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| 1 | 热致液晶共聚酯/PA6/RSMA原位复合材料 1.RSMA对热致液晶共聚酯/PA6共混体系的增容作用显示文摘选用 Vectra A950热致液晶共聚酯(LCP),制备热致液晶共聚酯(LCP)/聚MKR 6(PA6) /苯乙烯一马来酸酐无规共聚物(RSMA)三元共混物,采用注射成型的方法实现原位复合测定复合材料 的熔体流变性能、FTIR光谱、动态力学性质和共混物形态结构,研究了RSMA对聚酰胺6/热致液晶 共聚酯共混体系的增容作用.结果表明, RSMA的加入提高了 LCP/PA6共混体的熔体粘度; RSMA 与 LCP和 PA6发生酯化、酰胺化反应,改善了 LCP与 PA6之间的相容性,使两者的玻璃化温度相 互靠近,提高了LCP在PA 6基体中的分散,增强了两相之间的界面粘接. | 解孝林 LI R.K.Y. TJONG S.C. | 2001 | 材料研究学报2001,15,3: | 9 |
| 2 | Miscibility of Semi-flexible Thermotropic Liquid Crystalline Copolyesteramide with Polyamide 66显示文摘Liquid crystalline polymer-polyamide 66 (LCP/PA66) blends were compounded by using a Brabender mixing followed by compression moulding. The LCP employed was a semi-flexible liquid crystalline copolyesteramide based on 30% (molar fraction ) of p-amino benzoic acid (ABA ) and 70% (molar fraction) of poly (ethylene terephthalate) (PET). The LCP/PA66 blends were investigated in terms of the thermal and dynamic mechanical properties. It was found that PA66 and LCP components of the blends are miscible in the molten state, but are partially miscible in the solid state. The inclusion of the semi-flexible LCP into PA66 retards the crystallization rate of PA66. Furthermore, the melting temperature and the degree of crystallinity of PA66 are reduced considerably due to the LCP addition. | XIE Xiao-Lin, TJONG S. C. and LI R. K. Y. (Department of Chemistry, Huazhong University of Science and Technology, Wuhan 430074 Department of Physics and Materials Science, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong P. R. China) | 2000 | Chemical Research in Chinese Universities2000,16,4: | 6 |
| 3 | Cellulose-based Antimicrobial Composites and Applications: A Brief Review显示文摘Cellulose-based antimicrobial composites,typically in the form of functional films and cloth,have received much attention in various applications,such as food,medical and textile industries.Cellulose is a natural polymer,and is highly biodegradable,green,and sustainable.Imparting antimicrobial properties to cellulose,will significantly enhance its applications so that its commercial value can be boosted.In this review paper,the use of cellulose for antimicrobial composites’preparation was discussed.Two different approaches:surface loading/coating and interior embedding,were focused.Three most widely-applied sectors:food,medical and textile industries,were highlighted.Nanocellulose,as a leading-edge cellulose material,its unique application on the antimicrobial composites,was particularly discussed. | Bo Sun Fangong Kong Min Zhang Weijun Wang Birat Singh KC Jimi Tjong Mohini Sain | 2019 | Paper And Biomaterials2019,4,4: | 5 |
| 4 | 热致液晶共聚酯/PA6/RSMA原位复合材料 2.力学性质与破坏行为显示文摘选用 Vectra A950热致液晶共聚酯(LCP)制备热致液晶共聚酯(LCP)/聚酰胺 6(PA6)/苯乙烯-马来酸酐无规共聚物(RSMA)三元共混物,并注射成型制得复合板材,研究三元 LCP/PA 6/RSMA原位复合材料的形态结构、力学性质和破坏行为结果表明,RSMA是LC/ PA6 复合材料的有效增容剂,RSMA的加入有利于LCP在PA 6基体中原位成纤,增强了两相之间的界面粘 接 加入RSMA后,LCP/PA 6原位复合材料的杨氏模量、抗拉强度和抗冲击强度明显提高. RSMA 能延长 LCP/PA6复合材料的裂纹引发时间,增加裂纹引发能和总冲击能,对 LCP/PA6原位复合材料 有增韧作用 RSMA的加入量存在一临界值. | 解孝林 LI R.K.Y TJONG S.C | 2001 | 材料研究学报2001,15,5: | 4 |
