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Treasuring waste lignin as superior reinforcing filler in high cis-polybutadiene rubber: A direct comparative study with standard reinforcing silica and carbon black

机译:珍藏废木质素作为高CIS-聚丁二烯橡胶中的优质增强填料:具有标准增强二氧化硅和炭黑的直接对比研究

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摘要

There has been ever raising concern in last few decades about the utilization of biomass for different commercial applications such as filler materials in rubber composites. In this context, an interesting pathway has been proposed to develop such composites by introducing waste lignin as a reinforcing constituent in high cis-polybutadiene rubber (BR). With a judicious selection of rubber curing ingredients and, simultaneously, adopting suitable solid-state mixing protocols, particularly, a relatively high-temperature multi-steps melt-mixing process (above the glass transition temperature of lignin), rubber composites with an outstanding mechanical performance were prepared. The reinforced rubber composites with 50 (weight) parts lignin loading per hundred parts of rubber (phr) offer similar to 10 MPa tensile strength (TS), similar to 276% elongation at break (EB), and similar to 3.51 MPa tensile stress at 100% elongation (so-called rubber modulus M-100). These values are superior when compared with the composites comprised with standard reinforcing carbon black (similar to 8.5 TS, similar to 224% EB, similar to 2.79 M-100) and even with a silica-silane system (similar to 7.34 TS, similar to 229% EB, similar to 2.44 M-100) with same filler loading. The unique combination of the curing packages and four-stage mixing process allowed us to establish a homogeneous and fine dispersion of lignin. Furthermore, this is the first time that available models of rubber reinforcement are applied to the description of the reinforcement mechanisms of lignin in a soft elastomer involving various aspects like filler-filler interaction, rubber-filler interactions, critical strains for destroying the filler-filler network, effective filler volume fractions, shape factor, etc. The developed compounding methods for BR and their characterization and modeling can be easily applied to other commercial rubbers facilitating a real breakthrough in developing cheap and bio-based high-performance rubber composites. (C) 2021 Elsevier Ltd. All rights reserved.
机译:已经有过在提高约少生物质不同的商业应用程序的利用率过去几十年的关注,如橡胶复合材料的填充材料。在这方面,一个有趣的途径已经提出通过引入垃圾开发这样的复合材料的木质素作为高顺式聚丁二烯橡胶(BR)增强成分。用的明智选择橡胶固化的成分和,同时,采用合适的固态混合协议,具体地,一个相对高的温度下多步熔融混合具有优异的机械处理(上述木质素的玻璃化转变温度),橡胶复合材料性能制备。的增强的橡胶复合材料与50(重量)份木质素每百份橡胶(phr)的提供类似的至10MPa的拉伸强度(TS),类似于276%伸长率的负荷断裂(EB),并且类似于3.51兆帕的拉伸应力在100%伸长率(所谓的橡胶模量M-100)。当与由具有标准补强炭黑(类似于8.5 TS,类似于224%EB,类似2.79 M-100)中的复合材料相比,甚至与二氧化硅 - 硅烷系统(类似于7.34 TS,类似于这些值是优越229%的EB,以相同的填料加载量相似2.44 M-100)。固化封装和四阶段混合工艺的独特结合使我们能够建立木质素的均匀和精细分散。另外,这是第一次,橡胶补强的可用模型被施加到木质素的增强机制的描述中涉及多种因素,如填料 - 填料相互作用,橡胶填料的相互作用,用于破坏填料 - 填料临界毒株的软的弹性体网络,有效填料体积分数,形状因子等的发达混配方法BR和它们的表征和建模可容易地应用于其它商业橡胶促进显影廉价和基于生物的高性能橡胶复合材料一个真正的突破。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第25期|126841.1-126841.12|共12页
  • 作者单位

    Leibniz Inst Polymerforsch Dresden eV D-01069 Dresden Germany|Tech Univ Dresden Fac Mech Sci & Engn D-01069 Dresden Germany;

    MCKV Inst Engn Chem Dept Liluah 711204 Howrah India;

    Leibniz Inst Polymerforsch Dresden eV D-01069 Dresden Germany;

    Leibniz Inst Polymerforsch Dresden eV D-01069 Dresden Germany|Tech Univ Dresden Inst Mat Sci D-01062 Dresden Germany;

    Hari Shankar Singhania Elastomer & Tyre Res Inst Plot 437 Mysore 570016 Karnataka India;

    Hari Shankar Singhania Elastomer & Tyre Res Inst Plot 437 Mysore 570016 Karnataka India;

    Hari Shankar Singhania Elastomer & Tyre Res Inst Plot 437 Mysore 570016 Karnataka India;

    Hari Shankar Singhania Elastomer & Tyre Res Inst Plot 437 Mysore 570016 Karnataka India;

    Leibniz Inst Polymerforsch Dresden eV D-01069 Dresden Germany|Tech Univ Dresden Fac Mech Sci & Engn D-01069 Dresden Germany;

    Leibniz Inst Polymerforsch Dresden eV D-01069 Dresden Germany|Tech Univ Dresden Fac Mech Sci & Engn D-01069 Dresden Germany;

    Leibniz Inst Polymerforsch Dresden eV D-01069 Dresden Germany|Tampere Univ Fac Engn & Nat Sci Engn Mat Sci Tampere 33014 Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rubber-lignin composites; Bio-filler; Rubber reinforcement; Lignin rubber interaction; Waste utilization;

    机译:橡胶 - 木质素复合材料;生物填料;橡胶加固;木质素橡胶相互作用;废物利用;

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