首页> 外文会议>International Conference on Environmental Degradation of Materials in Nuclear Power Systems-Water Reactors >THE DETERMINATION OF THE REACTION RATES, WATER VAPOR PERMEABILITY, AND ACTIVATION ENERGY FOR THERMAL OXIDATION OF LDPE FILMS
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THE DETERMINATION OF THE REACTION RATES, WATER VAPOR PERMEABILITY, AND ACTIVATION ENERGY FOR THERMAL OXIDATION OF LDPE FILMS

机译:用于热氧化LDPE薄膜的反应速率,水蒸气渗透性和活化能量的测定

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To understand the mechanism of degradation of plastics under environmental conditions, thermal oxidation of LDPE thin film from a single manufacturer was studied. Oxidation was carried out in a pressure vessel with control at four temperatures(22,50,70 and 80°C and at 30 and 50psi oxygen pressures. Cup tests were done to determine the permeability of water vapor across the LDPE film at 60, 70, and 90°C. The extent of oxidation was monitored using ATR-FTIR and the carbonyl content calculated from the spectra. Bands centered at 1711 and 1735 cm~(-1) was determined resulted from the carbonyl stretches. A broad band at 3100-3600cm~(-1) is attributed to O-H stretching and the fingerprint region (<1400 cm~(-1)) shows evidence of C-O stretches. The carbonyl content and permeability to water vapor increased with temperature, oxidation time, and oxygen pressure. Water permeation is a result of the disruption of the semi-crystalline structure of the film to produce amorphous regions within which the water vapor is more permeable. This study was a step in the direction for determining a reliable model for the degradation and eventual failure of medium voltage power cables in nuclear power plants (NPPs).
机译:为了了解环境条件下塑料的降解机制,研究了来自单个制造商的LDPE薄膜的热氧化。在压力容器中进行氧化,在40,50,70和80℃和30和50psi氧气下进行控制。进行杯子试验以确定在60,70的LDPE膜上的水蒸气的渗透性和90°C。使用ATR-FTIR和由光谱计算的羰基含量监测氧化程度。从羰基延伸确定以1711和1735cm〜(-1)为中心的带。3100的宽带-3600cm〜(-1)归因于OH拉伸,指纹区域(<1400cm〜(-1))显示CO延伸的证据。羰基含量和水蒸气的渗透率随温度,氧化时间和氧气压力而增加。水渗透是薄膜的半晶结构破坏,以产生非晶区域,水蒸气更渗透。该研究是确定用于降解和最终失败的可靠模型的方向的步骤中等电压核电厂(NPPS)的年龄电力电缆。

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