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Reliability and Life Study of Hydraulic Solenoid Valve - Part 2 - Experimental Study

机译:液压电磁阀的可靠性和寿命研究 - 第2部分 - 实验研究

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The current work studies the reliability of a solenoid valve (SV) used in automobile transmissions through a joint theoretical and experimental approach. The goal of this work is to use accelerated tests to characterize SV failure and correlate the results to new comprehensive finite element models (Part 1). A custom test apparatus has been designed and built to simultaneously monitor and actuate up to four SVs. The test apparatus is capable of applying a controlled duty cycle, current and actuation frequency. The SVs are also placed in a thermal chamber so that the ambient temperature can be controlled precisely. The apparatus measures in real time the temperature, current, and voltage of each SV. A series of tests have been conducted to produce repeated failures of the SV. The failure of the SV appears to be caused by overheating and failure of the insulation used in the solenoid coil. The current tests are run at a 100°C ambient temperature, 16.8V of average peak voltage, 50% duty cycle, and 60 Hertz actuation frequency. Upon failure, the solenoid electrical resistance drops to a significantly lower value due to shorting of the solenoid coil. This drop in resistance causes a measurable and noticeable increase in the average current. The insulation also melts and exits the SV. Hence, increasing ambient temperature and current is believed to cause a decrease in SV reliability.
机译:目前的工作通过联合理论和实验方法研究了汽车变速器中使用的电磁阀(SV)的可靠性。这项工作的目标是使用加速测试来表征SV故障并将结果与​​新的全面有限元模型相关联(第1部分)。定制测试设备已设计和构建,可同时监控并启动四个SV。测试装置能够应用受控占空比,电流和致动频率。 SV也置于热室中,使得可以精确地控制环境温度。该装置实时测量每个SV的温度,电流和电压。已经进行了一系列测试以产生SV的重复故障。 SV的故障似乎是由螺线管线圈中使用的绝缘过热和失效引起的。当前测试在100°C环境温度下运行,平均峰值电压为16.8V,50%占空比和60赫兹致动频率。由于螺线管线圈的短路,电磁电阻降至显着较低的值。这种阻力下降导致平均电流的可测量和明显的增加。绝缘体也融化并退出SV。因此,据信,增加环境温度和电流会导致SV可靠性降低。

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