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Fatigue performance of hybrid steel samples with laser sintered implants

机译:激光烧结植入物杂交钢样品的疲劳性能

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Laser sintering metal has recently been used in the manufacture of metallic structural hybrid components comprising two different materials obtained by two distinct technological processes. This process allows to obtain productivity gains reducing sintering time and hence the cost. In current study it was used a machined substrate in which it is built by sintering the remaining part. The purpose of present work was to study the effect of the substrate material and interface microstructure on the fatigue performance under constant and variable block loadings. The sintering laser parts were manufactured in maraging steel AISI 18Ni300, while the substrates of hybrid specimens were produced alternatively in two materials: the steel for hot work tools AISI H13 and the stainless steel AISI 420. Fatigue strength will be quantified in terms of S-N curves. The results show that tensile properties of sintered specimens and of the hybrid parts was similar. Fatigue strength for short lives, of the sintered specimens and hybrid parts was quite similar. However, the fatigue strength of hybrid parts tends to decrease, for long lives, when compared with single sintered specimens. The fatigue tests under block loadings leads to indicate that the application of Miner's law is adequate to predate fatigue life in hybrid components with sintered implants, despite having been observed a tendency to be conservative for long life.
机译:最近用于制造金属结构杂化组分的激光烧结金属,其包括通过两个不同的技术过程获得的两种不同的材料。该过程允许获得降低烧结时间的生产率增益,从而降低成本。在目前的研究中,它使用了一种机加工基板,其中通过烧结剩余部分来构建。目前工作的目的是研究基板材料和界面微观结构对恒定和可变块载荷下的疲劳性能的影响。烧结激光零件在钢AISI 18NI300中制造,而杂化标本的衬底是两种材料,用于热工作工具的钢AISI H13和不锈钢AISI 420.疲劳强度将按SN曲线量化疲劳强度。结果表明,烧结标本和杂交零件的拉伸性质相似。疲劳强度为短生,烧结标本和杂交零件非常相似。然而,与单一烧结样品相比,长寿杂交部件的疲劳强度趋于降低。块负荷下的疲劳试验导致矿工法的应用足以使杂交组分在含烧结植入物中的疲劳寿命预测,尽管已经观察到长寿保守的趋势。

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