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首页> 外文期刊>Materials transactions >Effects of Electron Beam Irradiation on Peeling Resistance of Laminated Sheet of High Strength Polypropylene (PP) and Bio-Adaptable Polydimethylsiloxane (PDMS)
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Effects of Electron Beam Irradiation on Peeling Resistance of Laminated Sheet of High Strength Polypropylene (PP) and Bio-Adaptable Polydimethylsiloxane (PDMS)

机译:电子束辐照对高强度聚丙烯(PP)和生物适应性聚二甲基硅氧烷(PDMS)层压板的耐剥离性的影响

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摘要

The effects of homogeneous low voltage electron beam irradiation (HLEBI) on the adhesive force (~(max)F_p, °F_P and ~(min)F_P) and its energy (°?p) of peeling resistance of laminated sheets of bio-adaptable polydimethylsiloxane (PDMS) with transparency and high strength polypropylene (PP) without glue but with sterilization were investigated. Although both ~(max)F_p and °E_P were 14N.m~(-1) and 0.21 J.m~(-1) before treatment, HLEBI enhanced the ~(max)F_p and °E_P up to the maximum values of 34 N.m~(-1) and 0.89 J.m~(-1) of the laminated sheets irradiated at 0.30 MGy, respectively. On the other hand, additional HLEBI reduces the ~(min)F_P, °F_P, ~(min)F_p and °E_P of laminated sheets irradiated at more than 0.22 to 0.65 MGy, although they were apparently larger than those before treatment. In order to investigate the influence of EB irradiation on ~(max)F_p, °F_P, ~(min)F_P and °E_p, electron spin resonance (ESR) signals related to dangling bonds were observed. When HLEBI generated dangling bonds in PP and PDMS, the dangling bonds probably served as reactive and bonding sites for each polymer at the interface. Consequently, HLEBI from 0.22 to 0.65 MGy reinforced the ~(max)F_p, °F_p, ~(min)F_p and °E_p of the laminated sheets. Therefore, it was concluded that HLEBI was probably a useful tool for quick lamination of bio-adaptable PDMS and high strength PP.
机译:均质低压电子束辐照(HLEBI)对生物适应性层压片材的粘合力(〜(max)F_p,°F_P和〜(min)F_P)及其抗剥离能量(°Δp)的影响研究了具有透明性的聚二甲基硅氧烷(PDMS)和无胶但具有灭菌作用的高强度聚丙烯(PP)。尽管〜(max)F_p和°E_P在治疗前均为14N.m〜(-1)和0.21 Jm〜(-1),但HLEBI将〜(max)F_p和°E_P提高到最大值34 Nm〜分别以0.30 MGy辐照的层压片材的(-1)和0.89 Jm〜(-1)。另一方面,额外的HLEBI可以降低层压板的〜(min)F_P,°F_P,〜(min)F_p和°E_P,其辐照度大于0.22至0.65 MGy,尽管它们明显大于处理前的层压板。为了研究EB辐照对〜(F)P,P_F,P_F和P_E的影响,观察了与悬挂键有关的电子自旋共振(ESR)信号。当HLEBI在PP和PDMS中生成悬空键时,悬空键可能充当界面处每种聚合物的反应位和键位。因此,从0.22至0.65MGy的HLEBI增强了层压板的〜(最大)F_p,°F_p,〜(最小)F_p和°E_p。因此,可以得出结论,HLEBI可能是用于快速层压生物适应性PDMS和高强度PP的有用工具。

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