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Fatty acid based novel precursors for polyesteramide hot melt adhesive

机译:基于脂肪酸的聚酯酰胺热熔粘合剂的新型前体

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摘要

Polyesteramide (PEA) based hot melt adhesive (HMA) was successfully designed containing a high content of renewable mass. The PEA HMA was synthesized based on dimer acid (DA), catechol, ethylenediamine (EDA), ricinoleic acid amide (RA amide) which was synthesized by using ricinoleic acid and diethanolamine. RA amide was reacted with dimer acid with a varying concentration of RA amide by 5%, 10%, 15% and 20% on a molar basis. Catechol was further added on the molar basis of 10%, 20%, and 30% as a partial replacement of ethylenediamine. The effect on the properties of the hot melt adhesive, such as mechanical properties: tensile strength, shore D hardness, elongation at break; thermal properties: glass transition temperature (Tg), melting temperature (Tm), heat of crystallization (Hc), crystallization temperature (Tc); adhesion properties: lap shear strength (LSS) and T-peel strength (TPS); rheological properties and degree of crystallinity was investigated. It was observed that the mechanical and thermal properties are increased with increasing concentration of RA amide and catechol. These HMA materials could hold potential for sustainability and high adhesive performance.
机译:以聚酯酰胺(PEA)为基础的热熔胶(HMA)设计成功,含有高含量的可再生物质。以蓖麻油酸和二乙醇胺为原料,合成了二聚酸(DA)、邻苯二酚、乙二胺(EDA)、蓖麻油酸酰胺(RA酰胺)为原料的PEA HMA。以5%、10%、15%和20%摩尔浓度的RA酰胺与二聚酸反应。以10%、20%和30%的摩尔分数进一步添加邻苯二酚,作为乙二胺的部分替代物。对热熔胶性能的影响,如机械性能:拉伸强度、肖氏硬度、断裂伸长率;热性能:玻璃化转变温度(Tg)、熔融温度(Tm)、结晶热(Hc)、结晶温度(Tc);粘合性能:搭接剪切强度(LSS)和T剥离强度(TPS);研究了流变性能和结晶度。结果表明,随着RA酰胺和邻苯二酚浓度的增加,材料的力学性能和热性能都有所提高。这些HMA材料具有可持续性和高粘合性能的潜力。

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