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THE FRACTURE TOUGHNESS OF COLD WORK TOOL STEELS

机译:冷轧工具钢的断裂韧性

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The influence of the composition and the microstructure on the plane strain fracture toughness of five cold work tool steels all processed via the powder metallurgical route is investigated using 3-point bending specimens. The steels differ in composition and therefore possess different volume fractions of carbides. The amount, size and distribution of the carbides in the matrix are estimated by quantitative image analysis on a plane parallel to the fracture surface without discrimination of the carbide type, since the carbides are always much harder (1,2) than the matrix, irrespective of their composition. Due to the production of the steels via the powder metallurgical route almost all carbides are spherical in shape. The mechanical in-situ properties of the matrix are characterized by indentation tests performed with an "Ultra-Micro"-indenter in a scanning electron microscope.
机译:用3点弯曲试样研究了组合物和微观结构对通过粉末冶金途径加工的五种冷工理钢的平面应变断裂韧性。钢的组成不同,因此具有不同的碳化物体积分数。通过在平行于裂缝表面的平面上的定量图像分析而不辨别碳化物类型的平面的定量图像分析来估计碳化物的量,尺寸和分布,因为碳化物总是比矩阵更难的(1,2),而不断提示他们的作文。由于通过粉末冶金途径生产钢,几乎所有碳化物都是球形的。基质的机械原位性质的特征在于用扫描电子显微镜中的“超微微”-Indenter进行的压痕试验。

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