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1)  accelerated hydrothermal aging
加速湿热老化
1.
Mechanical properties of S 2/TDE 85(S 2 glassfiber/Epoxy) unidirectional laminate after natural storing and accelerated hydrothermal aging was studied.
本文对高强 2号玻璃纤维 (S2 )增强环氧 (TDE85 -MCD体系 )基复合材料单向板经自然库存与加速湿热老化后力学性能的变化进行了研究。
2)  accelerated thermal aging
加速热老化
1.
Effects of accelerated thermal aging on properties of ramie fibre/polypropylene composites
加速热老化对苎麻纤维/聚丙烯复合材料性能的影响
3)  artificial thermal aging
人工加速热老化
4)  accelerating thermal aging test
加速热老化试验
5)  hygrothermal aging
湿热老化
1.
By studying and summing up the common failure physical models and combining with the quantum mechanics theory on the relationship between the electronic equipment aging reaction rate and tempreture-humidity,a hygrothermal aging life model for solid propellant storage and usage is established with the propellant mechanical properties as the research object.
通过对常用失效物理模型的分析和总结,结合量子力学理论关于电子产品老化反应速率与环境温、湿度的关系,以推进剂力学性能参数为研究对象,建立了固体推进剂贮存使用寿命的湿热老化模型,并通过试验数据拟合得到具体的经验公式。
2.
The hygrothermal aging behavior of the CF /epoxy NOL rings in distilled water at 35℃, 55℃, 65℃and 75℃was analyzed in terms of the absorption characteristics, static and dynamic mechanical properties.
本论文旨在碳纤维缠绕复合材料压力容器的加速湿热老化方案的设计以及储存寿命预测提供基础数据,并对其寿命预测进行初步研究。
3.
In this paper, the standard accelerated hygrothermal aging spectrum for military aircraft composite structures is given based on the domestic climatic environment and the developing aircraft properties, and the aging effects for our composite material system are systematically studied, and the conclusion for guiding and modifying the structure design are given.
本文根据我国气候环境和在研型号性能,编制了适用于军机复合材料结构的标准加速湿热老化谱,并系统研究了国产材料体系的老化效应,得出了指导和修改结构设计的有益结论。
6)  damp & heat aging
湿热老化
1.
Chlorosulfonated polyethylene (CSPE) bang is ed as moistureproof layer of which niternal wall of industrial bang tower is Under damp & heat aging environment.
氮磷化聚乙烯(CSPE)涂料适于用作具有湿热老化作用环境的工业冷却塔塔身内壁的防潮涂层。
补充资料:大气加速老化试验
分子式:
CAS号:

性质:又称大气加速老化试验。将胶黏剂胶接的试样置于能整天跟踪太阳的自动暴晒试验机上,使其始终受到比自然暴晒时强得多的光照,进行短时间试验后测定其性能变化。

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