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Mechanical and thermal properties of UV‐curable polyurethane and polyurea acrylates

机译:UV固化聚氨酯和聚脲丙烯酸酯的机械和热性能

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AbstractSoft‐segment molecular weight, soft‐segment crystallization, hard‐segment‐type, and reactive diluent level were examined in urea and urethane acrylates. Increasing soft‐segment molecular weight led to a decreased tensile modulus, increased strength, and increased elongation at break. Soft‐segment crystallization increased the modulus below the melting temperature, but decreased the modulus above the melting temperature because crystallization interfered with cross‐linking. Materials with hard segments that allowed for greater phase separation showed a higher modulus, higher ultimate stress, and higher ultimate elongation. Materials with reactive diluents 2‐hydroxyethyl methacrylate (HEMA) andN‐vinyl pyrrolidinone (NVP) showed qualitatively different behavior. HEMA caused the modulus and strength to increase with little effect on elongation up to concentrations of 50 wt ; at higher concentrations, the elongation decreased. NVP also increased the modulus and strength; however, at 40 wt NVP, ultimate elongation increased in a well‐phaseseparated system and decreased in a poorly phase‐separated system. In tensile tests, samples with 40 NVP also showed substantial sample necking and drawing. © 199
机译:摘要对尿素和氨基甲酸乙酯丙烯酸酯的软链段分子量、软链段结晶、硬链段型和活性稀释剂水平进行了检测。软链段分子量的增加导致拉伸模量降低、强度增加和断裂伸长率增加。软段结晶在熔化温度以下增加了模量,但在熔化温度以上降低了模量,因为结晶干扰了交联。具有允许更大相分离的硬段的材料表现出更高的模量、更高的极限应力和更高的极限伸长率。具有活性稀释剂 2-羟乙基甲基丙烯酸酯 (HEMA) 和 N-乙烯基吡咯烷酮 (NVP) 的材料表现出质的不同行为。HEMA使模量和强度增加,对伸长率影响不大,浓度高达50 wt %;在较高浓度下,伸长率降低。NVP还增加了模量和强度;然而,当 NVP 为 40 wt % 时,相分离良好的体系中的极限伸长率增加,而相分离差的体系中的极限伸长率降低。在拉伸试验中,NVP 为 40% 的样品也显示出大量的样品颈缩和拉伸。© 199

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