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A new UV‐curable biodegradable waterborne polyurethane‐acrylate based on natural rubber blended with cassava starch

机译:一种基于天然橡胶与木薯淀粉共混的新型紫外光固化生物降解水性聚氨酯丙烯酸酯

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摘要

Abstract An ecofriendly UV‐curable biodegradable waterborne polyurethane acrylate (WPUA) was synthesized using hydroxy telechelic natural rubber (HTNR), gelatinized cassava starch (GCS) hexamethylene diisocyanate, hydroxymethyl propionic acid and 2‐hydroxyethyl acrylate and Darocur 1173 (photo‐initiator) for coating, adhesive applications, and so forth. WPUA thus prepared with a total solid content of about 20 had a good storage stability with a pot‐life of 3 months. The UV‐curable WPUA/GCS films showed superior photosensitivity with an irradiation time of 60 s. With increasing GCS content of the WPUA/GCS films, its transparency increased and surface gloss decreased. Scanning electron microscopic micrographs indicated good miscibility with strong interactions between WPUA and GSC in the matrix leading to high tensile strength and surface free energy with enhanced thermal degradation. Increasing the GCS content up to 75 wt in the film accelerated its degradation under weathering aging, and showed complete disintegration in soil after 7 days. This work provided a new environmentally friendly pathway to prepare WPUA based on HTNR and GCS with good biodegradability.
机译:摘要 以羟基螯合天然橡胶(HTNR)、糊化木薯淀粉(GCS)六亚甲基二异氰酸酯、羟甲基丙酸、丙烯酸2-羟乙酯和Darocur 1173(光引发剂)为原料,合成了一种环保型紫外光固化水降解水性聚氨酯丙烯酸酯(WPUA),用于涂料、胶粘剂等应用。由此制备的总固形含量约为20%的WPUA具有良好的贮藏稳定性,适用期为3个月。紫外光固化的WPUA/GCS薄膜表现出优异的光敏性,照射时间为60 s。随着WPUA/GCS薄膜GCS含量的增加,其透明度增加,表面光泽度降低。扫描电子显微照片表明,基体中WPUA和GSC具有良好的混溶性,相互作用强,导致拉伸强度和表面自由能高,热降解增强。将GCS含量提高到75 wt%时,薄膜在风化老化作用下加速了其降解,7 d后在土壤中完全崩解。本研究为制备基于HTNR和GCS的具有良好生物降解性的WPUA提供了一种新的环境友好途径。

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