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首页> 外文期刊>Journal of Engineering Research >A design of experiment application to improve raw materials utilization ratio of polymer concrete composites
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A design of experiment application to improve raw materials utilization ratio of polymer concrete composites

机译:提高聚合物混凝土复合材料原料利用率的实验应用设计

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Optimization techniques are widely used to save raw materials and to maintain the manufacturing process in optimum conditions. The non-linear programming, which is based on the response surface methodology, has been implemented with the aim of determining the effectiveness of the second optimization application and optimum mix proportions of polymer concrete composites. Polymers, which have got the highest variance on polymer concrete composites' properties such as thermal, mechanical, and workable, have been selected as polypropylene, thermoplastic elastomer, and dimethyl terephthalate that take into account the first multi-response optimization application. The polymer-mixed concrete has got 0.63 W/m*K thermal conductivity value, which is obtained with the two-stage optimization study included in C 25/ 30 compressive strength class as it has got 28-day compressive strength at 27.27 MPa value. When it is compared to the studies in the literature, it has got the lower thermal conductivity value at the higher compressive strength. The results show that the two-step multi-response optimization methodology is quite effective in producing concrete, which has got the desired properties by using fewer raw materials. These results also indicate that the interaction effect should be taken into consideration.
机译:优化技术被广泛用于节省原材料并在最佳条件下保持制造过程。已经实施了基于响应面方法的非线性编程,目的是确定第二次优化应用的有效性以及聚合物混凝土复合材料的最佳配合比。考虑到第一个多响应优化应用,在聚合物混凝土复合材料的性能(例如热,机械和可加工性)方面差异最大的聚合物被选为聚丙烯,热塑性弹性体和对苯二甲酸二甲酯。该聚合物混合混凝土的热导率值为0.63 W / m * K,这是通过C 25/30抗压强度等级中的两阶段优化研究得出的,因为它在27.27 MPa的压力下具有28天的抗压强度。与文献研究相比,它具有较高的抗压强度和较低的导热系数。结果表明,两步多响应优化方法在生产混凝土中非常有效,它通过使用较少的原材料即可获得所需的性能。这些结果还表明应考虑相互作用的影响。

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