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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Instantaneous work hardening behaviour of two-phase tungsten heavy alloys: a phenomenological approach
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Instantaneous work hardening behaviour of two-phase tungsten heavy alloys: a phenomenological approach

机译:两相钨重合金的瞬时工作淬火行为:一种现象学方法

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摘要

The present work describes a phenomenological approach to explain the instantaneous behaviour of tungsten heavy alloys (WHAs) in heat-treated and swaged conditions. The strengths and elongation values of heat-treated materials are lower and higher than those of the swaged samples respectively. The heat-treated materials exhibit two slopes in true stress-true plastic strain curves and follow the Ludwigson constitutive equation. On the other hand, swaged materials display a single slope and adhere to typical Swift constitutive equation. The latter reflect the presence of pre-strain in the materials due to swaging deformation. The fracture surfaces in heat-treated materials consist of W-W decohesion along with matrix rupture and W-cleavage, while swaged samples consist of mainly W-cleavage. Both the materials display three typical stages (I, II and III) of work hardening. The second derivatives of true stress-true plastic strain curves of these alloys exhibit a perfect parabola although the nature of true stress-true strain as well as true stress-true plastic strain curves is quite different in heat-treated and swaged materials. This has been observed for the first time in WHAs consisting of matrix and W-grains. The shape of the parabola is simple and easy to fit. The fitting parameters of parabolas have been successfully employed to explain the flow behaviour of a large number of tungsten heavy alloys having two-phase microstructure in different processing conditions.
机译:本作者描述了一种现象学方法,用于解释钨重合金(WHAs)在热处理和锻造条件下的瞬时行为。热处理材料的强度和伸长率分别低于锻作样品的强度和伸长率值。热处理材料在真正的应力 - 真塑性应变曲线中表现出两个斜率,并遵循Ludwigson结构型方程。另一方面,锻造材料显示单个斜率并粘附到典型的SWIFT本构方程。后者由于锻旋变形而反映了材料中的预留应变。热处理材料中的断裂表面包括W-W脱粘以及基质破裂和W-切割,而繁体样品主要由W-切割组成。这两种材料都显示出工作硬化的三个典型阶段(I,II和III)。这些合金的真正应激塑料应变曲线的第二衍生物具有完美的抛物线,尽管真正的应力 - 真菌的性质以及真正的应力 - 真塑性曲线在热处理和锻造材料中是完全不同的。这在由基质和W-晶粒组成的WHAs中首次观察到这一点。抛物线的形状简单易于装饰。抛物线的拟合参数已成功地用于解释在不同加工条件下具有两相微观结构的大量钨重合金的流动性。

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