How to Select Induction Surface Hardening and Finished Grinding Conditions in Order to Ensure High Compressive Residual Stresses on Machine Parts Surface

Как выбрать режимы индукционной поверхностной закалки и чистового шлифования для обеспечения высоких сжимающих остаточных напряжений на поверхности деталей машин
Janez Grum
2002-08-07

alloyed steelscompressive residual stressesfinished grinding conditionshardened surface layerinduction surface hardening
Induction surface hardening creates very desirable residual stresses in hardened surface layer. Residual stresses are always of compressive nature and are usually present to the depth of the induction - hardened layer. In general, efforts should be made that after induction hardening we get low or moderate residual stresses in the transition area. Manufacturing engineers are often confronted with the question of how to achieve this kind of residual stress profile. It should be emphasized here that because of their lower heat conductivity alloyed steels for surface hardening are very difficult to treat and it is difficult to ensure desirable residual stresses in the transition area. That is why special alloyed steels are available that in this respect display a more favourable behaviour in heating and quenching. It is due to these difficulties that delamination of the surface to the very core may occur. By right selection of grinding wheel and grinding conditions taking into accounts physical and mechanical properties of the workpiece material will be kept back very favourabe compressive residual stresses in the hardened surface layer.
1
Alloyed steels are difficult to process because their lower thermal conductivity complicates achieving desirable residual stresses during heating and quenching.
2
Induction surface hardening generates compressive residual stresses in the hardened surface layer, typically extending through the induction-hardened depth.
3
Residual-stress profiles should maintain low or moderate stresses in the transition zone to reduce the risk of unfavorable surface-to-core delamination.
4
Selecting the grinding wheel and grinding conditions according to the workpiece’s physical and mechanical properties preserves highly favorable compressive stresses in the hardened surface layer.
5
Specially alloyed steels exhibit more favorable heating and quenching behavior for producing suitable residual-stress profiles.

Induction-hardened alloy-steel machine-part surfaces subjected to finished grinding

Formation and preservation of a favorable residual-stress profile—high compressive stresses in the hardened surface layer with low or moderate stresses in the transition zone—through the selection of induction-hardening and finished-grinding conditions

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2002-08-07
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Janez Grum
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