| 5 | Squeeze casting of aluminum alloy A380: Microstructure and tensile behavior显示文摘A380 alloy with a relatively thick cross-section of 25 mm was squeeze cast using a hydraulic press with an applied pressure of 90 MPa. Microstructure and tensile properties of the squeeze cast A380 were characterized and evaluated in comparison with the die cast counterpart. Results show that the squeeze cast A380 possesses a porosity level much lower than the die cast alloy, which is disclosed by both optical microscopy and the density measurement technique. The results of tensile testing indicate the improved tensile properties, specifically ultimate tensile strength(UTS: 215.9 MPa) and elongation(Ef: 5.4%), for the squeeze cast samples over those of the conventional high-pressure die cast part(UTS: 173.7 MPa, Ef: 1.0%). The analysis of tensile behavior shows that the squeeze cast A380 exhibits a high tensile toughness(8.5 MJ·m-3) and resilience(179.3 k J·m-3) compared with the die cast alloy(toughness: 1.4 MJ·m-3, resilience: 140.6 k J·m-3), despite that, during the onset of plastic deformation, the strain-hardening rate of the die cast specimen is higher than that of the squeeze cast specimens. The microstructure analyzed by the scanning electron microscopy(SEM) shows that both the squeeze and die cast specimens contain the primary α-Al, Al2 Cu, Al5 Fe Si phase and the eutectic Si phase. But, the Al2 Cu phase present in the squeeze cast alloy is relatively large in size and quantity. The SEM fractography evidently reveals the ductile fracture features of the squeeze cast A380 alloy. | Li Fang Xue-zhi Zhang Bo-jun Xiong Henry Hu Xue-yuan Nie Jimi Tjong | 2015 | China Foundry2015,12,5: | 3 |
| 6 | Microstructural and mechanical characteristics of in situ metal matrix composites显示文摘 | S.C Tjong Z.Y Ma | 2000 | Materials Science & Engineering R2000,,3: | 2 |
| 7 | Mechanical behaviour of CaCO3 particulatefilled β-crystalline phase polypropylene composites显示文摘 | S Tjong R Li | 1997 | Polym Eng Sci1997,37,: | 2 |
| 8 | Microstructural and mechanical characteristics of in situ metal matrix composites显示文摘 | S.C Tjong Z.Y Ma | 2000 | Materials Science & Engineering R2000,,3: | 2 |
| 9 | Morphological behaviour and instrumented dart impact properties of β-crystalline-phase polypropylene显示文摘 | S C Tjong J S Shenand R K Y Li | 1996 | Polymer1996,37,12: | 2 |
| 10 | Mechanical behaviour of injection molded β-crystalline phase polypropylene 显示文摘 | S C Tjong J S Shenand R K Y Li | 1996 | Polym Eng Sci1996,36,: | 2 |
| 11 | Processing-structure-property aspects of particulate- and whisker-reinforced titanium matrix composites显示文摘 | S.C. Tjong Yiu-Wing Mai | 2007 | Composites Science and Technology2007,,3: | 2 |
| 12 | Brittle-tough transition in PP/ EPDM blends: effects of interparticle distance and tensile deformation speed显示文摘 | Jiang W Tjong S C Li R K Y | 2000 | Polymer2000,41,: | 1 |
| 13 | Morphology and mechanical characteristics of compatibilized polyamide 6-liquid crystalline polymer composites 显示文摘 | Tjong S C Meng Y Z | 1997 | Polymer1997,38,18: | 1 |
| 14 | Abrasivion resistance of stainless-steel composites reinforced with hard TiB2 particles显示文摘 | Tjong S C Lau K C | 2000 | Composites Science and Technology2000,60,8: | 1 |
| 15 | NanocrystaUine Materials and Coatings显示文摘 | Tjong S Chen H | 2004 | Mater Sci Eng2004,45,: | 1 |
| 16 | Cyclic deformation behavior Of in-situ aluminum matriX composites of the system Al- Al3Ti-TiB2-Al2O3 显示文摘 | Tjong S C Wang G S Geng L | 2004 | Composites Science and Technology2004,64,: | 1 |
| 17 | Mitochondrial rejuvenation after induced pluripotency显示文摘 | Suhr ST Chang EA Tjong J | | 0,,: | 1 |
| 18 | Creep deformation characteristics of dis- continuously reinforced aluminium-matrix composites 显示文摘 | Ma Z Y Tjong S C | 2001 | Composites Science and Technology2001,61,5: | 1 |
| 19 | Microstructural and Mechanical Characteristic of in Situ Metal Matrix Composites 显示文摘 | Tjong S C Ma Z Y | 2000 | Materials Science and Engineering2000,29,: | 1 |
| 20 | Nanocrystalline materials and coatings 显示文摘 | Tjong S C Haydn C | 2004 | Materials Science and Engineering2004,45,1: | 1 |