首页> 外文OA文献 >Effect of temperature on the shaping process of an extruded wood-plastic composite (WPC) profile in a novel post-production process
【2h】

Effect of temperature on the shaping process of an extruded wood-plastic composite (WPC) profile in a novel post-production process

机译:温度对新型木塑复合材料(WPC)型材成型过程的影响

摘要

Wood-plastic composites (WPC) as a result of their ability to be produced from a wide range of materials and mixtures of different materials, including recycled materials and materials hithertosent to waste disposal, have become an area of increasing interest worldwide. Recent changes to environmental legislation mandating higher recycling targets have created additional interest. WPC material is currently used in the manufacture of a number of indoor and outdoor products, but these products are limited to profiles that have uniform cross section due to a lack of suitable post-production processes.The feasibility of producing three-dimensional wood thermoplastic composite products in a novel post-production process using extruded WPC profiles in a press forming method and the effect of temperature on this process are studied in this thesis. The aim of this work was to investigate and characterize the effect of temperature as the key parameter in the shaping process and to improve forming quality by regulating the process temperature based on the material characteristics.Experiments undertaken included primary tests to investigate the feasibility of the post-extrusion shaping process using a press forming method and tests to establish the key factors determining the forming process of the thermoplastic WPC sheet. In these tests, the forming quality of the samples was investigated based on material characteristics such as variation in thickness, surface roughness and fiber direction. Preliminary forming tests revealed the importance of temperature as the key process parameter. A diverse set of related tests including cooling rate measurements, flexural tests, tensile tests, conveyor surface energy measurements and numerical simulation were conducted to ascertain material behavior in the shaping process with the aim of improving the forming process.The results showed that the proposed shaping process is feasible and forming can be done in an uninsulated WPC post-production line. The cooling rate is a key factor in the process and needs to be considered carefully in order to find the right time for the pressing process. Additionally, the cooling rate sets limits on the slowest web speed attainable. Predominant fiber orientation also affects the forming result. The samples produced were accurate with respect to geometrical shape and deformation of the product after cooling. Material variation of the primary extruded WPC sheet affected the quality of the final product; however, the shaping process improved the quality of the material, i.e., resulted in reduced surface roughness and thickness variation. Material behavior under pressing forces needs to be considered during design of the forming tools. Numerical simulation was performed using an elasto-visco-plastic material model and the simulation results were in good agreement with experimental values, indicating the feasibility of using a simulation approach for preliminary evaluation of the formability of different WPCs based on their material characteristics. At elevated temperatures, the studied WPC material showed more ductile behavior and a change in ultimate tensile strain. At higher strain rate, increasing the temperature increased the ultimate strain capacity significantly, whereas at lower strain rate, increasing the temperature decreased the ultimate strain capacity of the material.
机译:木塑复合材料(WPC)由多种材料和不同材料的混合物制成的能力的结果,包括回收材料和迄今为止废物处理的材料,已成为世界范围内越来越受到关注的领域。环境法规的最新变化要求更高的回收目标,引起了更多关注。 WPC材料目前用于制造许多室内和室外产品,但由于缺乏合适的后期生产工艺,这些产品仅限于横截面均匀的型材。生产三维木质热塑性复合材料的可行性本文研究了在挤压成型方法中使用挤压的WPC型材在新颖的后期生产过程中生产产品,以及温度对该过程的影响。这项工作的目的是研究和表征温度在成型过程中的关键参数的影响,并通过根据材料特性调节工艺温度来提高成型质量。所进行的实验包括初步测试,以研究成型后的可行性。 -使用压力成型方法进行挤压成型过程和测试,以确定决定热塑性WPC片材成型过程的关键因素。在这些测试中,根据材料特性(例如厚度,表面粗糙度和纤维方向的变化)研究了样品的成型质量。初步成形测试表明,温度是关键工艺参数的重要性。为了改善成型过程,进行了一系列相关测试,包括冷却速率测量,弯曲测试,拉伸测试,输送机表面能测量和数值模拟,以确定材料在成型过程中的行为。结果表明,拟议的成型该工艺是可行的,并且可以在未绝缘的WPC后生产线上进行成型。冷却速度是该过程中的关键因素,需要仔细考虑以便找到合适的压制时间。此外,冷却速度限制了可达到的最慢卷材速度。纤维的主要取向也影响成形结果。所产生的样品关于冷却后产品的几何形状和变形是准确的。初次挤出的WPC片材的材料变化会影响最终产品的质量;然而,成形工艺改善了材料的质量,即降低了表面粗糙度和厚度变化。在设计成形工具时,需要考虑压力作用下的材料性能。使用弹-粘塑性材料模型进行了数值模拟,模拟结果与实验值非常吻合,表明使用模拟方法根据其材料特性初步评估不同WPC的可成形性的可行性。在升高的温度下,研究的WPC材料表现出更大的延展性和极限拉伸应变的变化。在较高的应变速率下,升高温度会显着增加极限应变能力,而在较低的应变速率下,升高温度会降低材料的极限应变能力。

著录项

  • 作者

    Toghyani Amir;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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