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首页> 外文期刊>Journal of material cycles and waste management >Analysis and optimization on the biodegradable plate making process parameters using RSM‑based Box–Behnken Design method
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Analysis and optimization on the biodegradable plate making process parameters using RSM‑based Box–Behnken Design method

机译:基于RSM的BOAK-BEHNKEN设计方法的可生物降解板制造工艺参数的分析与优化

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摘要

The present research work focused on fabricating Biodegradable Plate (BD plate) composed of rice husk ash, bagasse and corn starch which is harmless to the environment. Mechanical properties such as compressive strength, moisture absorption, solubility and infiltration time were examined in fabricated BD plate. Box-Behnken Design (BBD) and ANOVA analysis are employed to optimize the operating parameters includes raw material mix ratio, temperature on the die, pressure during the mixing process and time. Input factors such as temperature varies (80-100 oC), pressure (1-3 bar), time (4-6 min) and Mix ratio (M1, M2 and M3) are coded into the BBD design. Lack of fit test, p and F value of the independent variables are calculated to confirm the significance of the regression model. Maximum compressive strength of 31 kgf is obtained at the optimal process parameters like temperature of 90 oC, pressure of 2 bar, holding time of 6 min and Mix ratio of 2. The developed biodegradable plate serves as the alternative solution for plastic plates such that the developed plate withstands for 30 days free from fungus.
机译:本研究工作的重点是制造生物降解的板(BD板)由水稻壳灰,甘蔗渣和玉米淀粉组成,这对环境无害。在制造的BD板中检查了抗压强度,吸湿性,溶解度和渗透时间的机械性能。 Box-Behnken设计(BBD)和ANOVA分析用于优化操作参数包括原料混合比,在模具上的温度,混合过程中的压力和时间。诸如温度的输入因素(80-100 oc),压力(1-3巴),时间(4-6分钟)和混合比(M1,M2和M3)被编码为BBD设计。计算缺乏拟合测试,计算独立变量的P和F值以确认回归模型的意义。在最佳过程参数上获得31kGF的最大压缩强度,如温度为90℃,2巴的压力,保持时间为6分钟,混合比为2。显影的可生物降解的板用作塑料板的替代解决方案,使得发达的盘子可承受30天,没有真菌。

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