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Effect of starch and lignin on physico-chemical properties of phenol-starch resin and its resin core sand

机译:淀粉和木质素对酚淀粉树脂及其树脂芯砂理化性质的影响

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摘要

A novolac like phenolic resin was prepared by copolymerization with phenol and hydrolyzed starch as the substitute for formaldehyde under catalysis of sulfuric acid. Liquefied phenolated lignosulfonate was introduced to the phenol-starch resin in thisstudy as a partial phenol substitute. The phenol-formaldehyde resin, phenol-starch resin, and lignin-phenol-starch resin were characterized with lab standard analysis for their physicochemical specifications such as solid content, gel time, softening point, viscosity, and free phenol content according to corresponding Chinese National Standards. Mechanical properties of modified and unmodified resin core sand were investigated. Structures of modified and unmodified resins were characterized with infrared spectrum analysis (FTIR) and carbon-13 NMR spectrometry (~(13)C NMR), while their thermal properties were studied with thermogravimetric analysis (TGA) and DSC. The modified resin and its core sand have acceptable physicochemical specifications, thermal resistance and mechanical properties as compared with unmodified resin and phenol-formaldehyde resin.
机译:酚醛清漆样酚醛树脂是通过在硫酸催化下与苯酚和水解淀粉代替甲醛的共聚反应制得的。本研究将液化的酚醛化木质素磺酸盐作为酚的部分取代基引入到酚淀粉树脂中。通过实验室标准分析,对酚醛树脂,酚淀粉树脂和木质素酚淀粉树脂的理化指标进行了表征,例如,其固体含量,胶凝时间,软化点,粘度和游离酚含量均符合相应的国家标准。标准。研究了改性树脂砂和未改性树脂砂的力学性能。改性和未改性树脂的结构通过红外光谱分析(FTIR)和碳13 NMR光谱法(〜(13)C NMR)表征,而它们的热性能通过热重分析(TGA)和DSC研究。与未改性树脂和酚醛树脂相比,改性树脂及其芯砂具有可接受的理化指标,耐热性和机械性能。

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