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Verification of Johnson-Cook parameters of ferritic stainless steel by drilling process: experimental and finite element simulations

机译:钻探工艺验证铁素体不锈钢的康森 - 厨师参数:实验和有限元模拟

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Ferritic stainless steels contain 16%–30% chromium and about 0.05%–0.25% carbon in their compositions. As the carbon and chromium content is high, precipitation of carbide particles provides high strength but also causes brittleness. Ferritic stainless steels are of moderate formability with an excellent corrosion resistance and relatively inexpensive. In this study, the predetermined JC model parameters of the AISI 430 ferritic steels have been verified by comparing the experimental drilling process and drilling simulations. Firstly, the drilling experiments of 430 steel with the uncoated tungsten carbide drill have been performed at three different feed rates and cutting speeds. Then, the pre-determined JC parameters have been adapted into a simulation software running with the finite element method and after the drilling simulations have been operated under the same drilling conditions. By comparing the experimental and numerical data based on the thrust force (Fz), a deviation of 4.83% has been calculated and the validity of the material's JC parameters has been demonstrated.
机译:铁素体不锈钢含有16%-30%的铬和约0.05%-0.25%的碳在其组合物中。随着碳和铬含量高,碳化物颗粒的沉淀提供高强度,但也导致脆性。铁素体不锈钢具有适中的可成形性,具有优异的耐腐蚀性和相对便宜。在该研究中,通过比较实验钻井过程和钻井模拟来验证AISI 430铁素体钢的预定JC模型参数。首先,通过三种不同的饲料速率和切割速度进行430钢与未涂覆的碳化钨钻头的钻探实验。然后,预先确定的JC参数已经适用于使用有限元方法运行的仿真软件,并且在钻孔模拟之后在相同的钻井条件下运行。通过将基于推力(FZ)的实验和数值数据进行比较,已经计算了4.83%的偏差,并证明了材料的JC参数的有效性。

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