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Research on Noise Reduction of Linkage Drive Gear in Extended Expansion Linkage Engine

机译:延长膨胀连锁发动机中连锁驱动齿轮降噪研究

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The authors have reported on a study on extended expansion linkage engine to enhance thermal efficiency since 2006. This report discusses the use of a test engine applied to a Micro Combined Heat and Power Generation Unit for household use, in order to reduce engine noise at a rated operation. Test engine noise is mainly caused by gear meshing for the multiple linkage system, so helical gear with higher contact ratio than that of spur gear was used. Measurement of engine noise revealed that test engine noise increased by 3.2 dB(A) over compared conventional engine. From results of behavior analysis by mechanical simulation, when transmission direction of the relative torque between the crankshaft and the eccentric shaft is reversed, the direction of the thrust force acting on the gear is reversed. For this reason, the test engine noise increases because each shaft vibrates, and rattle noise occurs. With the aim of reducing rattle noise, it is possible to control axial vibration using hydraulic pressure to act on each shaft ends. As a result, rattle noise is resolved, and the test engine noise achieves same noise level of the conventional engine.
机译:作者曾报道关于延长膨胀联动发动机的研究,以自2006年以来提高热效率。本报告讨论了应用于微综合热和发电单元进行家用的测试引擎,以降低发动机噪音额定运行。测试发动机噪声主要由齿轮啮合,用于多连杆系统,所以使用具有较高接触比的螺旋齿轮比正常的正齿轮。发动机噪声的测量显示,在比较传统发动机上,测试发动机噪声增加3.2dB(a)。通过机械模拟的行为分析结果,当曲轴与偏心轴之间的相对扭矩的传输方向反转时,作用在齿轮上的推力的方向颠倒。因此,测试发动机噪声增加,因为每个轴振动,并且发生响铃噪声。旨在减少响响噪声,可以使用液压控制轴向振动以作用在每个轴端。结果,解决了拨浪鼓噪声,并且测试发动机噪声达到传统发动机的相同噪声水平。

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