纺织表面优化氧化物陶瓷涂层系列生产的先进机器人辅助工艺

R. Gadow, K. Niessen, A. Candel
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引用次数: 1

摘要

为使热喷涂技术在纺织工业中成为一种具有发展前景的新型涂层技术,研制了产业用纺织品连续涂层中试装置。为了将热喷涂技术应用于温度敏感型和柔性纤维结构,必须考虑两个主要的困难。首先,纺织织物的柔性结构必须进行固定和拉伸,以获得足够的机械支撑。其次,熔融颗粒的动能和热能以及热气射流会对纤维及其编织结构造成机械和化学上的破坏。专门设计的绕线设备,可以使各种织物固定和拉伸,使缠绕织物的涂层从“线圈到线圈”。使用该设备,即使是温度敏感的织物,如棉或聚酯,也可以通过大气等离子喷涂或电弧丝喷涂来喷涂芳纶,碳和氧化物陶瓷织物,以满足更高沉积速率的要求。织物卷板宽度可达1500毫米,可以在一次程序中连续涂覆具有明确定义的预应力。
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Advanced Robot Assisted Process for the Series Production of Optimized Oxide Ceramic Coatings on Textile Surfaces
A pilot plant equipment for continuous coating of technical textiles is implemented to establish thermal spraying as a new and promising coating technique in the textile industry. In order to apply thermal spraying to temperature sensitive and flexible fiber structures two main difficulties have to be taken into account. First, the flexible structure of a textile fabric has to be fixed and stretched to achieve a sufficient mechanical support. Second, the kinetic and thermal energy of the molten particles and the hot gas jet may damage the fibers and their woven structure both mechanically and chemically. Special winding equipment is designed to allow various fabrics to be fixed and stretched in a way that enables the coating of wound fabrics from "coil to coil". With this equipment even temperature sensitive fabrics, like cotton or polyester, but also aramide, carbon and oxide ceramic fabrics are coated by atmospheric plasma spraying or electric arc wire spraying in the case that higher deposition rates are required. Fabric coils up to a web width of 1500 mm can be coated continuously with a well-defined pre-stress in one single procedure.
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