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An Investigation on the Cracking of Pallet Side Walls at a Sinter Plant

机译:烧结厂托盘侧壁开裂的研究

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A failure analysis on the cracking of pallet side walls of a sintering machine in an integrated steel plant is presented. The pallets moving at a constant speed carry the base mix for sintering and enter an ignition hood furnace (temperature ≈ 1150℃) at a regular interval of time. The pallet side walls of a sintering machine are therefore subjected to continuous thermal cycling. The material of the pallet side wall is spheroidal graphite (SG) cast iron. Ten cracked side walls are collected and analyzed. The failure investigation involves field visit, visual observation of the cracked side walls, fractography, chemical analysis, microstructural characterization, tensile and impact tests. Most of the cracks are observed between the bolt-hole locations of the lower side walls; bolt-hole locations act as obstructions to thermal movement of the casting. The chemical analysis shows higher level of sulfur while the materials must be of higher purity for SG iron. Fractography shows predominantly intergranular fracture. Examinations of microstructures at the cross sections of the samples show the presence of primarily intergranular cracks. Matrix structure reveals pearlite along with ferrite surrounding the embedded graphite nodules. The amount of pearlite in the matrix is measured around 30-35% whereas predominantly ferrite matrix is desirable at the elevated temperature application. Determinations of tensile and impact properties exhibit low values of elongation (10%) and impact energy (7 J), respectively, indicating poor toughness properties of the casting. The presence of pearlite and lower amount of graphite nodules deteriorate the thermal conductivity of the casting, thereby generating more thermal stress. The analyses show that the pallet side walls start cracking under cyclic high thermal stress due to embrittlement because of improper material.
机译:提出了综合钢厂烧结机托盘侧壁开裂的失效分析。以恒定速度移动的托盘携带用于烧结的基础混合物,并以固定的时间间隔进入点火罩炉(温度≈1150℃)。因此,烧结机的托盘侧壁经受连续的热循环。托盘侧壁的材料是球墨铸铁(SG)。收集并分析了十个破裂的侧壁。失效调查包括实地考察,目视观察破裂的侧壁,断裂,化学分析,微观结构表征,拉伸和冲击试验。在下侧壁的螺栓孔位置之间观察到了大多数裂缝。螺栓孔的位置会阻碍铸件的热运动。化学分析表明,硫含量较高,而SG铁的材料纯度必须更高。分形显示主要是晶间骨折。样品横截面的微观结构检查表明存在主要的晶间裂纹。基质结构显示出珠光体以及围绕着嵌入石墨结核的铁素体。基质中珠光体的含量约为30-35%,而在高温应用下,主要是铁素体基质是理想的。拉伸性能和冲击性能的测定分别显示出较低的伸长率(10%)和冲击能(7 J),表明铸件的韧性较差。珠光体的存在和较少量的石墨结核会降低铸件的导热性,从而产生更大的热应力。分析表明,由于材料不当导致的脆性,托盘侧壁在周期性高热应力作用下开始开裂。

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