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Effect of Weight Percentage and Particle Size of B_4C Reinforcement on Physical and Mechanical Properties of Powder Metallurgy A12024-B_4C Composites

机译:B_4C增强剂的重量百分率和粒径对粉末冶金A12024-B_4C复合材料物理力学性能的影响

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摘要

In this study, Al2024-B_4C composites containing 0, 5, 10 and 20 wt% of B_4C particles with two different particle sizes (d_(50)=49 urn and d_(50) =5 μm) as reinforcement material were produced by a mechanical alloying method. Two new particle distribution models based on the size of reinforcement materials was developed. The microstructure of the Al2024-B_4C composites was investigated using a scanning electron microscope. The effects of reinforcement particle size and weight percentage (wt%) on the physical and mechanical properties of the Al2024-B_4C composites were determined by measuring the density, hardness and tensile strength values. The results showed that more homogenous dispersion of B_4C powders was obtained in the Al2024 matrix using the mechanical alloying technique according to the conventional powder metallurgy method. Measurement of the density and hardness properties of the composites showed that density values decreased and hardness values increased with an increase in the weight fraction of reinforcement. Moreover, it was found that the effect of reinforcement size and reinforcement content (wt%) on the homogeneous distribution of B_4C particles is as important as the effect of milling time.
机译:在这项研究中,Al2024-B_4C复合材料是通过以下方法生产的:以0、5、10和20 wt%的B_4C颗粒作为增强材料,该B_4C颗粒具有两种不同的粒径(d_(50)= 49 urn和d_(50)= 5μm)作为增强材料。机械合金化方法。根据增强材料的尺寸,开发了两种新的颗粒分布模型。使用扫描电子显微镜研究了Al2024-B_4C复合材料的微观结构。通过测量密度,硬度和拉伸强度值,确定了增强颗粒尺寸和重量百分比(wt%)对Al2024-B_4C复合材料的物理和机械性能的影响。结果表明,根据常规粉末冶金方法,采用机械合金化技术,可以在Al2024基体中获得更均匀的B_4C粉末分散体。对复合材料的密度和硬度性能的测量表明,随着增强材料重量分数的增加,密度值降低,硬度值增加。此外,发现增强尺寸和增强含量(wt%)对B_4C颗粒均匀分布的影响与研磨时间的影响一样重要。

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