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首页> 外文期刊>Journal of Materials Science >DEFORMATION MICROSTRUCTURES AND THE SHEAR STRAIN RATE OF TYPE 304 STAINLESS STEEL SHEET IN CYLINDRICAL DEEP DRAWING OF WARM WORKING
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DEFORMATION MICROSTRUCTURES AND THE SHEAR STRAIN RATE OF TYPE 304 STAINLESS STEEL SHEET IN CYLINDRICAL DEEP DRAWING OF WARM WORKING

机译:304深孔热作拔深变形的微观组织和304不锈钢板的剪切应变率。

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摘要

A deep-drawing test was conducted under a single temperature or two temperatures on both sides of type 304 stainless steel sheet, 0.8 mm thick. The different results produced by these processes are described. A lower rate of shear straining is generated at 100 degrees C in the two-temperature process than in the single-temperature process, and a much larger rate is produced with room-temperature working. Their microstructures at the failure point and the flange portion nearing the die throat were studied by optical microscopy and TEM. An intermixed structure of lath and blocky alpha'-martensites appeared at the failure point in cold working. By warm working at a single temperature, homogeneous shear in a single direction and coarser slip bands were generated. Heterogeneous shear straining on both sides of the specimen occurred in the two-temperature process, and the microstructure of the failure point was observed as twin-twin intersections. The microstructures generated in the flange portion corresponding to the individual process, appeared to be blocky martensite nucleation and growth at the shear band intersections, twin-twin band or twin-slip band intersections, respectively. The strengths of these microstructures at different positions are compared with each other and the drawability is explained. [References: 17]
机译:在厚度为0.8 mm的304型不锈钢薄板的两个面上在一个温度或两个温度下进行了深冲试验。描述了这些过程产生的不同结果。与单温过程相比,两温过程在100℃时产生的剪切应变率较低,而在室温下产生的剪切应变率要大得多。通过光学显微镜和透射电镜研究了它们在失效点和靠近模具喉部的凸缘部分的微观结构。板条和块状α'-马氏体的混合结构出现在冷加工的失效点。通过在单一温度下进行热加工,会在单一方向上产生均一的剪切力,并产生较粗糙的滑动带。在两个温度过程中,试样的两侧均发生了非均质的剪切应变,并且观察到破坏点的微观结构为双孪晶相交。对应于单个过程的在凸缘部分中产生的微观结构似乎分别是块状马氏体形核和在剪切带相交,双孪晶带或双滑动带相交处的生长。比较了这些微结构在不同位置的强度,并说明了可拉伸性。 [参考:17]

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