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Impact bending fatigue strength of gear teeth case-hardened by nitriding and carbonizing

机译:通过氮化和碳化冲击齿轮齿壳的弯曲疲劳强度

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Almost all gears used for power transmission of automobiles have been case-hardened by carburizing. Recently, strict demand for reducing running noise and vibration from the power transmission gears requires, in most cases, an additional finishing operation such as grinding and/or honing after carburizing. Nitriding is conducted at a temperature about 820 K which is lower than the transformation temperature, and thus quenching is not required, resulting in smaller heat treatment deterioration. However, nitrided gears hardly used in practice as for power transmission gears. In the present investigation, experiments were conducted, using test gears case-hardened by two different methods, carburizing and plasma-nitriding. Test results showed that the fatigue strength of carburized gears was higher than that of nitrided gears in most cases when the test gears were made from the same steel. However, the pact fatigue strengths of nitrided gears made from a high tension steel with additional alloy elements Mo and V re higher than those of carburized gears made from the carbon and alloy steels which have been used as for gear material. The other high tension steel containing neither Mo nor V could not bring about a sufficiently high fatigue strength in comparison with the conventional carburized gears. It should be noted that the impact fatigue strength of carburized gears made from the high tension steel was higher than the ones made of conventional carburizing steel.
机译:几乎所有用于汽车传输的齿轮都是通过渗碳而硬化的。最近,在大多数情况下,严格对减少电力传动齿轮的运行噪声和振动的需求需要额外的整理操作,例如在渗碳后研磨和/或珩磨。氮化在约820k的温度下进行,该温度低于转化温度,因此不需要淬火,导致较小的热处理劣化。然而,氮化齿轮实际上几乎没有用于动力传动齿轮。在本研究中,使用试验齿轮壳体进行实验,通过两种不同的方法,渗碳和等离子体氮化硬化。测试结果表明,在大多数情况下,当测试齿轮由相同的钢制成时,渗碳齿轮的疲劳强度高于氮化齿轮的疲劳强度。然而,由高张力钢制成的氮化齿轮的PACT疲劳强度与附加合金元素Mo和V重复高于由用作齿轮材料的碳和合金钢制成的碳钢齿轮。与传统的渗碳齿轮相比,其他高张力钢不能带来足够高的疲劳强度。应当注意,由高张力钢制成的渗碳齿轮的影响疲劳强度高于由常规渗碳钢制成的渗碳齿轮。

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