期刊文献+
共找到8篇文章
< 1 >
每页显示 20 50 100
基于松香酸酐的生物质树脂基体湿热性能研究 被引量:1
1
作者 黎迪晖 仝建峰 +1 位作者 张旭锋 益小苏 《复合材料科学与工程》 CAS 北大核心 2021年第1期85-91,共7页
研究了室温和70℃条件下松香酸酐生物质树脂基体(AGMP3600)在蒸馏水和海水中的吸水性能,通过经典Fick模型模拟了树脂基体的水吸收过程,并与双氰胺固化环氧树脂基体(AP2300)的吸水性能进行了对比,对吸水前后试样的动态力学性能及微观形... 研究了室温和70℃条件下松香酸酐生物质树脂基体(AGMP3600)在蒸馏水和海水中的吸水性能,通过经典Fick模型模拟了树脂基体的水吸收过程,并与双氰胺固化环氧树脂基体(AP2300)的吸水性能进行了对比,对吸水前后试样的动态力学性能及微观形貌进行了分析。结果表明AGMP3600具有较好的耐水性能,在70℃海水环境中的准平衡吸水率为2.01%,扩散系数为1.77×10^-6 mm^2/s,AP2300准平衡吸水率为6.60%,扩散系数为0.46×10^-6 mm^2/s。AGMP3600浇注体储能模量随浸泡时间增加先下降后上升,力学损耗对应的峰值温度(Tg)随浸泡时间增加略有降低;AP2300浇注体随树脂浸泡时间增加,储能模量和玻璃化转变温度Tg都有所下降。由显微金相照片可看出水吸收对AGMP3600树脂微孔破坏程度小,而AP2300树脂由于水吸收率高,微孔孔隙增大、增多。 展开更多
关键词 生物质树脂 松香酸酐 环氧树脂 水吸收与扩散 复合材料
下载PDF
松香马来酸酐衍生物的制备及生物活性 被引量:8
2
作者 王恒山 谢建武 +3 位作者 潘英明 黎霜 苏桂发 文进军 《农药》 CAS 北大核心 2005年第11期506-508,共3页
合成了3类共5种松香马来酸酐衍生物,并进行了结构表征。生物活性测定结果表明化合物2a、2b和2c均具有植物激素作用。化合物2a~2c的合成采用无溶剂绿色化学的合成方法,合成反应操作简便,产率达90%,适合规模化生产。
关键词 松香 松香马来酸酐 取代苯脲 酰腙 酰胺基硫脲
下载PDF
顺丁烯二酸酐-桐油-松香甘油酯的合成及性能研究 被引量:1
3
作者 张通 马国章 +2 位作者 吴建兵 侯彩英 王宝俊 《中国胶粘剂》 CAS 北大核心 2013年第11期18-21,40,共5页
为提高EG(松香甘油酯)的帆(重均相对分子质量)和柔韧性,以MAH(顺丁烯二酸酐)、TO(桐油)和松香为主要原料,合成了MAH—TO-松香的Diels—Aider加成物;然后用甘油对该加成物进行酯化改性,制得MR(MAH—TO—EG的Diels—Alder加... 为提高EG(松香甘油酯)的帆(重均相对分子质量)和柔韧性,以MAH(顺丁烯二酸酐)、TO(桐油)和松香为主要原料,合成了MAH—TO-松香的Diels—Aider加成物;然后用甘油对该加成物进行酯化改性,制得MR(MAH—TO—EG的Diels—Alder加成物)。考察了MAH、TO比例对MR的Mn及其分布、软化点、MR/亚麻油溶液的黏度和正庚烷容纳度等影响。结果表明:采用单因素试验法优选出制备MR的最佳工艺条件为n(MAH):n(松香)=2:10、m(TO):m(松香)=(1~2):10;此时MR的综合性能相对较好,其帆和软化点较高,并且MR/亚麻油溶液的黏度和正庚烷容纳度也相对较大,完全满足胶粘剂、涂料的制备要求。 展开更多
关键词 顺丁烯二酸酐-桐油-松香加成物 松香甘油酯 Diels—Alder加成
下载PDF
温敏性聚乙二醇-马来酸酐松香聚酯的制备及其结构与聚集形态转变研究
4
作者 朱伯明 亓坤 +4 位作者 李媚 赵彦芝 许海棠 雷福厚 周菊英 《现代化工》 CAS CSCD 北大核心 2021年第10期107-112,共6页
合成了具有生物相容性的马来酸酐松香单乙酯和聚乙二醇-马来酸酐松香聚酯,并利用红外、核磁等方法对产物进行表征。采用弹性光散射探讨了聚乙二醇-马来酸酐松香聚酯在不同温度下的结构转变行为及生物相容性。当聚乙二醇-马来酸酐松香聚... 合成了具有生物相容性的马来酸酐松香单乙酯和聚乙二醇-马来酸酐松香聚酯,并利用红外、核磁等方法对产物进行表征。采用弹性光散射探讨了聚乙二醇-马来酸酐松香聚酯在不同温度下的结构转变行为及生物相容性。当聚乙二醇-马来酸酐松香聚酯为临界胶束浓度时,升温过程中胶束发生再次聚集;而当质量浓度小于临界胶束浓度时,单根分子链在升温过程中发生聚集和紧缩。分子链的结构转变与聚集皆为温度可逆过程。因此,在分子水平上探讨了分子链的聚集行为与结构转变,为温敏性聚乙二醇-马来酸酐松香聚酯在表面活性与载药领域的应用提供理论基础。 展开更多
关键词 聚乙二醇-马来酸酐松香聚酯 生物相容性 结构转变 温敏性
下载PDF
松香临床应用小议 被引量:3
5
作者 吾坎 阿尼古丽 《新疆中医药》 2003年第6期37-38,共2页
松香又称松脂,为松科植物马尾松、油松或同属他种植的油树脂经除去挥发油后所留存的固体树脂.呈棕黄色,带松节油气味.
