...
首页> 外文期刊>High temperatures-high pressures >The role of rubber rheology in tire tread extrusion:a review
【24h】

The role of rubber rheology in tire tread extrusion:a review

机译:橡胶流变学在轮胎胎面挤出中的作用:综述

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The purpose of this review paper is to demonstrate the importance of rheology in rubber processing. Using the economically significant example of the extrusion of treads for vehicle tires, typical challenges in the processing of rubber are presented and their rheological origins are examined. The structure-property relationships between the components of a rubber compound and the rheological properties are considered in order to understand the cause-and-effect relationships. The most important mathematical models are presented to describe the complex flow behaviour of rubbers. In this context, shear and elongation viscosity, viscoelasticity, time-temperature superposition, wall slip and crosslinking kinetics are discussed. Important methods for characterizing the rheological properties are then discussed in the context of the rheological phenomena relevant for tread extrusion. Particular attention is paid to phenomenological rheometry in laboratory extrusion, high pressure capillary rheometry, oscillation rheometry and elongation rheometry. Finally, it is summarised what the causes of the typical processing problems are, with which parameters these can be described and with which methods these can be characterised. It is shown, that the typical processing problems, such as die swell and melt fracture, cannot be explained by the frequently used shear viscosity alone. Rather, the normal stresses occurring under the complex stress conditions of the viscoelastic rubber must be taken into account to explain these phenomena.
机译:本综述论文的目的是证明流变学在橡胶加工中的重要性。利用胎面胎面挤出的经济上显着的实例,提出了橡胶加工中的典型挑战,并检查它们的流变起源。考虑橡胶化合物组分与流变性质之间的结构性质关系,以了解原因和效应关系。提出了最重要的数学模型来描述橡胶的复杂流动行为。在这种情况下,讨论了剪切和伸长率粘度,粘弹性,时间温度叠加,壁滑移和交联动力学。然后在对胎面挤出相关的流变现象的背景下讨论表征流变性质的重要方法。在实验室挤出,高压毛细管流变学,振荡流变物和伸长流变学中,特别注意在实验室挤出,高压毛细管流变率,振动计和伸长流变学中支付了特殊的注意。最后,总结了典型处理问题的原因是什么,可以描述这些参数,并且可以表征这些方法。结果表明,典型的处理问题,例如模具膨胀和熔体骨折,不能通过常用的剪切粘度来解释。相反,必须考虑在粘弹性橡胶的复合应力条件下发生的正常应力以解释这些现象。

著录项

  • 来源
    《High temperatures-high pressures》 |2020年第4期|299-342|共44页
  • 作者单位

    Institute for Plastics Processing in Industry and Craft at RWTH Aachen University Seffenter Weg 201 52074 Aachen Germany;

    Institute for Plastics Processing in Industry and Craft at RWTH Aachen University Seffenter Weg 201 52074 Aachen Germany;

    Institute for Plastics Processing in Industry and Craft at RWTH Aachen University Seffenter Weg 201 52074 Aachen Germany;

    Institute for Plastics Processing in Industry and Craft at RWTH Aachen University Seffenter Weg 201 52074 Aachen Germany;

    Institute for Plastics Processing in Industry and Craft at RWTH Aachen University Seffenter Weg 201 52074 Aachen Germany;

    Institute for Plastics Processing in Industry and Craft at RWTH Aachen University Seffenter Weg 201 52074 Aachen Germany;

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

    Die swell; elongation viscosity; extrusion; melt fracture; rheology; rheometry; rubber; shear viscosity; tire tread; viscoelasticity;

    机译:膨胀;伸长率粘度;挤压;熔体骨折;流变学;流变学;橡胶;剪切粘度;轮胎胎面;粘弹性;
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号