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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Linear viscoelastic relaxation modulus of polydisperse poly (dimethylsiloxane) melts containing unentangled chains
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Linear viscoelastic relaxation modulus of polydisperse poly (dimethylsiloxane) melts containing unentangled chains

机译:包含非缠结链的多分散聚二甲基硅氧烷熔体的线性粘弹性松弛模量

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This work analyzes the relationship between the shear relaxation modulus of entangled, linear and flexible homopolymer blends and its molecular weight distribution (MWD) when a fraction of the sample contains chains with molecular weight M lower than the effective critical molecular weight between entanglements Mc(eff). This effective critical parameter is defined in terms of the critical molecular weight between entanglements M-c of the bulk polymer that forms the physical network and the effective mass fraction Wc(eff) of the unentangled chains. In the terminal zone of the linear viscoelastic response, the double reptation mixing rule for blended entangled chains and a modified law for the relaxation time of chains in a polydisperse matrix are considered, where the effect of chains with M < Mc(eff) is included. Although chain reptation with contour length fluctuations and tube constraint release are still the relevant mechanisms of chain relaxation in the terminal zone when the polydispersity is high, it is found that the presence of a fraction of molecules with M < Mc(eff) modifies substantially the tube constrain release mode of chain relaxation. In this sense, a modified relaxation law for polymer chains in a polydisperse entangled melt that includes the effect of the MWD of unentangled chains is proposed. This law is validated with rheometric data of linear viscoelasticity for well-characterized polydimethylsiloxane (PDMS) blends and their MWD obtained from size exclusion chromatography. The short time response of PDMS, which involves the glassy modes of relaxation, is modeled by considering Rouse diffusion between entanglement points of chains with M > Mc(eff). This mechanism is independent from the MWD. The unentangled chains with M < Mc(eff) occluded in the polymer network also follow Rouse modes of relaxation although they exhibit dependence on the MWD. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 26]
机译:这项工作分析了当一部分样品含有分子量M小于缠结之间的有效临界分子量的链时,缠结的,线性和挠性均聚物共混物的剪切松弛模量与其分子量分布(MWD)之间的关系。 )。根据形成物理网络的本体聚合物的缠结M-c与未缠结链的有效质量分数Wc(eff)之间的临界分子量来定义该有效临界参数。在线性粘弹性响应的末端区域,考虑了混合缠结链的双重复制混合规则和多分散基质中链的弛豫时间的修正定律,其中包括了M Mc(eff)的链的缠结点之间的Rouse扩散,对PDMS的短时响应(涉及玻璃的松弛模式)进行建模。此机制独立于MWD。尽管M

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