关键词 松香 临床应用 中药 松香酸酐 松香
下载PDF
新型建筑冷粘胶
6
《四川建材》 1997年第Z1期37-38,共2页
一、原材料配方 1.原材料 (1)聚苯乙烯泡沫塑料废聚苯乙烯塑料材料。 (2)溶剂主要以甲苯(或二甲苯)和醋酸乙酯为主体的回收工业溶剂,以芳香烃为主溶剂,配少量酯、酮类。 (3)
关键词 原材料配方 聚苯乙烯泡沫塑料 粘接强度 废聚苯乙烯 粘胶 改性剂 松香酸酐 塑料材料 工业溶剂 防水涂料
下载PDF
Study on Preparation of Waterproofing Agent for Mineral Wool Board from Modified C_9 Petroleum Resin 被引量:1
7
作者 Li Fengyan Yang Yajun +1 位作者 Dai Danghui Yuan Yadong 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2013年第4期92-96,共5页
The modified petroleum resin emulsion prepared from the C9petroleum resin was modified with maleic anhydride.The effects of maleic rosin and maleic anhydride addition level,the modification time and the alkali liquor ... The modified petroleum resin emulsion prepared from the C9petroleum resin was modified with maleic anhydride.The effects of maleic rosin and maleic anhydride addition level,the modification time and the alkali liquor on the properties of the emulsion were discussed.The results showed that the optimum process conditions covered:a maleic anhydride mass fraction of 1.5%,a maleic rosin mass fraction of 10%,a KOH mass fraction of 1%,a petroleum resin modification temperature of 200℃,a petroleum resin modification duration of 3 h,and a modified petroleum resin emulsion/wax emulsion mixing ratio of 1:1.The particle size of modified petroleum resin emulsion prepared under these conditions was equal to 104.166μm. 展开更多
关键词 C9 petroleum resin MODIFIER waterproofing agent maleic rosin maleic anhydride
下载PDF
Curing kinetics and mechanical properties of bio-based composite using rosin-sourced anhydrides as curing agent for hot-melt prepreg 被引量:7
8
作者 ZHANG XuFeng WU YunQiQiGe +2 位作者 WEI JiaHu TONG JianFeng YI XiaoSu 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第9期1318-1331,共14页
In this study, a novel bio-based thermosetting system has been developed from epoxy resin (EP), with rosin-sourced anhydrides (maleopimaric acid, RAM) as curing agent and imidazole type latent catalyst (two amino... In this study, a novel bio-based thermosetting system has been developed from epoxy resin (EP), with rosin-sourced anhydrides (maleopimaric acid, RAM) as curing agent and imidazole type latent catalyst (two amino imidazole salt complex, IMA), to be used as matrix for hot-melt prepreg curing at mid-temperature. For comparison, the epoxy resin system with petroleum sourced hardener methylhexahydrophthalicanhydride (MHHPA) was also examined. The curing behaviour and mechanism were investigated by non-isothermal differential scanning calorimeter (DSC) analysis and Fourier transform infrared (FTIR) spectra. The results showed that the curing course of bio-based epoxy resin system containing RAM included two stages, which were the reaction between the free carboxyl group of RAM and oxirane ring under the acceleration of IMA, and the main reaction attributed to the reaction between anhydride and oxirane. According to Kissinger method, the reaction activation energy (E,) of two stages were 68.9 and 86.5kJmo1-1, respectively. The Eo of EP/MHHPA and EP/IMA resin system were 81.04 and 77.9kJmol-I. The processing property of EP/RAM/IMA system, i.e. the relationship between viscosity-temperature-time, was characterized by cone-plate viscometer aim to decide the processing parameter ofprepreg preparation. The effect of RAM content on mechanical performance and dynamic mechanical property was investigated. Noteworthily, compared with the laminates with EP/MHHPA as matrix, the laminates with RAM as hardeners achieved a 44%, 73% and 70℃ increase in bending strength, bending modulus and the glass transition temperature, respectively, due to the bulky hydrogenated phenanthrene ring structure incorporated into the cross-linking networks. When the fiber volume fraction reached 47%, the mechanical property of the laminates prepared with hot melt prepreg was superior or comparable to that of composites with pure petroleum sourced matrix. RAM as cross-linking agent of epoxy resin holds a great potential to satisfy the requirement of composites such as structure and secondary structure parts preparation. 展开更多
关键词 bio-based epoxy resin ROSIN cure kinetics hot-melt prepreg mechanical property
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部