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Effect of Inclusions and Microstructnral Characteristics on the Mechanical Properties and Fracture Behavior of a High-Strength Low-Alloy Steel

机译:夹杂物和微结构特征对高强度低合金钢力学性能和断裂行为的影响

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摘要

The strength and toughness properties of hot-rolled plates from three commercial heats of a hign-strengfh low-alloy steel were investigated with respect to their intrinsic microstructural and inclusion characteristics. One heat was argon purged and contained relatively higher carbon and sulfur, whereas the other two heats, with lower carbon and sulfur levels, were sulfide shape controlled. The study revealed that although yield and tensile strengths specific to a heat were unaffected by testing direction, the aniso-tropy in tensile ductility was greater In steels with stringered sulfides. Despite similar grain sizes In all the steels, Charpy shelf energy and impact transition temperature were significantly affected by pearlite content and sulfide morphology and to a lesser extent by pearlite banding. The modification of stringer sulfides to tiny lenticular/globular oxysulfides resulted in considerably higher shelf energies, lowering of impact transition temperatures, and minimal anisotropy of Impact properties. The macroscopic appearance of splitting on the fracture surfaces of transverse Charpy specimens associated with low impact energies confirmed failure by a low-energy mode. The presence of pancake-shaped ferrite grains and fractographic evidence of inclusion stringers Inside furrows Identified their role in accentuating the splitting phenomenon.
机译:对高强度低合金钢的三种商业加热产生的热轧板的强度和韧性特性进行了内部组织和夹杂特性研究。一种加热是用氩气吹扫的,并且含有相对较高的碳和硫,而其他两种加热具有较低的碳和硫含量,则受硫化物形状控制。研究表明,尽管特定于热的屈服强度和抗拉强度不受测试方向的影响,但在硫化过程中,拉伸延展性的各向异性较大。尽管在所有钢中晶粒大小相似,但夏比架能和冲击转变温度受珠光体含量和硫化物形态的影响显着,而受珠光体带的影响较小。将桁条状硫化物改性为微小的透镜状/球状含氧硫化物可导致更高的货架能量,降低冲击转变温度,并将冲击性能的各向异性降至最低。与低冲击能量相关的横向夏比试样的断裂表面上的裂痕的宏观外观证实了通过低能量模式的破坏。 cake形铁素体晶粒的存在和沟槽内夹杂物纵梁的分形证据表明,其在加剧分裂现象中的作用。

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