Search Results - "Qi, Z. N."
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Preparation and properties of organosoluble montmorillonite/polyimide hybrid materials
Published in Journal of applied polymer science (12-09-1999)“…Organosoluble montmorillonite/polyimide hybrids were prepared using a monomer solution intercalation polymerization method. Montmorillonite was organo‐treated…”
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Effect of morphology on the brittle ductile transition of polymer blends: 1. A new equation for correlating morphological parameters
Published in Polymer (Guilford) (01-10-1997)“…The relationships among morphological parameters of binary polymer blends have been studied. A new equation for correlating morphological parameters: particle…”
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Polyamide 6-clay nanocompositles/polypropylene-grafted-maleic anhydride alloys
Published in Polymer (Guilford) (01-09-2001)“…Polyamide 6-clay nanocomposites (PA6CN) based on montmorillonite typically show some brittleness with clay addition. In order to address this problem,…”
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Effect of morphology on the brittle ductile transition of polymer blends: 2. Analysis on poly(vinyl chloride)/nitrile rubber blends
Published in Polymer (Guilford) (01-10-1998)“…The effects of morphological parameters, especially rubber particle size distribution, on the brittle ductile transition of poly(vinyl chloride) (PVC)/nitrile…”
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Effects of interfacial adhesion on the rubber toughening of poly(vinyl chloride). Part 2. Low-speed tensile tests
Published in Polymer (Guilford) (01-02-2001)Get full text
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Interaction of two phases in PP/EPDM polymer blend probed by positron annihilation: CONTIN analysis
Published in Journal of polymer science. Part B, Polymer physics (15-01-1996)“…Positron annihilation lifetime measurements were performed on pure polypropylene (PP), ethylene‐propylene‐diene monomer (EPDM) rubber, and their blends PP/EPDM…”
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Effect of morphology on the brittle ductile transition of polymer blends: 3. The influence of rubber particle spatial distribution on the fracture behaviour of poly(vinyl chloride)/nitrile rubber blends
Published in Polymer (Guilford) (01-10-1998)“…Poly(vinyl chloride) (PVC)/nitrile rubber (NBR) blends with the pseudonetwork morphology and the morphology of well-dispersed particles were prepared to…”
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Effect of morphology on the brittle ductile transition of polymer blends: 4. Influence of the rubber particle spatial distribution in poly(vinyl chloride)/nitrile rubber blends
Published in Polymer (Guilford) (01-10-1998)“…We have derived a new equation for correlating the average matrix ligament thickness with other morphological parameters of a polymer blend with the…”
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Effect of morphology on the brittle ductile transition of polymer blends: 6. Influence of rubber particle spatial distribution on the toughening and stiffening efficiency of poly(vinyl chloride)/nitrile rubber blends
Published in Polymer (Guilford) (01-10-1998)“…The influence of rubber particle spatial distribution on the toughening and stiffening efficiency of poly(vinyl chloride) (PVC)/nitrile rubber (NBR) blends is…”
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Investigation on Unusual Crystallization Behavior in Polyamide 6/Montmorillonite Nanocomposites
Published in Macromolecular materials and engineering (01-08-2002)“…The crystallization behavior and crystal structure of polyamide 6/montmorillonite (PA6/MMT) nanocomposites were investigated by differential scanning…”
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Influence of particle dispersion on the matrix ligament thickness of polymer blends. 1. The configuration of well-dispersed particles versus simple cubic lattice
Published in Polymer (Guilford) (1998)“…The relations among the morphological parameters of binary polymer blends with the morphology of well-dispersed particles are quantitatively studied to correct…”
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Influence of particle dispersion on the matrix ligament thickness of polymer blends: 2. A generalized equation and particle spatial distributions for different morphologies
Published in Polymer (Guilford) (1999)“…We have derived a generalized equation for correlating the morphological parameters (matrix ligament thickness, particle spatial distribution parameter, mean…”
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Toughening of nylon 6 with a maleated core-shell impact modifier
Published in Journal of polymer science. Part B, Polymer physics (01-08-1998)“…Super‐tough nylon 6 was prepared by using maleic anhydride grafted polyethylene‐octene rubber/semicrystalline polyolefin blend (TPEg) as an impact modifier…”
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Polyamide 6/clay nanocomposites using a cointercalation organophilic clay via melt compounding
Published in Journal of applied polymer science (25-04-2003)“…Polyamide 6/clay nanocomposites (PA6CN) were prepared via the melt compounding method by using a new kind of organophilic clay, which was obtained through…”
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Preparation and properties of organosoluble polyimide/silica hybrid materials by sol-gel process
Published in Journal of applied polymer science (29-09-1999)“…Organosoluble polyimide/silica hybrid materials were prepared using the sol–gel process. The organosoluble polyimide was based on pyromellitic anhydride (PMDA)…”
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Association of fimA genotype to kgp genotype in Porphyromonas gingivalis from infected root canals of primary apical periodontitis
Published in Zhonghua kouqiang yixue zazhi (09-01-2018)“…To investigate the distribution of fimA and kgp genotypes as well as the common genotype combination of (Pg) in infected root canals of primary apical…”
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Studies on nylon 6/clay nanocomposites by melt-intercalation process
Published in Journal of applied polymer science (14-02-1999)“…The preparation of nylon 6/clay nanocomposites by a melt‐intercalation process is proposed. X‐ray diffraction and DSC results show that the crystal structure…”
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Crystallization, properties, and crystal and nanoscale morphology of PET-clay nanocomposites
Published in Journal of applied polymer science (14-02-1999)“…The crystallization process and crystal morphology of poly(ethylene terephathalate) (PET)–clay nanoscale composites prepared by intercalation, followed by…”
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Response of lithium fluoride detector to charged particle LET
Published in Hang tian yi xue yu yi xue gong cheng (01-04-2001)“…Response of LiF thermoluminescence (TL) detector to charged particle is dependent on particles' LET. High LET can cause reduction of detector response and…”
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