首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.4 >The ABAQUS gasket elements are an efficient and flexible tool to study gasket applications Nevertheless their usage is not limited to gasket analysis, but it provides an effective improvement in structural analysis The results point out that both the pre
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The ABAQUS gasket elements are an efficient and flexible tool to study gasket applications Nevertheless their usage is not limited to gasket analysis, but it provides an effective improvement in structural analysis The results point out that both the pre

机译:ABAQUS密封垫元件是研究密封垫应用的有效且灵活的工具,尽管它们的使用不仅限于密封垫分析,但它在结构分析方面提供了有效的改进。结果指出,

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Thermo mechanical fatigue problem is treated to define an analysis methodology permitting the strength evaluation by reliability viewpoint. The main difficulty is the lack of both theoretical and experimental information; consequently the problem is treated verifying continually the validity and the limits of the developing solution method. The chosen application was the exhaust manifold of an IC engine; FE analyses were executed following the standard methodology consolidated by this time in CRF. In particular a time transient thermal analysis was performed taking into account the exhaust gas fluid dynamics inside the manifold; the thermo structural analysis took into account both geometrical and material non linearities; the contact between the manifold and the cylinder head was simulated and the bolts pre load was applied. The evaluation of the thermal fatigue damage is executed adapting methods developed to face isothermal fatigue, analysing also energetic criteria. A preliminary reliability evaluation was executed, on the base of numerical results and of experimental information. The results permitted the individuation of critical areas of the manifold and a preliminary evaluation of the number of cycles allowable before the rupture. Since the several criteria furnished different durations, a more accurate evaluation may be deferred to the execution of experimental tests.
机译:对热机械疲劳问题进行处理,以定义一种分析方法,从而可以从可靠性角度评估强度。主要困难是缺乏理论和实验信息。因此,解决该问题的方法是不断地验证显影方法的有效性和局限性。选择的应用是内燃机的排气歧管。有限元分析是按照这次在CRF中合并的标准方法进行的。尤其是在进行时间瞬态热分析时,要考虑到歧管内部的废气流体动力学。热结构分析同时考虑了几何和材料非线性。模拟了歧管与汽缸盖之间的接触,并施加了螺栓预紧力。对热疲劳损伤的评估是采用针对等温疲劳开发的方法进行的,还分析了能量准则。在数值结果和实验信息的基础上,进行了初步的可靠性评估。结果允许对歧管的关键区域进行个体化,并对破裂前允许的循环次数进行初步评估。由于几个标准提供了不同的持续时间,因此可以将更准确的评估推迟到实验测试的执行中。

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