The mechanical strength of which in operation directly of the introduction into highly filled halogen-free plastics production

Yuri Antonets, A. Shurupova, L. Shchebeniuk, Oksana Holyk
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Abstract

With the introduction into highly filled halogen-free plastics production, the mechanical strength of which in operation directly depends on the flame retardant content and application technology, it becomes important to control the cable sheath mechanical characteristics in a fireproof design. Polymeric materials and their compositions are viscoelastic materials for which the mechanical properties depend on the technological process of extrusion. The results of estimating the elongation at break of samples from the uniaxial stretching.  It is shown that the inner and outer layers of the halogen-free plastic cable sheath have significantly different values of the plasticity normative parameter: differences evidence in the polymer structure in the inner and outer layers of the sheath due to the forced deformation process during extrusion, which is forced polymer structure orientation. It is shown that the inner and outer layers of the halogen-free plastic cable sheath have significantly different values of the relative change in specific mass of polymer samples. Analysis of the statistical covariance of the relative elongation at break and of the relative change in specific mass of polymer samples different in structure similar filled halogen-free polymers. With the introduction into highly filled halogen-free plastics application technology, it becomes important to control the cable sheath mechanical characteristics in fireproof design for the inner and outer layers
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在高填充无卤素塑料生产中直接引入的机械强度
随着高填充无卤塑料生产的引入,其运行时的机械强度直接取决于阻燃剂含量和应用技术,因此在防火设计中控制电缆护套的机械特性变得非常重要。聚合材料及其成分属于粘弹性材料,其机械性能取决于挤压技术工艺。通过单轴拉伸估算样品的断裂伸长率。 结果表明,无卤塑料电缆护套的内层和外层具有明显不同的塑性规范参数值:护套内层和外层的聚合物结构差异是由于挤压过程中的强制变形过程(即强制聚合物结构取向)造成的。结果表明,无卤塑料电缆护套的内层和外层聚合物样品比质量的相对变化值存在显著差异。分析了结构相似的不同填充无卤聚合物样品的相对断裂伸长率和相对比质量变化的统计协方差。随着高填充无卤塑料应用技术的引入,在防火设计中控制内外层电缆护套的机械特性变得非常重要。
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