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钨基合金增塑粉末挤压成形新技术
引用本文:刘文胜,蔡青山,马运柱.钨基合金增塑粉末挤压成形新技术[J].稀有金属材料与工程,2012,41(8):1495-1499.
作者姓名:刘文胜  蔡青山  马运柱
作者单位:中南大学粉末冶金国家重点实验室,湖南长沙,410083
基金项目:国家自然科学基金 (50774098);国防基础科研资助项目
摘    要:采用增塑粉末挤压成形新技术,开发了几种适合钨基合金挤压成形用粘结剂,研究几种配方粘结剂的相容性及挤压、脱脂特性。通过热力学计算和热分析,以及扫描电镜和偏光显微镜观察,发现粘结剂各组元分子间具有较好的相容性。通过优化喂料制备、挤压工艺,分别在60和75℃制备出直径达24mm的大长径比钨基合金棒材。综合采用溶剂-热两步脱脂工艺,实现Ф24mm挤压棒坯的快速无缺陷脱脂。

关 键 词:增塑粉末挤压成形新技术  钨基合金  粘结剂  溶剂-热两步脱脂工艺  挤压棒材
收稿时间:8/6/2011 12:00:00 AM

Novel Technology for Plasticizing Powder Extrusion Molding of Tungsten Heavy Alloy
Liu Wensheng,Cai Qingshan and Ma Yunzhu.Novel Technology for Plasticizing Powder Extrusion Molding of Tungsten Heavy Alloy[J].Rare Metal Materials and Engineering,2012,41(8):1495-1499.
Authors:Liu Wensheng  Cai Qingshan and Ma Yunzhu
Affiliation:State Key Laboratory for Powder Metallurgy, Central South University, Changsha 410083, China
Abstract:Adopting a novel technology for plasticizing powder extrusion molding(PEM),some types of novel binder for PEM of tungsten heavy alloy has been developed,and the compatibility,extruding and debinding characteristics of the binders have been studied.The thermodynamic calculation and thermal analysis,and the observation of SEM and polarization microscope were used to certify binder ingredient compatibility.The large aspect ratio tungsten alloy bars with diameters up to 24 mm have used manufactured at 60 ℃ and 75℃ respectively by optimizing the preparation technology of feedstock and extrusion process.By adopting the solvent-thermal debinding method the fast extruded bars with 24 mm in diameter and without defect debinding have been obtained.
Keywords:novel technology for PEM  tungsten heavy alloy  binder  solvent-thermal debinding method  extruded bar
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