首页> 美国卫生研究院文献>Polymers >Effect of Irradiation and Detection of Long-Lived Polyenyl Radicals in Highly Crystalline Ultra-High Molar Mass Polyethylene (UHMMPE) Fibers
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Effect of Irradiation and Detection of Long-Lived Polyenyl Radicals in Highly Crystalline Ultra-High Molar Mass Polyethylene (UHMMPE) Fibers

机译:高结晶超高摩尔质量聚乙烯(UHMMPE)纤维中长寿命聚乙烯基自由基的辐照和检测效果

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摘要

To improve properties such as thermal conductivity, low temperature thermal strain, and creep resistance of ultra-high molar mass polyethylene (UHMMPE) fibers, several researchers have previously undertaken efforts to crosslink these fibers using radiation. Ionizing radiation is commonly used to crosslink bulk UHMMPE in other applications, such as artificial joints. However, UHMMPE fibers differ from bulk UHMMPE in that they have a higher crystallinity (approximately 85% to 90%) and are very highly oriented during manufacturing in which the fibers are stretched 50 to 100 times their original length. Thus, the amorphous fraction of the UHMMPE fibers is also highly ordered. Several experiments were conducted to crosslink the UHMMPE fibers using both low dose rate (gamma) and high dose rate (electron beam) irradiation, all in the absence of oxygen. In all cases, the tensile strength of the fiber was greatly reduced by the irradiation. The oxidation index was also measured for the irradiated samples, and oxidation was not found to play a major role in the reduction of tensile strength in the fibers after irradiation. While this work did not achieve the desired result of improving the mechanical properties of the UHMMPE fiber, a significant result was found. The electron paramagnetic resonance (EPR) spectrum of the UHMMPE fibers was measured shortly after irradiation, and a mixture of allyl and alkyl radicals were detected. The irradiated samples were stored in dark ambient conditions for at least six years, then reexamined using EPR for free radical characterization. Surprisingly, the gamma-irradiated samples showed clear evidence of long-lived polyenyl radicals present in the material. Free radicals are very reactive species that will typically migrate to the surface of the crystalline domain and decay in a relatively short time through various reactions in the amorphous regions. It is hypothesized herein that due to the high crystallinity and large anisotropy of the highly drawn UHMMPE fiber, the polyenyl radicals were trapped in the crystal phase and were unable to migrate and decay. An experiment was performed to test this hypothesis, by which samples of the irradiated fibers were heated to temperatures above first the alpha relaxation and then melting point of polyethylene, and EPR measurements were taken. Results showed that the polyenyl radical signal persisted below the Tm, but was rapidly eliminated upon melting of the crystals. These experiments support the hypothesis that the long-lived polyenyl radicals are trapped in the crystalline region of the polyethylene fibers.
机译:为了改善诸如超高摩尔质量聚乙烯(UHMMPE)纤维的导热性,低温热应变和抗蠕变性等特性,一些研究人员先前已经进行了努力,使它们通过辐射交联。电离辐射通常用于在其他应用(例如人工关节)中交联大体积UHMMPE。但是,UHMMPE纤维与块状UHMMPE的不同之处在于,它们具有较高的结晶度(大约85%至90%),并且在制造过程中具有非常高的定向性,在制造过程中,纤维被拉伸了其原始长度的50至100倍。因此,UHMMPE纤维的无定形部分也非常有序。进行了几项实验,以低剂量率(γ)和高剂量率(电子束)辐射交联UHMMPE纤维,所有这些过程均不存在氧气。在所有情况下,通过照射,纤维的拉伸强度大大降低。还测量了辐照样品的氧化指数,未发现氧化在辐照后降低纤维的拉伸强度中起主要作用。尽管这项工作未能获得改善UHMMPE纤维机械性能的预期结果,但发现了明显的结果。辐照后不久测量UHMMPE纤维的电子顺磁共振(EPR)光谱,并检测到烯丙基和烷基的混合物。辐照的样品在黑暗的环境条件下保存至少六年,然后使用EPR重新检查其自由基特性。出乎意料的是,γ射线辐照的样品清楚地表明了材料中存在长寿命的多烯基。自由基是非常活泼的物质,通常会迁移到晶体结构域的表面,并通过非晶态区域中的各种反应在较短的时间内衰减。本文假设由于高度拉伸的UHMMPE纤维的高结晶度和大的各向异性,多烯基被困在晶相中并且不能迁移和衰减。进行实验以检验该假设,通过该实验将辐照纤维的样品首先加热至高于聚乙烯的α弛豫和随后的熔点的温度,并进行EPR测量。结果表明,多烯基自由基信号在Tm以下持续存在,但在晶体熔化后迅速消除。这些实验支持以下假设:长寿命的多烯基被困在聚乙烯纤维的结晶区域中。

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