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导电中密度纤维板的开发——碳含量和树脂类型的评估

Development of an Electrically Conductive MDF Panel-Evaluation of Carbon Content and Resin Type.

作者信息

Tschannen Christof, Shalbafan Ali, Thoemen Heiko

机构信息

Institute for Materials and Wood Technology, Bern University of Applied Sciences (BFH), CH-2500 Biel, Switzerland.

Department of Wood and Paper Science and Technology, Faculty of Natural Resources and Marine Sciences, Tarbiat Modares University, Noor P.O. Box 46414-356, Iran.

出版信息

Polymers (Basel). 2023 Feb 11;15(4):912. doi: 10.3390/polym15040912.

Abstract

Electronics in furniture and construction materials, in particular technologies which allow for a flexible and cable-free connection of electronics in such materials, are gaining broader interest. This study shows a further development of a concept to obtain highly conductive medium-density fibreboard panels (MDF) for furniture application. MDF were produced using two mixing processes (wet and dry) for wood and carbon fibres to investigate the effects of resin type (urea formaldehyde (UF) and polymeric methylene diphenyl diisocyanate (pMDI)) and carbon fibre content on their mechanical, physical, and electrical properties. Overall, wet mixed fibres showed better electrical but reduced mechanical properties. Modulus of elasticity (MOE) and bending strength (MOR) values of 3500 MPa and 35 MPa, respectively, and internal bond (IB) values of 0.45 to 0.65 MPa with electrical conductivities of up to 230 S/m were achieved. The technology has been successfully implemented in a demonstration object showing the application in a small piece of furniture.

摘要

家具和建筑材料中的电子产品,特别是那些能够实现此类材料中电子产品灵活且无电缆连接的技术,正受到越来越广泛的关注。本研究展示了一种概念的进一步发展,即获得用于家具应用的高导电中密度纤维板(MDF)面板。采用两种木材和碳纤维混合工艺(湿法和干法)生产MDF,以研究树脂类型(脲醛(UF)和聚合亚甲基二苯基二异氰酸酯(pMDI))和碳纤维含量对其机械、物理和电气性能的影响。总体而言,湿法混合纤维显示出更好的导电性,但机械性能有所降低。分别获得了3500 MPa的弹性模量(MOE)和35 MPa的抗弯强度(MOR)值,以及0.45至0.65 MPa的内结合强度(IB)值,电导率高达230 S/m。该技术已成功应用于一个展示对象,展示了其在一件小家具中的应用。

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