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IDENTIFICATION OF FORCE COEFFICIENTS IN A SQUEEZE FILM DAMPER WITH A MECHANICAL END SEAL- CENTERED CIRCULAR ORBIT TESTS

机译:用机械端封闭中心圆形轨道测试识别挤压膜阻尼器中的力系数

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The paper presents parameter identification measurements conducted on a squeeze film damper (SFD) featuring a non-rotating mechanical seal that effectively eliminates lubricant side leakage. The SFD-seal arrangement generates dissipative forces due to viscous and dry-friction effects from the lubricant film and surfaces in contact, respectively. The test damper reproduces an aircraft application that must contain the lubricant for extended periods of time. The test damper journal is 2.54 cm in length and 12.7 cm in diameter, with a nominal clearance of 0.127 mm. The damper feed end opens to a plenum filled with lubricant, and at its discharge grooved section, four orifice ports evacuate the lubricant. In prior publications (ASME Paper GT2006-90782, IJTC2006-12041), single frequency force excitation tests were conducted, without and with lubricant in the squeeze film land, to determine the seal dry-friction force and viscous damping force coefficients. Presently, further measurements are conducted to identify the test system and SFD force coefficients using two sets of flow restrictor orifice sizes (2.8 mm and 1.1 mm in diameter). The flow restrictors regulate the discharge flow area, and thus control the oil flow through the squeeze film. The experiments also include measurements of dynamic pressures at the squeeze film land and at the discharge groove. The magnitude of dynamic pressure in the squeeze film land is nearly identical for both sets of flow restrictors, and for small orbit radii, dynamic pressures in the discharge groove have peak values similar to those in the squeeze film land. The identified parameters include the test system damping and the individual contributions from the squeeze film, dry friction in the mechanical seal and structure remnant damping. The identified system damping coefficients are frequency and motion amplitude dependent due to the dry friction interaction at the mechanical seal interface. Squeeze film force coefficients, damping and added mass, are in agreement with simple predictive formulas for an uncavitatedlubricant condition and are similar for both flow restrictor sizes. The SFD-mechanical seal arrangement effectively prevents air ingestion and entrapment and generates predicable force coefficients for the range of frequencies tested.
机译:本文呈现了在挤压膜阻尼器(SFD)上进行的参数识别测量,其具有有效消除润滑剂侧泄漏的非旋转机械密封件。 SFD密封装置由于润滑油膜和接触的表面的粘性和干摩擦效应分别产生耗散力。测试阻尼器再现飞机应用,该飞机应用必须长时间包含润滑剂。试验轴颈的长度为2.54厘米,直径为12.7厘米,标称间隙为0.127毫米。阻尼器进料结束打开到充满润滑剂的压力罩,并且在其排出的沟槽部分,四个孔口疏散润滑剂。在现有出版物(ASME纸GT2006-90782,IJTC2006-12041)中,在挤压膜焊盘中进行单频型励磁试验,没有润滑剂,以确定密封的干摩擦力和粘性阻尼力系数。目前,进行进一步测量以使用两组流量限制孔尺寸(直径为2.8mm和1.1mm)来识别测试系统和SFD力系数。流动限制器调节排出流量面积,从而控制通过挤压膜的油流。实验还包括挤压膜陆地和排放槽处的动态压力的测量。对于两组流动限制器,并且对于小轨道半径,挤压膜土地中的动压幅度几乎相同,排出槽中的动态压力具有类似于挤压膜焊盘的峰值。所识别的参数包括测试系统阻尼和来自挤压膜的各个贡献,机械密封的干摩擦和结构残余阻尼。由于机械密封界面处的干摩擦相互作用,所识别的系统阻尼系数是频率和运动幅度。挤压膜力系数,阻尼和增加质量,与用于未经请养的储液体状况的简单预测公式一致,并且对于两个流动限制器尺寸相似。 SFD-机械密封装置有效地防止空气摄取和挤压,并为测试的频率的范围产生可预定的力系数。

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