UHMWPE

超高分子量聚乙烯

  • The plunger extruder is developed for suiting to process UHMWPE pipes rods and profiles etc.

    研制了适于加工 UHMWPE管材、棒材及异型材等制品的柱塞式挤出机。

  • Study of Ultrahigh Molecular Weight Polyethylene ( UHMWPE ) Flat Porous Membrane and Its Hydrophilicity

    超高摩尔质量 聚乙烯平板微孔膜制备及亲水性能研究

  • Effect of Gel Concentration on the Processing and Structure and Property of UHMWPE Fibers

    凝胶质量分数对 高分子 质量 聚乙烯纤维加工及结构性能的影响

  • Effect of ultrasonic wave on processability and mechanical properties of UHMWPE / PP

    超声波对 UHMWPE/PP加工及力学性能的影响

  • The adhesion to substrate and friction and wear properties of the GLC film on UHMWPE substrate were investigated using a scratch tester and a ball-on-disk tribometer respectively .

    用划痕仪和球-盘式摩擦磨损机研究了GLC薄膜与 UHMWPE基体的界面结合力和GLC薄膜的摩擦磨损性能。

  • From the experimental results we find that using PEEK as the core material of the artificial intervertebral disc is better in the abrasion and the distortion than using UHMWPE .

    由实验结果得知,以聚芳醚酮作为核心材料的人工椎间盘在磨耗与变形上比以 高分子 聚乙烯作为核心之 人工椎间盘有较好的表现。

  • Property of pch / uhmwpe composite and its application

    PCH/UHMWPE复合材料的性能研究及应用

  • The high strain rate compressive properties of UHMWPE interlaced biaxial weft knitted composites

    UHMWPE交织双轴向纬编复合材料高应变率压缩性能研究

  • Effects of thermal history on the crystallinity and the melting points of UHMWPE

    热历史对 UHMWPE结晶度和熔点的影响

  • Ultrahigh molecular weight polyethylene fibers ( UHMWPE ) of different gel concentration were prepared using gel spinning process followed by solvent extraction drying and drawing .

    采用凝胶纺丝工艺制备了具有不同 质量分数的超高分子质量 聚乙烯凝胶纤维,并对其进行了萃取干燥和后拉伸等处理。

  • Shock Wave Attenuation Properties of UHMWPE Fiber Reinforced Polyurethane Foam Plastics

    UHMWPE纤维增强聚氨酯泡沫对爆炸冲击波衰减性能的影响

  • UHMWPE is sometimes used in cryogenic components due to its low operating temperature abilities .

    高分子 聚乙烯有时是由于其较低的工作温度能力低温元件使用。

  • The preparation methods of two kinds of sliding blocks made from ultra high molecular weight polyethylene ( UHMWPE ) composite and pure polytetrafluorethylene ( PTFE ) powder were introduced respectively .

    介绍超高分子量聚乙烯( UHMWPE)和聚四氟乙烯(PTFE)两款桥梁支座滑块的制备方法,并对滑块的性能进行了研究。

  • UHMWPE fibers were treated by chromic acid oxidation and pyrrole vapor deposition respectively .

    采用铬酸氧化法及吡咯气相沉积聚合法处理 UHMWPE纤维。

  • Study on surface properties of UHMWPE fiber modified with coupling agent

    偶联剂改性 UHMWPE纤维表面性能的研究

  • In addition appropriate amounts of glass beads can increase the crystallinity of UHMWPE via a process of heterogenous nucleation .

    另外,适量的玻璃微珠能够起到异相成核作用,一定程度上增加了 UHMWPE的结晶度。

  • Testing machine design on the frictional performance study of composite materials on the basis of UHMWPE base

    基于 UHMWPE基复合材料摩擦性能研究试验机的设计

  • UHMWPE Sheet has a few very important properties and the first would be its incredible resistance to abrasion .

    高分子 聚乙烯板有几个非常重要的属性,并首先将其令人难以置信的耐磨性。

  • Study on the friction and wear properties of UHMWPE / SiO_2 composite materials

    UHMWPE/纳米SiO2复合弹性材料的摩擦磨损性能研究

  • The main factors influencing the flow properties of ultra high molecular weight polyethylene ( UHMWPE ) are analyzed .

    分析了影响超高分子量聚乙烯( UHMWPE)熔体流动性的主要因素。

  • Influence of treatment conditions on properties of UHMWPE fibers

    UHMWPE纤维处理条件对其性能的影响

  • UHMWPE Sheet is resistant to many dilute acids solvents and cleaning agents .

    高分子 聚乙烯板,耐许多稀酸,溶剂和清洁剂。

  • The surface modification methods of UHMWPE fibers are described in this paper especially the advantages mechanisms and techniques of photocrosslinking and photo grafting by UV irradiation .

    本文对 UHMWPE纤维的表面改性方法进行了概述,重点介绍了紫外辐照交联和紫外光接枝改性的优点、机理和工艺,并提出了目前紫外辐照改性中尚存的问题。

  • Thermal conduction property of uhmwpe / lldpe / bn composite plastics

    UHMWPE/LLDPE/BN复合塑料导热性能研究

  • The surface modification of ultrahigh-relative molecular weight mass polyethylene ( UHMWPE ) fiber was conducted via ultraviolet irradiation grafting technology .

    采用紫外辐射接枝方法对超高相对分子质量聚乙烯( UHMWPE)纤维表面进行改性。

  • Anti-Eccentric Wear and Anti-Wax Technique for UHMWPE Lined Composite Pipe

    高分子 聚乙烯内衬复合管防蜡防偏磨技术

  • All flow-through parts of CQB-F fluorine lining magnetic pump are made of PVF2 and UHMWPE .

    产品概述:CQB-F型衬氟磁力泵的过流部件均采用“ 二氟塑料合金(PVF2)和 高分子 聚乙烯 UHMWPE ”制造。