聚醚砜

  • 网络Pes;PESU;PPES;PPSU
聚醚砜聚醚砜
  1. 聚醚砜/碳纤维复合材料的力学行为研究

    The study of mechanical behavior on pes / cf Composites

  2. 因此,可以认为医用级聚醚砜树脂有良好的生物相容性。

    Therefore , it may be concluded that the medical PES has good biocompatibility .

  3. DNA杂化聚醚砜微球的制备及应用

    Preparation of DNA hybrid polyethersulfone microspheres and its functional utilization

  4. 通过氯甲基化、胺化、水解等反应,制得了OH型季胺化酚酞型聚醚砜阴离子交换膜。

    Through chloromethylated , aminate and hydrolytic reaction , OH-form quaternized PES-C membranes were synthesized .

  5. DSC法研究聚醚砜-聚醚醚酮共混物的相容性和热性能

    Study on the Compatibility and Crystalline Property of PES-PEEK Blends by DSC

  6. 凝固浴的质量分数对聚醚砜(PES)超滤膜微结构和性能的影响

    Effects of the Coagulation Bath Concentration Change on Polyether Sulfone Membrane QUALITY

  7. 纳米TiO2填充聚醚砜酮复合材料的摩擦学性能

    Friction and wear properties of nanometer tio_2 particle-filled poly ( phthalazine ether sulfone ketone ) Composites

  8. 对超滤工艺进行了研究,采用截留相对分子质量为30000的聚醚砜(PES)膜进行超滤;

    The ultrafiltration process was studied by using PES membrane with 30 000 MWCO .

  9. 本论文分别采用聚醚砜(PES)和氰酸酯改性双马来酰亚胺树脂(BMI),研究了改性体系的几个物理和化学问题。

    In this work some chemistry and physics issues of the phase separation of modified bismaleimide systems were studied .

  10. 利用γ射线共照射技术在聚醚砜(Polyethersulfone,PES)粉体上接枝了丙烯酸。

    Acrylic acid was grafted to Polyethersulfone ( PES ) powders by liquid-phase simultaneous irradiation .

  11. 采用干喷湿纺法纺制成聚醚砜中空纤维膜,研究了凝固浴质量分数与PES中空纤维结构和性能之间的关系。

    Dry-wet sping technique is used for the preparation of the PES hollow fiber membrane in this experiment .

  12. 分别以这两种共混聚合物为分离层,以聚醚砜超滤膜为支撑层制备了用于分离CO2的固定载体复合膜。

    Composite membranes for the facilitated transport of CO_2 were prepared by using the dip-coating process with polymer blends as separation layer and polyethersulfone ultrafiltration membrane as substrate .

  13. 主要包括聚甲醛、聚酰胺、聚碳酸酯、ABS、聚苯醚、聚对苯二甲酸乙二酯、聚砜、聚醚砜、聚酰亚胺、聚苯硫醚等。

    Include polyoxymethylene , polyamide , polycarbonate , ABS , polyphenylene oxide , polyethylene terephthalate , polysulfone , polyether sulfone , polyimide , polyphenylene sulfide and so on .

  14. 钠盐一步法合成聚醚砜树脂(PES)的中试研究聚醚砜/热致液晶高分子原位复合材料的结构与性能

    Studies on the Pilot One-step Synthesis of PES by Sodium Salt STRUCTURE AND PROPERTIES OF IN SITU COMPOSITE OF PES / TLCP

  15. 分别以上述三种材料为表层,以聚砜(PS)、聚醚砜(PES)、聚丙烯腈(PAN)超滤膜为支撑体制成复合膜。

    The composite membranes were developed respectively with the above three kinds of materials as active layers and polysulfone , polyethersulfone , polyacrylonitrile ultra-filtration membranes as the supports .

  16. 我们利用含芳香叠氮基的光活性酯将脲酶光固定在聚醚砜(Polyethersulfone,PES)膜的表面。

    A new method of using photoactivable ester with azido group was described to immobilize urease on polyether sulfone ( PES ) film surface .

  17. 其次,对于PES/DMAc/H2O体系,研究了铸膜液中聚醚砜浓度和添加剂对大空腔结构亚层形成和膜性能的影响。

    Secondly , for PES / DMAc / H2O system , effects of PES concentration in the casting solution and additives on sublayer structure and properties of the membrane were studied .

  18. 聚醚砜(PES)是一种综合性能优良的聚合物膜材料,尚未见以聚醚砜和TiO2组成体系制备有机无机杂化超滤膜的研究报道。

    Polyether sulphone ( PES ) is a good membrane material with excellent overall performance , and research reports on preparing ultrafiltration membrane with PES and TiO2 are not yet seen .

