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9篇 您的检索式:作者名="NAWADON"
    题名 作者 年代 出处 被引量
1Mechanical and Morphological Properties of Wood Plastic Biocomposites Prepared from Toughened Poly(lactic acid) and Rubber Wood Sawdust (Hevea brasiliensis)显示文摘Nawadon Petchwattana Sirijutaratana Covavisaruch 2014Journal of Bionic Engineering2014,11,4:11
2Effects of Rice Hull Particle Size and Content on the Mechanical Properties and Visual Appearance of Wood Plastic Composites Prepared from Poly(vinyl chloride)显示文摘Nawadon Petchwattana Sirijutaratana Covavisaruch 2013Journal of Bionic Engineering2013,10,1:7
3Wood Plastic Composites Prepared from Biodegradable Poly(butylene succinate) and Burma Padauk Sawdust (Pterocarpus macrocarpus): Water Absorption Kinetics and Sunlight Exposure Investigations显示文摘Nawadon Petchwattana Jakkid Sanetuntikul Paranee Sriromreun Borwon Narupai 2017Journal of Bionic Engineering2017,14,4:2
4Mechanical properties, thermal degradation and natural weathering of high density polyethylene/rice hull composites compatibilized with maleic anhydride grafted polyethylene显示文摘Nawadon Petchwattana Sirijutaratana Covavisaruch Sirapat Chanakul 2012Journal of Polymer Research2012,,7:1
5Me- ehanical properties thermal degradation and natural weathering of high density polyethylene/rice hull composites compatibilized with maleic anhydride grated polyethylene 显示文摘NAWADON P SIRIJUTARATANA C SIRAPAT C 2012J Polym Res2012,19,7:1
6Influences of particle sizes and contents of chemical blowing gents on foaming wood plastic composites prepared from poly(vinyl chloride) and rice hull显示文摘NAWADON P SIRIJUTARATANA C 2011Materials & Design2011,32,5:1
7Influences of Particle Sizes and Contents of Chemical BlowingAgents on Foaming Wood Plastic Composites Prepared fromPoly (Vinyl Chloride) and Rice Hull显示文摘PETCHWATTANA NAWADON COVAVISARUCH 2011Material & Design2011,32,5:1
8微波辐照条件下基于纳米丁苯橡胶β相形核剂的全同立构聚丙烯的β–α相转变(英文)显示文摘本文研究了微波辐射对β-形核全同立构聚丙烯(iPP)β–α相转变的影响。对iPP及β-NA修饰的iPP样品进行10个周期的微波辐照,并采集第2、4、6、8和10周的数据。经过高频微波辐照,样品的温度随着辐照时间的延长而升高,最高超过130℃,这也是导致β相转变和结构变化的主要因素。差示扫描量热法(DSC)和X射线衍射(XRD)结果表明,β相主要转化为α相,部分转化为非晶态相,具体表现为:1)β相的熔化焓(△H_(mβ))降低;2)α相的熔化焓(△H_(mα))升高;3)β相含量(K_β)减少;4)总体结晶度(X_(all))降低。在冲击力作用下,纯iPP的冲击强度随辐照时间的延长略有提高,这是由于非晶态成分的增加。而对于β-iPP,由于β相含量减少,其冲击强度降低。Nawadon PETCHWATTANA Phisut NAKNAEN Jakkid SANETUNTIKUL 2018Journal of Central South University2018,25,12:0
9A Circular Economy Use of Post-Consumer Polypropylene Packaging for Low Thermal Conductive and Fire-Retardant Building Material Applications显示文摘Wastes from polypropylene(PP)packages are accumulating every year because it is one of the most widely consumed and short lifecycle products.This paper aims to develop low thermal conductive and fire-retardant materials from post-consumer PP(pPP)packages.Ammonium polyphosphate(APP)and hollow glass microsphere(HGM)were further added to improve the fire retardancy and thermal conductivity of pPP.The influence of APP and HGM on the mechanical and thermal properties,fire retardancy and thermal conductivity of pPP were investigated and compared with that of virgin PP(vPP).HGM was constantly added at 5 wt%while the content of APP was varied from 5 to 20 wt%.Experimental results showed that the tensile and flexural strengths were reduced with increasing APP concentrations.A morphological study confirmed the poor interfacial adhesion and debonding of each component during the applied load.Formulations containing APP less than 10 wt%did not show a satisfying fire retardancy rating due to the long self-extinguishing time.Further flame dipping and cotton ignition were observed for these formulations.With 15 and 20 wt%APP,the fire rating was significantly improved from no rating to V-0.The conductive heat transfer coefficient(k)was reduced by the presence of HGM.Based on these results,the formulation with 15 and 20 wt%could be used as a low k,fire-retardant building material.Jakkid Sanetuntikul Borwon Narupai Nawadon Petchwattana 2023Journal of Renewable Materials2023,11,9:0
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