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Preparation and Test of Conventional Composite Abrasives Using Recycled Alumina Grains

机译:使用再生氧化铝晶粒的常规复合磨料的制备和试验

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In this work we report the preparation and evaluation of the mechanical characteristics of resin-bond composite abrasives using virgin and recycled alumina grains. The composite abrasives were made with phenolic resin as binder and as-received virgin and recycled alumina grains. Three different recycled alumina grains were studied: i) alumina from wood firing resin-bond abrasive tools; ii) alumina from wood firing vitrified-matrix abrasive tools; and iii) ground alumina from vitrified-matrix abrasive tools. The virgin alumina grains were employed in order to compare the mechanical performance of the prepared composite abrasive. The composition of alumina grains, analyzed by X-ray fluorescence spectroscopy revealed the recycled alumina grains have lower alumina content and higher concentration of silica in vitrified-matrix abrasives samples. The sand blast penetration tests have shown lower penetration depth in the virgin and the ground vitrified-matrix grains composites. The impact strength test results revealed its dependence on the alumina and silica content: samples with higher alumina content present the higher impact resistance whereas samples with higher silica content present lower impact strength.
机译:在这项工作中,我们使用处女和再循环氧化铝颗粒报告树脂粘合复合磨料的机械特性的制备和评估。将复合磨料用酚醛树脂制成,作为粘合剂和接收的原始和再循环氧化铝颗粒。研究了三种不同的再循环氧化铝颗粒:i)来自木材烧制树脂粘合工具的氧化铝; ii)来自木材燃烧的氧化铝玻璃化矩阵磨料工具;和III)来自玻璃化矩阵磨料工具的地面氧化铝。采用初母氧化铝晶粒以比较制备的复合材料的机械性能。通过X射线荧光光谱分析的氧化铝晶粒的组成显示,再生氧化铝晶粒具有较低的氧化铝含量和较高浓度的玻璃化基质磨料样品中的二氧化硅。砂喷射渗透试验显示了处于处女的渗透深度和地玻璃颗粒复合材料。冲击强度试验结果显示其对氧化铝和二氧化硅含量的依赖性:具有较高氧化铝含量的样品呈现较高的抗冲击性,而具有较高二氧化硅含量的样品具有较低的冲击强度。

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