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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Effects of Temperature and Crystallinity on Partial Discharge Resistance of Poly-L-lactic Acid
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Effects of Temperature and Crystallinity on Partial Discharge Resistance of Poly-L-lactic Acid

机译:温度和结晶度对多l-乳酸酸部分放电性的影响

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摘要

Partial discharge (PD) resistance of biodegradable poly-L-lactic acid (PLLA) was examined at temperatures between room temperature and 70℃, namely at around the glass transition temperature of 57℃. The PD activity becomes more pronounced at temperatures above 60℃, reflecting that the permittivity increases in the rubber state. Furthermore, we have changed the crystallinity of PLLA by drawing or annealing thermally, and have examined its effect on the PD resistance. Although the depth eroded by a fixed period of PD degradation becomes shallower when the sample was crystallized by the drawing or the heat treatment, its reduction ratio is almost equal to the reduction ratio of PD activities due to the decrease in permittivity. Therefore, it is hard to assume that crystallization of PLLA improves its PD resistance to a unit amount of charge.
机译:在室温至70°之间的温度下检查了可生物降解的聚-L-乳酸(PLLA)的部分放电(PD)耐药性,即在玻璃过渡温度约为57℃的情况下。 PD活性在高于60℃的温度下变得更加明显,这反映了橡胶状态下的介电性增加。 此外,我们通过热绘画或退火改变了PLLA的结晶度,并检查了其对PD电阻的影响。 尽管当样品通过图形或热处理结晶时,固定的PD降解周期侵蚀的深度变得更浅,但由于介电率的降低,其还原比几乎等于PD活动的降低比。 因此,很难假设PLLA的结晶可以提高其对单位电荷量的抗性。

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