首页> 外文期刊>Journal of The institution of engineers (India), Series C >Design of Epoxy based Resin Composites for Automotive Applications: A Case Study on IC Engine Valve Guide
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Design of Epoxy based Resin Composites for Automotive Applications: A Case Study on IC Engine Valve Guide

机译:用于汽车应用环氧树脂复合材料的设计 - 以IC发动机阀导轨为例

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摘要

The present attempt in this project is to reduce the vibrations, temperature due to friction, noise and weight of IC engine valve guide by replacing conventional metal valve guide with composite valve guide. Composite materials have been used in automotive components because of their properties such as low weight, high specific stiffness, corrosion resistance, ability to produce complex shapes, high specific strength and good impact energy absorption etc. The Internal combustion engine valve guides are the parts that support the valves in the cylinder head, besides this it keeps lubricating oil from getting sucked into the combustion chamber past the intake valve stem, it keeps exhaust gases from getting into the crankcase past the exhaust valve stem and it also keeps the valve face in perfect alignment with the valve seat. A valve guide test rig is indigenously fabricated. Valve guides are manufactured using the developed composite material (Resin ARL-136, Hardener AH-126 and 4 vol% WS2), on a CNC lathe. The performance of the developed composite guide under varied conditions of speeds, that is, fixed change in rpm and modulated changes in rpm is assessed. Noise, temperature and vibrations are measured. The experimental data revealed that contribution of composite guide in respect of acceleration, velocity and displacement components of vibration is not substantial. A substantial reduction in noise levels is seen. As far as temperature rise due to friction is concerned maximum components fail at elevated temperatures, with composite guides the temperature generated due to friction at higher speeds is less, a considerable weight reduction is also observed.
机译:本项目的目前的尝试是通过用复合阀导向器更换传统的金属阀导向器来减少振动,温度,由于IC发动机阀导向。复合材料已在汽车部件中使用,因为它们的性能,如低重量,高比刚度,耐腐蚀性,产生复杂形状的能力,高比强度和良好的冲击能量吸收等。内燃机阀门导向器是零件支撑气缸盖中的阀门,除此之外,它保持润滑油从吸入到进气门杆的燃烧室中,它使废气能够进入曲轴箱经过排气阀杆,它也保持完美的阀门面与阀座对准。阀门导向试验台被本发明制造。在CNC车床上,使用开发的复合材料(树脂AR1136,硬化剂AH-126和4 Vol%WS2)制造阀门导向器。在不同速度条件下,发达的复合导向器的性能,即RPM的固定变化和RPM的调制变化。测量噪声,温度和振动。实验数据表明,复合引导件在振动的加速度,速度和位移组分方面的贡献不实质上。可以看到噪声水平的大幅降低。目前,由于摩擦引起的温度升高,所涉及的最大部件在升高的温度下,通过以更高速度摩擦产生的温度较小,还观察到相当大的重量。

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