首页> 外文会议>International Conference on Fracture and Damage Mechanics(FDM 2007); 20070717-19; Madeira(PT) >Failure Mechanism of Pure Nickel (Ni 200/201) under Thermo-Mechanical Loading
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Failure Mechanism of Pure Nickel (Ni 200/201) under Thermo-Mechanical Loading

机译:机械力作用下纯镍(Ni 200/201)的失效机理

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Cyclic loading of metallic engineering components at constant elevated or fluctuating temperature causes a complex evolution of damage which be can hardly be described in a unique and straightforward manner. Often the thermal behaviour of the base metals is to weak, so thermal barrier coatings were needed. Nickel is generally used for such thermal barrier coatings. Therefore it is necessary to study the thermo-mechanical fatigue (TMF) of this material. The lifetime of these coatings is very strong affected by the temperature loading in general, both described by nodal temperatures and their local gradient. The thermal cyclic loading takes place as thermo-mechanical and low cycle fatigue (LCF) damage regime. To classify the thermo-mechanical failure mechanism of pure nickel, OP (out of phase) and IP-TMF (in phase) test series were examined. The use of damage parameters like the unified energy approach make sense, a more detailed life time calculation for pure Nickel can be done by using the Neu-Sehitoglu model. Summary, thermo-mechanical loadings activate multiple damage mechanism. Surface embrittlement by oxidation is the major distinctive mechanism in addition to pure fatigue damage. Different lifetime approaches were tested and analysed to fulfil the requirements for the fatigue analysis of nickel made components.
机译:在恒定的升高或波动的温度下,金属工程部件的循环载荷会导致损坏的复杂演变,很难以独特和直接的方式描述。通常,贱金属的热行为很弱,因此需要隔热涂层。镍通常用于这种热障涂层。因此,有必要研究这种材料的热机械疲劳(TMF)。这些涂层的寿命通常受温度负荷的影响很大,无论是节点温度还是它们的局部梯度都对温度负荷有影响。热循环载荷是作为热机械和低循环疲劳(LCF)破坏状态发生的。为了对纯镍的热机械失效机理进行分类,检查了OP(异相)和IP-TMF(同相)测试系列。使用损伤参数(例如统一能量方法)是有意义的,可以使用Neu-Sehitoglu模型对纯镍进行更详细的寿命计算。总而言之,热机械载荷会激活多种损伤机制。除纯疲劳损伤外,氧化引起的表面脆化是主要的独特机理。测试和分析了不同的寿命方法,以满足镍制部件疲劳分析的要求。

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