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Optimization of Friction Welding Process Parameters for 42Cr9Si2 Hollow Head and Sodium Filled Engine Valve and Valve Performance Evaluation

机译:42Cr9Si2空心充钠发动机气门摩擦焊接工艺参数的优化及气门性能评估。

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摘要

Due to their design, hollow cavity and filled sodium, hollow head and sodium filled engine valves (HHSVs) have superior performance to traditional solid valves in terms of mass and temperature reduction. This paper presents a new manufacturing method for 42Cr9Si2 steel hollow head and sodium filled valves. An inertia friction welding process parameter optimization was conducted to obtain a suitable process parameter range. The fatigue strength of 42Cr9Si2 steel at elevated temperatures was evaluated by rotating bending fatigue test with material specimens. Performance evaluation tests for real valve components were then carried out using a bespoke bench-top apparatus, as well as a stress evaluation utilizing a finite element method. It was proved that the optimized friction welding parameters of HHSV can achieve good welding quality and performance, and the HHSV specimen successfully survived defined durability tests proving the viability of this new method. The wear resistance of the HHSV specimens was evaluated and the corresponding wear mechanisms were found to be those classically defined in automotive valve wear.
机译:由于其设计,空心腔和充钠,空心顶盖和充钠发动机气门(HHSV)在质量和温度降低方面均优于传统的固态气门。本文提出了一种42Cr9Si2钢制空心头和充钠阀的新制造方法。进行惯性摩擦焊接工艺参数优化,以获得合适的工艺参数范围。通过材料试样的旋转弯曲疲劳试验,评估了42Cr9Si2钢在高温下的疲劳强度。然后使用定制的台式设备进行了实际阀门组件的性能评估测试,并使用了有限元方法进行了应力评估。事实证明,优化的HHSV摩擦焊接参数可以达到良好的焊接质量和性能,并且HHSV试样成功地通过了规定的耐久性测试,证明了这种新方法的可行性。对HHSV试样的耐磨性进行了评估,发现相应的磨损机理是汽车气门嘴磨损中的经典定义。

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