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The effects of microstructure, strain rates and geometry on dynamic impact response of a carbon-manganese steel

机译:微观结构,应变速率和几何形状对碳锰钢动态冲击响应的影响

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摘要

The effects of strain rates, microstructure and geometry on the occurrence of adiabatic shear bands in AISI1340 steel during impact loading were investigated. Cylindrical and cuboidal specimens of the steel were heat treated to have microstructure consisting of tempered martensite, ferrite+martensite (dual-phase) or ferrite+pearlite. Depending on the applied impact momentum, both deformed and transformed shear bands were observed in the specimens with martensitic and dual-phase structures. Deformed bands first formed and then metamorphosed into transformed bands as the intensity of localized shear strain increased. The tendency for formation of a transformed band is higher in the martensitic steel specimens. Within the range of the applied impact momentum of between 30 and 42 kg m/s, which generated strain-rates of between 630 and 3400/s, only deformed bands were observed in the normalized steel specimens containing ferrite and pearlite. The width of these deformed bands increased as the applied impact momentum was raised. Whereas circular shear bands were observed on the transverse section of the impacted cylindrical specimens, the shape of shear bands in the same section of the cuboidal specimens was rectangular. The hardness of the shear bands, which was measured to be higher than that of the bulk material, increased as the impact momentum was raised. Fractographic study of fractured specimens showed ductile shear failure and knobby fracture modes along the transformed bands.
机译:研究了应变速率,显微组织和几何形状对AISI1340钢在冲击载荷作用下绝热剪切带发生的影响。对钢的圆柱和长方体样品进行热处理,以使其具有由回火马氏体,铁素体+马氏体(双相)或铁素体+珠光体组成的显微组织。根据所施加的冲击动量,在具有马氏体和双相结构的试样中观察到了变形带和相变剪切带。随着局部剪切应变强度的增加,变形带首先形成,然后变形为转换带。马氏体钢试样中形成相变带的趋势更高。在施加的冲击动量范围为30至42 kg m / s的范围内(产生的应变速率为630至3400 / s的范围内),在包含铁素体和珠光体的正火钢试样中仅观察到变形带。这些变形带的宽度随着施加的冲击动量的增加而增加。在撞击的圆柱形试样的横截面上观察到圆形剪切带,而在长方体试样的相同截面中的剪切带形状为矩形。剪切带的硬度(被测量为高于散装材料的硬度)随着冲击动量的增加而增加。断裂标本的分形研究表明,沿转变带出现了韧性剪切破坏和多节断裂模式。

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