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Fatigue Design of Sintered Steel Components - Effect of Stress Concentrations and Mean Stresses on local strength using the Highest Stressed Volume Approach

机译:烧结钢构件的疲劳设计-使用最大应力体积法进行应力集中和平均应力对局部强度的影响

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The increasing implementation of sintered steel parts for highly loaded engine and gear-box applications is accompanied by the need of reliable fatigue design method, especially in the pre-development phase. In most cases necessary characteristic values for the fatigue design of PM components, especially for sharply notched areas, are not available. For a diffusion alloyed sintered steel containing 4% Ni (Distaloy AE) the locally endurable stress amplitude for different loading modes and mean stresses will be derived by applying the highly stresses volume approach. The correlation of the locally endurable stress amplitude with the highly stressed volume, defined as V_x = x • <σ_(max), will be estimated for both x = 80% and 90% in order to evaluate both approaches with regard to PM steels. The applicability of the assessment of the local cyclic behaviour by the highly stresses volume approach will be demonstrated for a typical design detail of a highly loaded PM-part. Characteristic values for the fatigue design of PM-components will be recommended.
机译:在高负荷发动机和变速箱应用中,越来越多地使用烧结钢零件,伴随着对可靠疲劳设计方法的需求,尤其是在预开发阶段。在大多数情况下,对于PM组件的疲劳设计(尤其是对于尖锐的缺口区域),没有必要的特性值可用。对于含4%Ni的扩散合金烧结钢(Distaloy AE),通过采用高应力体积法可得出不同载荷模式下的局部可承受应力幅值和平均应力。对于x = 80%和90%,都将估计局部可承受的应力振幅与高应力体积的相关性,定义为V_x = x•<σ_(max),以便评估与PM钢有关的两种方法。对于高负载PM零件的典型设计细节,将演示通过高应力体积法评估局部循环行为的适用性。将推荐PM组件疲劳设计的特征值。

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