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New Power Valve Additive Technology Suitable for Two-Stroke Engines Containing Power Valves or Exhaust Port Modifiers

机译:新型动力阀添加技术适用于含有动力阀或排气口的两冲程发动机

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Exhaust port timing control devices or power valves were introduced into a two-stroke engine in response to the customer's desire for more power. This was the most cost-effective way for manufacturers to increase power over the entire rpm range without significantly modifying their original engine designs, thus ensuring that the excellent power-to-weight ratio characteristics intrinsic to the two-stroke engine were maintained. Varieties of different systems exist to control and operate these exhaust port modifiers. Some of the more sophisticated electronic systems incorporate auto-cleaning cycles at start-up, which help eliminate power valve sticking due to carbon build-up. The more economically designed systems, however, do not. As a result, the valves are more susceptible to deposits, which can reduce their functionality and significantly impact engine performance. Very heavy deposit formation can ultimately stick the valves and make them inoperable. New power valve additive technology has been developed to inhibit deposit formation on these exhaust port modifiers and to ensure consistent engine performance over many hours of operation. This development work was facilitated by utilizing two in-house engine tests. The first test stand, containing a Yamaha YZ125H1 motorcross racing engine, was used as a gross screening tool to rank a large variety of different additive chemistries with respect to their power valve cleanliness performance. The best performing candidates were then further evaluated in a second engine test stand, containing a Polaris XC SP EDGE twin-cylinder snowmobile engine. This test procedure was specifically designed to serve as a finer discriminating tool for evaluating good performing lubricants and to further rank these oils based on their ability to minimize deposit formation. Various commercial lubricants were benchmarked using this engine test procedure, and the goal was to develop new additive technology that exceeded their current performance. Final proof of performance data was obtained by evaluating this new power valve additive technology in the field. In summary, for variable exhaust port modifiers to operate well, carbon build-up and gumming must be inhibited. The new power valve additive technology developed is significant and important because it successfully minimizes deposit formation and ensures improved and consistent engine performance.
机译:响应于客户对更多电力的欲望,将排气口定时控制装置或动力阀引入双冲程发动机。这是制造商在整个RPM范围内增加功率的最具成本效益的方式,而不会显着修改其原始发动机设计,从而确保维持了两冲程发动机的优异的功率 - 重量比特性。存在不同系统的各种系统来控制和操作这些排气口改性剂。一些更复杂的电子系统在启动时采用自动清洁循环,这有助于消除由于碳积累而粘附的动力阀。然而,更经济地设计的系统不。结果,阀门更容易受沉积物,这可以减少其功能和显着影响发动机性能。非常重的沉积物形成最终可以粘住阀门并使它们无法操作。已经开发出新的动力阀添加技术,以抑制这些排气口改性剂上的沉积物形成,并确保一致的发动机性能在很多小时的操作中。通过使用两个内部发动机测试,促进了这种开发工作。包含Yamaha YZ125H1摩托车赛车的第一个测试架被用作总筛分工具,以对其动力阀清洁性能进行排名各种不同的添加剂化学物质。然后在第二发动机试验台中进一步评估最佳表演的候选者,其中包含Polaris XC SP边缘双缸雪地摩托车发动机。该测试程序专门设计用于评估良好的性能润滑剂的更精细的识别工具,并根据其最小化沉积物形成的能力进一步排名这些油。各种商业润滑油使用该发动机测试程序基准测试,目标是开发出现目前性能的新添加技术。通过评估该领域的新型电源阀添加技术来获得最终性能数据证明。总之,对于可变排气口改性剂运行良好,必须抑制碳积聚和胶凝。开发的新型电源阀添加技术是显着和重要的,因为它成功地减少了沉积物形成并确保了改进和一致的发动机性能。

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