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首页> 外文期刊>Journal of Applied Polymer Science >New tetrafunctional epoxy resin system with increased shelf life
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New tetrafunctional epoxy resin system with increased shelf life

机译:新型四官能环氧树脂体系,具有更长的保存期限

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Chlorine- and methyl-substituted aromatic diamines based on diaminodiphenylmethane were epoxidized and characterized. The effect of different substituents on epoxidation was studied. The cure studies of the two new tetrafunctional resins in comparison with unsubstituted resin NNN',N'-tetraglycidyl-4,4'-diaminodiphenylmethane (TGDDM) was carried out by DSC with 3,3'-dichloro-4,4'diaminodiphenylmethane (o-DCDDM; 30% w/w) as a common curing agent. The mechanical properties such as flexural, Izod impact, heat distortion temperature (HDT), of such cured neat resins were also studied. The results of the cure studies indicate that the substitution of the alpha-hydrogen of the resin by chlorine or methyl group decreases the reactivity of the resin leading to an increase in the shelf life. This study also indicates that the functionality of the resin plays a pivotal role in the reactivity and thus the shelf life of an epoxy resin system. The results of the mechanical properties of the neat resin casts obtained by subjecting to a common cure schedule when compared with the unsubstituted resin showed a decrease in impact strength, which is obvious because of the presence of a bulky pendant group but the impact strength was higher than that of the TGOS30 resin system. Results of flexural strength of the different substituted neat resin casts did not show much of a deviation from that of the unsubstituted resin system. The HDT results indicate no significant difference in the values of the unsubstituted resin vis-a-vis with substituted resin systems. (C) 2004 Wiley Periodicals, Inc.
机译:对基于二氨基二苯甲烷的氯和甲基取代的芳族二胺进行环氧化和表征。研究了不同取代基对环氧化的影响。 DSC用3,3'-dichloro-4,4'diaminodiphenylmethane(3,3'-dichloro-4,4'diaminodiphenylmethane(3,3'-dichloro-4,4'diaminodiphenylmethane)( o-DCDDM; 30%w / w)作为常用固化剂。还研究了这种固化的纯树脂的机械性能,例如挠曲,悬臂梁式冲击,热变形温度(HDT)。固化研究的结果表明,用氯或甲基取代树脂的α-氢会降低树脂的反应性,从而延长保质期。这项研究还表明,树脂的功能性在反应性和环氧树脂体系的货架期中起着关键作用。与未取代的树脂相比,通过共同的固化时间表获得的纯净树脂铸件的机械性能结果显示,冲击强度降低,这很明显,因为存在庞大的侧基,但冲击强度更高比TGOS30树脂系统的要好。不同取代的纯树脂铸件的弯曲强度结果与未取代的树脂体系的弯曲强度没有太大的偏差。 HDT结果表明未取代树脂的值与取代树脂体系相比无显着差异。 (C)2004年Wiley Periodicals,Inc.

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