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An investigation into the effect of various surface treatments on fatigue life of a tool steel

机译:研究各种表面处理对工具钢疲劳寿命的影响

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The effects of nitriding, nitrocarburizing and shot peening on fatigue behavior of AISI D3 cold work tool steel were investigated. Five batches of fatigue specimens were manufactured according to the ASTM E466-96 standard. All specimens were quenched and tempered to a hardness of 50 HRC. One group of specimens was shot peened with an Almen intensity of 16 A, one group was nitrocarburized, one group was gas nitrided by single stage and another group was also nitrided by double stages. Rotating-bending fatigue tests were carried out. Our results showed that nitriding and nitrocarburizing treatments did not have a beneficial effect on the fatigue resistance of D3 tool steel. Fatigue test results revealed that shot peening increased the fatigue life of specimens by about 14 percent, while double stage nitriding decreased it by about 8 percent. Nitrocarburizing and single stage nitriding decreased the fatigue life of specimens by about 29 percent and 50 percent, respectively. Nitriding and nitrocarburizing treatments may improve abrasive-wear resistance of this material by increasing surface hardness but may promote the easy nucleation of a fatigue crack in the brittle surface layer and its unimpeded growth into the weaker substrate material. However, double stage nitriding is less damaging to the fatigue behavior of this steel. SEM and metallographic investigations indicated that a compound layer with porous structure was formed during nitriding and nitrocarburizing. So shot peening is the best treatment to improve the fatigue life of AISI D3 tool steel.
机译:研究了渗氮,氮碳共渗和喷丸处理对AISI D3冷作工具钢疲劳性能的影响。根据ASTM E466-96标准制造了五批疲劳样品。将所有样品淬火并回火至50 HRC的硬度。一组试样的Almen强度为16 A,经喷丸处理,一组经过碳氮共渗,一组通过单级气体氮化,另一组也通过双级氮化。进行了旋转弯曲疲劳试验。我们的结果表明,氮化和氮碳共渗处理对D3工具钢的抗疲劳性没有有益的影响。疲劳测试结果表明,喷丸处理可将样品的疲劳寿命提高约14%,而双阶段渗氮则将其降低约8%。氮碳共渗和单阶段渗氮分别使样品的疲劳寿命降低了约29%和50%。渗氮和氮碳共渗处理可以通过增加表面硬度来提高这种材料的耐磨性,但可以促进脆性表层中疲劳裂纹的容易成核,并且可以不受阻碍地生长成较弱的基材。但是,双阶段氮化处理对这种钢的疲劳行为的损害较小。 SEM和金相研究表明在渗氮和氮碳共渗过程中形成了具有多孔结构的化合物层。因此喷丸处理是改善AISI D3工具钢疲劳寿命的最佳方法。

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