首页> 外文会议>The Spring Technical Meeting of the Rubber Division, American Chemical Society >EXPERIMENTAL AND THEORETICAL INVESTIGATIONS ON ELASTOMERS WITH TWO CROSS-LINKING SYSTEMS OF DIFFERENT LENGTHS VIEWED AS BIMODAL NETWORKS
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EXPERIMENTAL AND THEORETICAL INVESTIGATIONS ON ELASTOMERS WITH TWO CROSS-LINKING SYSTEMS OF DIFFERENT LENGTHS VIEWED AS BIMODAL NETWORKS

机译:用不同长度的两个交联系统进行弹性体的实验和理论研究,被视为双峰网络

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A review with 36 references discussing the chemistry and the structure-property relationship of elastomers cured with two cross-linking systems of different chain lengths such as sulfur and the polymerization products of p-benzoquinone and viewed as bimodal networks.These exceptional networks have shown remarkable improvements in the overall mechanical properties which are anticipated to be due to the non-Gaussian effects known for bimodal networks and evident by the anomalous upturn in the modulus values in Mooney-Rivlin stress-strain data representations.Proton and ~(13)C NMR as well as energy minimization calculations were used to study the chemical structures and single chain contributions of polyquinones.Nuclei bending of these oligomers have shown to be greatly influenced by the restricted torsional behavior due to the presence of the hydrogen bonds between the benzenoid nuclei.Intrinsic atomic-level forces for the networks were evaluated using molecular dynamics techniques and showed that while the forces acting on the junction points of the cross-linking segments and the elastomeric chains had no apparent change as a consequence of the networks' bimodal formation,forces acting on the short chains of the bimodal networks are of much higher values as compared to those of unimodal networks.The presence of the relatively long polyquinone chains in the bimodal networks has caused the short sulfur chains to stretch to its maximum extensibility and no longer can increase its end-to-end distance separation by simple rotations about its skeletal bonds.Limited chain extensibility of the short chains resulting from the deformation of the bond angles and bond lengths has lead to higher potential energies.Studies on the swollen bimodal networks have validated the above conclusions since swelling of the networks will prevent the elastomeric chains from undergoing possible strain-induced crystallization during the stress-strain experiments and any abnormalities in the mechanical behavior of these networks must be therefore the result of the limited extensibility of the short chains of the networks.
机译:用36参考文献讨论了弹性体的化学和结构 - 性质关系用不同链条长度的两个交联系统,如硫和p-苯并醌的聚合产物,并视为双峰网络。这些特殊网络表现出显着的预期的整体机械性能的改进是由于双峰网络已知的非高斯效果,并且由Mooney-rivlin应变数据表示模数值中已知的非立方逆转.Proton和〜(13)C NMR除了能量最小化计算中,使用能量最小化计算来研究化学结构和单链贡献。这些低聚物的Nuclei弯曲表现出由于苯单核之间存在氢键而受到限制扭转行为的大大影响。intrinsic使用分子动力学技术和S评估网络的原子水平力当虽然作用于交联段的交界点和弹性体链的部队由于网络的双峰形成而没有明显的变化,但在双峰网络的短链上作用的力量具有更高的值与单向网络的那些相比。双峰网络中相对长的多醌链的存在导致短硫链延伸到其最大可伸展性,并且不再通过简单的旋转来增加其端到端距离分离。关于其骨骼的简单旋转债券。由于键角和键长度的变形而导致的短链的链可扩展性导致较高的潜在能量。肿胀的双峰网络上已经验证了上述结论,因为网络的肿胀将防止弹性链正在进行中在应力 - 应变实验期间可能的应变诱导的结晶以及机械中的任何异常因此,这些网络的一个人的行为必须是网络短链可扩展性的有限的结果。

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