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Using Thermomechanical Conditioning Cycles to Improve Fracture Toughness of Low Carbon Steel

机译:使用热机械调节循环来改善低碳钢的断裂韧性

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摘要

The improvement of material toughness has significant industrial applications. In this article, the thermomechanical conditioning (TMC) cycle (which involves simultaneous application of heat to a moderate temperature combined with a tensile load, followed by unloading and cooling to room temperature) was used to improve the fracture toughness of the material. Apparent fracture toughness (K a ) is denoted to represent the fracture toughness of cracked components after the application of TMC cycles. The TMC cycles result in a significant increase in the apparent fracture toughness (K a ) of AS 1548 grade 7-460R steel as compared to the fracture toughness (K IC ) of the original material. It is found that the improvement in the apparent fracture toughness of the material was due to the increase in plastic strain and the plastic zone size ahead of the crack tip that occurred after applying TMC. In this study, both the apparent and original fracture toughness (K a and K IC ) are evaluated using the cylindrical notched tensile (CNT) technique, which is considerably cost effective over the standard compact tension specimens (ASTM E399).
机译:材料韧性的提高在工业上具有重要的应用。在本文中,使用热机械调节(TMC)循环(包括同时施加热量至中等温度和拉伸载荷,然后卸载并冷却至室温)来改善材料的断裂韧性。表观断裂韧性(K a )被表示为应用TMC循环后裂纹组分的断裂韧性。与原始材料的断裂韧性(K IC )相比,TMC循环导致AS 1548 7-460R级钢的表观断裂韧性(K a )显着增加。已经发现,材料的表观断裂韧性的改善是由于在施加TMC之后发生的塑性应变的增加和裂纹尖端之前的塑性区尺寸的增加。在这项研究中,表观和原始断裂韧性(K a 和K IC )均使用圆柱缺口拉伸(CNT)技术进行了评估,相对于标准的紧凑型拉伸试样,该技术具有很高的成本效益( ASTM E399)。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第5期|1118-1125|共8页
  • 作者单位

    Department of Mechanical and Aerospace Engineering Monash University Clayton Victoria 3168 Australia;

    Department of Mechanical and Aerospace Engineering Monash University Clayton Victoria 3168 Australia;

    Department of Mechanical and Aerospace Engineering Monash University Clayton Victoria 3168 Australia;

    CSIRO Mathematical and Information Sciences Clayton Victoria 3168 Australia;

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