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The Effect of the Green Density on the Properties of Powder Metallurgy Ti Sintered by High Frequency Induction Heating

机译:绿色密度对高频感应加热烧结粉末冶金TI性能的影响

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Sintering is a vital technology used for the consolidation of metal and ceramic powders. The process is generally long and energy consuming because of the way in which heat transfer happens in electrical and gas furnaces. This study focuses on optimizing the sintering process of metallic powders, in particular titanium (Ti), using high frequency induction heating as an alternative sintering method. Using electromagnetic induction and the associated eddy current effect, the heat is generated directly into the electrically conductive object. Consequently, faster heating rates and lower heat losses are achieved. The purpose of this study is to understand the effect of the process parameters, such as the powder compact density, on the efficiency of the induction heating and the properties of the sintered materials. The average heating rates recorded while heating to 1300°C are in the range of 3.5°C to 15.3°C per second. Significant densification and consolidation, evident by the amount of closed porosity and increase in tensile strength was found in spite of the short heating time. The results show that the powder compact density plays a crucial role on the heating efficiency as well as on the properties of the sintered material such as the final density, porosity distribution and tensile properties. The samples with higher initial density showed tensile strength and ductility values comparable to those of high vacuum sintered and those specified by international standards for powder metallurgy Ti products.
机译:烧结是一种用于固结金属和陶瓷粉末的重要技术。该过程通常是长而能量的,因为在电气和燃气炉中发生传热的方式。该研究专注于使用高频感应加热作为替代烧结方法优化金属粉末,特别是钛(Ti)的烧结过程。使用电磁感应和相关的涡流效果,将热量直接生成到导电物体中。因此,实现了更快的加热速率和较低的热损失。本研究的目的是了解工艺参数,例如粉末紧凑密度的效果,对感应加热的效率和烧结材料的性质。在加热至1300℃的同时记录的平均加热速率在3.5°C至15.3°C的范围内。尽管加热时间短,发现,通过闭合孔隙率和拉伸强度的增加,显着的致密化和固结。结果表明,粉末紧凑的密度对加热效率以及烧结材料的性质以及最终密度,孔隙率分布和拉伸性能的性质起着至关重要的作用。具有较高初始密度的样品显示出抗拉强度和延展性值与高真空烧结和由粉末冶金Ti产品的国际标准规定的那些相当的延展性值。

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