首页> 外文会议>International Conference on Nuclear Engineering >IRRADIATION INDUCED CROSSLINKING IN 'GREEN' POLYLACTIC-ACID (PLA) POLYMERS FOR ENHANCED STRENGTH AND ELEVATED TEMPERATURE APPLICATIONS
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IRRADIATION INDUCED CROSSLINKING IN 'GREEN' POLYLACTIC-ACID (PLA) POLYMERS FOR ENHANCED STRENGTH AND ELEVATED TEMPERATURE APPLICATIONS

机译:“绿色”聚酸(PLA)聚合物中的辐照诱导交联,用于增强强度和升高的温度应用

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This paper presents interdisciplinary (nuclear-mechanical-materials-chemical) engineering technology and results pertaining to use of ionization radiation for tailoring "green", renewable corn-soy based amorphous and crystalline form polymers for use as low-to-high temperature adhesives. Both amorphous and crystalline form polymer forms of such the Polylactic-Acid (PLA) polymer were studied with and without photon irradiation, alongside with and without cross-linking agent. In order to study and enhance the high-temperature application of PLA as a novel, multi-purpose adhesive. small concentrations of the crosslinking agent triallyl isocyanurate (TAIC) were included into molten amorphous and semi-crystalline PLA cast as glue sticks, followed with Co-60 gamma-irradiation. Bond strength variations were studied in tensile mode at room temperature using the resulting adhesive in between two steel dowels (head-to-head bonded) as well as via shear strength testing at elevated temperatures (50-120oC) under a set pre-load of 222 N. It was found that gamma irradiated samples with TAIC exhibited noticeably improved bonding strength, and importantly, such strength can potentially prevail towards 100°C. These are exciting results which offer potential for application for building construction and safety enhancements especially under fires and similar accidents. Samples without TAIC exhibited significant loss of strength past 90°C. The full paper will discuss details of apparatus, modeling and simulation of irradiation dose delivery, testing protocols results, and future enhancements via hybrid neutron-photon-electron irradiation for utility in variety of industrial applications.
机译:本文呈现的跨学科(核 - 机械 - 材料化学方法)工程技术和关于使用电离辐射的用于定制的“绿色”,可再生玉米 - 大豆基于无定形和结晶形式的聚合物用作低到高的温度的粘合剂的效果。这样的聚乳酸 - 乳酸(PLA)聚合物的无定形和结晶形式的聚合物形式进行了研究具有和不具有光子照射,沿着有和没有交联剂。为了研究和提高PLA的高温应用作为一种新的,多用途粘合剂。交联剂三烯丙基异氰脲酸酯(TAIC)的小浓度被纳入熔融无定形和半结晶PLA铸造作为胶棒,随后用Co-60伽马辐射。粘结强度的变化,使用所得到的粘合剂在钢榫钉两者之间在室温下研究了拉伸模式(头 - 头键合)的一组预先负载下经由以及在升高的温度(50-120oC)剪切强度测试222 N.据发现γ照射的样品显示出TAIC显着改善接合强度,重要的是,这样的强度可以潜在为准向100℃。这些是提供应用程序为建设特别是在火灾发生类似事故的建设和安全改进潜力令人振奋的结果。无TAIC样品表现出强度的损失显著过去90℃。全本文将讨论装置,建模和照射剂量递送的模拟的细节,经由混合中子光子电子照射在各种工业应用中的测试方案的结果,和未来的改进实用。

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