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首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Effect of Applied Pressure on Microstructure and Mechanical Propertiesfor Spark Plasma Sintered Titanium from CP-Ti Powders
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Effect of Applied Pressure on Microstructure and Mechanical Propertiesfor Spark Plasma Sintered Titanium from CP-Ti Powders

机译:外加压力对CP-Ti粉末火花等离子烧结钛组织和力学性能的影响

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摘要

The aim of this study was to determine the effect of applied pressure and sintering temperature on the microstructure and mechanical properties for spark plasma sintering (SPS) from commercial pure titanium (CP-Ti) powders. Spark plasma sintering is a relatively new sintering technique in powder metallurgy which is capable of sintering metal and ceramic powers quickly to full density at a fairly low temperature due to its unique features. SPS of —200 mesh or —400 mesh CP-Ti powders was carried out in an Ar+H2 mixed gas flowing atmosphere between 650℃ and 750℃ under 10 to 80 MPa pressure. When SPS was carried out at relatively low temperatures (650℃ to 750℃), the high (>60 MPa) pressure had a marked effect on densification and grain growth suppression. The full density of titanium was achieved at temperatures and pressures above 700℃ and 60 MPa by spark plasma sintering. The crystalline phase and microstructure of titanium' sintered up to 700℃ consisted of α-Ti and equiaxed grains. Vickers hardness ranging from 293 to 362 Hy and strength ranging from 304 to 410 MPa were achieved for spark plasma sintered titanium.
机译:这项研究的目的是确定施加的压力和烧结温度对商业纯钛(CP-Ti)粉末进行火花等离子烧结(SPS)的组织和力学性能的影响。火花等离子体烧结是粉末冶金中一种相对较新的烧结技术,由于其独特的特性,它能够在相当低的温度下将金属和陶瓷粉末快速烧结成全密度。在650℃至750℃的Ar + H 2混合气体流动气氛中在10至80 MPa的压力下进行了-200目或-400目CP-Ti粉末的SPS。当在相对较低的温度(650℃至750℃)下进行SPS时,高压(> 60 MPa)对致密化和抑制晶粒生长具有显着影响。钛的全密度是在700℃和60 MPa以上的温度和压力下通过火花等离子体烧结实现的。 700℃以下烧结的钛的晶相和组织由α-Ti和等轴晶组成。对于火花等离子体烧结的钛,获得了293-362 Hy的维氏硬度和304-410 MPa的强度。

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