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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Development of Original Self-Oscillating Washer Nozzle
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Development of Original Self-Oscillating Washer Nozzle

机译:原始自激式洗衣机喷嘴的开发

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As an integral element of automotive wiper systems, an automotive washer system is designed to contribute to the security and safety of automobile-based societies by providing drivers with a clear field of vision. Washer fluid is discharged from washer nozzles, typically mounted on the engine hood, to distances of more than 300 mm across the windshield. However, the fluid discharged may fail to reach targeted areas due to the effects of wind pressure when the vehicle is moving at high speed or due to the increased viscosity of methanol in the washer fluid (at concentrations of 30-60%) at low temperatures, resulting in failure to ensure a clear field of vision. We developed a self-oscillating washer nozzle to remedy these shortcomings of conventional washer systems. Based on CFD and optimization, the flow passage is designed to generate a stable discharge of washer fluid, even under conditions of high-speed air flow or low temperature. Another point of great concern is the size of the washer nozzle. To avoid adverse effects on automobile design, we sought to develop small nozzles based on the world's smallest flow passages. Additionally, our nozzle can be installed at a wide range of mounting angles, ensuring compatibility with a wide range of vehicles, and is capable of discharging large droplets to maximize wiper system performance. It consumes less washer fluid than conventional systems, contributing to the design of smaller, lighter, and more fuel-efficient vehicles. This new nozzle is produced by our proprietary OSI molding method, previously presented by Mr. Umezawa at the SAE 2009 World Congress & Exhibition and patented in Japan. [1]
机译:作为汽车刮水器系统的组成部分,汽车清洗器系统旨在为驾驶员提供清晰的视野,从而为基于汽车的社会的安全性做出贡献。清洗液从通常安装在发动机罩上的清洗器喷嘴排出,穿过挡风玻璃的距离超过300毫米。但是,由于车辆高速行驶时的风压影响或低温下清洗液中甲醇粘度增加(浓度为30-60%)时,排出的液体可能无法到达目标区域,导致无法确保视野清晰。我们开发了一种自激式洗衣机喷嘴,以弥补传统洗衣机系统的这些缺点。基于CFD和优化,流道设计为即使在高速气流或低温条件下也能产生稳定的清洗液排放。另一个值得关注的问题是清洗机喷嘴的尺寸。为了避免对汽车设计产生不利影响,我们试图根据世界上最小的流道来开发小型喷嘴。此外,我们的喷嘴可以以各种安装角度安装,从而确保与各种车辆兼容,并能够排放大液滴,从而最大化刮水器系统的性能。与传统系统相比,它消耗的清洗液更少,有助于设计更小,更轻,更省油的车辆。这种新喷嘴是由我们的专有OSI成型方法生产的,该方法以前由梅泽先生在2009年SAE世界大会暨展览会上提出,并在日本获得了专利。 [1]

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