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起始材料和加工条件对W/Cu合金性能的影响分析

Analysis of the Influence of Starting Materials and Processing Conditions on the Properties of W/Cu Alloys.

作者信息

Montealegre-Meléndez Isabel, Arévalo Cristina, Perez-Soriano Eva M, Neubauer Erich, Rubio-Escudero Cristina, Kitzmantel Michael

机构信息

Department of Engineering and Materials Science and Transportation, School of Engineering, University of Seville, Camino de los Descubrimientos s/n, 41092 Seville, Spain.

RHP-Technology GmbH, Forschungs- und Technologiezentrum, 2444 Seibersdorf, Austria.

出版信息

Materials (Basel). 2017 Feb 8;10(2):142. doi: 10.3390/ma10020142.

Abstract

In this work, a study of the influence of the starting materials and the processing time used to develop W/Cu alloys is carried out. Regarding powder metallurgy as a promising fabrication route, the difficulties in producing W/Cu alloys motivated us to investigate the influential factors on the final properties of the most industrially demanding alloys: 85-W/15-Cu, 80-W/20-Cu, and 75-W/25-Cu alloys. Two different tungsten powders with large variation among their particle size-fine (W) and coarse (W) powders-were used for the preparation of W/Cu alloys. Three weight ratios of fine and coarse (W:W) tungsten particles were analyzed. These powders were labelled as "tungsten bimodal powders". The powder blends were consolidated by rapid sinter pressing (RSP) at 900 °C and 150 MPa, and were thus sintered and compacted simultaneously. The elemental powders and W/Cu alloys were studied by optical microscopy (OM) and scanning electron microscopy (SEM). Thermal conductivity, hardness, and densification were measured. Results showed that the synthesis of W/Cu using bimodal tungsten powders significantly affects the final alloy properties. The higher the tungsten content, the more noticeable the effect of the bimodal powder. The best bimodal W powder was the blend with 10 wt % of fine tungsten particles (10-W:90-W). These specimens present good values of densification and hardness, and higher values of thermal conductivity than other bimodal mixtures.

摘要

在这项工作中,对用于制备W/Cu合金的起始材料和加工时间的影响进行了研究。鉴于粉末冶金是一种很有前景的制造方法,生产W/Cu合金的困难促使我们研究对工业上最有需求的合金(85W/15Cu、80W/20Cu和75W/25Cu合金)最终性能的影响因素。使用了两种粒径差异很大的不同钨粉——细钨粉(W)和粗钨粉(W)——来制备W/Cu合金。分析了细钨粉和粗钨粉(W:W)的三种重量比。这些粉末被标记为“钨双峰粉末”。粉末混合物在900℃和150MPa下通过快速烧结压制(RSP)进行固结,从而同时进行烧结和压实。通过光学显微镜(OM)和扫描电子显微镜(SEM)对元素粉末和W/Cu合金进行了研究。测量了热导率、硬度和致密化程度。结果表明,使用双峰钨粉合成W/Cu合金对最终合金性能有显著影响。钨含量越高,双峰粉末的影响越明显。最佳的双峰钨粉是含有10wt%细钨颗粒的混合物(10-W:90-W)。这些试样具有良好的致密化和硬度值,并且比其他双峰混合物具有更高的热导率值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7933/5459155/7ab0994111cd/materials-10-00142-g001.jpg

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