  19. 以浓硫酸为溶剂,氯磺酸为磺化剂对聚醚砜(PES)进行了磺化,制备了不同磺化度的磺化聚醚砜(SPES)。

    Modification of polyethersulfone ( PES ) by sulfonation with chlorosulfonic acid as sulfonation agent and concentrated sulfuric acid as solvent was carried out .

  20. 聚醚砜作为泪腺组织工程支架的实验研究目的:研究聚醚砜(PES)作为人工泪腺支架的可行性,并结合细胞与材料共培养,初步探讨其应用前景。

    In the study , we make an initial investigation on the feasibility of polyethersulfone ( PES ) used as this kind of scaffold for artificial lacrimal glands .

  21. 分别以聚醚砜(PES),磺化聚砜(SPSF)和PES合金膜为基膜,分析了相容性对膜性能以及不同种类基膜对界面缩聚的影响。

    PES and SPSF base membranes were prepared by the phase inversion process using polyethersulfone and the blend of sulfonated polysulfone and polyethersulfone respectively .

  22. 本文以聚醚砜(PES)和TiO2为材料,制备新型聚醚砜超滤膜,并进行表征。芳香聚酰胺类聚合物是典型的复合纳滤膜材料,但是这类聚合物易氯化降解。

    One of the aims of this paper is to prepare and characterize the novel polyether sulphone ultrafiltration membrane made from PES and TiO2.Aromatic polyamide is a typical composite nanofiltration membrane material with inferior chlorine resistance .

  23. 聚醚砜(PES)超滤膜使用后用稀释的NaOH溶液浸泡清洗处理50min后,膜通量可以恢复98.12%。

    Finally , after the ultrafiltration membrane was washed by NaOH solution ( pH 11 ) for 50 min , its membrane flux could be recovered 98.12 % .

  24. 用合成的3-三氟甲基苯侧基聚醚砜(3F-PES)作为波导芯层材料制作了新型硅基聚合物阵列波导光栅(AWG)复用器。

    A new arrayed waveguide grating ( AWG ) multiplexer was fabricated by using synthesized 3F-PES as the waveguide core .

  25. 聚醚砜(PES)是一类具有优良的化学和热稳定性、抗氧化性以及良好的机械性能的聚合物,是制备超滤膜的优良材料。

    Polyethersulfone ( PES ) is widely used for the preparation of ultrafiltration ( UF ) membranes due to its excellent chemical resistance , good thermal stability , oxidation resistance and mechanical properties .

  26. 控制底物浓度为40mg/mL,pH7.0,水解时间为2h。采用10kDa(聚醚砜)的膜。

    The substrate concentration was 40 mg / mL , pH at 7.0 and hydrolysis time of 2 h. A 10 kDa ( polyethersulfone ) membrane was used .

  27. 采用截留分子量为3万和7万Da的聚醚砜(PES)、聚丙烯腈(PAN)四种膜,对西安市北石桥污水净化中心的二级出水进行处理。

    Polyacrylonitrile ( PAN ) and polyethersulfon ( PES ) UF membrane with 3 × 10 ~ 4 and 7 × 10 ~ 4 Da were used to treat the secondary effluent from Xi'an Bei Shi Qiao Sewage Purification center .

  28. 我们以一种新型聚醚砜中空纤维血浆成分分离膜为考察对象,研究时间、跨膜压(TMP)和平均剪切速率等对筛分系数(SC)的影响。

    We studied a new polyethersulfone hollow fiber membrane plasma fractionator and evaluated the effect of time , transmembrane pressure ( TMP ) and mean shear rate on the sieving coefficient ( SC ) during membrane plasma fractionation .

  29. 以聚醚砜(PES)为膜材,聚乙烯吡咯烷酮(PVP)为添加剂,N,N-二甲基乙酰胺(DMAC)为溶剂,用相转化法制备了超滤膜。

    Polyethersulfone ( PES ) ultrafiltration membrane was successfully prepared by means of phase inversion method , with PES as raw material , Polyvinyl Pyrrolidone ( PVP ) as additive , and dimethylacetamide ( DMAC ) as solvent .

  30. 采用湿法相转化工艺制备聚醚砜(PES)超滤膜,探讨了沉淀时间、溶解度参数对膜亚层结构形成的的影响。

    The polyethersulfone ultrafiltration membranes were prepared by the wet phase-inversion technique . The effect of precipitation time and solubility parameters on the structure of the sublayer of the membranes forming by wet phase-inversion was investigated .