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| 1 | Poly (butylene terephthalate)/silica nanocomposites prepared from cyclic butylene terephthalate显示文摘 | Zhenyu Jiang Suchart Siengchin Li-Min Zhou Markus Steeg József Karger-Kocsis Hau Chung Man | 2008 | Composites Part A2008,,3: | 2 |
| 2 | A review on lightweight materials for defence applications:Present and future developments显示文摘The defence sector is now at an advanced level,catering to the global scenario,and countries also invest heavily in research and development.Countries around the world have spent a lot of money on research and development over the years in order to stay ahead of their competitors.Lightweight materials are critical in defence applications because they allow components to be lighter without sacrificing strength.This review provides an overview of the research related to defence applications.The book provides comprehensive details on current trends in the application of lightweight materials in defence.This review also includes historical and current perspectives on defence technologies.It discusses uses of lightweight materials such as metal matrix composites,polymer composites,ceramic matrix composites,fiber composites in defence sectors Finally,the review paper also emphasizes future military applications of lightweight materials. | Suchart Siengchin | 2023 | Defence Technology(防务技术)2023,24,6: | 2 |
| 3 | Mechanical Property and Morphological Analysis of Polyester Composites Reinforced with Cyperuspangorei Fibers显示文摘In the present work,polyester composites reinforced with a newly identified Cyperus pangorei fiber(CPF)were developed by compression moulding technique.The effects of varying fiber content and fiber length on the mechanical properties of the Cyperus pangorei fiber reinforced polyester composites(CPFCs)such as tensile,flexural,and impact properties were studied.Mechanical strength of the CPFCs increased with fiber length up to 40 mm beyond which a reverse trend was observed.Based on the test results,it was concluded that the critical fiber length and the optimum fiber weight percentage were 40 mm and 40 wt%respectively.The maximum increase of 164%and 117%were found for the tensile and flexural strength of the composite with 40 mm fiber length and 40 wt%fiber content,respectively.On the other hand,a 64%increase in impact strength was noticed for the optimum case.The increasing contact surface between the fiber and the polyester matrix in optimum condition can restrict the probability of fiber pullout and in turn can make the composite carry more load.The chemical structure of CPF was also analyzed using Fourier-Transform Infrared Spectroscopy(FTIR)spectrum.The morphological analysis of fractured samples was performed using Scanning Electron Microscopy(SEM)to understand the interfacial bonding between CPFs and polyester matrix.The optimal composite can be a suitable alternative in the field of structural applications in construction and automobile industries. | Mayandi Kalimuthu Rajini Nagarajan Alavudeen Azeez Batcha Suchart Siengchin Varada Rajulu Anumakonda Nadir Ayrilmis | 2019 | Journal of Bionic Engineering2019,16,1: | 2 |
| 4 | Dynamic Mechanical Thermal Analysis of All-PP Composites Based on /3 and a Polymorphic Forms 显示文摘 | Abraham T N Siengchin S Karger-Kocsis J | 2008 | Journal of Materials Science2008,43,10: | 1 |
| 5 | Nanofilled and/or toughened POM composites produced by water-mediated melt compounding: Structure and mechanical properties显示文摘 | Siengchin S Karger-Kocsis J Thomann R | 2008 | Express Polymer Letters2008,2,10: | 1 |
| 6 | Structure and creep response of toughened and nanoreinforced polyamides produced via the latex route: Effect of nanofiller type 显示文摘 | Siengchin S Karger-Kocsis J | 2009 | Composites Science and Technology2009,69,5: | 1 |
| 7 | Reinforced flax mat/modified polylactide (PLA) composites: Impact, thermal, and mechanical properties 显示文摘 | SIENGCHIN S | 2014 | Mech Compos Mater2014,50,2: | 1 |
| 8 | Nanofilled and/ortoughened POM composites produced by water-mediated meltcompounding: Structure and mechanical properties显示文摘 | Siengchin S Karger-Kocsis J Thomann R | 2008 | ExpressPolymer Letters2008,2,74: | 1 |
| 9 | Structure and creep response of toughened and nanoreinforced polyamides produced via the latex route: effect of nanofiller type 显示文摘 | S Siengchin J Karger-Kocsis | 2009 | Comp Sci Tech2009,69,: | 1 |
| 10 | Poly (butylene tereph- thalate)/silica nanocomposites prepared from cyclic butylene terephthalate显示文摘 | Jiang Z Y Siengchin S Zhou L M | 2009 | Composites Part A : Applied Science and Manu- facturing2009,40,3: | 1 |
