Dynamic and Fatigue Assessment of Heavy-Duty Engine Valves
暫譯: 重型引擎閥門的動態與疲勞評估
Eret, Angelina
- 出版商: Springer
- 出版日期: 2025-01-19
- 售價: $6,150
- 貴賓價: 9.5 折 $5,843
- 語言: 英文
- 頁數: 162
- 裝訂: Quality Paper - also called trade paper
- ISBN: 303149153X
- ISBN-13: 9783031491535
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商品描述
This book provides findings on the simulation of the valve dynamic to the current technological standards. Above all, it delivers a simulation based and predictive approach on the fatigue strength assessment of four-stroke heavy-duty engine valves. The demand for more efficient combustion engines with fuel flexibility goes along with increasing component requirements regarding strength and durability, while the development costs should remain low. In this context, the present book focuses on the gas exchange valves of heavy-duty engines. Especially, the valves on the exhaust side have an increased risk of fatigue failure. The aim of this book is the generation of a predictive fatigue strength assessment to strengthen the frontloading of the exhaust valve design process and to increase the reliability of the component. In the context of fatigue assessment, this book examines the loads of the exhaust valve during its working cycle. Beside the high temperature and cylinder pressure, further loads act on the exhaust valve like actuation force or an eccentric impact of the valve on the valve seat ring. Furthermore, a bold valve secondary dynamic in the form of valve bending vibrations is observed on the exhaust valves of heavy-duty engines increasing the valve load even more. The cause of this secondary dynamic is unknown. This book investigates the valve loads to get the necessary input for the fatigue strength assessment. With respect to a predictive approach, the determination of valve dynamic and valve loads is based on a multibody simulation model of the valve train. In order to deliver predictive results and a transferable method, this simulation model includes all relevant physical effects to describe the valve dynamic accurately during all valve load phases of the working cycle. With the simulation model, the root cause for the bold valve secondary dynamic is examined iteratively. The model delivers not only the cause for the valve secondary dynamic but most importantly the critical valve loads. These loads deliver the input for the fatigue strength assessment. To ensure the robustness of the load data determined by the simulation model, the sensitivity of influences on the valve load is examined. In this context geometrical misalignment, fluctuations in load data and variable engine operation points are considered. A load collective based on the variation of influences on the valve load is the result of this analysis. All the results of the influence and sensitivity study are generated with the newly developed simulation model of the valve train. Moreover, this book outlines measurements on a testbed engine. In scope of these measurements are temperature and strain measurements of the valve. The generated data validate the simulation model of the valve train. Additionally, the statistical evaluation of the data is used in the subsequent fatigue strength assessment to increase the reliability of the results.
商品描述(中文翻譯)
本書提供了有關閥門動態模擬的研究結果,符合當前的技術標準。最重要的是,它提供了一種基於模擬的預測方法,用於四行程重型引擎閥門的疲勞強度評估。對於更高效且具燃料靈活性的燃燒引擎的需求,伴隨著對於強度和耐久性的組件要求不斷提高,同時開發成本應保持在低水平。在這個背景下,本書專注於重型引擎的氣體交換閥門。特別是,排氣側的閥門面臨著更高的疲勞失效風險。本書的目標是生成一個預測性的疲勞強度評估,以加強排氣閥設計過程的前期規劃,並提高組件的可靠性。在疲勞評估的背景下,本書檢查了排氣閥在其工作週期中的負載。除了高溫和氣缸壓力外,還有其他負載作用於排氣閥,例如驅動力或閥門在閥座環上的偏心衝擊。此外,重型引擎的排氣閥上觀察到一種顯著的閥門次級動態,表現為閥門彎曲振動,進一步增加了閥門的負載。這種次級動態的原因尚不清楚。本書研究了閥門負載,以獲取疲勞強度評估所需的輸入。針對預測性方法,閥門動態和閥門負載的確定基於閥門傳動系統的多體模擬模型。為了提供預測結果和可轉移的方法,該模擬模型包括所有相關的物理效應,以準確描述工作週期中所有閥門負載階段的閥門動態。通過模擬模型,顯著的閥門次級動態的根本原因被迭代檢查。該模型不僅提供了閥門次級動態的原因,更重要的是提供了關鍵的閥門負載。這些負載為疲勞強度評估提供了輸入。為了確保模擬模型所確定的負載數據的穩健性,檢查了對閥門負載的影響的敏感性。在這個背景下,考慮了幾何不對齊、負載數據的波動和可變的引擎運行點。基於對閥門負載影響變化的分析,得出了負載集合。所有影響和敏感性研究的結果均由新開發的閥門傳動系統模擬模型生成。此外,本書概述了在測試台引擎上的測量。在這些測量的範圍內,包括閥門的溫度和應變測量。生成的數據驗證了閥門傳動系統的模擬模型。此外,數據的統計評估在隨後的疲勞強度評估中被用來提高結果的可靠性。
作者簡介
Angelina Eret studied mechanical engineering at the Technical University in Berlin. At MAN Energy Solutions SE in Augsburg, she completed her doctorate in collaboration with the Technical University of Braunschweig with a thematic focus on the dynamics and strength of charge exchange valves of heavy-duty engines. Since July 2022, she has been working as a development engineer in the field of semiconductor manufacturing technology.
作者簡介(中文翻譯)
安吉莉娜·艾瑞特(Angelina Eret)在柏林工業大學(Technical University in Berlin)學習機械工程。她在奧格斯堡的MAN Energy Solutions SE完成了博士學位,並與布倫瑞克工業大學(Technical University of Braunschweig)合作,專注於重型引擎的充電交換閥的動力學和強度。自2022年7月以來,她一直在半導體製造技術領域擔任開發工程師。