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The effect of fillers on the wear resistance of thermoplastic polymeric coatings

机译:填料对热塑性聚合物涂料耐磨性的影响

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Thermoplastic polymer matrix composites are used as coating materials for the bore of downhole tubulars used as water injectors in the oil industry. These coatings are primarily employed for corrosion resistance but must also resist mechanical damage from the inspection tools lowered at speed down the tubing. This mechanical damage is produced by the wearing action of the supporting wire against the coating (wireline wear) and by direct impact of the tool against the coating. Filler materials are added to these polymeric coatings and these additions are known to affect the wear resistance of the coating. In this study, three types of thermoplastic polymeric coatings were subjected to wear tests. Both abrasive wear tests―using silicon carbide papers as the abrasive, and wireline wear tests, utilising a true tribocouple consisting of the coating and a length of "slickline" wire on a modified pin on disc apparatus―were carried out to study the wear resistance of these three coatings. Detailed scanning electron microscopy was performed on the wear tracks produced to elucidate the wear mechanism and in particular the role of fillers. In abrasive wear a polymer with a brittle filler has a higher wear rate than an unfilled polymer due to the fact that the brittle fillers can be easily fractured and detached from the polymer matrix. In general, the weak bond between the filler and a thermoplastic polymer matrix leads to the filler particles detaching from the matrix causing enhanced wear. In wireline wear the presence of voids and unmelted particles is particularly deleterious.
机译:热塑性聚合物基复合材料被用作石油工业中用作注水器的井下管孔的涂层材料。这些涂层主要用于耐腐蚀,但也必须抵抗检查工具随管道下降而降低的机械损坏。这种机械损伤是由支撑线对涂层的磨损作用(钢丝磨损)和工具对涂层的直接冲击产生的。将填料材料添加到这些聚合物涂层中,并且已知这些添加会影响涂层的耐磨性。在这项研究中,对三种类型的热塑性聚合物涂层进行了磨损测试。进行了两种磨损试验(使用碳化硅纸作为磨料)和电缆磨损试验,使用了由涂层和圆盘设备上经过改进的销钉上的一段“光滑线”组成的真正的摩擦偶,以研究耐磨性这三种涂料中的一种。对产生的磨损轨迹进行了详细的扫描电子显微镜检查,以阐明磨损机理,特别是填料的作用。在磨料磨损中,具有脆性填料的聚合物比未填充的聚合物具有更高的磨损率,这是由于以下事实:脆性填料可以容易地破裂并从聚合物基体上脱离。通常,填料与热塑性聚合物基体之间的弱结合导致填料颗粒从基体上脱落,从而导致磨损加剧。在钢丝绳磨损中,空隙和未熔化颗粒的存在特别有害。

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