首页> 外文期刊>Journal of Solid Mechanics and Materials Engineering >Properties of Densification by Surface Rolling and Load Bearing Capacity of 1.5Cr-0.2Mo High Density Sintered Steel Rollers and Gears
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Properties of Densification by Surface Rolling and Load Bearing Capacity of 1.5Cr-0.2Mo High Density Sintered Steel Rollers and Gears

机译:1.5Cr-0.2Mo高密度烧结钢制辊和齿轮的表面滚压致密化特性和承载能力

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Surface rolling experiments and surface durability tests were carried out using powder metallurgy (P/M) gears made of 1.5Cr-0.2Mo single-press single-sinter (1P1S) high density (7.55×10~(3) kg/m~(3)) sintered steel. The fundamental densification properties of this P/M material were first examined using P/M rollers. A high precision form rolling machine of two roller-dies transverse type was employed. The porosity became nearly zero from the surface down to a depth of at least 0.5 mm when the amount of decrease in the roller radius was more than 0.15 mm. Next, the gear tooth profile analysis was done by finite element simulation (FE-simulation) to optimize some shape parameters of a modified convex tooth profile of P/M spur gears before rolling. Simulation results agree well with the experimental data and gears with good tooth profile accuracy and a fully densified surface layer of about 0.5 mm in depth on the gear flank could be obtained. The gear running tests were finally conducted using a power re-circulating type gear testing rig with a counter pinion gear made of Ni-Cr-Mo wrought steel. Both P/M gears and counter pinions were case-carburized and finished by grinding under the same conditions. The test results confirmed that high density 1.5Cr-0.2Mo P/M gears had sufficiently high load bearing capacity as an automotive power transmission gear and those surface durability tended to increase by surface rolling.
机译:使用高密度(7.55×10〜(3)kg / m〜(1.5Cr-0.2Mo单压单烧结(1P1S))制成的粉末冶金(P / M)齿轮进行表面轧制实验和表面耐久性测试。 3))烧结钢。首先使用P / M辊检查该P / M材料的基本致密化性能。采用了两辊横模的高精度轧制机。当辊半径的减小量大于0.15mm时,从表面到至少0.5mm的深度的孔隙率几乎为零。接下来,通过有限元模拟(FE模拟)进行齿轮齿廓分析,以优化滚动前的P / M正齿轮的改进型凸齿轮廓的一些形状参数。仿真结果与实验数据非常吻合,齿轮具有良好的齿廓精度,并且可以在齿轮齿侧面获得深度约为0.5 mm的完全致密化的表面层。最终,使用动力循环式齿轮试验台进行了齿轮运行测试,该设备配有由Ni-Cr-Mo锻钢制成的反小齿轮。 P / M齿轮和小齿轮均经过表面渗碳处理,并在相同条件下进行磨削。试验结果证实,高密度1.5Cr-0.2Mo P / M齿轮具有与汽车动力传递齿轮相同的足够高的承载能力,并且这些表面耐久性倾向于通过表面滚动而增加。

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