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首页> 外文期刊>Philosophical Magazine, A. Physics of condensed matter, defects and mechanical properties >Hardnesses of poly(vinylidene) fluoride and polyamide in high-pressure gas ambience
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Hardnesses of poly(vinylidene) fluoride and polyamide in high-pressure gas ambience

机译:高压气体环境中聚偏二氟乙烯和聚酰胺的硬度

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The paper reports the mechanical behaviour of two polymers. poly(vinylidene fluoride) (PVDF) and polyamide 11 (PA11), under high-gas-pressure (carbon dioxide and argon atmospheres) media at 42degreesC by using a normal indentation test. The experimental technique. an indentation method. for the measurement of the indentation hardness is described and the corresponding data are reported as a function of the temperature and pressure. Argon interacts poorly with both polymers and the data are similar; the hardness increases with increase in the pressure. It is shown that with PVDF. which has a relatively low glass transition temperature (-100degreesC), the influence of the plasticization due to carbon dioxide upon the hardness is negligible-, the hardness data for argon and carbon dioxide are comparable. Subsidiary studies indicate that in the carbon dioxide and indeed argon environments no increase in crystallinity is detected after exposure to the gas environment. However, with PA11, which has a glass transition temperature (20-50degreesC). closer to the ambient, the influence of the carbon dioxide plasticization is pronounced and a significant initial decrease in the hardness is reported. Subsequently. the hardness increases with increasing gas pressure. which is attributed to the action of an effective hydrostatic constraint. The data for the argon environment for PA11 show no evidence of plasticization and only an increase in the hardness with increasing hydrostatic pressure. Again. no evidence of enhanced gas-induced crystallinity is observed. [References: 23]
机译:该论文报道了两种聚合物的机械性能。聚(偏二氟乙烯)(PVDF)和聚酰胺11(PA11),在42°C的高压(二氧化碳和氩气)介质下,通过常规压痕试验测试。实验技术。压痕方法。描述了用于测量压痕硬度的方法,并根据温度和压力报告了相应的数据。氩气与两种聚合物的相互作用都很弱,数据相似。硬度随着压力的增加而增加。显示了使用PVDF的情况。它具有较低的玻璃化转变温度(-100摄氏度),二氧化碳引起的增塑对硬度的影响可以忽略不计,氩气和二氧化碳的硬度数据是可比的。辅助研究表明,在二氧化碳和实际上是氩气的环境中,暴露于气体环境后,未发现结晶度增加。但是,PA11具有玻璃化转变温度(20-50摄氏度)。在接近环境的情况下,二氧化碳增塑的影响明显,据报道硬度显着降低。后来。硬度随着气压的增加而增加。这归因于有效流体静力约束的作用。 PA11的氩气环境数据没有显示可塑化的迹象,只有随着静水压力的增加硬度才增加。再次。没有观察到气体诱导结晶性增强的证据。 [参考:23]

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