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1.
Several New X-ray Diffraction Quantitative Techniques in the Study on the Microstructure of Carbon Fiber of PAN-based Precursor and Preoxidized Fiber
PAN基原丝预氧丝炭纤维微结构的几种新的X射线衍射散射定量表征技术
2.
Study on the Gradient Solidification Processing of PAN Precursor
PAN基碳纤维原丝梯级凝固成型的研究
3.
Modification of PAN Carbon Fiber Precursor Using Potassium Permanganate
PAN基碳纤维原丝的高锰酸钾改性(英文)
4.
The Effects of New-style Spinneret on Spinning Process and Properties of PAN-based Carbon Fiber Precusor
新型喷丝头对PAN基碳纤维用原丝纺丝工艺及纤维性能影响的研究
5.
A Study of One-stage Method and Wet-spinning Manufacture Processes of PAN-based Precursor Using NaSCN as Solvent;
以NaSCN溶液为溶剂一步法湿纺PAN基碳原丝工艺的研究
6.
Multi-orientated One-dimensional SAXS Study of Microvoids in PAN-based Carbon Fibers and Fibril;
PAN基碳纤维及原丝中微孔洞缺陷的一维多取向SAXS表征
7.
Study on Reological Behaviors of the Dope of Gel Spinning of PAN Caron Fibre Precursor
PAN碳纤维原丝凝胶纺丝原液流变性能研究
8.
Microstructure and Properties of PAN Precursor Fibers;
PAN原丝的组织结构与性能的表征
9.
Studies on Key Technologies in the Preoxidation Equipments for the PAN Precursor Fiber
PAN原丝预氧化装备关键技术研究
10.
Effect of oil agent on thermal properties of PAN Fiber
油剂处理对PAN原丝热性能的影响
11.
The Formation and Heredity of Defects from PAN Precursor to Carbon Fiber
PAN原丝至碳纤维缺陷的形成与遗传性
12.
Effects of spinning conditions on porosity in PAN precursor
纺丝成形工艺和条件对PAN原丝中孔隙的影响
13.
Microstructural Evolution of PAN Precursor Fibers during Preoxidation and Carbonization;
PAN原丝在预氧化和碳化过程中微观结构的演变
14.
Influence of H_2O on Rheological Behaviors and Spinnability of PAN/DMSO/H_2O Spinning Solutions
水对PAN/DMSO/H_2O的流变行为和原丝性能的影响
15.
Effect of formation conditions on microcellular structure and thermal property of PAN precursor
成形条件对PAN原丝微孔结构及热性能的影响
16.
The Effect of Non-Solvent Additive on the Properties of PAN/DMSO Solution and the Performance of PAN Precursor;
非溶剂添加剂对PAN/DMSO纺丝溶液性质和原丝结构性能的影响
17.
Study on the Comonomer Effect on Structure of the PAN Precursor and Pre-Oxidative Fiber;
共聚单体对PAN共聚物及原丝和预氧丝结构和性能的影响
18.
Breaking through Bottle-neck in PAN Precursor Research,Speeding up Development of Techniques for PAN-based Carbon Fiber in China;
突破原丝瓶颈效应 加速我国PAN炭纤维技术的发展