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Thermal stability of crossed helical gears with wheels made from sintered steel

机译:烧结钢制带轮斜斜齿轮的热稳定性

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A considerable slide exists between the flanks of worm and gear during the work, which results in flank wear and considerable loss of energy. The energy is, thereby, converted into heat, which leads to the warming-up of gear drive, compromising its correct operation, and to scuffing in critical cases. Oil temperature has an important role in thermal stability. Viscosity depends on temperature. Viscosity significantly affects the processes in the contact zone, i.e. the energy losses, and hence the temperature. Optimal lubrication can be provided only in the relevant field of temperatures. The paper presents experimental and theoretical research on the effect of temperatures and thermal stability of a worm and gear set with a gear made of sintered steel Fe1.5Cr0.2Mo on their ability and appearance of boundary conditions.
机译:在工作过程中,蜗杆和齿轮的侧面之间存在相当大的滑动,这会导致侧面磨损和大量的能量损失。因此,能量被转换成热量,从而导致齿轮传动装置变热,损害了齿轮传动装置的正确运行,并在严重情况下造成磨损。油温对热稳定性具有重要作用。粘度取决于温度。粘度显着影响接触区域中的过程,即能量损失,因此影响温度。仅在相关温度范围内才能提供最佳润滑。本文对用烧结钢Fe1.5Cr0.2Mo制成的齿轮蜗杆和齿轮组的温度和热稳定性对其性能和边界条件的影响进行了实验和理论研究。

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