Investigation of the relation between free volume and physico-mechanical performance in rigid polyurethane foam containing turkey feather fibers: Part 2

IF 3.2 4区 工程技术 Q2 CHEMISTRY, APPLIED Journal of Cellular Plastics Pub Date : 2022-11-01 DOI:10.1177/0021955X221144541
U. Soykan, Mustafa Khaleel, S. Çetin, U. Yahsi, C. Tav
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Abstract

Rigid polyurethane foams (RPUFs) were modified with 0–15 wt.% turkey feather fibers (TFFs) produced from waste turkey feathers. One-shut free rising method was used for the production of TFFs-filled-RPUFs in a closed mold. The dependence of mechanical performance and water vapor permeability (WVP) feature of the final foams on TFFs loading was evaluated with free volume change. The free volume analysis was performed via Positron Annihilation Lifetime Spectroscopy (PALS), while the mechanical and WVP characteristics were determined with the use of the universal tester machines. PALS findings showed that the incorporation of TFFs with RPUF matrix caused the considerable diminishment in the free volume due to TFFs serving as a filling material and formation of strong secondary bonds between components. Moreover, tensile strength and extension of the foams decreased with the increasing of TFFs, which caused by the occurrence of noteworthy restriction on the spatial alignment and orientation capability of polyurethane chains due to the lack of sufficient free volume allowing the chains to move freely. As for the compression tests, all the TFFs-loaded RPUFs depicted substantially lower performance due to TFFs interfering with the ordered organization of isocyanate domains. Moreover, impact test results showed that the addition of TFFs into RPUF matrix brought about the insufficient impact energy delocalization throughout the matrix due to the restriction on the mobility of polymer chains. Additionally, the remarkable diminishment in WVP was recorded due to the reduction in the number of vacancies and constitution of keratin composed of roundly 60% of hydrophilic protein (especially cystine). All in all, this study established a strong links between free volume and characteristics of TFFs-loaded RPUFs. Graphical Abstract
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含火鸡羽毛纤维硬质聚氨酯泡沫材料自由体积与物理力学性能关系的研究:第二部分
用从废火鸡羽毛中提取的0-15 wt.%的火鸡羽毛纤维(TFFs)改性硬质聚氨酯泡沫塑料(RPUFs)。采用一关式自由上升法在密闭模具中生产tfs填充rpuf。采用自由体积变化法评价了最终泡沫的力学性能和水蒸气渗透性(WVP)特性与TFFs载荷的关系。利用正电子湮灭寿命光谱(PALS)进行自由体积分析,并利用通用测试机测定其力学和WVP特性。PALS研究结果表明,TFFs与RPUF基体的掺入导致自由体积显著减小,这是由于TFFs作为填充材料,并在组分之间形成强的次级键。此外,泡沫的拉伸强度和伸长率随着TFFs的增加而下降,这是由于聚氨酯链的空间排列和取向能力受到明显的限制,因为缺乏足够的自由体积使链能够自由移动。至于压缩测试,由于tff干扰了异氰酸酯结构域的有序组织,所有负载tff的rpuf的性能都大大降低。此外,冲击试验结果表明,在RPUF基体中加入TFFs,由于聚合物链的迁移性受到限制,导致整个基体的冲击能量离域不足。此外,WVP的显著减少是由于空位数量的减少和由大约60%的亲水性蛋白(尤其是胱氨酸)组成的角蛋白的构成的减少。总而言之,本研究建立了自由体积与负载tfs的rpuf特性之间的紧密联系。图形抽象
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来源期刊
Journal of Cellular Plastics
Journal of Cellular Plastics 工程技术-高分子科学
CiteScore
5.00
自引率
16.00%
发文量
19
审稿时长
3 months
期刊介绍: The Journal of Cellular Plastics is a fully peer reviewed international journal that publishes original research and review articles covering the latest advances in foamed plastics technology.
期刊最新文献
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