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Development of a cylinder pressure sensor using highly-sensitive chromium thin-films and direct contacting by laser welding

机译:使用高灵敏度铬薄膜并通过激光焊接直接接触的气缸压力传感器的开发

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Reduction of emissions caused by combustion engines and the most efficient usage of fuels are the objectives of many ongoing research and development projects. As a key technology, closed loop control of the combustion process based on real-time measurement of in-cylinder pressures is relied upon. Due to high temperatures in and around the combustion chamber, special requirements are placed on the cylinder pressure sensors. High vibration resistance and good long-term stability must be ensured, as well as high temporal resolution and measuring accuracy while maintaining low production costs. As part of a research project, a cylinder pressure sensor based on a highly sensitive thin film of chromium is to be developed. With a high gauge factor of up to 15 compared to other temperature-stable sensor thin films such as TiOxNy with a gauge factor of about 5, a significantly increased sensitivity with good temperature stability is expected. The environmental conditions also place high demands on the electrical contacts of the sensor element. In combination with the given small geometry and the required low production costs, this represents a special challenge. Likewise, high reliability and long-term stability through a robust design are in the foreground. For the manufacturing of the sensor prototypes, an experimental laser welding is tested in which an approximately 150 micrometer thick wire is welded onto a thin film layer of about 150 nm thickness waiving additives such as solder. On the basis of the available data, the contacting method seems to be suitable in the case in question, although no data is available for a longer period of time at the time of submission. Five different pressure sensor variants were manufactured, which differ mainly in the measuring structures used and the tempering of the sensor elements. The temperature range of 150 deg C to 200 deg C of the sensor in an engine test bench was determined by means of FEM simulation and subsequent experimental verification. Sensors have been manufactured and tested successfully, while some interesting temperature dependent characteristics are discussed.
机译:减少由内燃机引起的排放和最有效地使用燃料是许多正在进行的研究和开发项目的目标。作为一项关键技术,依赖于基于缸内压力实时测量的燃烧过程的闭环控制。由于燃烧室内及周围的高温,对气缸压力传感器有特殊要求。必须确保高的抗振性和良好的长期稳定性,以及高的时间分辨率和测量精度,同时保持较低的生产成本。作为研究项目的一部分,将开发基于高度敏感的铬薄膜的气缸压力传感器。与其他温度稳定的传感器薄膜(如TiOxNy)相比,具有高达15的高规格系数,而规格系数约为5,则灵敏度会大大提高,并具有良好的温度稳定性。环境条件也对传感器元件的电触点提出了很高的要求。结合给定的小尺寸和所需的低生产成本,这是一个特殊的挑战。同样,通过可靠的设计实现高可靠性和长期稳定性也成为人们的关注。对于传感器原型的制造,测试了实验性激光焊接,其中将大约150微米厚的焊丝焊接到大约150 nm厚度的薄膜层上,从而免除了添加剂,例如焊料。根据现有数据,联系方法似乎适用于所讨论的情况,尽管在提交时较长时间内没有可用数据。制造了五种不同的压力传感器变体,它们的主要区别在于所使用的测量结构和传感器元件的回火。通过FEM模拟和随后的实验验证,确定了发动机测试台中传感器的温度范围为150℃至200℃。传感器已经成功制造和测试,同时讨论了一些有趣的温度相关特性。

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