| 11 | Flexural and Dynamic Mechanical Properties of Alkali-Treated Coir/Pineapple Leaf Fibres Reinforced Polylactic Acid Hybrid Biocomposites显示文摘Polylactic acid(PLA)possesses good mechanical and biodegradability properties which make it a suitable material for polymer composites whereas brittleness and high costs limit its utilization in various applications.The reinforcement of natural fibres with biopolymers has been formed to be an efficient technique to develop composites having the ability to be fully biodegradable.This study concerns with the incorporation of various percentages of untreated and alkali-treated Coir Fibres(CF)and pineapple leaf fibres(PALF)in PLA biocomposites and characterizations of flexural,morphological and dynamic mechanical properties.Flexural properties showed that the treated C1P1 hybrid composites(C1P1A)displayed highest flexural strength(35.81 MPa)and modulus(5.28 GPa)among all hybrid biocomposites.Scanning Electron Microscopy(SEM)revealed a behaviour of fibre-matrix adhesion in untreated treated biocomposites.SEM observation revealed good dispersion of the fillers in PLA.Dynamic mechanical analysis revealed that C1P1A showed highest glass transition temperature(Tg)and storage modulus(E')while untreated C3P7 displayed the least Tg and E'.Overall findings showed that alkali-treated hybrid biocomposites(CF/PALF/PLA)especially C1P1A have improved flexural properties,dynamic and morphological properties over untreated biocomposites.Success of these findings will provide attracting consideration of these hybrid biocomposites for various lightweight uses in a broad selection of industrial applications such as biomedical sectors,automobile,construction,electronics equipment,and hardware tools. | Ramengmawii Siakeng Mohammad Jawaid Mohammad Asim Hassan Fouad Sameer Awad Naheed Saba Suchart Siengchin | 2021 | Journal of Bionic Engineering2021,18,6: | 1 |
| 12 | Dynamic mechanical and perforation impact behavior of AII-PP composites containing beta-nucleated random PP copolymer as matrix and stretched PP homopolymer tape as reinforcement:Effect of draw ratio of the tape显示文摘 | Abraham T N Wanjale S Siengchin S | 2011 | Journal of Thermoplastic Composite Materials2011,24,3: | 1 |
| 13 | Nanocomposite egg shell powder with in situ generated silver nanoparticles using inherent collagen as reducing agent显示文摘Silver nanoparticles(AgNPs)were in situ generated in poultry hen egg shell powder(ESP)by one step thermal assisted method using the inherently present collagen as a reducing agent.The nanocomposite egg shell powder(NCESP)with in situ generated silver nanoparticles was charac-terized by scanning electron microscopy(SEM),Fourier transform infrared(FT-IR)spectroscopy,X-ray diffraction(XRD),thermogravimetric analysis(TGA)and antibacterial tests.The prepared NCESP had the spherical AgNPs in the size range of 50-120 nm with most of them from 81 nm to 90 nm.Further,the average size of the AgNPs generated in the NCESP was 88 nm.The X-ray analysis indicated the presence of both AgNPs and AgO nanoparticles(AgONPs)in the NCESP.The possible mechanism of generation of AgNPs and AgONPs in the NCESP was also proposed.The thermal stability of the NCESP was found to be higher than that of the ESP.The NCESP ex-hibited excellent antibacterial activity against both the Gram negative and positive bacteria.The NCESP made from poultry waste ESP can be utilized as a low-cost antibacterial cleaning powder for house ware and also as low-cost antibacterial filler in polymer matrices to make antibacterial hybrid nanocomposites. | Krittirash Yorseng Suchart Siengchin Basa Ashok Anumakonda Varada Rajulu | 2020 | Journal of Bioresources and Bioproducts2020,5,2: | 0 |
| 14 | Modification of tamarind fruit shell powder with in situ generated copper nanoparticles by single step hydrothermal method显示文摘Tamarind fruit shell powder(TFSP)with particle size of<50μm(obtained from cleaned tamarind fruit shells)was modified with in situ generated copper nanoparticles(CuNPs)by simple one step hydrothermal method.The modified TFSP was characterized by scanning electron microscope(SEM),Fourier transform infrared(FT-IR)spectroscopy,X-ray diffraction(XRD),thermogravi-metric analysis(TGA)and antibacterial tests.The generated stable CuNPs on the surface of the modified TFSP were spherical in shape with an average size of 88 nm.The FT-IR spectroscopy analysis indicated the involvement of the functional groups of the TFSP in the generation and stabilization of the CuNPs.The XRD analysis indicated the presence of both CuNPs and Cu 2 O nanoparticles in the modified TFSP.The thermal analysis indicated the presence of 5.6 wt%of copper nanoparticles as calculated from the difference of residual char content between the un-modified and modified TFSP.The modified TFSP with in situ generated CuNPs exhibited obvious antibacterial activity against both the Gram negative and Gram positive bacteria and hence can be considered as low cost filler in the preparation of antibacterial polymer hybrid nanocomposites for packaging and medical applications. | B.Ashok N.Hariram Suchart Siengchin A.Varada Rajulu | 2020 | Journal of Bioresources and Bioproducts2020,5,3: | 0 |