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DESIGN OF OIL INJECTION QUILLS FOR HYPERCOMPRESSORS CYLINDERS

机译:高压压缩机油缸的喷油嘴设计

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Fatigue impacts the life of all components subject to alternating loads, including lube oil injection quills. These occurrences are more frequent if a defect (initial flaw) nucleates in the component due to corrosion, high stress, machining imperfections, etc. The design of components undergoing high fluctuating pressures needs advanced technologies, like autofrettage, and design methods, like FEM or fracture mechanics. This component can be identified as a cylinder with different outside diameters and notches deriving from the geometry variation and threaded connection. The inner diameter is the most stressed area and will require an adequate stress analysis. A sensitivity analysis of the autofrettage pressure can be performed to identify the most appropriate residual stresses on the inner diameter and to obtain a threshold defect larger than the minimum detectable. Fracture mechanics allows the analysis the propagation of an initial defect with materials having different properties and considering different autofrettage pressures. Finite Element Analysis is used to validate the residual stresses predicted by calculation for each autofrettage pressure. An optimized solution of the hypercompressor injection quill can be designed.
机译:疲劳会影响承受交替载荷的所有组件的寿命,包括润滑油注入被。如果由于腐蚀,高应力,加工缺陷等原因导致部件中的缺陷(初始缺陷)成核,则这些情况会更加频繁。承受高波动压力的部件的设计需要先进的技术,例如自动强化和诸如FEM或FEM的设计方法。断裂力学。可以将此组件识别为具有不同外径和因几何形状变化和螺纹连接而产生的凹口的圆柱体。内径是应力最大的区域,需要进行足够的应力分析。可以对自动加强压力进行灵敏度分析,以识别内径上最合适的残余应力,并获得大于最小可检测阈值的阈值缺陷。断裂力学可以分析具有不同特性的材料以及考虑到不同的自动强化压力的初始缺陷的传播。有限元分析用于验证通过计算每个自动强化压力预测的残余应力。可以设计高压压缩机注射主轴的优化解决方案。

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