Chu C C, Fischer T E
J Biomed Mater Res. 1978 May;12(3):347-59. doi: 10.1002/jbm.820120308.
The evaluation of the efficiency of polymer additives with special emphasis on uv absorbers and antioxidants in polyurethane elastomers has been completed. Aliphatic polyurethanes were chosen for this study because their properties closely relate to the requirements of maxillofacial prosthesis. The polyurethane elastomers were either synthesized by ourselves or formulated according to the manufacturer's recommendation. Eleven different types of uv absorbes, coupled with one antioxidant, were incorporated into the polyurethane systems. The Atlas twin-lamp carbon arc Weatherometer was used as the source of uv. The samples were periodically withdrawn for examination of yellowing and tackiness. It was found that, although the incorporation of uv stabilizers enhanced the uv resistance of polyurethanes, the problem of tackiness resulting from uv aging was not solved satisfactorily. The phenomenon of yellowing, however, was significantly improved, mainly due to the aliphatic structure of polyurethanes. The most promising uv absorbers are Tinuvin 770 and the combination of Tinuvin 328, ZnO, and an antioxidant. Their effectiveness in other polyurethane systems is not known and further research is underway to explore this field. Hopefully, these findings will greatly assist the successful application polyurethane elastomers in maxillofacial prosthesis.
对聚合物添加剂(特别着重于聚氨酯弹性体中的紫外线吸收剂和抗氧化剂)的效率评估已经完成。本研究选择脂肪族聚氨酯是因为其性能与颌面修复体的要求密切相关。聚氨酯弹性体要么是我们自己合成的,要么是根据制造商的建议配制的。将11种不同类型的紫外线吸收剂与一种抗氧化剂加入到聚氨酯体系中。使用阿特拉斯双灯碳弧老化试验箱作为紫外线源。定期取出样品检查泛黄和粘性情况。结果发现,虽然加入紫外线稳定剂提高了聚氨酯的抗紫外线能力,但紫外线老化导致的粘性问题并未得到令人满意的解决。然而,泛黄现象得到了显著改善,这主要归因于聚氨酯的脂肪族结构。最有前景的紫外线吸收剂是 Tinuvin 770以及Tinuvin 328、氧化锌和一种抗氧化剂的组合。它们在其他聚氨酯体系中的有效性尚不清楚,目前正在进行进一步研究以探索该领域。希望这些研究结果将极大地有助于聚氨酯弹性体在颌面修复体中的成功应用。