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1.
Elastic improvement of PET composite hollow 3D crimp fiber
PET复合中空三维卷曲纤维弹性的提高
2.
Research on Elastic Improvement of PET Side-by-side Hollow Composite Fiber with 3-Diamensional Crimp
改善PET并列型复合中空三维卷曲纤维弹性的研究
3.
Study on Techniques of Enlarging Production Capacity of Three-dimensional Crimp Hollow Fibers;
三维卷曲涤纶中空短纤维增容生产技术研究
4.
The Production Research of the PET Three-dimentional Crisp Far-infrared Hollow Staple Fiber;
三维卷曲远红外中空涤纶短纤维的研究
5.
STATING THE REASONS THAT DRAWING CONDITIONS ACT ON QUALITY STANDARD OF THREE-DIMENSIONAL CRIMP TERYLENE HOOLW STAPLE
拉伸条件对涤纶三维卷曲中空纤维质量指标的影响
6.
Study on the Crimp of PTT/PET Side-by-side Bi-component Fiber
PTT/PET并列复合纤维卷曲研究
7.
Self-crimping Configuration of PTT/PET Side-by-Side Composite Fiber
PTT/PET并列复合纤维的自卷曲形态
8.
Effect of heat treatment on crimp properties of COPET/PTT bicomponent fiber
热处理对COPET/PTT复合纤维卷曲性能的影响
9.
A Moduler Representation on Three - Dimensional Analytic Space Convolution Operator;
三维复空间中一个卷积算子的模估计
10.
The focal points of control in the production of far infrared regenerated 3D crimp PET staple fiber was introduced.
介绍了利用再生材料生产远红外三维卷曲中空涤纶短纤维的生产控制要点。
11.
The top quality far infrared ray regenerated 3D crimp PET staple fiber was manufactured by the control of material and adjusting of spinning parameters and post process.
通过原料的把关,前后纺工艺的调整,生产出了质优价廉的远红外再生三维卷曲中空涤纶短纤维。
12.
Experimental Study on Hydrogen Recovery Using Hollow Fiber Composite Membrane;
中空纤维复合膜分离氢气的实验研究
13.
The preparation and estimation of chitosan hollow fiber membrane;
壳聚糖中空纤维复合膜的制备与评价
14.
Preparation of PDMS/PES hollow fiber composite pervaporation membrane
PDMS/PES中空纤维渗透汽化复合膜的制备
15.
Study on PTT/PET Side -by -side Composite Hollow Fiber
PTT/PET并列复合中空纤维研究
16.
The reason causing black fiber during tow passing by the rotary side plate of a crimping machine was analyzed for ES composite staple fiber.
ES复合短纤维生产过程中丝束经过卷曲机旋转侧面板处时产生黑丝。
17.
Study on Properties of Steel/Wood Fiber Composite MDF
不锈钢纤维/木纤维复合中纤板的研究
18.
Obviously, the crimp geometry in staple fiber brings about a spatial hindrance that works against fiber packing during the needing process.
显然,短纤维上卷曲几何形状在针刺过程中对纤维压缩密集,在空间上受到限制。