is not carried out to reduce the production costs. In the recent years however the percentage of ground gears has been growing continuously due to the rising demands on load capacity, quiet running and life time as well as the increasing performance offered by the grinding processes. Generating grinding by means of cylindrical grinding worms shows the highest potential among the existing processes for gear grinding due to the high material removal performance that can be achieved, In order to use dressable worms efficiently the dressing technology has to be optimized. The present contribution describes the technology for dressing vitreous bonded grinding worms. This process is based on the use of form dressing rollers by means of which the grinding worm geometry and topography are generated. The investigations are aimed at analyzing the influence of the dressing parameters, in particular the speed ratio between dressing and grinding tool, and the attainable gear quality and surface properties. The results show significant dependencies between the dressing strategy and the grinding results.
机译:磨削是齿轮生产链中的最后一步,因此决定了产品的质量。在工业实践中,通常通过滚齿加工来切割齿轮,并通过热处理来硬化齿轮的表面,其目的是增加齿面的耐磨性。因此,必须进行研磨以消除在热处理过程中产生的材料变形,并满足尺寸和质量要求。通常,只有具有高质量要求的齿轮才被磨削。否则不进行研磨以降低生产成本。然而,近年来,由于对负载能力,安静运行和使用寿命的不断增长的需求以及磨削工艺所提供的不断提高的性能,地齿轮的百分比一直在持续增长。由于可以实现高的材料去除性能,利用圆柱磨蜗杆进行磨削在现有的齿轮磨削工艺中显示出最高的潜力。为了有效地使用可修整的蜗杆,必须优化修整技术。本文稿描述了用于修整玻璃结合磨具的技术。该过程基于使用修整辊,通过该修整辊产生磨削蜗杆的几何形状和形貌。这些研究旨在分析修整参数的影响,尤其是修整和磨削工具之间的速比,以及可获得的齿轮质量和表面性能。结果表明修整策略和磨削结果之间存在显着相关性。

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