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Improving the Dimensional Stability and Mechanical Properties of AISI 316L + B Sinters by Si3N4 Addition

机译:通过添加Si3N4改善AISI 316L + B烧结体的尺寸稳定性和力学性能

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摘要

The following paper describes a new and effective method to obtain high-density sinters with simultaneously decreased distortions, produced by one press and sinter operation. This effect was achieved through the induced disappearance of the eutectic liquid phase. The study was carried out on AISI 316L stainless steel powder that was mixed with elemental boron and silicon nitride. Boron was used as a sintering process activator. The scientific novelty of this publication consists of the use of a silicon nitride as a solid-state nitrogen carrier that was intended to change the borides’ morphology by binding boron. Based on the thermodynamic calculations, 20 blends of various compositions were tested for physical properties, porosity, microstructure, and mechanical properties. Moreover, phase compositions for selected samples were analyzed. It was shown that the addition of silicon nitride as a nitrogen carrier decreases the boron-based eutectic phase volume and both increases the mechanical properties and decreases after-sintering distortions. An explanation of the observed phenomena was also proposed.
机译:以下论文描述了一种新的有效方法,该方法可通过一次加压和烧结操作获得高密度烧结矿,同时降低变形。通过引起共晶液相的消失来达到这种效果。该研究是在将AISI 316L不锈钢粉末与元素硼和氮化硅混合后进行的。硼用作烧结过程活化剂。该出版物的科学新颖之处在于使用氮化硅作为固态氮载体,旨在通过结合硼来改变硼化物的形态。根据热力学计算,测试了20种各种组成的共混物的物理性能,孔隙率,微结构和机械性能。此外,分析了所选样品的相组成。结果表明,氮化硅作为氮载体的加入减少了硼基共晶相的体积,既增加了机械性能,又减少了烧结后的形变。还提出了对观察到的现象的解释。

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