用膨润土作为陶瓷材料制作贝兰达柚木粉

Martha Rianna , Regina Aperita Lusiana Harahap , Putri Cahaya Situmorang , Timbangen Sembiring , Timbang Pangaribuan , Muhammad Khalid Hussain , Eko Arief Setiadi , Anggito P. Tetuko , Perdamean Sebayang
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引用次数: 0

摘要

本研究采用固态反应法,以贝兰达柚木粉和膨润土为基础制造陶瓷材料。贝朗达柚木粉与膨润土的成分变化为 4:5、5:5 和 6:5,然后在 1000°C 下活化。然后,在 500 rpm 的转速下混合 30 分钟。进行密度分析以确定密度。样品 4:5、5:5 和 6:5 的密度分别为 2.20 gr/cm3、2.32 gr/cm3 和 2.33 gr/cm3。表征分析包括 SEM-EDX、XRD 和 DTA。XRD 分析结果表明,样品呈六方晶体结构。随着每个样品中柚木粉质量比的降低,晶体直径的尺寸也会增大。SEM-EDX 分析结果表明,4:5 成分的样品形态优于 5:5 和 6:5 样品,最佳成分谱为 6:5,其重量和原子百分比最大,且除主要元素外没有其他元素混杂。DTA 结果表明,样品相从 95.05 ℃ 开始,在 427.54 ℃ 出现一个内热峰,质量损失为 9.14 毫克,由于再结晶,温度上升到 534.29 ℃,质量损失为 4.34 毫克。根据这项研究的结果,这些材料可推荐用于制作陶瓷材料。
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Making of Belanda Teak wood powder with bentonite as ceramic material

In this research has been conducted on manufacturing ceramic materials based on Belanda Teak wood powder and bentonite using Solid State Reaction method. The composition variation of Belanda Teak wood powder with bentonite is 4:5, 5:5 and 6:5, then activated at 1000°C. Then, mixed using ball milling at 500 rpm for 30 min. Density analysis was conducted to determine the density. The density analysis obtained was 2.20 gr/cm3, 2.32 gr/cm3, and 2.33 gr/cm3 for samples 4:5, 5:5, and 6:5. The characterization analysis was SEM-EDX, XRD, and DTA. The results of XRD analysis obtained a hexagonal crystal structure. The size of the crystal diameter will increase as the teak wood powder mass ratio decreases in each sample. SEM-EDX results obtained morphology in the 4:5 composition is better than the 5:5 and 6:5 samples, and the optimum composition spectrum is 6:5, which has a maximum weight and atomic percentage and there are no other elements mixed beside the main elements. The DTA results stated that the sample phase start from 95.05°C, and there is an endothermic peak at a temperature of 427.54 °C with a mass loss of 9.14 mg and there is an increase in temperature to 534.29 °C with a mass loss of 4.34 mg due to recrystallization. Based on the results of this research, these materials can be recommended to become making ceramics materials.

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来源期刊
Materials Science for Energy Technologies
Materials Science for Energy Technologies Materials Science-Materials Science (miscellaneous)
CiteScore
16.50
自引率
0.00%
发文量
41
审稿时长
39 days
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