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EFFECT OF AIR RELEASE AGENTS ON PERFORMANCE RESULTS OF FABRIC LINED BUSHINGS

机译:空气释放剂对织物衬砌衬套性能结果的影响

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A configuration of a plain (sliding) bearing system is the use of a reinforced fabric comprising a woven structure of polytetrafluoroethylene (PTFE) and other fibers integrated with a phenolic resin system used to both encapsulate the fibrous materials and provide adhesion to metallic and other substrates. This construction promotes dimensional stability and improves thermal conductivity. These PTFE linings offer exceptionally low coefficient friction. The bushing is recommended for high loads when combined with low surface speeds. These fully self-lubricating bushings offer good contamination resistance, no stick-slip and excellent cold flow resistance. This technique has shown longer life of 7 to 10 times that of standard steel-backed, bronze-sintered and PTFE overlay. Proprietary self-lubricating PTFE fibers are applied directly to the steel. This polytetrafluoroethylene is woven onsite and applied directly to the steel. The woven liner is compressible and able to absorb distortions in mating surfaces. PTFE fabrics processed with phenolic resins can entrap air within the cured fabric liner. The entrapped air has the potential to affect bearing performance by reduction of bonding area and reduction in load carrying capabilities. Air release agents can be used to limit the amount of air entrapment within the liner system. The intent of this research is to determine what, if any, affect the addition of commercially available air release agents would have on PTFE bearing performance. Experimental wear testing at various static and dynamic bearing conditions with and without contamination (de-ice fluid), including at high temperature (325°F) were conducted on eighteen specimens. Peel strength test were also conducted. All these tests were conducted based on prevalent industry standards. Parameters of static load resistance (deflection and permanent set) and loaded torque were found to be unaffected by the use of an air release agent when compared to baseline articles manufactured without such air releasing agents. Results showed that by integration of a commercially available air release agent into the processing of a PTFE based, phenolic resin bearing liner system, one can reduce variability and help stabilize wear performance. Specimens prepared with air release agent showed improved oscillation (fatigue) test results. Further, air release agent also resulted in a 35% increase in peel strength performance when tested per industry standard methods. Contamination with de-ice fluid showed no negative performance results. While the investigations here used only one ratio of additive among all tested bearings, but other concentrations are possible. Authors would like to pursue additional studies in future to determine the amount of air release agent that can reliably be added to remove the maximum air release without affecting the overall bearing performance. By finding this, a threshold of additive can also be determined.
机译:平板(滑动)轴承系统的配置是使用包含聚四氟乙烯(PTFE)的织造结构的增强织物和与酚醛树脂系统一体化的其他纤维,用于封装纤维材料并为金属和其他基材提供粘附性。这种结构促进了尺寸稳定性并提高了导热性。这些PTFE衬里提供了极低的系数摩擦。当与低表面速度结合时,建议使用衬套。这些完全自润滑的衬套提供了良好的污染抗性,无粘滑和优异的冷流量。该技术表现出较长的寿命为标准钢背衬,青铜烧结和PTFE覆盖层的寿命为7至10倍。专有的自润滑PTFE纤维直接施加到钢上。该聚四氟乙烯在现场编织并直接施加到钢上。编织衬垫可压缩,能够吸收配合表面的扭曲。用酚醛树脂加工的PTFE织物可以夹住固化织物衬里内的空气。夹带空气具有通过减少粘合面积和减少负载承载能力来影响轴承性能。空气释放剂可用于限制衬里系统内的空气夹带量。该研究的目的是确定什么,如果有的话,影响商业上可获得的空气脱模剂的添加将在PTFE轴承性能下。在具有且不污染(De-冰流体)的各种静态和动态轴承条件下的实验磨损测试,包括在高温(325°F)上,在18个标本上进行。还进行了剥离强度试验。所有这些测试都是根据普遍存在的行业标准进行的。与在没有这种空气释放剂的基线制品相比,发现静载荷电阻(偏转和永久集)和装载扭矩的参数未受使用空气脱模剂的影响。结果表明,通过将市售的空气脱模剂整合到基于PTFE的PTFE的酚醛树脂轴承衬垫系统中,可以降低可变性并有助于稳定磨损性能。用空气脱模剂制备的标本显示出改善的振荡(疲劳)测试结果。此外,在每种行业标准方法测试时,空气脱模剂也导致剥离强度性能增加了35%。用脱冰流体的污染显示没有负性能结果。虽然这里的调查仅在所有测试轴承中使用了一种添加剂的比例,但其他浓度是可能的。作者希望将来追求额外的研究,以确定可靠地添加的空气脱模剂,以消除最大空气释放,而不会影响整体轴承性能。通过找到此,还可以确定添加添加剂的阈值。

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