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1)  micro-spheres
微珠
1.
Mechanical properties of polyurethane foams filled by micro-spheres;
空心微珠填充聚氨酯泡沫塑料的力学性能
2)  fly ash cenospheres
空心微珠
1.
Electroless plating Co-P alloy on the surface of fly ash cenospheres;
空心微珠表面化学沉积Co-P合金研究
2.
Nanocomposite microwave absorbing coatings were prepared by using prepared Ni-Co-P/CNT and Ni-Co-P/fly ash cenospheres composite powders as absorbers,choosing epoxy resin as film forming resin and adding some proper solvent,curing agent and auxiliary agents.
以Ni-Co-P/CNT复合粉体和Ni-Co-P/空心微珠复合粉体作为吸收剂,选用高分子聚合物环氧树脂作为成膜树脂,同时加入适当的溶剂、固化剂和助剂制备出纳米复合微波吸收涂料,并将涂料涂刷于塑料薄板上制备出涂层样品。
3)  glass bead
玻璃微珠
1.
Compressive properties and thermal stability of glass bead reinforced rigid polyurethane foams;
玻璃微珠增强硬质聚氨酯泡沫塑料的压缩性能及热稳定性
2.
Study on heat resistance of the modified bismaleimide composites filled with hollow glass beads;
空心玻璃微珠填充改性双马来酰胺树脂复合材料耐热性能的研究
3.
Effect of Surface Modification of Hollow Glass Bead on Property of Bismaleimide;
空心玻璃微珠表面改性对双马来酰亚胺树脂性能的影响
4)  hollow microsphere
空心微珠
1.
Analysis of surface morphology structure of electroless silver-deposited hollow microsphere;
空心微珠化学镀银的表面结构形态分析
2.
The glass fiber reinforced nylon 6 was modificated by the filling of the hollow microsphere.
利用空心微珠球型的特性,填充改性玻纤增强尼龙6。
5)  cenosphere
空心微珠
1.
Experimental investigations on improvement of AO-resistant of epoxy resi by filled with superfine cenospheres;
空心微珠用于环氧树脂抗原子氧剥蚀试验研究
2.
Preparation and Study of Electroless Alloys Coating of Fly-ash Cenosphere Particles;
化学镀合金包覆空心微珠粉体的制备与研究
6)  fly ash
空心微珠
1.
Preparation and properties of high damping fly ash/epoxy composites;
高阻尼空心微珠/环氧复合材料的制备及性能研究
2.
The fly ash (FA) was used as the filler to prepare epoxy composites.
以空心微珠为填料制备空心微珠/环氧复合材料,采用傅立叶红外光谱分析、微观结构观察和动态力学分析研究空心微珠表面改性对复合材料性能的影响。
3.
The epoxy encapsulating structures through the addition of fly ash in the epoxy resin were fabricated in this paper.
本文采用空心微珠添加高分子材料后进行灌封,制得系列空心微珠/环氧 (EP)灌封钢管结构,并对空心微珠/环氧复合材料的微观结构、密度和灌封钢管结构的阻尼减振性能进行了研究。
补充资料:玻璃微珠
分子式:
CAS号:

性质:又称玻璃微珠。是直径几到几十微米的实心或空心的玻璃珠,有无色的和有色的。其制造方法有粉末法、熔融法和煅烧法三种。它的特性是:(1)光洁度好;(2)光的反射性好,具有定向反射性;(3)冲击强度高。其成分根据用途来确定。它可用于金属工件的研磨介质、喷丸及清洁处理、交通安全标志、化工填料、反射屏幕等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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