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1)  PVC blend alloy
PVC共混合金
1.
The PVC blend alloy is reviewed.
本文是一篇关于PVC共混合金的综述性文章。
2)  PVC/SBS blend
PVC/SBS共混
3)  NBR/PVC mixing blends
NBR/PVC共混
1.
Effect of the third additives PCR on the properties of NBR/PVC mixing blends;
第三组分PCR对NBR/PVC共混胶性能的影响
4)  blend alloy
共混合金
1.
The fluctuation principle of mechanical properties, optical properties, melt flowing properties and heat properties for GPPS/SBC blend alloys were investigated.
以聚苯乙烯树脂GPPS为连续相 ,以丁苯透明抗冲树脂为分散相 ,对其共混合金体系进行了研究 ,找出共混体系的力学性能、光学性能、熔体流动性能和热性能的变化规律。
2.
Maleic anhydride grafted high density polyethylene (PE-HD-g-MAH) and PE-HD-g-MAH/PA6 blend alloy were prepared via melt grafting.
采用熔融法制备了高密度聚乙烯(PE-HD)与马来酸酐(MAH)接枝物(PE-HD-g-MAH),并以此接枝物制备了PE-HD-g-MAH/PA6共混合金,通过调整引发剂过氧化二异丙苯(DCP)和MAH的用量来控制接枝率,并研究该共混合金的性能与接枝率之间的关系。
5)  blending alloy
共混合金
1.
LDPE-g-MAH/PA-6(60/40)blending alloy was prepared by using the way of reaction extrusion,and the blending alloy was studied by adopting the technique of IR spectra,Dynamic Mechanical Analysis(DMA) and Scan Electron Microscope(SEM),accordingly,the tensile property was also tested.
通过选择适当的配方和工艺条件,采用熔融接枝方法制备了马来酸酐接枝低密度聚乙稀样品(LDPE-g-MAH);并用反应挤出的方法制备了LDPE-g-MAH/PA-6(60/40)共混合金,采用IR、DMA、扫描电镜等手段对共混合金性能进行了表征,并进行了拉伸性能的测试。
2.
Maleated HDPE (HDPE-g-MAH) was used as compatilizer to improve the properties of PA6/UHMWPE blending alloy.
采用HDPE-g-MAH作为相容剂来增容PA6/UHMWPE共混合金。
3.
The preparation process of polyacetal(POM)/polyurethene(PU) blending alloy with superior general properties by modifying national co polyacetal(M900) and adding high effective nucleator and encompatible agents(EPDM g MMA and LPE g MAH) was reviewed.
通过对国产树脂进行改性处理 ,辅以高效增容剂和成核剂 ,制得综合性能优异的聚甲醛 /聚氨酯共混合金。
6)  Blend [英][blend]  [美][blɛnd]
共混合金
1.
Mechanical Properties and Morphology of PBT/POE Blends;
PBT/POE共混合金的力学性能及形态结构研究
2.
For PPO/SEBS-g-MAH (Kraton FG 1901) blends with network morphology, “In- stantaneous in siam high orientation”, toughened model was proposed based on the fracture surfaces and microstructural deformation process.
针对具有网状结构的 PPO/SEBS-g-MAH共混合金冲击断面的形貌和微观形变过程,提出了“瞬间原位大取向”增韧模型该模型认为,超韧 PPO/SEBS-g-MAH的冲击断裂首先是弹性体周围产生微穴,微穴诱发基体产生剪切带,基体在剪切屈服过程中被网状的弹性体携带共同发生大的取向行为,形成取向分子束,从而吸收大量能量,达到超韧水平。
3.
In this paper,a series of blends of PES-C with UHMWPE have been studied.
研究了PESU-C/UHMWPE共混合金的力学性能与其组成及相态结构的关系。
补充资料:上金
上金  直接将金扮或揉碎后的金箔用丝绵蘸打在上过金胶的器物上。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条