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首页> 外文期刊>International Journal of Materials Lifetime >Predictability of the Impact Strength of CaCO3-Epoxy Resin Composite Based on CaCO3 Input Concentration and Sustained Stress at Impact
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Predictability of the Impact Strength of CaCO3-Epoxy Resin Composite Based on CaCO3 Input Concentration and Sustained Stress at Impact

机译:基于CaCO3输入浓度和持续冲击应力的CaCO3-环氧树脂复合材料冲击强度的可预测性

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摘要

This paper presents the predictability of the impact strength of calcium carbonate (CaCO3) reinforced epoxy resin composite based on CaCO3 Input Concentration (CIC) and impact load referred to as Sustained Stress At Impact (SSAI) which is the impact load. Results from experiment, derived and regression model prediction show that the impact strength of CaCO3-epoxy resin composite increase with decrease in CIC and increase in SSAI. A two-factorial model was derived, validated and used for the predictive analysis. The derived model showed that the impact strength of CaCO3-epoxy resin composite is a linear function of CIC and SSAI. The validity of the derived model expressed as: ξ = 0.2223 ? - 0.0532 ? + 9.3519 was rooted on the model core expression ξ – 9.3519 = 0.2223? - 0.0532 ? where both sides of the expression are correspondingly approximately equal. Results from evaluations indicated that the standard error incurred in predicting CaCO3-epoxy resin composite impact strength for each value of the CIC & SSAI considered, as obtained from experiment, derived model and regression model were 0.3807, 0.3698 and 2.9277 x 10-5 & 0.8081, 0.3909 and 0.7808 % respectively. The composite impact strength per unit CIC as obtained from experimental, derived model and regression model predicted results are 0.1175, 0.1088 and 0.1063 J/m %-1, respectively and the correlations with CIC & SSAI were all 0.9. Maximum deviation of model-predicted CaCO3-epoxy resin composite impact strength from the experimental results is 7.45%. These invariably translated into over 92% operational confidence for the derived model as well as over 0.92 reliability response coefficients of CaCO3-epoxy resin composite impact strength to CIC and SSAI.
机译:本文介绍了基于碳酸钙输入浓度(CIC)和称为冲击持续应力(SSAI)的冲击载荷的碳酸钙(CaCO3)增强环氧树脂复合材料冲击强度的可预测性。实验,推导和回归模型预测的结果表明,CaCO3-环氧树脂复合材料的冲击强度随着CIC的降低和SSAI的提高而增加。导出,验证了两因素模型并将其用于预测分析。推导的模型表明,CaCO3-环氧树脂复合材料的冲击强度是CIC和SSAI的线性函数。导出模型的有效性表示为:ξ= 0.2223? -0.0532? + 9.3519根植于模型核心表达式ξ– 9.3519 = 0.2223? -0.0532?其中表达式的两侧相应地近似相等。评估结果表明,根据实验,推导模型和回归模型获得的CIC和SSAI的每个值,预测CaCO3-环氧树脂复合材料冲击强度的标准误差分别为0.3807、0.3698和2.9277 x 10-5和0.8081 ,分别为0.3909和0.7808%。从实验,导出模型和回归模型预测结果获得的每单位CIC的复合冲击强度分别为0.1175、0.1088和0.1063 J / m%-1,并且与CIC和SSAI的相关性均> 0.9。模型预测的CaCO3-环氧树脂复合材料冲击强度与实验结果的最大偏差为7.45%。对于所推导的模型,这些总是转化为超过92%的操作置信度,以及超过0.92的CaCO3-环氧树脂复合材料对CIC和SSAI的冲击强度可靠性响应系数。

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