用浮雕标记识别和监测聚合物热缩联轴器和涂层

A. Kondratov, E. P. Cherkasov, I. Nagornova
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引用次数: 2

摘要

提供了基于浮雕(触觉)标记的收缩联轴器和涂层运行的先进识别和监测方法,通常用于建筑服务或公用事业线路。验证了采用配备等温加工和热循环实验工具的热冲压机对不同收缩聚合物类型进行温度操作标记模式的确定方法。以PET和PVC收缩膜加工为例,说明了所建立的时间-温度叠加原理在聚合物标记模式定义中的适用性。给出了基于收缩力最大速度下降准则和等温冲压过程中聚合物收缩力固定差的局部加工时的最佳时间-温度模式计算过程。提供了基于浮雕(触觉)标记的收缩联轴器和涂层运行的先进识别和监测方法,通常用于建筑服务或公用事业线路。验证了采用配备等温加工和热循环实验工具的热冲压机对不同收缩聚合物类型进行温度操作标记模式的确定方法。以PET和PVC收缩膜加工为例,说明了所建立的时间-温度叠加原理在聚合物标记模式定义中的适用性。给出了基于收缩力最大速度下降准则和等温冲压过程中聚合物收缩力固定差的局部加工时的最佳时间-温度模式计算过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification and monitoring of the polymer thermo-shrinkable couplings and coatings by the relief marking
The advanced identification and monitoring method of both shrink couplings and coatings operating, typically used as building services or utility lines, based on relief (tactile) marking is offered. The determination method of temperature operating marking mode for different shrink polymer types using adapted hot stamping press equipped both isothermal processing and thermo-cycling laboratory tools is proved. Applicability of the developed time-temperature superposition principle for polymer marking mode definition is shown as exemplified by both PET and PVC shrink films processing. The optimal time-temperature mode calculation procedures at the local polymer processing according to both shrinkage force maximum speed dropping criteria and fixed difference of polymer contractile force as a result as isothermal stamping processing are shown.The advanced identification and monitoring method of both shrink couplings and coatings operating, typically used as building services or utility lines, based on relief (tactile) marking is offered. The determination method of temperature operating marking mode for different shrink polymer types using adapted hot stamping press equipped both isothermal processing and thermo-cycling laboratory tools is proved. Applicability of the developed time-temperature superposition principle for polymer marking mode definition is shown as exemplified by both PET and PVC shrink films processing. The optimal time-temperature mode calculation procedures at the local polymer processing according to both shrinkage force maximum speed dropping criteria and fixed difference of polymer contractile force as a result as isothermal stamping processing are shown.
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