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SURFACE DAMAGE CAUSED BY GEAR PROFILE GRINDING AND THEIR EFFECTS ON FLANK LOAD CARRYING CAPACITY

机译:齿轮轮廓磨削引起的表面损伤及其对侧向承载能力的影响

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摘要

Instances of damage to discontinuous form ground and surface-hardened gears, especially of large scale, have recently increased. This damage may be attributed partly to a faulty grinding process with negative effects on the surface zones and the surface properties. In addition to its high accuracy, discontinuous form grinding is characterized by high material removal because of the line contact between grinding wheel and tooth flank. The efficiency and reliability of the process are affected not only by the use of optimized grinding wheel specifications and machining parameters, but also by the risk of local surface zone damage in the form of grinding burn on the tooth flank. The location and onset of local grinding burn damage have seemed for a long time to be random and unpredictable, for which reason the feed rates and material removal rates have been increased only incrementally in procedures used in industrial practice. The studies reported in the paper are intended to contribute to the knowledge of the interrelationships between surface zone damage and the effects on flank load-carrying capacity for the case of profile grinding. Grinding tests have been conducted in order to investigate more closely the occurrence of surface properties in the form of grinding burn as a function of grinding parameters. Further studies of the. flank load carrying capacity of case hardened gears subjected to different surface properties are intended to provide a more detailed analysis of the interrelationship between gear geometry and different surface properties during the grinding process in a first step.
机译:最近,对不连续形状的地面齿轮和表面硬化齿轮的损坏特别是大规模损坏的情况有所增加。这种损坏可能部分归因于打磨过程的错误,对表面区域和表面性能产生了负面影响。除其高精度外,由于砂轮和齿面之间的线接触,不连续成型磨削的特点是材料去除率高。该过程的效率和可靠性不仅受到优化的砂轮规格和加工参数的使用的影响,而且还受到以齿面磨削烧伤的形式出现局部表面区域损坏的风险的影响。长期以来,局部磨削烧伤的位置和发作似乎是随机且不可预测的,因此,在工业实践中使用的进料速度和材料去除速度仅逐渐增加。本文中报道的研究旨在帮助人们了解异形磨削时表面区域损伤与对侧面承载能力的影响之间的相互关系。为了更紧密地研究作为磨削参数的函数的磨削烧伤形式的表面特性的发生,已经进行了磨削测试。进一步的研究。经受不同表面特性的表面硬化齿轮的侧面承载能力旨在提供对第一步磨削过程中齿轮几何形状与不同表面特性之间相互关系的更详细分析。

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