硼碳烧结远远性sa粉末的弹性性能及结构观察

M. Perek-Nowak, J. Karwan-Baczewska
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引用次数: 1

摘要

旨在增加粉末冶金零件密度的方法之一是通过添加硼作为初级硼粉进行活性烧结的过程,例如。本研究以预合金化扩散键合粉末(类型:Distaloy SA)为基础,制备了化学成分为Fe-1.75%Ni-1.5%Cu-0.5%Mo,添加0.55 wt.%碳和硼(0.2、0.4和0.6 wt.%)的PM材料。通过在Turbula混合器中混合粉末,然后在600 MPa的压力下在液压机中压实混合物,在1473 K的管式炉中在氢气气氛中烧结60分钟,制备了含有碳和硼合金的远态SA样品。含硼和碳的远态SA零件的致密化过程取决于烧结机理。为了评估PM样品的烧结机理,利用SEM/EDS对其进行了结构分析。在1473 K的烧结过程中,合金基体与碳-硼化物复合物之间发生反应,产生液相,导致相当程度的固结。用Forster弹性计进行拉伸试验,测量烧结试样的弹性性能(如杨氏模量和阻尼系数)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ELASTIC PROPERTIES AND STRUCTURAL OBSERVATIONS OF DISTALOY SA POWDER SINTERED WITH BORON AND CARBON
One of the methods aimed at increasing the density in PM parts is the process of activated sintering performed by adding boron as elementary boron powder, for example. Under this researchwork novel, PM materials were obtained based on prealloyed and diffusion bonded powder (type: Distaloy SA) with the following chemical composition: Fe-1.75%Ni-1.5%Cu-0.5%Mo, with the addition of 0.55 wt.% carbon and boron (0.2, 0.4 and 0.6 wt.%). Distaloy SA samples alloyed with carbon and boron were manufactured by mixing the powders in a Turbula mixer, then compacting the mixture in a hydraulic press under a pressure of 600 MPa and sintered in a tube furnace at 1473 K for 60 minutes in a hydrogen atmosphere. The densification process of Distaloy SA parts with boron and carbon depends on the sintering mechanism. In order to evaluate the sintering mechanism of the PM samples, structural investigations using SEM/EDS were performed. During sintering of these materials at 1473 K, a liquid phase is generated as a result of the reaction occurring between the alloy matrix and the complex of carbo-borides, which leads to a considerable degree of consolidation. The elastic properties of the sintered samples (such as Young’s modulus and the damping coefficient) were measured in a tensile test with a Forster elastometer.
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