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Modelling the Temperature Aging Effect on Tensile Fracture Load of Notched High Density Polyethylene Material Using the Planning Design Experiment Approach

机译:利用规划设计实验方法模拟温度老化对缺口高密度聚乙烯材料拉伸断裂载荷的影响

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This article addresses the experimental characterization of the temperature aging effect on tensile fracture load behavior of notched and unnotched high density polyethylene material. The samples were cut from a HDPE pipe. After mechanizing the tensile specimens with a numerical controlled machine, two series of samples were mechanized with different types of notches. The first series was drilled with a different central hole of diameter 4,6 and 8 mm. In the second series, one group of specimens the V shape notches were carried out on one side of samples, while for the second group the V shape notches were carried out on the double sided of specimens. Once the notches mechanized, the samples were exposed into a room temperature to positive and a negative temperatures -40?C and 100?C during 72 hours. The planning design experiment approach was applied to obtain a mathematical model taking account all the influencing parameters on tensile fracture load of the material. The fracture tensile load and the elongation in cases of V and circular notch were modeled as function of temperature aging effect. From the response surfaces of both cases, we note that the temperature had a significant effect on fracture load tensile and elongation with respect on type of number of V notch and hole diameter. The ultimate tensile load decrease and the elongation increases.
机译:本文介绍了温度老化对有缺口和无缺口高密度聚乙烯材料的拉伸断裂载荷行为的影响的实验表征。从HDPE管上切下样品。用数控机械将拉伸试样机械化后,将两个系列的试样机械化为具有不同类型的槽口。第一个系列钻有一个直径为4,6和8 mm的不同中心孔。在第二系列中,一组样品的V形槽口在样品的一侧进行,而第二组样品的V形槽口在样品的两侧进行。刻痕机械化后,将样品在72小时内暴露于室温下的正温度和负温度-40°C和100°C。应用规划设计实验方法来获得一个数学模型,该模型考虑了材料拉伸断裂载荷的所有影响参数。 V形和圆形缺口情况下的断裂拉伸载荷和伸长率是温度老化效应的函数。从这两种情况的响应表面来看,我们注意到,温度对V形缺口的类型和孔直径对断裂载荷的拉伸和伸长有显着影响。极限拉伸载荷降低,伸长率提高。

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