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首页> 外文期刊>Applied clay science >Hydration properties of vermiculite in phenolic resin friction composites
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Hydration properties of vermiculite in phenolic resin friction composites

机译:ver石在酚醛树脂摩擦复合材料中的水化性能

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摘要

The dehydration and rehydration properties of the Mg-vermiculite are strongly affected by their crystal structure. Changes in the structure of Mg-vermiculite after dehydration and rehydration were used for evaluation of dehydration properties of composite materials containing vermiculite and phenol formaldehyde resin during friction process and for estimation of temperature on the surface of composite. From XRD patterns follows that d-spacing of the first basal diffraction varies as a function of applied annealing temperature and Mg-vermiculite alone rehydrates if the heating temperature does not exceed 700℃. If embedded in a phenolic resin matrix, rehydration ability of vermiculite is limited and depends on vermiculite/resin content ratio. The maximum detected temperature on the friction surface of investigated composite samples after friction test was 900℃.
机译:镁-石的脱水和再水化性质受其晶体结构的强烈影响。脱水和再水化后镁-石的结构变化用于评估摩擦过程中含有containing石和酚醛树脂的复合材料的脱水性能,并评估复合材料表面的温度。从X射线衍射图可以看出,一次基本衍射的d间距随所施加的退火温度而变化,如果加热温度不超过700℃,则仅M石镁会重新水化。如果包埋在酚醛树脂基质中,of石的再水化能力受到限制,并且取决于on石/树脂的含量比。摩擦试验后,被测复合材料样品在摩擦表面的最高检测温度为900℃。

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