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首页> 外文期刊>Journal of porous materials >Experimental modelling of copper foams processed through powder metallurgy route using a compressible space holder material
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Experimental modelling of copper foams processed through powder metallurgy route using a compressible space holder material

机译:使用可压缩空间支架材料通过粉末冶金工艺加工的泡沫铜的实验模型

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摘要

The present work is focused on the processing of open cellular copper foams through space holder technique without the use of binders. In this work, moderate pressures were used during the cold compaction of the powders. The main objective was to obtain dense cell walls by limiting the use of binders and use a compressible and lubricant type of space holder material. It has been shown in this study that the use of high compaction pressure helps to decrease/limit the quantity of binder required and this, in turn, yields relatively dense cell walls necessary for better mechanical strength of foams. Using 2N factorial method, mathematical models have been developed to express the final porosity and pore size as functions of the various processing parameters viz compaction pressure, sintering temperature/ time and space holder content. The most significant sintering parameters influencing the porosity and pore size of the processed foams have also been found out.
机译:目前的工作集中在通过空间保持器技术在不使用粘合剂的情况下处理开孔泡沫铜泡沫。在这项工作中,在粉末的冷压制过程中使用了适度的压力。主要目的是通过限制粘合剂的使用并使用可压缩和润滑类型的空间保持器材料来获得致密的细胞壁。在这项研究中已经表明,使用高压实压力有助于减少/限制所需粘合剂的量,进而产生相对密实的孔壁,这对于提高泡沫的机械强度是必需的。使用2N阶乘方法,已经开发出数学模型来表示最终孔隙率和孔径,这些孔隙率和孔径是各种加工参数的函数,即压实压力,烧结温度/时间和空间含量。还发现了影响加工泡沫的孔隙率和孔径的最重要的烧结参数。

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