UJI “KETAHANAN LELAH DAN PENURUNAN GAYA PEGAS “ KATUP KOMPRESI AKIBAT “BEBAN OPERASI” PADA KATUP MOTOR DIESEL OUTPUT RATED 400 kW.

Bina Teknika Pub Date : 2017-08-02 DOI:10.54378/bt.v11i2.114
Yuhani Djaya, M. R. Hatuwe
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Abstract

Major role in the valve spring Diesel 4 strokes is able to guarantee the valve open and closed positions without loss of engine compression. Therefore, the spring must be able to maintain the style required by the valve in accordance with the needs of its operations. When the spring force reduction operations over the threshold, then the spring will be malfunctioning. Before this happens, the spring should be replaced or restored. Meanwhile, the replacement with a new one because it failed to cause unplanned downtime. To balance the needs of utilities and prevention of failure (downtime) is required prediction faill replacement, and therefore the rate of decline in the spring force is directly related to the characteristics possessed by every spring, then to determine the rate of decrease in the valve spring force necessary to test fatigue characteristics. To achieve these objectives, characteristics and fatigue testing is done with spring material Goodman line approach. These tests include the identification of test material in the form of a test spring spring material chemical composition and hardness test; namely to determine the tensile strength limit in the diagram Heigh and criteria preset limit or unpreset spring tired. Next proceed to test the rate of decrease in the spring force on the cyclic loading which is the subject of this study, in which the rate of decrease in the spring force test due to cyclic done to reach the threshold spring force on the round number above 107. The test results showed that the decrease in the spring force caused by the spring force on the rate of decline of about 6% cyclic loading is at about 300 hours of operating hours, the next spring force experienced stability.
测试柴油机发动机阀门“操作负荷”压力阀的“疲劳耐力降低”,输出输出400 kW。
气门弹簧的主要作用是柴油机4冲程能够保证气门的开启和关闭位置不损失发动机的压缩。因此,弹簧必须能够根据其操作的需要,保持阀门所要求的样式。当弹簧减力操作超过阈值时,弹簧就会出现故障。在这种情况发生之前,应更换或修复弹簧。同时,更换一个新的,因为它未能造成意外停机时间。为了平衡公用事业和预防故障(停机)的需要,需要预测故障更换,因此弹簧力的下降速率与每个弹簧所具有的特性直接相关,然后确定阀门弹簧力的下降速率,以测试疲劳特性。为了达到这些目标,采用古德曼线方法对弹簧材料进行了特性和疲劳测试。这些试验包括以试验弹簧的形式鉴定试验材料弹簧的化学成分和硬度试验;即确定图中的拉伸强度极限高度和标准预设极限或非预设弹簧疲劳。接下来进行循环加载下弹簧力下降率的测试,这是本研究的主题,其中由于循环加载导致的弹簧力下降率测试要达到阈值弹簧力上的整数107以上。试验结果表明,在循环加载下,弹簧力的下降率约为6%,在运行300小时左右,下一次弹簧力经历稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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