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Interior crack and its formation mechanism in overlaying weld of back-up rolls

机译:支撑辊堆焊中的内部裂纹及其形成机理

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摘要

Through ultrasonic NDT, cracks with various lengths are often found inside the hardfacing metal for re-manufacturing large-scale back-up rolls to gain high surface hardness. Analysis of the microstructure, surface morphology, and micro-area composition found that these cracks result from thermal cracking at high temperatures, and the surfaces with these interior cracks are found to be eutectic with low fusion point and contain segregation of alloy elements and dendritic crystal cells. In order to enhance the plasticity of the deposited metal and eliminate such cracks, in the meantime still maintaining the strength, a new overlaying welding consumable was developed, applied, and tested, which has (1) reduced contents of carbide forming elements such as V and Mo, (2) increased contents of powerful carbide forming elements Nb and Ti, and (3) newly added RE elements for deoxidation and reducing the contents of impurity elements S and P. No crack was found by ultrasound NDT, and microstructure analysis after a tensile test show that plasticity of the new hard-facing metal is improved without affecting hardness and strength.
机译:通过超声波无损探伤,经常会在堆焊金属内部发现各种长度的裂纹,以重新制造大型支撑辊,从而获得较高的表面硬度。通过对微观结构,表面形态和微区组成的分析,发现这些裂纹是由高温下的热裂纹引起的,并且发现具有内部裂纹的表面是低熔点的低共熔且含有合金元素和树枝状晶体的偏析细胞。为了提高沉积金属的塑性并消除此类裂纹,同时仍保持强度,开发,应用和测试了一种新的堆焊焊材,该焊材降低了(1)减少了碳化物形成元素(如V)的含量和钼;(2)增加了强大的碳化物形成元素Nb和Ti的含量,以及(3)新增了用于脱氧的RE元素并减少了杂质元素S和P的含量。拉伸试验表明,在不影响硬度和强度的情况下,新的硬面金属的可塑性得到改善。

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