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1)  Silicone foam
硅泡沫材料
1.
Silicone foam was prepared with silicone relicon and was characterized.
采用硅树脂为基体制备硅泡沫材料,并对其性能进行表征。
2)  silicone rubber foam
硅橡胶泡沫材料
1.
Analysis of vulcanization characteristics for silicone rubber foam;
硅橡胶泡沫材料硫化特性分析
2.
Domestic research progress in silicone rubber foam
国内硅橡胶泡沫材料的研究进展
3.
The open cell silicone rubber foam materials were prepared by using solving bleeding technique.
采用溶析成孔技术制备的硅橡胶泡沫材料,随着成孔剂用量增大,其密度减小,孔隙度提高。
3)  foam materials
泡沫材料
1.
Preparation of antistatic silicone rubber foam materials;
抗静电硅橡胶泡沫材料的研制
2.
A primary study on fabrication of foam materials with metakaolin;
偏高岭土制备泡沫材料的初步研究
3.
Methods of preparing foam materials, such as aluminium foam, titanium foam, silicon foam and lead foam, and how to control the composition and the porosity in order to prepare materials of different performances were presented.
综述了泡沫铝、泡沫钛、泡沫硅和泡沫铅等材料的制备方法,以及如何控制材料的组成和孔隙率来制备不同性能的材料,重点介绍了这些泡沫材料在汽车工业、人体植入材料、光学材料、微电子、计算机和铅酸电池等方面表现出来的优异性能,并展望其广阔的市场前景。
4)  foam [英][fəʊm]  [美][fom]
泡沫材料
1.
Plasticizing and mechanical properties of glycerol plasticized starch foams;
甘油增塑淀粉泡沫材料的塑化性能及力学性能
2.
Preparation of NR-g-(GMA-co-St)/PVC blended foam by chemical cross linking and one-step compression molding;
化学交联模压法制备NR-g-(GMA-co-St)/PVC共混泡沫材料
3.
Foams with these three kind cells are periodic and their cells are also all symmetrical.
在对发泡过程进行假设的基础上,根据泡沫材料微结构的特点,建立开孔和闭孔泡沫材料的简单立方、面心立方和体心立方单胞模型,导出相对密度和胞体结构参数的定量关系。
5)  foaming material
泡沫材料
1.
Study on soybean oil-based foaming materials prepared by non-isocyanate method;
非异氰酸酯法大豆油基泡沫材料的研究
2.
The novel type of vegetable oil-based growing media and foaming materials were prepared with or without the addition of filler.
本论文以大豆油、蓖麻油和桐油为主要原料通过官能化反应合成了丙烯酸酯化环氧大豆油(AESO)、环氧化蓖麻油(ECO)及马来酸酐化桐油(MT),在引发剂G和催化剂BC的作用下实现了官能化植物油的交联固化,引入发泡体系和填料固化发泡制备出了一类新型植物油基泡沫材料和培养基质。
6)  foam material
泡沫材料
1.
Relation and Application of Density and Compression Strengh of Effervescible Polystyrence Foam Material;
可发性聚苯乙烯泡沫材料密度与压缩强度的关系及其应用
2.
On the basis of discussing principle of foam material cell shape,this research studied two methods to measure cell diameter and its distribution,which are picture process and fractal dimension.
探讨了泡沫材料泡孔结构形成原理及泡沫材料孔径与分布测量途径,并实际运用图像处理和分维二种创新的测量方法对泡孔进行测量分析,其二结果相当一致,从而证实了图像法与分维法的可行性,同时说明了分维的科学性。
补充资料:氮化硅晶须补强碳化硅陶瓷复合材料
分子式:
CAS号:

性质:以碳化硅陶瓷为基体,以氮化硅晶须为增强体的复合材料。它既保留了碳化硅陶瓷优良的耐高温、抗蠕变、抗氧化、抗化学腐蚀、耐磨等性能,又具有比碳化硅陶瓷更高的强度和韧性,最高使用温度可达1400℃以上。由于氮化硅晶须与碳化硅陶瓷基体具有较好的物理相容性,化学性质相近,界面的结合力较强。该复合材料的烧结温度高,界面控制困难,成本高,主要用于航空、航天领域的高温部件。

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