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首页> 外文期刊>Surface & Coatings Technology >Through-the-thickness residual stress analysis by neutron diffraction in inoxidizable martensitic steel samples with and without tungsten carbide coating
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Through-the-thickness residual stress analysis by neutron diffraction in inoxidizable martensitic steel samples with and without tungsten carbide coating

机译:通过中子衍射对具有和不具有碳化钨涂层的可氧化马氏体钢样品进行全厚度残余应力分析

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The residual stress (RS) induced in the substrate by thermal spray-coating plays a significant role in the behaviour of coated materials. The characterisation of High-Velocity Oxy-Fuel (HVOF) coatings through RS determination justifies various cases of failure or bad performance due to the delamination of coating which is not easily interpretable through more traditional microstructural analyses and mechanical tests. Two 13Cr4Ni inoxidizable martensitic steel samples, one having a thermal spray (WC-12% Co) HVOF coated surface, the other a shoot peened surface, were analyzed by neutron diffraction (ND) in order to determine the real RS depth-profile and investigate the effects of the thermal process on the considered materials. The stresses resulted in the range from -80 to 50 MPa for the uncoated sample, while for the coated sample they increased gradually from a slight compressive status in correspondence of the uncoated surface, to greatest values of similar to 250 MPa in correspondence of the coating. A traditional X-ray investigation on the coated surface measured compressive RS values sigma = -550 +/- 40 MPa. showing that ND investigation is very suitable for critical applications, where a much greater stress situation could be present at a diverse depth. The results achieved yielded trends that can be used in monitoring of the coating characteristics, in particular adhesion, thereby confirming the relevance of thermal stresses induced by HVOF coating processes.
机译:热喷涂在基材中引起的残余应力(RS)在涂层材料的行为中起重要作用。通过RS测定来表征高速氧燃料(HVOF)涂层,证明了由于涂层分层而导致的各种故障或性能不佳的情况是合理的,而这在传统的微观结构分析和机械测试中不易解释。通过中子衍射(ND)分析了两个13Cr4Ni不可氧化马氏体钢样品,一个样品具有热喷涂(WC-12%Co)HVOF涂层表面,另一个具有喷丸处理表面,以确定真实的RS深度分布并进行研究热处理对所考虑材料的影响。应力导致未涂层样品的应力为-80至50 MPa,而对于涂层样品,应力则从与未涂层表面相对应的轻微压缩状态逐渐增加到与涂层相对应的类似于250 MPa的最大值。 。在涂层表面上进行的传统X射线研究测得的压缩RS值sigma = -550 +/- 40 MPa。表明ND研究非常适合于关键应用,因为在不同深度可能存在更大的应力情况。获得的结果产生了可用于监测涂层特性(尤其是附着力)的趋势,从而证实了由HVOF涂层工艺引起的热应力的相关性。

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